Newly Characterized Genes

CHECK HERE FOR DESCRIPTIONS OF NEWLY CHARACTERIZED MAIZE GENES!

With the overwhelming number of genes that are being discovered by phenotypic and sequence analyses, the MaizeGDB staff is missing some that should be included in MaizeGDB. We need your help! Please let us know about new genes that you're working on or have recently read about.

MaizeGDB prefers not to assign formal gene names to gene models based purely on orthology. Known difficulties include inclusivity (there are over 10,000 functionally characterized Arabidopsis genes)* and some likelihood of errors in inferred functions. Unlike gene models, gene names are generally conserved unless differently named genes are found to be allelic. Of particular note, naming priveleges are customarily held by researchers who first confirm function.

We encourage researchers to use the annotation tool on the MaizeGDB gene model pages to add their insights about putative function, especially when not currently part of the Phytozome or Gramene pipelines.

Below is a list of newly reported or newly characterized genes (new reference, new gene product, and/or new variation) with which you may not yet be familiar. The genes are sorted by the last time the gene has been updated. To suggest genes for inclusion in this list, email us and include the gene name, full name, chromosome or bin, and a recent reference.

If you cannot find the gene you would like to recommend in the database, send us an email so that we can add it to the database!

This page is based on our monthly release. The updates are made around 4:00am CST.


         Recommended Genes


Most recent data | Six months | One year | All time

New or updated genes since six months ago. The cutoff date is May 29th, 2025.

Last UpdateGeneFull Name : DescriptionChromosome
or Bin
Gene
Model
Recent ReferenceOrthologsUpdate information
todaymcj8 monocot-specific chimeric jacalin8:
 
GRMZM2G046520
Zm00001d011012
Zm00001eb355410
Liu, ZH et al. 2025. Analysis of the Dirigent Pan-Gene Family in 26 Diverse Inbred Lines Reveals Genomic Diversity in Maize Genes. 16:1285.     Reference: November 28th, 2025
Gene Product: July 7th, 2024
todaymcj2 monocot-specific chimeric jacalin2:
 
GRMZM2G002630
Zm00001d035558
Zm00001eb265850
Liu, ZH et al. 2025. Analysis of the Dirigent Pan-Gene Family in 26 Diverse Inbred Lines Reveals Genomic Diversity in Maize Genes. 16:1285.     Reference: November 28th, 2025
Gene Product: July 7th, 2024
todayprx104 peroxidase104:
 
GRMZM2G149273
Zm00001d047358
Zm00001eb393680
Qi, X et al. 2025. Functional Analysis of Maize SDG102 Gene in Response to Setosphaeria turcica Plants. 14:3463.     Reference: November 28th, 2025
Gene Product: January 20th, 2025
todayaaap72 amino acid/auxin permease72:
 
AC184835.3_FG003
Zm00001d052995
Vasiliki Zacharaki et al. 2025. Convergent antisense transcription primes hosting genes for stress responsiveness in plants Molecular Plant. 18:1920-1931.     Reference: November 28th, 2025
Gene Product: March 31st, 2021
todaymcj4 monocot-specific chimeric jacalin4:
 
GRMZM2G025959
Zm00001d035560
Zm00001eb265890
Liu, ZH et al. 2025. Analysis of the Dirigent Pan-Gene Family in 26 Diverse Inbred Lines Reveals Genomic Diversity in Maize Genes. 16:1285.     Reference: November 28th, 2025
Gene Product: July 7th, 2024
todayrca1 RUBISCO activase1:
4.00
GRMZM2G162200
Zm00001d048593
Zm00001eb164390
Cleopatra Pfunde et al. 2025. Comparative Leaf Proteome Analysis of Maize (Zea mays L.) Exposed to Combined Drought and Heat Stress. 14:3419.     Reference: November 28th, 2025
Gene Product: October 28th, 2014
Variation: September 1st, 2003
todayact1 actin1:
8.03 - 8.04
GRMZM2G126010
Zm00001d010159
Zm00001eb348450
Cleopatra Pfunde et al. 2025. Comparative Leaf Proteome Analysis of Maize (Zea mays L.) Exposed to Combined Drought and Heat Stress. 14:3419.     Reference: November 28th, 2025
Gene Product: September 1st, 2003
Variation: September 4th, 2013
todayadk1 adenylate kinase1:
6.00 - 6.01
GRMZM2G178192
Zm00001d035034
Zm00001eb260410
Cleopatra Pfunde et al. 2025. Comparative Leaf Proteome Analysis of Maize (Zea mays L.) Exposed to Combined Drought and Heat Stress. 14:3419.     Reference: November 28th, 2025
Gene Product: September 1st, 2003
Variation: September 4th, 2013
todaybr2 brachytic2:
1.06 - 1.07
GRMZM2G315375
Zm00001d031871
Zm00001eb038710
Leng, ER and Vineyard, ML. 1951. MNL 25:31-32     Reference: November 28th, 2025
Gene Product: May 1st, 2012
Variation: November 28th, 2025
todayc2 colorless2:
4.08
GRMZM2G422750
Zm00001d052673
Zm00001eb198030
He, XM et al. 2025. Rhizosheath inhabiting Massilia are linked to heterosis in roots of maize Nat Commun. 16:10777.     Reference: November 28th, 2025
Gene Product: September 1st, 2003
Variation: February 6th, 2025
todaygpa1 glyceraldehyde-3-phosphate dehydrogenase1:
8.03
GRMZM2G337113
Zm00001d003429
Zm00001eb080840
Cleopatra Pfunde et al. 2025. Comparative Leaf Proteome Analysis of Maize (Zea mays L.) Exposed to Combined Drought and Heat Stress. 14:3419.     Reference: November 28th, 2025
Gene Product: September 1st, 2003
Variation: April 12th, 2013
todaygpc2 glyceraldehyde-3-phosphate dehydrogenase2:
6.00 - 6.01
GRMZM2G180625
Zm00001d035156
Zm00001eb261430
Cleopatra Pfunde et al. 2025. Comparative Leaf Proteome Analysis of Maize (Zea mays L.) Exposed to Combined Drought and Heat Stress. 14:3419.     Reference: November 28th, 2025
Gene Product: September 1st, 2003
Variation: December 13th, 2012
todaytpi4 triose phosphate isomerase4:
3.04
GRMZM2G030784
Zm00001d039865
Zm00001eb124410
Cleopatra Pfunde et al. 2025. Comparative Leaf Proteome Analysis of Maize (Zea mays L.) Exposed to Combined Drought and Heat Stress. 14:3419.     Reference: November 28th, 2025
Gene Product: September 1st, 2003
Variation: March 11th, 2024
todaybnlg2057  :
1.06
GRMZM2G017629
Zm00001d031345
Zm00001eb034240
Liu, ZH et al. 2025. Analysis of the Dirigent Pan-Gene Family in 26 Diverse Inbred Lines Reveals Genomic Diversity in Maize Genes. 16:1285.     Reference: November 28th, 2025
Variation: March 17th, 2021
todayaaap69 amino acid/auxin permease69:
10.04
GRMZM2G173597
Zm00001d025665
Zm00001eb424670
Vasiliki Zacharaki et al. 2025. Convergent antisense transcription primes hosting genes for stress responsiveness in plants Molecular Plant. 18:1920-1931.     Reference: November 28th, 2025
Gene Product: March 31st, 2021
Variation: March 18th, 2021
todayhsp1 heat shock protein1:
8.01
GRMZM2G310431
Zm00001d012420
Zm00001eb368000
Cleopatra Pfunde et al. 2025. Comparative Leaf Proteome Analysis of Maize (Zea mays L.) Exposed to Combined Drought and Heat Stress. 14:3419.     Reference: November 28th, 2025
Gene Product: September 1st, 2003
Variation: September 1st, 2003
todaypdk1 pyruvate, orthophosphate dikinase1:
6.05
GRMZM2G306345
Zm00001d038163
Zm00001eb287770
Cleopatra Pfunde et al. 2025. Comparative Leaf Proteome Analysis of Maize (Zea mays L.) Exposed to Combined Drought and Heat Stress. 14:3419.     Reference: November 28th, 2025
Gene Product: July 28th, 2014
Variation: April 18th, 2018
todaymdh6 malate dehydrogenase6:
1.07
GRMZM2G129513
Zm00001d031899
Zm00001eb038930
Cleopatra Pfunde et al. 2025. Comparative Leaf Proteome Analysis of Maize (Zea mays L.) Exposed to Combined Drought and Heat Stress. 14:3419.     Reference: November 28th, 2025
Gene Product: September 23rd, 2014
Variation: August 31st, 2010
todayelfa9 elongation factor 1-alpha9:
9.03
GRMZM2G153541
Zm00001d046449
Zm00001eb385900
Cleopatra Pfunde et al. 2025. Comparative Leaf Proteome Analysis of Maize (Zea mays L.) Exposed to Combined Drought and Heat Stress. 14:3419.     Reference: November 28th, 2025
Gene Product: September 1st, 2003
Variation: April 14th, 2014
todaymcj1 monocot-specific chimeric jacalin1:
2.06
GRMZM2G402417
Zm00001d005472
Zm00001eb097070
Liu, ZH et al. 2025. Analysis of the Dirigent Pan-Gene Family in 26 Diverse Inbred Lines Reveals Genomic Diversity in Maize Genes. 16:1285.     Reference: November 28th, 2025
Gene Product: July 7th, 2024
todaygln4 glutamine synthetase4:
5.06
GRMZM5G872068
Zm00001d017958
Zm00001eb253820
Cleopatra Pfunde et al. 2025. Comparative Leaf Proteome Analysis of Maize (Zea mays L.) Exposed to Combined Drought and Heat Stress. 14:3419.     Reference: November 28th, 2025
Gene Product: September 1st, 2003
Variation: September 1st, 2003
todaygln1 glutamine synthetase1:
10.07
GRMZM2G098290
Zm00001d026501
Zm00001eb432580
Cleopatra Pfunde et al. 2025. Comparative Leaf Proteome Analysis of Maize (Zea mays L.) Exposed to Combined Drought and Heat Stress. 14:3419.     Reference: November 28th, 2025
Gene Product: September 1st, 2003
Variation: September 1st, 2003
todayrbcL (cp) ribulose-1-5-bisphosphate carboxylase-large subunit:
 
Zm00001eb440790
Cleopatra Pfunde et al. 2025. Comparative Leaf Proteome Analysis of Maize (Zea mays L.) Exposed to Combined Drought and Heat Stress. 14:3419.     Reference: November 28th, 2025
Gene Product: September 1st, 2003
todayhsp18c heat shock protein18c:
8.02
GRMZM2G034157
Zm00001d008841
Zm00001eb337690
Cleopatra Pfunde et al. 2025. Comparative Leaf Proteome Analysis of Maize (Zea mays L.) Exposed to Combined Drought and Heat Stress. 14:3419.     Reference: November 28th, 2025
Gene Product: September 1st, 2003
Variation: January 2nd, 2013
todayatp2 ATP synthase2:
8.03
GRMZM2G113408
Zm00001d038929
Zm00001eb295050
Cleopatra Pfunde et al. 2025. Comparative Leaf Proteome Analysis of Maize (Zea mays L.) Exposed to Combined Drought and Heat Stress. 14:3419.     Reference: November 28th, 2025
Gene Product: September 1st, 2003
Variation: August 22nd, 2014
todaygst3 glutathione transferase3:
3.05
GRMZM2G146246
Zm00001d042216
Zm00001eb142220
Cleopatra Pfunde et al. 2025. Comparative Leaf Proteome Analysis of Maize (Zea mays L.) Exposed to Combined Drought and Heat Stress. 14:3419.     Reference: November 28th, 2025
Gene Product: September 1st, 2003
Variation: August 17th, 2010
todayaaap65 amino acid/auxin permease65:
10.02
GRMZM2G433162
Zm00001d023593
Zm00001eb408360
Vasiliki Zacharaki et al. 2025. Convergent antisense transcription primes hosting genes for stress responsiveness in plants Molecular Plant. 18:1920-1931.     Reference: November 28th, 2025
Gene Product: March 31st, 2021
todaysdg102 set domain gene102:
2.04
GRMZM2G147619
Zm00001d003679
Zm00001eb082920
Qi, X et al. 2025. Functional Analysis of Maize SDG102 Gene in Response to Setosphaeria turcica Plants. 14:3463.     Reference: November 28th, 2025
Gene Product: June 30th, 2017
Variation: September 1st, 2003
todaybx9 benzoxazinone synthesis9:
1.06
GRMZM2G161335
Zm00001d031209
Zm00001eb033030
Cleopatra Pfunde et al. 2025. Comparative Leaf Proteome Analysis of Maize (Zea mays L.) Exposed to Combined Drought and Heat Stress. 14:3419.     Reference: November 28th, 2025
Gene Product: October 11th, 2021
Variation: October 27th, 2011
todayarpp0 60S acidic ribosomal protein P0:
6.01
GRMZM2G066460
Zm00001d035201
Zm00001eb261840
Cleopatra Pfunde et al. 2025. Comparative Leaf Proteome Analysis of Maize (Zea mays L.) Exposed to Combined Drought and Heat Stress. 14:3419.     Reference: November 28th, 2025
Variation: January 6th, 2016
todayatpc2 ATP synthase chloroplast subunit2:
 
GRMZM2G048907
Zm00001d021620
Zm00001eb322600
Cleopatra Pfunde et al. 2025. Comparative Leaf Proteome Analysis of Maize (Zea mays L.) Exposed to Combined Drought and Heat Stress. 14:3419.     Reference: November 28th, 2025
Gene Product: July 17th, 2006
Variation: December 30th, 2015
todayfnsi1 flavone synthase typeI1:
 
GRMZM2G099467
Zm00001d029744
Zm00001eb022030
He, XM et al. 2025. Rhizosheath inhabiting Massilia are linked to heterosis in roots of maize Nat Commun. 16:10777.   AT5G24530 (TAIR) Reference: November 28th, 2025
Gene Product: August 15th, 2015
Variation: August 14th, 2015
todayaaap56 amino acid/auxin permease56:
 
GRMZM2G096407
Zm00001d012231
Zm00001eb366310
Vasiliki Zacharaki et al. 2025. Convergent antisense transcription primes hosting genes for stress responsiveness in plants Molecular Plant. 18:1920-1931.     Reference: November 28th, 2025
Gene Product: March 31st, 2021
todayaaap14 amino acid/auxin permease14:
 
GRMZM2G082434
Zm00001d004705
Zm00001eb090970
Vasiliki Zacharaki et al. 2025. Convergent antisense transcription primes hosting genes for stress responsiveness in plants Molecular Plant. 18:1920-1931.     Reference: November 28th, 2025
Gene Product: March 31st, 2021
todayaaap6 amino acid/auxin permease6:
 
GRMZM2G042933
Zm00001d001984
Zm00001eb067590
Vasiliki Zacharaki et al. 2025. Convergent antisense transcription primes hosting genes for stress responsiveness in plants Molecular Plant. 18:1920-1931.     Reference: November 28th, 2025
Gene Product: March 31st, 2021
todayaaap9 amino acid/auxin permease9:
 
GRMZM2G155491
Zm00001d003343
Zm00001eb080050
Vasiliki Zacharaki et al. 2025. Convergent antisense transcription primes hosting genes for stress responsiveness in plants Molecular Plant. 18:1920-1931.     Reference: November 28th, 2025
Gene Product: March 31st, 2021
todayaaap17 amino acid/auxin permease17:
 
GRMZM2G032304
Zm00001d041836
Zm00001eb138770
Zm00001eb138780
Vasiliki Zacharaki et al. 2025. Convergent antisense transcription primes hosting genes for stress responsiveness in plants Molecular Plant. 18:1920-1931.     Reference: November 28th, 2025
Gene Product: March 31st, 2021
todayaaap18 amino acid/auxin permease18:
 
GRMZM2G031167
Zm00001d041842
Zm00001eb138820
Vasiliki Zacharaki et al. 2025. Convergent antisense transcription primes hosting genes for stress responsiveness in plants Molecular Plant. 18:1920-1931.     Reference: November 28th, 2025
Gene Product: March 31st, 2021
todayaaap19 amino acid/auxin permease19:
 
GRMZM2G136288
Zm00001d041843
Vasiliki Zacharaki et al. 2025. Convergent antisense transcription primes hosting genes for stress responsiveness in plants Molecular Plant. 18:1920-1931.     Reference: November 28th, 2025
Gene Product: March 31st, 2021
todayaaap21 amino acid/auxin permease21:
 
GRMZM2G110195
Zm00001d042619
Zm00001eb145670
Vasiliki Zacharaki et al. 2025. Convergent antisense transcription primes hosting genes for stress responsiveness in plants Molecular Plant. 18:1920-1931.     Reference: November 28th, 2025
Gene Product: March 31st, 2021
todayaaap22 amino acid/auxin permease22:
 
GRMZM5G830545
Zm00001d042636
Zm00001eb145880
Vasiliki Zacharaki et al. 2025. Convergent antisense transcription primes hosting genes for stress responsiveness in plants Molecular Plant. 18:1920-1931.     Reference: November 28th, 2025
Gene Product: March 31st, 2021
todayaaap29 amino acid/auxin permease29:
 
GRMZM2G180547
Zm00001d050211
Zm00001eb178270
Vasiliki Zacharaki et al. 2025. Convergent antisense transcription primes hosting genes for stress responsiveness in plants Molecular Plant. 18:1920-1931.     Reference: November 28th, 2025
Gene Product: March 31st, 2021
todayaaap33 amino acid/auxin permease33:
 
GRMZM2G332505
Zm00001d053143
Zm00001eb202080
Vasiliki Zacharaki et al. 2025. Convergent antisense transcription primes hosting genes for stress responsiveness in plants Molecular Plant. 18:1920-1931.     Reference: November 28th, 2025
Gene Product: March 31st, 2021
todayaaap36 amino acid/auxin permease36:
 
GRMZM2G161641
Zm00001d017880
Zm00001eb253110
Vasiliki Zacharaki et al. 2025. Convergent antisense transcription primes hosting genes for stress responsiveness in plants Molecular Plant. 18:1920-1931.     Reference: November 28th, 2025
Gene Product: March 31st, 2021
todayaaap46 amino acid/auxin permease46:
 
GRMZM2G331283
Zm00001d036984
Zm00001eb277520
Vasiliki Zacharaki et al. 2025. Convergent antisense transcription primes hosting genes for stress responsiveness in plants Molecular Plant. 18:1920-1931.     Reference: November 28th, 2025
Gene Product: March 31st, 2021
todayaaap52 amino acid/auxin permease52:
 
GRMZM2G108023
Zm00001d018751
Zm00001eb299500
Vasiliki Zacharaki et al. 2025. Convergent antisense transcription primes hosting genes for stress responsiveness in plants Molecular Plant. 18:1920-1931.   AT1G58360 (TAIR) Reference: November 28th, 2025
Gene Product: March 31st, 2021
todayaaap54 amino acid/auxin permease54:
 
GRMZM2G164814
Zm00001d010231
Zm00001eb349050
Vasiliki Zacharaki et al. 2025. Convergent antisense transcription primes hosting genes for stress responsiveness in plants Molecular Plant. 18:1920-1931.     Reference: November 28th, 2025
Gene Product: March 31st, 2021
todayaaap55 amino acid/auxin permease55:
 
GRMZM2G092945
Zm00001d012229
Zm00001eb366300
Vasiliki Zacharaki et al. 2025. Convergent antisense transcription primes hosting genes for stress responsiveness in plants Molecular Plant. 18:1920-1931.   LOC_Os01g65670 (MSU/TIGR)
Os01g0878700 (Gramene)
Reference: November 28th, 2025
Gene Product: March 31st, 2021
Variation: April 22nd, 2022
todayaaap59 amino acid/auxin permease59:
 
GRMZM2G145989
Zm00001d046235
Zm00001eb384590
Vasiliki Zacharaki et al. 2025. Convergent antisense transcription primes hosting genes for stress responsiveness in plants Molecular Plant. 18:1920-1931.     Reference: November 28th, 2025
Gene Product: March 31st, 2021
todayaaap60 amino acid/auxin permease60:
 
GRMZM2G136300
Zm00001d046263
Zm00001eb384620
Vasiliki Zacharaki et al. 2025. Convergent antisense transcription primes hosting genes for stress responsiveness in plants Molecular Plant. 18:1920-1931.     Reference: November 28th, 2025
Gene Product: March 31st, 2021
todayaaap64 amino acid/auxin permease64:
 
GRMZM2G076593
Zm00001d023592
Zm00001eb408350
Vasiliki Zacharaki et al. 2025. Convergent antisense transcription primes hosting genes for stress responsiveness in plants Molecular Plant. 18:1920-1931.     Reference: November 28th, 2025
Gene Product: March 31st, 2021
todayaaap66 amino acid/auxin permease66:
 
GRMZM2G157168
Zm00001d023596
Zm00001eb408380
Vasiliki Zacharaki et al. 2025. Convergent antisense transcription primes hosting genes for stress responsiveness in plants Molecular Plant. 18:1920-1931.     Reference: November 28th, 2025
Gene Product: March 31st, 2021
todayaaap67 amino acid/auxin permease67:
 
GRMZM2G413943
Zm00001d023603
Zm00001eb408430
Vasiliki Zacharaki et al. 2025. Convergent antisense transcription primes hosting genes for stress responsiveness in plants Molecular Plant. 18:1920-1931.     Reference: November 28th, 2025
Gene Product: March 31st, 2021
todaymcj6 monocot-specific chimeric jacalin6:
 
GRMZM2G163406
Zm00001d035562
Zm00001eb265890
Liu, ZH et al. 2025. Analysis of the Dirigent Pan-Gene Family in 26 Diverse Inbred Lines Reveals Genomic Diversity in Maize Genes. 16:1285.     Reference: November 28th, 2025
Gene Product: July 7th, 2024
todaystl1 salt-tolerant locus1:
 
GRMZM2G472278
Zm00001d033942
Zm00001eb056600
Liu, ZH et al. 2025. Analysis of the Dirigent Pan-Gene Family in 26 Diverse Inbred Lines Reveals Genomic Diversity in Maize Genes. 16:1285.     Reference: November 28th, 2025
Gene Product: April 25th, 2022
Variation: April 25th, 2022
todaymcj3 monocot-specific chimeric jacalin3:
6.01
GRMZM2G112238
Zm00001d035559
Zm00001eb265880
Liu, ZH et al. 2025. Analysis of the Dirigent Pan-Gene Family in 26 Diverse Inbred Lines Reveals Genomic Diversity in Maize Genes. 16:1285.     Reference: November 28th, 2025
Gene Product: July 7th, 2024
Variation: March 31st, 2005
todaypx5 peroxidase 5:
6.05
GRMZM2G450233
Zm00001d037550
Zm00001eb282430
Qi, X et al. 2025. Functional Analysis of Maize SDG102 Gene in Response to Setosphaeria turcica Plants. 14:3463.     Reference: November 28th, 2025
Gene Product: January 20th, 2025
Variation: August 8th, 2025
todaycad1 cinnamyl alcohol dehydrogenase1:
2.02
GRMZM2G046070
Zm00001d002346
Zm00001eb071040
Qi, X et al. 2025. Functional Analysis of Maize SDG102 Gene in Response to Setosphaeria turcica Plants. 14:3463.     Reference: November 28th, 2025
Gene Product: September 1st, 2003
todayjac1 jacalin1:
6.01
GRMZM2G050412
Zm00001d035561
Zm00001eb265900
Liu, ZH et al. 2025. Analysis of the Dirigent Pan-Gene Family in 26 Diverse Inbred Lines Reveals Genomic Diversity in Maize Genes. 16:1285.     Reference: November 28th, 2025
Gene Product: July 7th, 2024
yesterdaymrpa12 multidrug resistance protein associated12:
 
GRMZM2G085236
Zm00001d026426
Zm00001eb431930
Govinda Rai Sarma et al. 2025. Molecular delineation, development and validation of functional markers for brachytic2 (br2) gene governing dwarfing plant height in maize Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01685-0.     Reference: November 27th, 2025
Gene Product: July 11th, 2019
yesterdaymrpa15 multidrug resistance protein associated15:
 
GRMZM2G388539
Zm00001d003778
Zm00001eb083810
Govinda Rai Sarma et al. 2025. Molecular delineation, development and validation of functional markers for brachytic2 (br2) gene governing dwarfing plant height in maize Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01685-0.     Reference: November 27th, 2025
Gene Product: July 11th, 2019
yesterdaymrpa16 multidrug resistance protein associated16:
 
GRMZM2G167658
Zm00001d004442
Zm00001eb088790
Govinda Rai Sarma et al. 2025. Molecular delineation, development and validation of functional markers for brachytic2 (br2) gene governing dwarfing plant height in maize Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01685-0.     Reference: November 27th, 2025
Gene Product: July 11th, 2019
yesterdaymrpa18 multidrug resistance protein associated18:
 
GRMZM2G025860
Zm00001d043599
Zm00001eb154470
Govinda Rai Sarma et al. 2025. Molecular delineation, development and validation of functional markers for brachytic2 (br2) gene governing dwarfing plant height in maize Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01685-0.     Reference: November 27th, 2025
Gene Product: July 11th, 2019
yesterdaymrpa20 multidrug resistance protein associated20:
 
GRMZM2G072071
Zm00001d013254
Zm00001eb214670
Govinda Rai Sarma et al. 2025. Molecular delineation, development and validation of functional markers for brachytic2 (br2) gene governing dwarfing plant height in maize Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01685-0.     Reference: November 27th, 2025
Gene Product: July 11th, 2019
yesterdaymrpa21 multidrug resistance protein associated21:
 
GRMZM2G082385
Zm00001d009447
Zm00001eb342670
Govinda Rai Sarma et al. 2025. Molecular delineation, development and validation of functional markers for brachytic2 (br2) gene governing dwarfing plant height in maize Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01685-0.     Reference: November 27th, 2025
Gene Product: July 11th, 2019
yesterdaymrpa23 multidrug resistance associated protein23:
 
GRMZM2G072850
Zm00001d002119
Zm00001eb068880
Govinda Rai Sarma et al. 2025. Molecular delineation, development and validation of functional markers for brachytic2 (br2) gene governing dwarfing plant height in maize Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01685-0.     Reference: November 27th, 2025
Gene Product: July 11th, 2019
yesterdaymrpa24 multidrug resistance associated protein24:
 
GRMZM5G843192
Zm00001d016794
Zm00001eb243520
Govinda Rai Sarma et al. 2025. Molecular delineation, development and validation of functional markers for brachytic2 (br2) gene governing dwarfing plant height in maize Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01685-0.     Reference: November 27th, 2025
Gene Product: July 11th, 2019
yesterdaymrpa25 multidrug resistance associated protein25:
 
GRMZM2G153961
GRMZM5G843537
Zm00001d009448
Zm00001eb342680
Govinda Rai Sarma et al. 2025. Molecular delineation, development and validation of functional markers for brachytic2 (br2) gene governing dwarfing plant height in maize Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01685-0.     Reference: November 27th, 2025
Gene Product: July 11th, 2019
yesterdaymrpa27 multidrug resistance associated protein27:
 
GRMZM2G111462
Zm00001d025703
Zm00001eb425050
Govinda Rai Sarma et al. 2025. Molecular delineation, development and validation of functional markers for brachytic2 (br2) gene governing dwarfing plant height in maize Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01685-0.     Reference: November 27th, 2025
Gene Product: July 11th, 2019
yesterdaycyp63 cytochrome P450 63:
 
   Govinda Rai Sarma et al. 2025. Molecular delineation, development and validation of functional markers for brachytic2 (br2) gene governing dwarfing plant height in maize Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01685-0.     Reference: November 27th, 2025
Gene Product: December 30th, 2022
yesterdaybm2 brown midrib2:
1.11
GRMZM2G347056
Zm00001d034602
Zm00001eb062180
Jinyue Wang et al. 2025. Boosting lignocellulosic bioethanol production: fermentation of corn stalk using a lignin-reduced brown midrib 2 maize mutant. Biotechnol Biofuels Bioprod. :doi: 10.1186/s13068-025-02722-6.     Reference: November 27th, 2025
Gene Product: August 28th, 2012
Variation: November 30th, 2013
yesterdaynactf123 NAC-transcription factor 123:
 
GRMZM2G092465
Zm00001d035084
Zm00001eb260850
Jinyue Wang et al. 2025. Boosting lignocellulosic bioethanol production: fermentation of corn stalk using a lignin-reduced brown midrib 2 maize mutant. Biotechnol Biofuels Bioprod. :doi: 10.1186/s13068-025-02722-6.     Reference: November 27th, 2025
Variation: November 27th, 2025
yesterdayAY110310  :
4.06
GRMZM2G004748
Zm00001d051514
Zm00001eb187760
Govinda Rai Sarma et al. 2025. Molecular delineation, development and validation of functional markers for brachytic2 (br2) gene governing dwarfing plant height in maize Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01685-0.     Reference: November 27th, 2025
Variation: July 29th, 2004
2 days agoprd3 putative recombination initiation defect3:
 
GRMZM2G055899
Zm00001d048540
Zm00001eb404350
Mohammad Mahmood Hasan et al. 2025. mop1 affects maize recombination landscapes by modulating methylation of MITEs near genes in open chromatin. Nat Commun. 16:10476.   AT1G01690 (TAIR)
LOC_Os03g01590 (MSU/TIGR)
Reference: November 26th, 2025
Variation: October 12th, 2022
2 days agoprd4 putative recombination initiation defect4:
 
GRMZM2G458423
Zm00001d027300
Zm00001eb000540
Mohammad Mahmood Hasan et al. 2025. mop1 affects maize recombination landscapes by modulating methylation of MITEs near genes in open chromatin. Nat Commun. 16:10476.   AT1G01690 (TAIR) Reference: November 26th, 2025
Variation: October 12th, 2022
2 days agoZm00001d006089  :
 
GRMZM2G035996
Zm00001d006089
Zm00001eb102420
Mohammad Mahmood Hasan et al. 2025. mop1 affects maize recombination landscapes by modulating methylation of MITEs near genes in open chromatin. Nat Commun. 16:10476.   AT1G67370 (TAIR) Reference: November 26th, 2025
Gene Product: October 12th, 2022
Variation: October 12th, 2022
2 days agoZm00001d048691  :
 
   Mohammad Mahmood Hasan et al. 2025. mop1 affects maize recombination landscapes by modulating methylation of MITEs near genes in open chromatin. Nat Commun. 16:10476.   AT4G29830 (TAIR) Reference: November 26th, 2025
Gene Product: October 3rd, 2024
2 days agorap2 rap2.7 orthologue:
8.06
GRMZM2G700665
Zm00001d010987
Zm00001d010988
Zm00001eb355240
Li, L et al. 2025. Single-molecule views of chromatin accessibility and structure during photomorphogenesis. Proc Natl Acad Sci, USA. 122:e2516708122.     Reference: November 26th, 2025
Gene Product: July 5th, 2019
Variation: July 24th, 2019
2 days agoas1 asynaptic1:
1.05
   Mohammad Mahmood Hasan et al. 2025. mop1 affects maize recombination landscapes by modulating methylation of MITEs near genes in open chromatin. Nat Commun. 16:10476.     Reference: November 26th, 2025
Variation: December 4th, 2012
2 days agodsy2 desynaptic2:
5.03 - 5.04
AC210848.3_FG004
Zm00001d015469
Zm00001eb233800
Mohammad Mahmood Hasan et al. 2025. mop1 affects maize recombination landscapes by modulating methylation of MITEs near genes in open chromatin. Nat Commun. 16:10476.   AT2G46980 (TAIR)
LOC_Os10g26560 (MSU/TIGR)
Reference: November 26th, 2025
Gene Product: August 25th, 2015
Variation: August 25th, 2015
2 days agolg1 liguleless1:
2.01
GRMZM2G036297
Zm00001d002005
Zm00001eb067740
Zm00026ab067840
Long, SP et al. 2025. Feeding from the sun—Successes and prospects in bioengineering photosynthesis for food security Cell. 188:6700-6719.     Reference: November 26th, 2025
Gene Product: December 18th, 2014
Variation: August 15th, 2024
2 days agolg2 liguleless2:
3.06
GRMZM2G060216
Zm00001d042777
Zm00001eb147220
Long, SP et al. 2025. Feeding from the sun—Successes and prospects in bioengineering photosynthesis for food security Cell. 188:6700-6719.     Reference: November 26th, 2025
Gene Product: August 22nd, 2014
Variation: January 22nd, 2024
2 days agomop1 mediator of paramutation1:
2.04
GRMZM2G042443
Zm00001d003378
Zm00001eb080370
Mohammad Mahmood Hasan et al. 2025. mop1 affects maize recombination landscapes by modulating methylation of MITEs near genes in open chromatin. Nat Commun. 16:10476.     Reference: November 26th, 2025
Gene Product: August 8th, 2006
Variation: August 8th, 2006
2 days agomyb31 MYB31 transcription factor31:
 
GRMZM2G050305
Zm00001d006236
Zm00001eb103730
Yishan Cheng et al. 2025. Evaluation of cold tolerance in maize diversity panel and transcriptome analysis of two extreme genotypes under cold stress Plant Physiol Biochem. :110744.   LOC_Os09g36730 (MSU/TIGR) Reference: November 26th, 2025
Gene Product: February 16th, 2011
Variation: May 6th, 2011
2 days agozyp1 synaptonemal complex protein ZIPPER1:
 
GRMZM2G143590
Zm00001d025575
Zm00001eb423930
Mohammad Mahmood Hasan et al. 2025. mop1 affects maize recombination landscapes by modulating methylation of MITEs near genes in open chromatin. Nat Commun. 16:10476.     Reference: November 26th, 2025
Gene Product: March 2nd, 2011
Variation: March 2nd, 2011
2 days agoabi12 ABI3-VP1-transcription factor 12:
 
GRMZM2G102059
Zm00001d002562
Zm00001eb073010
Long, SP et al. 2025. Feeding from the sun—Successes and prospects in bioengineering photosynthesis for food security Cell. 188:6700-6719.     Reference: November 26th, 2025
Gene Product: January 29th, 2022
Variation: September 20th, 2019
2 days agofha14 FHA-transcription factor 14:
 
GRMZM2G006246
Zm00001d013976
Zm00001eb221260
Mohammad Mahmood Hasan et al. 2025. mop1 affects maize recombination landscapes by modulating methylation of MITEs near genes in open chromatin. Nat Commun. 16:10476.   AT3G02680 (TAIR) Reference: November 26th, 2025
Variation: December 9th, 2024
2 days agoub3 unbranched3:
 
GRMZM2G460544
Zm00001d052890
Zm00001eb199880
Li, L et al. 2025. Single-molecule views of chromatin accessibility and structure during photomorphogenesis. Proc Natl Acad Sci, USA. 122:e2516708122.     Reference: November 26th, 2025
Gene Product: July 5th, 2019
Variation: December 17th, 2014
2 days agozim26 ZIM-transcription factor 26:
 
GRMZM2G343157
Zm00001d027899
Zm00001eb005980
Yishan Cheng et al. 2025. Evaluation of cold tolerance in maize diversity panel and transcriptome analysis of two extreme genotypes under cold stress Plant Physiol Biochem. :110744.     Reference: November 26th, 2025
Gene Product: February 24th, 2021
2 days agobzip4 bZIP-transcription factor 4:
 
GRMZM2G479760
Zm00001d018178
Zm00001eb255970
Yishan Cheng et al. 2025. Evaluation of cold tolerance in maize diversity panel and transcriptome analysis of two extreme genotypes under cold stress Plant Physiol Biochem. :110744.     Reference: November 26th, 2025
Gene Product: August 21st, 2018
Variation: August 21st, 2018
2 days agochi3 chalcone flavanone isomerase3:
5.00
GRMZM2G119186
Zm00001d012972
Zm00001eb211840
Yishan Cheng et al. 2025. Evaluation of cold tolerance in maize diversity panel and transcriptome analysis of two extreme genotypes under cold stress Plant Physiol Biochem. :110744.     Reference: November 26th, 2025
Gene Product: January 26th, 2021
Variation: May 13th, 2012
2 days agorad1 RAD1 DNA repair protein homolog:
 
GRMZM2G061023
Zm00001d053917
Zm00001eb208390
Mohammad Mahmood Hasan et al. 2025. mop1 affects maize recombination landscapes by modulating methylation of MITEs near genes in open chromatin. Nat Commun. 16:10476.   AT5G41150 (TAIR) Reference: November 26th, 2025
Gene Product: September 1st, 2003
Variation: December 29th, 2010
2 days agophs1 poor homologous synapsis1:
9.00
GRMZM2G100103
Zm00001d045993
Zm00001eb382430
Mohammad Mahmood Hasan et al. 2025. mop1 affects maize recombination landscapes by modulating methylation of MITEs near genes in open chromatin. Nat Commun. 16:10476.   AT1G10710 (TAIR) Reference: November 26th, 2025
Gene Product: September 5th, 2006
Variation: August 7th, 2012
2 days agobrs1 brassinosteroid synthesis1:
1.03
GRMZM2G065635
Zm00001d028325
Zm00001eb009730
Long, SP et al. 2025. Feeding from the sun—Successes and prospects in bioengineering photosynthesis for food security Cell. 188:6700-6719.   AT3G50660 (TAIR) Reference: November 26th, 2025
Gene Product: September 20th, 2010
Variation: June 13th, 2024
2 days agofls2 flavonol synthase2:
 
GRMZM2G069298
Zm00001d018181
Zm00001eb256000
Yishan Cheng et al. 2025. Evaluation of cold tolerance in maize diversity panel and transcriptome analysis of two extreme genotypes under cold stress Plant Physiol Biochem. :110744.     Reference: November 26th, 2025
Gene Product: October 10th, 2012
2 days agospo1 topoisomerase-like enzyme1:
 
GRMZM2G129913
Zm00001d013262
Zm00001eb214790
Mohammad Mahmood Hasan et al. 2025. mop1 affects maize recombination landscapes by modulating methylation of MITEs near genes in open chromatin. Nat Commun. 16:10476.   AT3G13170 (TAIR) Reference: November 26th, 2025
Gene Product: June 19th, 2014
Variation: April 21st, 2020
2 days agospo2 topoisomerase-like enzyme2:
 
GRMZM5G890820
Zm00001d049550
Zm00001eb172550
Mohammad Mahmood Hasan et al. 2025. mop1 affects maize recombination landscapes by modulating methylation of MITEs near genes in open chromatin. Nat Commun. 16:10476.   AT1G63990 (TAIR) Reference: November 26th, 2025
Gene Product: June 19th, 2014
Variation: June 8th, 2022
2 days agodmc1 disrupted meiotic cDNA homolog1:
 
GRMZM2G109618
Zm00001d044629
Zm00001eb163340
Mohammad Mahmood Hasan et al. 2025. mop1 affects maize recombination landscapes by modulating methylation of MITEs near genes in open chromatin. Nat Commun. 16:10476.   AT3G22880 (TAIR) Reference: November 26th, 2025
Variation: May 12th, 2017
2 days agoIDP4073  :
 
GRMZM2G106056
Zm00001d002154
Zm00001eb069270
Mohammad Mahmood Hasan et al. 2025. mop1 affects maize recombination landscapes by modulating methylation of MITEs near genes in open chromatin. Nat Commun. 16:10476.   AT5G54260 (TAIR) Reference: November 26th, 2025
Variation: December 9th, 2024
2 days agokrn4 kernel row number4:
 
GRMZM2G001541
Zm00001d052889
Zm00001eb199840
Li, L et al. 2025. Single-molecule views of chromatin accessibility and structure during photomorphogenesis. Proc Natl Acad Sci, USA. 122:e2516708122.     Reference: November 26th, 2025
Variation: April 24th, 2020
2 days agoprd1 putative recombination initiation defect1:
 
GRMZM2G308884
Zm00001d046970
Zm00001eb389920
Mohammad Mahmood Hasan et al. 2025. mop1 affects maize recombination landscapes by modulating methylation of MITEs near genes in open chromatin. Nat Commun. 16:10476.   AT4G14180 (TAIR) Reference: November 26th, 2025
Variation: February 24th, 2022
2 days agomtopvib1 meiotic TopoVI B subunit1:
 
GRMZM2G439198
Zm00001d014728
Zm00001eb227420
Mohammad Mahmood Hasan et al. 2025. mop1 affects maize recombination landscapes by modulating methylation of MITEs near genes in open chromatin. Nat Commun. 16:10476.   AT1G60460 (TAIR) Reference: November 26th, 2025
Gene Product: October 21st, 2020
Variation: October 23rd, 2020
2 days agoGRMZM2G030128  :
 
GRMZM2G030128
Zm00001d050612
Zm00001eb181120
Mohammad Mahmood Hasan et al. 2025. mop1 affects maize recombination landscapes by modulating methylation of MITEs near genes in open chromatin. Nat Commun. 16:10476.   At2G31970 (TAIR) Reference: November 26th, 2025
Variation: December 9th, 2024
2 days agomcm5 minichromosome maintenance5:
5.08
GRMZM2G075978
Zm00001d018384
Zm00001eb257900
Mohammad Mahmood Hasan et al. 2025. mop1 affects maize recombination landscapes by modulating methylation of MITEs near genes in open chromatin. Nat Commun. 16:10476.   AT2G07690 (TAIR) Reference: November 26th, 2025
Gene Product: August 2nd, 2017
2 days agosaur14 small auxin up RNA14:
 
GRMZM2G365166
Zm00001d001963
Zm00001eb067420
Yishan Cheng et al. 2025. Evaluation of cold tolerance in maize diversity panel and transcriptome analysis of two extreme genotypes under cold stress Plant Physiol Biochem. :110744.     Reference: November 26th, 2025
Gene Product: November 26th, 2021
2 days agoIDP264  :
3.06
GRMZM2G096920
Zm00001d043287
Zm00001eb151620
Mohammad Mahmood Hasan et al. 2025. mop1 affects maize recombination landscapes by modulating methylation of MITEs near genes in open chromatin. Nat Commun. 16:10476.   AT1G18090 (TAIR) Reference: November 26th, 2025
Variation: March 31st, 2005
2 days agorad51b recombination protein51 gene b:
3.05
GRMZM2G084762
Zm00001d041757
Zm00001eb138190
Mohammad Mahmood Hasan et al. 2025. mop1 affects maize recombination landscapes by modulating methylation of MITEs near genes in open chromatin. Nat Commun. 16:10476.   AT5G20850 (TAIR) Reference: November 26th, 2025
Gene Product: August 12th, 2016
Variation: May 13th, 2012
2 days agorad51a recombination protein51 gene a:
7.04
GRMZM2G121543
Zm00001d021898
Zm00001eb325310
Mohammad Mahmood Hasan et al. 2025. mop1 affects maize recombination landscapes by modulating methylation of MITEs near genes in open chromatin. Nat Commun. 16:10476.   AT5G20850 (TAIR) Reference: November 26th, 2025
Gene Product: August 12th, 2016
Variation: April 19th, 2012
3 days agoglu15 beta-glucosidase15:
 
AC234160.1_FG003
Zm00001d008435
Zm00001eb334460
Haiyu Zhou et al. 2025. Integrated metabolomic and transcriptomic analyses reveal that starch and sucrose metabolism regulate maize kernel hardness Frontiers in Plant Science. 16:1688375.     Reference: November 25th, 2025
Gene Product: June 26th, 2019
3 days agodek618 defective kernel618:
 
   Zhang, S et al. 2025. The DYW-type pentatricopeptide repeat protein DEK618 interacts with ZmMORFs to modulate mitochondrial RNA editing and kernel development in maize. Plant Sci. :112897.     Reference: November 25th, 2025
Gene Product: December 27th, 2016
Variation: November 25th, 2025
3 days agosi945020c09  :
5.03
GRMZM2G098370
Zm00001d015008
Zm00001eb230070
Haiyu Zhou et al. 2025. Integrated metabolomic and transcriptomic analyses reveal that starch and sucrose metabolism regulate maize kernel hardness Frontiers in Plant Science. 16:1688375.     Reference: November 25th, 2025
Variation: September 25th, 2007
3 days agoprx68 peroxidase68:
6.04
GRMZM2G095404
Zm00001d037359
Zm00001eb280790
Zhang, YF et al. 2025. From function to omics: endophytic Beauveria bassiana promotes maize growth by activating phytohormone signaling pathways under elevated carbon dioxide BMC Plant Biology. :doi: 10.1186/s12870-025-07763-5.     Reference: November 25th, 2025
Gene Product: January 20th, 2025
3 days agodhr2 dhurrinase2:
3.05
GRMZM2G076946
Zm00001d041776
Zm00001eb138340
Zhang, YF et al. 2025. From function to omics: endophytic Beauveria bassiana promotes maize growth by activating phytohormone signaling pathways under elevated carbon dioxide BMC Plant Biology. :doi: 10.1186/s12870-025-07763-5.     Reference: November 25th, 2025
Gene Product: June 26th, 2019
Variation: September 3rd, 2008
3 days agoglu1 beta glucosidase1:
10.03
GRMZM2G016890
Zm00001d023994
Zm00001eb411380
Haiyu Zhou et al. 2025. Integrated metabolomic and transcriptomic analyses reveal that starch and sucrose metabolism regulate maize kernel hardness Frontiers in Plant Science. 16:1688375.     Reference: November 25th, 2025
Gene Product: June 26th, 2019
Variation: January 9th, 2010
3 days agosps1 sucrose phosphate synthase1:
8.06
GRMZM5G875238
Zm00001d012036
Zm00001eb364620
Haiyu Zhou et al. 2025. Integrated metabolomic and transcriptomic analyses reveal that starch and sucrose metabolism regulate maize kernel hardness Frontiers in Plant Science. 16:1688375.     Reference: November 25th, 2025
Gene Product: September 1st, 2003
Variation: January 15th, 2015
3 days agoarr4 ARR-B-transcription factor 4:
 
GRMZM2G360523
Zm00001d046755
Zm00001eb388280
Fengli Ye et al. 2025. Candidate genes for kernel ratio in maize identified via combined GWAS and QTL mapping across multiple environments. Theor Appl Genet. 138:310.     Reference: November 25th, 2025
Gene Product: June 30th, 2017
3 days agozhd1 ZF-HD-transcription factor 1:
 
GRMZM2G068330
Zm00001d049000
Zm00001eb168120
Fengli Ye et al. 2025. Candidate genes for kernel ratio in maize identified via combined GWAS and QTL mapping across multiple environments. Theor Appl Genet. 138:310.     Reference: November 25th, 2025
Gene Product: August 24th, 2022
Variation: April 11th, 2024
3 days agoaox1 alternative oxidase1 :
2.02
AC233960.1_FG002
Zm00001d017727
Zm00001eb251680
Zhang, S et al. 2025. The DYW-type pentatricopeptide repeat protein DEK618 interacts with ZmMORFs to modulate mitochondrial RNA editing and kernel development in maize. Plant Sci. :112897.     Reference: November 25th, 2025
Gene Product: June 15th, 2023
Variation: February 22nd, 2012
3 days agoaox2 alternative oxidase2:
 
GRMZM2G125669
Zm00001d002436
Zm00001eb071890
Zhang, S et al. 2025. The DYW-type pentatricopeptide repeat protein DEK618 interacts with ZmMORFs to modulate mitochondrial RNA editing and kernel development in maize. Plant Sci. :112897.     Reference: November 25th, 2025
Gene Product: June 15th, 2023
Variation: March 1st, 2012
3 days agoaox3 alternative oxidase3:
 
GRMZM2G074743
Zm00001d002434
Zm00001eb071870
Zhang, S et al. 2025. The DYW-type pentatricopeptide repeat protein DEK618 interacts with ZmMORFs to modulate mitochondrial RNA editing and kernel development in maize. Plant Sci. :112897.     Reference: November 25th, 2025
Gene Product: June 15th, 2023
3 days agoga2ox13 gibberellin 2-oxidase13:
 
GRMZM2G031432
Zm00001d039394
Zm00001eb120250
Zhang, YF et al. 2025. From function to omics: endophytic Beauveria bassiana promotes maize growth by activating phytohormone signaling pathways under elevated carbon dioxide BMC Plant Biology. :doi: 10.1186/s12870-025-07763-5.     Reference: November 25th, 2025
Gene Product: October 27th, 2014
3 days agovps2 vacuolar protein sorting2:
 
GRMZM2G179662
Zm00001d018382
Zm00001eb257890
Fengli Ye et al. 2025. Candidate genes for kernel ratio in maize identified via combined GWAS and QTL mapping across multiple environments. Theor Appl Genet. 138:310.   AT4G29380 (TAIR) Reference: November 25th, 2025
Gene Product: August 15th, 2017
Variation: November 25th, 2025
3 days agocel21 cellulase 21:
 
GRMZM2G009025
Zm00001d035082
Zm00001eb260830
Haiyu Zhou et al. 2025. Integrated metabolomic and transcriptomic analyses reveal that starch and sucrose metabolism regulate maize kernel hardness Frontiers in Plant Science. 16:1688375.     Reference: November 25th, 2025
Gene Product: March 20th, 2023
3 days agopx24 peroxidase24:
 
GRMZM2G023840
Zm00001d009373
Zm00001eb342070
Zhang, YF et al. 2025. From function to omics: endophytic Beauveria bassiana promotes maize growth by activating phytohormone signaling pathways under elevated carbon dioxide BMC Plant Biology. :doi: 10.1186/s12870-025-07763-5.   AT5G05340 (TAIR) Reference: November 25th, 2025
Gene Product: January 20th, 2025
3 days agomorf8 multiple organelle RNA editing factor8:
9.07
GRMZM2G169384
Zm00001d048291
Zm00001eb401990
Zhang, S et al. 2025. The DYW-type pentatricopeptide repeat protein DEK618 interacts with ZmMORFs to modulate mitochondrial RNA editing and kernel development in maize. Plant Sci. :112897.     Reference: November 25th, 2025
Variation: March 31st, 2005
3 days agomorf2 multiple organellar RNA editing factor2:
2.02
GRMZM2G156227
GRMZM2G175447
Zm00001d002426
Zm00001eb071800
Zhang, S et al. 2025. The DYW-type pentatricopeptide repeat protein DEK618 interacts with ZmMORFs to modulate mitochondrial RNA editing and kernel development in maize. Plant Sci. :112897.     Reference: November 25th, 2025
Gene Product: January 20th, 2025
4 days agoccl16 coumarate-CoA ligase16:
 
GRMZM2G122787
Zm00001d027711
Zm00001eb004210
Chunlei Xue et al. 2025. Integrated Transcriptomic and Metabolomic Analyses Implicate Key Genes and Metabolic Pathways in Maize Lodging Resistance Agriculture. 15:2416.     Reference: November 24th, 2025
Gene Product: April 30th, 2025
4 days agoccl9 coumarate-CoA ligase9:
 
GRMZM2G174574
Zm00001d033055
Zm00001eb048810
Chunlei Xue et al. 2025. Integrated Transcriptomic and Metabolomic Analyses Implicate Key Genes and Metabolic Pathways in Maize Lodging Resistance Agriculture. 15:2416.     Reference: November 24th, 2025
Gene Product: April 30th, 2025
4 days agoagpsl1 ADP glucose pyrophosphorylase small subunit leaf1:
1.07
GRMZM2G163437
Zm00001d032385
Zm00001eb042990
Tanya Singh et al. 2025. Differential Response of Maize Genotypes to Phosphorous Deficiency and Mitigation by Pseudomonas putida Via Fatty Acid and Nitrogen Metabolism J Plant Growth Reg. :doi: 10.1007/s00344-025-11929-8.     Reference: November 24th, 2025
Gene Product: September 1st, 2003
Variation: April 3rd, 2011
4 days agoccl5 coumarate-CoA ligase5:
 
GRMZM2G054013
Zm00001d051529
Zm00001eb187910
Chunlei Xue et al. 2025. Integrated Transcriptomic and Metabolomic Analyses Implicate Key Genes and Metabolic Pathways in Maize Lodging Resistance Agriculture. 15:2416.     Reference: November 24th, 2025
Gene Product: April 30th, 2025
Variation: April 3rd, 2025
4 days agohct15 hydroxycinnamoyltransferase15:
 
   Chunlei Xue et al. 2025. Integrated Transcriptomic and Metabolomic Analyses Implicate Key Genes and Metabolic Pathways in Maize Lodging Resistance Agriculture. 15:2416.     Reference: November 24th, 2025
Gene Product: November 7th, 2015
4 days agohct16 hydroxycinnamoyltransferase16:
 
   Chunlei Xue et al. 2025. Integrated Transcriptomic and Metabolomic Analyses Implicate Key Genes and Metabolic Pathways in Maize Lodging Resistance Agriculture. 15:2416.     Reference: November 24th, 2025
Gene Product: November 7th, 2015
4 days agohct17 hydroxycinnamoyltransferase17:
 
   Chunlei Xue et al. 2025. Integrated Transcriptomic and Metabolomic Analyses Implicate Key Genes and Metabolic Pathways in Maize Lodging Resistance Agriculture. 15:2416.     Reference: November 24th, 2025
Gene Product: November 7th, 2015
4 days agoact5 actin5:
5.01
GRMZM2G152328
Zm00001d013410
Zm00001eb216070
Chunlei Xue et al. 2025. Integrated Transcriptomic and Metabolomic Analyses Implicate Key Genes and Metabolic Pathways in Maize Lodging Resistance Agriculture. 15:2416.     Reference: November 24th, 2025
Gene Product: September 1st, 2003
Variation: April 29th, 2020
4 days agohct5 hydroxycinnamoyltransferase5:
2.04
GRMZM2G158083
Zm00001d003129
Zm00001eb078220
Chunlei Xue et al. 2025. Integrated Transcriptomic and Metabolomic Analyses Implicate Key Genes and Metabolic Pathways in Maize Lodging Resistance Agriculture. 15:2416.     Reference: November 24th, 2025
Gene Product: November 7th, 2015
4 days agobm1 brown midrib1:
5.04
GRMZM5G844562
Zm00001d015618
Zm00001eb234730
Chunlei Xue et al. 2025. Integrated Transcriptomic and Metabolomic Analyses Implicate Key Genes and Metabolic Pathways in Maize Lodging Resistance Agriculture. 15:2416.     Reference: November 24th, 2025
Gene Product: September 1st, 2003
Variation: November 17th, 2020
4 days agobm3 brown midrib3:
4.04
AC196475.3_FG004
Zm00001d049541
Zm00001eb172420
Chunlei Xue et al. 2025. Integrated Transcriptomic and Metabolomic Analyses Implicate Key Genes and Metabolic Pathways in Maize Lodging Resistance Agriculture. 15:2416.     Reference: November 24th, 2025
Gene Product: February 16th, 2011
Variation: March 12th, 2024
4 days agogdh1 glutamic dehydrogenase1:
1.11
GRMZM2G178415
Zm00001d034420
Zm00001eb060520
Tanya Singh et al. 2025. Differential Response of Maize Genotypes to Phosphorous Deficiency and Mitigation by Pseudomonas putida Via Fatty Acid and Nitrogen Metabolism J Plant Growth Reg. :doi: 10.1007/s00344-025-11929-8.     Reference: November 24th, 2025
Gene Product: September 1st, 2003
Variation: August 7th, 2006
4 days agocncr2 cinnamoyl CoA reductase2:
7.02
GRMZM2G131836
Zm00001d019669
Zm00001eb307060
Chunlei Xue et al. 2025. Integrated Transcriptomic and Metabolomic Analyses Implicate Key Genes and Metabolic Pathways in Maize Lodging Resistance Agriculture. 15:2416.     Reference: November 24th, 2025
Gene Product: September 1st, 2003
Variation: October 11th, 2009
4 days agocncr1 cinnamoyl CoA reductase1:
1.07
GRMZM2G131205
Zm00001d032152
Zm00001eb041120
Chunlei Xue et al. 2025. Integrated Transcriptomic and Metabolomic Analyses Implicate Key Genes and Metabolic Pathways in Maize Lodging Resistance Agriculture. 15:2416.     Reference: November 24th, 2025
Gene Product: September 1st, 2003
Variation: May 5th, 2017
4 days agopal1 phenylalanine ammonia lyase homolog1:
5.05
GRMZM2G074604
Zm00001d017274
Zm00001eb247620
Chunlei Xue et al. 2025. Integrated Transcriptomic and Metabolomic Analyses Implicate Key Genes and Metabolic Pathways in Maize Lodging Resistance Agriculture. 15:2416.     Reference: November 24th, 2025
Gene Product: August 13th, 2022
Variation: September 24th, 2014
4 days agopal2 phenylalanine ammonia lyase2:
2.04 - 2.04
GRMZM2G441347
Zm00001d003016
Zm00001eb077230
Chunlei Xue et al. 2025. Integrated Transcriptomic and Metabolomic Analyses Implicate Key Genes and Metabolic Pathways in Maize Lodging Resistance Agriculture. 15:2416.     Reference: November 24th, 2025
Gene Product: September 1st, 2003
Variation: February 21st, 2017
4 days agopdh1 pyruvate dehydrogenase1:
4.08
GRMZM2G361693
Zm00001d052289
Zm00001eb194780
Tanya Singh et al. 2025. Differential Response of Maize Genotypes to Phosphorous Deficiency and Mitigation by Pseudomonas putida Via Fatty Acid and Nitrogen Metabolism J Plant Growth Reg. :doi: 10.1007/s00344-025-11929-8.     Reference: November 24th, 2025
Gene Product: February 14th, 2008
Variation: April 10th, 2015
4 days agonnr1 nitrate reductase(NADH)1:
4.05
GRMZM2G568636
Zm00001d049995
Zm00001eb176470
Tanya Singh et al. 2025. Differential Response of Maize Genotypes to Phosphorous Deficiency and Mitigation by Pseudomonas putida Via Fatty Acid and Nitrogen Metabolism J Plant Growth Reg. :doi: 10.1007/s00344-025-11929-8.     Reference: November 24th, 2025
Gene Product: September 1st, 2003
Variation: October 26th, 2010
4 days agoptf1 Pi starvation-induced transcription factor1:
9.01 - 9.02
GRMZM2G024530
Zm00001d045046
Zm00001eb374120
Tanya Singh et al. 2024. Pseudomonas putida triggers phosphorus bioavailability and P-transporters under different phosphate regimes to enhance maize growth. Plant Physiol Biochem. 217:109279.   LOC_Os02g35660 (MSU/TIGR)
Os02g0564700 (Gramene)
Reference: November 24th, 2025
Gene Product: September 14th, 2016
Variation: April 23rd, 2011
4 days agoga20ox4 gibberellin 20-oxidase4:
5.03 - 5.03
GRMZM2G060940
Zm00001d013725
Zm00001eb219040
Chunlei Xue et al. 2025. Integrated Transcriptomic and Metabolomic Analyses Implicate Key Genes and Metabolic Pathways in Maize Lodging Resistance Agriculture. 15:2416.     Reference: November 24th, 2025
Gene Product: October 28th, 2014
4 days agonii2 nitrite reductase2:
4.07
GRMZM2G079381
Zm00001d052164
Zm00001eb193660
Tanya Singh et al. 2025. Differential Response of Maize Genotypes to Phosphorous Deficiency and Mitigation by Pseudomonas putida Via Fatty Acid and Nitrogen Metabolism J Plant Growth Reg. :doi: 10.1007/s00344-025-11929-8.     Reference: November 24th, 2025
Gene Product: September 1st, 2003
Variation: September 1st, 2003
4 days agopht1 phosphate transporter protein1:
5.03
GRMZM2G326707
Zm00001d014116
Zm00001eb222510
Tanya Singh et al. 2024. Pseudomonas putida triggers phosphorus bioavailability and P-transporters under different phosphate regimes to enhance maize growth. Plant Physiol Biochem. 217:109279.     Reference: November 24th, 2025
Gene Product: June 16th, 2016
Variation: February 4th, 2011
4 days agoccl3 coumarate-CoA ligase3:
4.05
GRMZM2G174732
Zm00001d050224
Zm00001eb178360
Chunlei Xue et al. 2025. Integrated Transcriptomic and Metabolomic Analyses Implicate Key Genes and Metabolic Pathways in Maize Lodging Resistance Agriculture. 15:2416.     Reference: November 24th, 2025
Gene Product: April 30th, 2025
4 days agohct19 hydroxycinnamoyltransferase19:
4.05
GRMZM2G089698
Zm00001d050455
Zm00001eb180060
Chunlei Xue et al. 2025. Integrated Transcriptomic and Metabolomic Analyses Implicate Key Genes and Metabolic Pathways in Maize Lodging Resistance Agriculture. 15:2416.     Reference: November 24th, 2025
Gene Product: November 7th, 2015
4 days agophos2 phosphate transporter2:
 
GRMZM2G466545
Zm00001d051945
Zm00001eb191650
Tanya Singh et al. 2024. Pseudomonas putida triggers phosphorus bioavailability and P-transporters under different phosphate regimes to enhance maize growth. Plant Physiol Biochem. 217:109279.   AT3G23430 (TAIR) Reference: November 24th, 2025
Gene Product: February 27th, 2016
Variation: February 27th, 2016
4 days agoccl4 coumarate-CoA ligase4:
 
GRMZM2G048522
Zm00001d032103
Zm00001eb040790
Chunlei Xue et al. 2025. Integrated Transcriptomic and Metabolomic Analyses Implicate Key Genes and Metabolic Pathways in Maize Lodging Resistance Agriculture. 15:2416.     Reference: November 24th, 2025
Gene Product: April 30th, 2025
4 days agofah1 ferulic acid 5-hydroxylase1:
 
AC210173.4_FG005
Zm00001d032467
Zm00001d032468
Zm00001eb043700
Chunlei Xue et al. 2025. Integrated Transcriptomic and Metabolomic Analyses Implicate Key Genes and Metabolic Pathways in Maize Lodging Resistance Agriculture. 15:2416.   AT4G36220 (TAIR)
LOC_Os10g36848 (MSU/TIGR)
Reference: November 24th, 2025
Gene Product: May 4th, 2018
4 days agocbl2 calcineurin B-like2:
 
GRMZM2G173424
Zm00001d041392
Zm00001eb135370
Chunlei Xue et al. 2025. Integrated Transcriptomic and Metabolomic Analyses Implicate Key Genes and Metabolic Pathways in Maize Lodging Resistance Agriculture. 15:2416.     Reference: November 24th, 2025
Gene Product: October 19th, 2016
4 days agofah2 ferulic acid 5-hydroxylase2:
 
GRMZM2G100158
Zm00001d013862
Zm00001eb220390
Chunlei Xue et al. 2025. Integrated Transcriptomic and Metabolomic Analyses Implicate Key Genes and Metabolic Pathways in Maize Lodging Resistance Agriculture. 15:2416.   AT4G36220 (TAIR)
LOC_Os10g36848 (MSU/TIGR)
Reference: November 24th, 2025
Gene Product: May 4th, 2018
4 days agopgk5 phosphoglycerate kinase5:
 
GRMZM2G003724
Zm00001d032867
Zm00001eb047240
Tanya Singh et al. 2025. Differential Response of Maize Genotypes to Phosphorous Deficiency and Mitigation by Pseudomonas putida Via Fatty Acid and Nitrogen Metabolism J Plant Growth Reg. :doi: 10.1007/s00344-025-11929-8.     Reference: November 24th, 2025
Gene Product: November 24th, 2020
4 days agobm5 brown midrib5:
5.04
GRMZM2G075333
Zm00001d015459
Zm00001eb233720
Chunlei Xue et al. 2025. Integrated Transcriptomic and Metabolomic Analyses Implicate Key Genes and Metabolic Pathways in Maize Lodging Resistance Agriculture. 15:2416.     Reference: November 24th, 2025
Gene Product: April 30th, 2025
Variation: April 10th, 2019
4 days agoccl27 coumarate-CoA ligase27:
8.06
GRMZM5G805585
Zm00001d012144
Zm00001eb365590
Chunlei Xue et al. 2025. Integrated Transcriptomic and Metabolomic Analyses Implicate Key Genes and Metabolic Pathways in Maize Lodging Resistance Agriculture. 15:2416.     Reference: November 24th, 2025
Gene Product: April 30th, 2025
Variation: March 31st, 2005
4 days agohct6 hydroxycinnamoyltransferase6:
5.05
GRMZM2G035584
Zm00001d017186
Zm00001eb246860
Chunlei Xue et al. 2025. Integrated Transcriptomic and Metabolomic Analyses Implicate Key Genes and Metabolic Pathways in Maize Lodging Resistance Agriculture. 15:2416.     Reference: November 24th, 2025
Gene Product: November 7th, 2015
4 days agoacsn3 acyl-CoA synthetase3:
3.00
GRMZM2G309152
Zm00001d039274
Zm00001eb119050
Chunlei Xue et al. 2025. Integrated Transcriptomic and Metabolomic Analyses Implicate Key Genes and Metabolic Pathways in Maize Lodging Resistance Agriculture. 15:2416.     Reference: November 24th, 2025
Gene Product: December 20th, 2011
7 days agorpi2 ribose 5-phosphate isomerase2:
 
GRMZM5G874903
Zm00001d013135
Zm00001eb213570
Rotondwa Rabelani Sinthumule et al. 2025. Enhancing Stress Resilience in a Drought-Tolerant Zea mays Cultivar by Integrating Morpho-Physiological and Proteomic Characterization Int J Plant Biol. 16:133.     Reference: November 21st, 2025
Gene Product: October 21st, 2021
7 days agoidh4 isocitrate dehydrogenase4:
 
GRMZM2G018566
Zm00001d040438
Zm00001eb128830
Rotondwa Rabelani Sinthumule et al. 2025. Enhancing Stress Resilience in a Drought-Tolerant Zea mays Cultivar by Integrating Morpho-Physiological and Proteomic Characterization Int J Plant Biol. 16:133.     Reference: November 21st, 2025
Gene Product: October 2nd, 2023
7 days agoprx8 peroxidase8:
 
GRMZM2G116846
Zm00001d028348
Zm00001eb009940
Xiong, WD et al. 2025. Correlative Transcriptome and Metabolome Analysis of the Maize Shoot Response to Salt Stress Plants. 14:3554.     Reference: November 21st, 2025
Gene Product: January 20th, 2025
7 days agoprx72 peroxidase72:
 
GRMZM2G313184
Zm00001d035055
Zm00001eb260610
Rotondwa Rabelani Sinthumule et al. 2025. Enhancing Stress Resilience in a Drought-Tolerant Zea mays Cultivar by Integrating Morpho-Physiological and Proteomic Characterization Int J Plant Biol. 16:133.     Reference: November 21st, 2025
Gene Product: January 20th, 2025
7 days agoglp31 germin-like protein31:
 
GRMZM2G090245
Zm00001eb294140
Rotondwa Rabelani Sinthumule et al. 2025. Enhancing Stress Resilience in a Drought-Tolerant Zea mays Cultivar by Integrating Morpho-Physiological and Proteomic Characterization Int J Plant Biol. 16:133.     Reference: November 21st, 2025
Gene Product: December 24th, 2015
7 days agoshmt4 serine hydroxymethyltransferase4:
 
   Rotondwa Rabelani Sinthumule et al. 2025. Enhancing Stress Resilience in a Drought-Tolerant Zea mays Cultivar by Integrating Morpho-Physiological and Proteomic Characterization Int J Plant Biol. 16:133.     Reference: November 21st, 2025
Gene Product: September 12th, 2025
7 days agoAY106026  :
3.06
GRMZM6G768049
Zm00001d042725
Zm00001eb146730
Rotondwa Rabelani Sinthumule et al. 2025. Enhancing Stress Resilience in a Drought-Tolerant Zea mays Cultivar by Integrating Morpho-Physiological and Proteomic Characterization Int J Plant Biol. 16:133.     Reference: November 21st, 2025
Variation: September 25th, 2007
7 days agoser3 seryl-tRNA synthetase3:
9.04
Zm00001eb400980
Rotondwa Rabelani Sinthumule et al. 2025. Enhancing Stress Resilience in a Drought-Tolerant Zea mays Cultivar by Integrating Morpho-Physiological and Proteomic Characterization Int J Plant Biol. 16:133.     Reference: November 21st, 2025
Gene Product: February 13th, 2008
7 days agomyb42 myb transcription factor 42:
4.09
GRMZM2G419239
Zm00001d053220
Zm00001eb202770
Qingyu Xu et al. 2025. Genome-Wide Association Study Identified ZmMYB42 as a Negative Regulator for Resistance to Maize Head Smut. J Agric Food Chem. :doi: 10.1021/acs.jafc.5c12961.   LOC_Os08g43550 (MSU/TIGR) Reference: November 21st, 2025
Gene Product: February 16th, 2011
Variation: November 7th, 2017
7 days agodhar1 dehydroascorbate reductase like1:
8.05
GRMZM5G855672
Zm00001d011034
Zm00001eb355540
Rotondwa Rabelani Sinthumule et al. 2025. Enhancing Stress Resilience in a Drought-Tolerant Zea mays Cultivar by Integrating Morpho-Physiological and Proteomic Characterization Int J Plant Biol. 16:133.     Reference: November 21st, 2025
Gene Product: March 28th, 2013
7 days agoprx23 peroxidase23:
3.05
GRMZM2G103342
Zm00001d042022
Zm00001eb140320
Xiong, WD et al. 2025. Correlative Transcriptome and Metabolome Analysis of the Maize Shoot Response to Salt Stress Plants. 14:3554.     Reference: November 21st, 2025
Gene Product: January 20th, 2025
7 days agopx22 peroxidase22:
7.00
Zm00001d018618
Zm00001eb298200
Rotondwa Rabelani Sinthumule et al. 2025. Enhancing Stress Resilience in a Drought-Tolerant Zea mays Cultivar by Integrating Morpho-Physiological and Proteomic Characterization Int J Plant Biol. 16:133.     Reference: November 21st, 2025
Gene Product: January 20th, 2025
7 days agoabf1 alpha-L-arabinofuranosidase1:
3.09
GRMZM2G006130
Zm00001d044648
Zm00001eb163530
Rotondwa Rabelani Sinthumule et al. 2025. Enhancing Stress Resilience in a Drought-Tolerant Zea mays Cultivar by Integrating Morpho-Physiological and Proteomic Characterization Int J Plant Biol. 16:133.     Reference: November 21st, 2025
Gene Product: May 6th, 2021
7 days agod1 dwarf plant1:
3.03
GRMZM2G036340
Zm00001d039634
Zm00001eb122500
Chuan Chen et al. 2025. qPH1.01, a dominant QTL that contributes to plant height and ear height in maize. Plant Genome. 18:e70157.     Reference: November 21st, 2025
Gene Product: October 25th, 2014
Variation: April 15th, 2025
7 days agod3 dwarf plant3:
9.03
GRMZM2G093195
Zm00001d045563
Zm00001eb379120
Chuan Chen et al. 2025. qPH1.01, a dominant QTL that contributes to plant height and ear height in maize. Plant Genome. 18:e70157.     Reference: November 21st, 2025
Gene Product: August 15th, 2012
Variation: June 5th, 2023
7 days agonec4 necrotic4:
2.02
GRMZM5G870342
Zm00001d002358
Zm00001eb071140
Rotondwa Rabelani Sinthumule et al. 2025. Enhancing Stress Resilience in a Drought-Tolerant Zea mays Cultivar by Integrating Morpho-Physiological and Proteomic Characterization Int J Plant Biol. 16:133.     Reference: November 21st, 2025
Gene Product: December 17th, 2014
Variation: January 31st, 2022
7 days agopgm1 phosphoglucomutase1:
1.09 - 1.10
GRMZM2G023289
Zm00001d033746
Zm00001eb054980
Rotondwa Rabelani Sinthumule et al. 2025. Enhancing Stress Resilience in a Drought-Tolerant Zea mays Cultivar by Integrating Morpho-Physiological and Proteomic Characterization Int J Plant Biol. 16:133.     Reference: November 21st, 2025
Gene Product: September 1st, 2003
Variation: September 1st, 2003
7 days agote1 terminal ear1:
3.05
GRMZM2G085113
Zm00001d042445
Zm00001eb144140
Chuan Chen et al. 2025. qPH1.01, a dominant QTL that contributes to plant height and ear height in maize. Plant Genome. 18:e70157.     Reference: November 21st, 2025
Gene Product: September 1st, 2003
Variation: October 25th, 2021
7 days agolhcb6 light harvesting chlorophyll a/b binding protein6:
 
GRMZM2G092427
Zm00001d026599
Zm00001eb433540
Rotondwa Rabelani Sinthumule et al. 2025. Enhancing Stress Resilience in a Drought-Tolerant Zea mays Cultivar by Integrating Morpho-Physiological and Proteomic Characterization Int J Plant Biol. 16:133.     Reference: November 21st, 2025
Gene Product: January 8th, 2005
Variation: September 22nd, 2025
7 days agomets1 methionine synthase1:
1.06
GRMZM2G149751
Zm00001d031128
Zm00001eb032290
Rotondwa Rabelani Sinthumule et al. 2025. Enhancing Stress Resilience in a Drought-Tolerant Zea mays Cultivar by Integrating Morpho-Physiological and Proteomic Characterization Int J Plant Biol. 16:133.     Reference: November 21st, 2025
Gene Product: September 1st, 2003
7 days agogpa2 glyceraldehyde-3-phosphate dehydrogenase2:
10.04
GRMZM2G039723
Zm00001d025593
Zm00001eb424110
Rotondwa Rabelani Sinthumule et al. 2025. Enhancing Stress Resilience in a Drought-Tolerant Zea mays Cultivar by Integrating Morpho-Physiological and Proteomic Characterization Int J Plant Biol. 16:133.     Reference: November 21st, 2025
Gene Product: September 1st, 2003
7 days agobip2 Binding protein homolog2:
4.11
GRMZM2G415007
Zm00001d054043
Zm00001eb209550
Rotondwa Rabelani Sinthumule et al. 2025. Enhancing Stress Resilience in a Drought-Tolerant Zea mays Cultivar by Integrating Morpho-Physiological and Proteomic Characterization Int J Plant Biol. 16:133.     Reference: November 21st, 2025
Gene Product: September 1st, 2003
Variation: September 1st, 2003
7 days agopsbs1 photosystem II subunit PsbS1:
3.06
GRMZM2G077333
Zm00001d042697
Zm00001eb146510
Rotondwa Rabelani Sinthumule et al. 2025. Enhancing Stress Resilience in a Drought-Tolerant Zea mays Cultivar by Integrating Morpho-Physiological and Proteomic Characterization Int J Plant Biol. 16:133.     Reference: November 21st, 2025
Variation: April 19th, 2012
7 days agogst5 glutathione transferase5:
1.11
GRMZM2G308687
Zm00001d034356
Zm00001eb059930
Rotondwa Rabelani Sinthumule et al. 2025. Enhancing Stress Resilience in a Drought-Tolerant Zea mays Cultivar by Integrating Morpho-Physiological and Proteomic Characterization Int J Plant Biol. 16:133.     Reference: November 21st, 2025
Gene Product: September 1st, 2003
Variation: July 22nd, 2010
7 days agogpb1 glyceraldehyde phosphate dehydrogenase B1:
1.01
GRMZM5G845611
Zm00001d027488
Zm00001eb002270
Rotondwa Rabelani Sinthumule et al. 2025. Enhancing Stress Resilience in a Drought-Tolerant Zea mays Cultivar by Integrating Morpho-Physiological and Proteomic Characterization Int J Plant Biol. 16:133.     Reference: November 21st, 2025
Gene Product: September 1st, 2003
Variation: April 18th, 2006
7 days agoald1 aldolase1:
8.06
GRMZM2G057823
Zm00001d042453
Zm00001eb144240
Rotondwa Rabelani Sinthumule et al. 2025. Enhancing Stress Resilience in a Drought-Tolerant Zea mays Cultivar by Integrating Morpho-Physiological and Proteomic Characterization Int J Plant Biol. 16:133.     Reference: November 21st, 2025
Gene Product: November 1st, 2024
Variation: September 16th, 2013
7 days agohsp70-16 heat shock protein70-16:
8.03
GRMZM2G063676
Zm00001d009950
Zm00001eb346960
Rotondwa Rabelani Sinthumule et al. 2025. Enhancing Stress Resilience in a Drought-Tolerant Zea mays Cultivar by Integrating Morpho-Physiological and Proteomic Characterization Int J Plant Biol. 16:133.     Reference: November 21st, 2025
Gene Product: September 1st, 2003
Variation: September 1st, 2003
7 days agoumc1462  :
6.05
GRMZM2G033641
Zm00001d038262
Zm00001eb288670
Rotondwa Rabelani Sinthumule et al. 2025. Enhancing Stress Resilience in a Drought-Tolerant Zea mays Cultivar by Integrating Morpho-Physiological and Proteomic Characterization Int J Plant Biol. 16:133.     Reference: November 21st, 2025
Variation: September 1st, 2003
7 days agosee2b senescence enhanced2b:
 
GRMZM2G093032
Zm00001d044495
Zm00001eb162210
Rotondwa Rabelani Sinthumule et al. 2025. Enhancing Stress Resilience in a Drought-Tolerant Zea mays Cultivar by Integrating Morpho-Physiological and Proteomic Characterization Int J Plant Biol. 16:133.     Reference: November 21st, 2025
Variation: August 1st, 2011
7 days agocop1 coatomer protein1:
3.05
GRMZM2G143354
Zm00001d041785
Zm00001eb138410
Rotondwa Rabelani Sinthumule et al. 2025. Enhancing Stress Resilience in a Drought-Tolerant Zea mays Cultivar by Integrating Morpho-Physiological and Proteomic Characterization Int J Plant Biol. 16:133.     Reference: November 21st, 2025
Gene Product: September 1st, 2003
Variation: January 14th, 2014
7 days agocct1 CO CO-LIKE TIMING OF CAB1 protein domain1:
 
GRMZM2G381691
Zm00001d024909
Zm00001eb418700
Chuan Chen et al. 2025. qPH1.01, a dominant QTL that contributes to plant height and ear height in maize. Plant Genome. 18:e70157.   AT5G24930 (TAIR)
LOC_Os07g15770 (MSU/TIGR)
Os07g0261200 (Gramene)
Reference: November 21st, 2025
Gene Product: June 18th, 2018
Variation: May 22nd, 2021
7 days agowrky92 WRKY-transcription factor 92:
 
GRMZM2G449681
Zm00001d010399
Zm00001eb350280
Chuan Chen et al. 2025. qPH1.01, a dominant QTL that contributes to plant height and ear height in maize. Plant Genome. 18:e70157.     Reference: November 21st, 2025
Variation: February 7th, 2024
7 days agoexg1 exoglucanase1:
1.10
GRMZM2G147687
Zm00001d034015
Zm00001eb057230
Rotondwa Rabelani Sinthumule et al. 2025. Enhancing Stress Resilience in a Drought-Tolerant Zea mays Cultivar by Integrating Morpho-Physiological and Proteomic Characterization Int J Plant Biol. 16:133.     Reference: November 21st, 2025
Gene Product: September 1st, 2003
Variation: August 3rd, 2011
7 days agocyp45 cytochrome P450 45:
3.02
GRMZM2G143235
Zm00001d039453
Zm00001eb120890
Chuan Chen et al. 2025. qPH1.01, a dominant QTL that contributes to plant height and ear height in maize. Plant Genome. 18:e70157.   AT3G13730 (TAIR) Reference: November 21st, 2025
Gene Product: December 30th, 2022
Variation: October 3rd, 2024
7 days agoknox2 knotted related homeobox2:
9.03
GRMZM2G055243
Zm00001d046568
Zm00001eb386830
Chuan Chen et al. 2025. qPH1.01, a dominant QTL that contributes to plant height and ear height in maize. Plant Genome. 18:e70157.     Reference: November 21st, 2025
Gene Product: September 1st, 2003
Variation: March 17th, 2024
7 days agorpl22 (cp) 50S ribosomal protein L22 gene:
 
   Rotondwa Rabelani Sinthumule et al. 2025. Enhancing Stress Resilience in a Drought-Tolerant Zea mays Cultivar by Integrating Morpho-Physiological and Proteomic Characterization Int J Plant Biol. 16:133.     Reference: November 21st, 2025
Gene Product: September 1st, 2003
7 days agopsbE (cp)  :
 
   Rotondwa Rabelani Sinthumule et al. 2025. Enhancing Stress Resilience in a Drought-Tolerant Zea mays Cultivar by Integrating Morpho-Physiological and Proteomic Characterization Int J Plant Biol. 16:133.     Reference: November 21st, 2025
Gene Product: September 1st, 2003
7 days agoatpF (cp)  :
 
   Rotondwa Rabelani Sinthumule et al. 2025. Enhancing Stress Resilience in a Drought-Tolerant Zea mays Cultivar by Integrating Morpho-Physiological and Proteomic Characterization Int J Plant Biol. 16:133.     Reference: November 21st, 2025
Gene Product: September 1st, 2003
7 days agorps16 (cp) 30S ribosomal protein S16 gene:
 
   Rotondwa Rabelani Sinthumule et al. 2025. Enhancing Stress Resilience in a Drought-Tolerant Zea mays Cultivar by Integrating Morpho-Physiological and Proteomic Characterization Int J Plant Biol. 16:133.     Reference: November 21st, 2025
Gene Product: September 1st, 2003
7 days agoelfg1 elongation factor gamma1:
6.04
GRMZM2G122871
Zm00001d036959
Zm00001eb277320
Rotondwa Rabelani Sinthumule et al. 2025. Enhancing Stress Resilience in a Drought-Tolerant Zea mays Cultivar by Integrating Morpho-Physiological and Proteomic Characterization Int J Plant Biol. 16:133.     Reference: November 21st, 2025
Gene Product: October 22nd, 2022
Variation: July 9th, 2017
7 days agouaz282  :
1.05
GRMZM2G024823
Zm00001eb024460
Rotondwa Rabelani Sinthumule et al. 2025. Enhancing Stress Resilience in a Drought-Tolerant Zea mays Cultivar by Integrating Morpho-Physiological and Proteomic Characterization Int J Plant Biol. 16:133.     Reference: November 21st, 2025
Gene Product: September 1st, 2003
Variation: October 7th, 2014
7 days agomta1 mouse transplantation antigen homolog1:
1.10
GRMZM2G090422
Zm00001d034059
Zm00001eb057690
Rotondwa Rabelani Sinthumule et al. 2025. Enhancing Stress Resilience in a Drought-Tolerant Zea mays Cultivar by Integrating Morpho-Physiological and Proteomic Characterization Int J Plant Biol. 16:133.     Reference: November 21st, 2025
Gene Product: January 13th, 2020
Variation: January 26th, 2011
7 days agoppi1 peptidyl-prolyl isomerase1:
5.04
GRMZM2G326111
Zm00001d016660
Zm00001eb242390
Rotondwa Rabelani Sinthumule et al. 2025. Enhancing Stress Resilience in a Drought-Tolerant Zea mays Cultivar by Integrating Morpho-Physiological and Proteomic Characterization Int J Plant Biol. 16:133.     Reference: November 21st, 2025
Gene Product: December 14th, 2014
Variation: December 18th, 2014
7 days agoabp4 auxin binding protein homolog4:
10.03
GRMZM2G064371
Zm00001d023904
Zm00001eb410780
Rotondwa Rabelani Sinthumule et al. 2025. Enhancing Stress Resilience in a Drought-Tolerant Zea mays Cultivar by Integrating Morpho-Physiological and Proteomic Characterization Int J Plant Biol. 16:133.     Reference: November 21st, 2025
Gene Product: September 1st, 2003
Variation: May 26th, 2005
7 days agobip1 Binding protein homolog1:
5.03
GRMZM2G114793
Zm00001d014993
Zm00001eb229930
Rotondwa Rabelani Sinthumule et al. 2025. Enhancing Stress Resilience in a Drought-Tolerant Zea mays Cultivar by Integrating Morpho-Physiological and Proteomic Characterization Int J Plant Biol. 16:133.     Reference: November 21st, 2025
Gene Product: September 1st, 2003
Variation: October 30th, 2012
7 days agorps3 (cp) 30S ribosomal protein S3 gene:
 
   Rotondwa Rabelani Sinthumule et al. 2025. Enhancing Stress Resilience in a Drought-Tolerant Zea mays Cultivar by Integrating Morpho-Physiological and Proteomic Characterization Int J Plant Biol. 16:133.     Reference: November 21st, 2025
Gene Product: September 1st, 2003
7 days agohsp18f heat shock protein18f:
3.02
GRMZM2G083810
Zm00001d039566
Zm00001eb121900
Rotondwa Rabelani Sinthumule et al. 2025. Enhancing Stress Resilience in a Drought-Tolerant Zea mays Cultivar by Integrating Morpho-Physiological and Proteomic Characterization Int J Plant Biol. 16:133.     Reference: November 21st, 2025
Gene Product: September 1st, 2003
Variation: July 18th, 2014
7 days agogpn1 glyceraldehyde-3-phosphate deHaseN1:
4.05
GRMZM2G035268
Zm00001d050428
Zm00001eb179810
Rotondwa Rabelani Sinthumule et al. 2025. Enhancing Stress Resilience in a Drought-Tolerant Zea mays Cultivar by Integrating Morpho-Physiological and Proteomic Characterization Int J Plant Biol. 16:133.     Reference: November 21st, 2025
Gene Product: September 1st, 2003
Variation: June 8th, 2010
7 days agothr1 threonine synthase1:
3.08
GRMZM2G050570
Zm00001d043780
Zm00001eb156020
Rotondwa Rabelani Sinthumule et al. 2025. Enhancing Stress Resilience in a Drought-Tolerant Zea mays Cultivar by Integrating Morpho-Physiological and Proteomic Characterization Int J Plant Biol. 16:133.     Reference: November 21st, 2025
Gene Product: September 22nd, 2025
Variation: March 25th, 2015
7 days agomta2 mouse transplantation antigen homolog2:
 
GRMZM2G072315
Zm00001d013252
Zm00001eb214650
Rotondwa Rabelani Sinthumule et al. 2025. Enhancing Stress Resilience in a Drought-Tolerant Zea mays Cultivar by Integrating Morpho-Physiological and Proteomic Characterization Int J Plant Biol. 16:133.     Reference: November 21st, 2025
Gene Product: January 13th, 2020
7 days agoahh1 adenosyl homocysteine hydrolase1:
4.03
GRMZM2G015295
Zm00001d049239
Zm00001eb170040
Rotondwa Rabelani Sinthumule et al. 2025. Enhancing Stress Resilience in a Drought-Tolerant Zea mays Cultivar by Integrating Morpho-Physiological and Proteomic Characterization Int J Plant Biol. 16:133.     Reference: November 21st, 2025
Gene Product: September 1st, 2003
Variation: March 29th, 2015
7 days agoAY103770  :
9.03
GRMZM2G033555
Zm00001d046697
Zm00001eb387920
Xiong, WD et al. 2025. Correlative Transcriptome and Metabolome Analysis of the Maize Shoot Response to Salt Stress Plants. 14:3554.     Reference: November 21st, 2025
Variation: January 2nd, 2022
7 days agoAY105785  :
6.06
GRMZM2G176396
Zm00001d038689
Zm00001eb292750
Rotondwa Rabelani Sinthumule et al. 2025. Enhancing Stress Resilience in a Drought-Tolerant Zea mays Cultivar by Integrating Morpho-Physiological and Proteomic Characterization Int J Plant Biol. 16:133.     Reference: November 21st, 2025
Variation: March 21st, 2007
7 days agodapf1 diaminopimelate+epimerase1:
1.05
GRMZM2G130332
Zm00001d030677
Zm00001eb028810
Rotondwa Rabelani Sinthumule et al. 2025. Enhancing Stress Resilience in a Drought-Tolerant Zea mays Cultivar by Integrating Morpho-Physiological and Proteomic Characterization Int J Plant Biol. 16:133.     Reference: November 21st, 2025
Gene Product: October 21st, 2020
7 days agogst49 glutathione transferase49:
1.03
GRMZM2G043291
Zm00001d028692
Zm00001eb012920
Rotondwa Rabelani Sinthumule et al. 2025. Enhancing Stress Resilience in a Drought-Tolerant Zea mays Cultivar by Integrating Morpho-Physiological and Proteomic Characterization Int J Plant Biol. 16:133.     Reference: November 21st, 2025
Gene Product: September 1st, 2003
7 days agopyk1 pyruvate kinase1:
1.05
GRMZM2G033526
Zm00001d030020
Zm00001eb024280
Rotondwa Rabelani Sinthumule et al. 2025. Enhancing Stress Resilience in a Drought-Tolerant Zea mays Cultivar by Integrating Morpho-Physiological and Proteomic Characterization Int J Plant Biol. 16:133.     Reference: November 21st, 2025
Gene Product: April 8th, 2011
7 days agoacs7 1-aminocyclopropane-1-carboxylate synthase7:
10.05
GRMZM5G894619
Zm00001d026060
Zm00001eb428490
Chuan Chen et al. 2025. qPH1.01, a dominant QTL that contributes to plant height and ear height in maize. Plant Genome. 18:e70157.     Reference: November 21st, 2025
Gene Product: May 16th, 2016
Variation: April 23rd, 2020
7 days agorpl5b 60S ribosomal protein L5-1 homolog b:
 
GRMZM2G163081
Zm00001d012161
Zm00001eb365710
Rotondwa Rabelani Sinthumule et al. 2025. Enhancing Stress Resilience in a Drought-Tolerant Zea mays Cultivar by Integrating Morpho-Physiological and Proteomic Characterization Int J Plant Biol. 16:133.     Reference: November 21st, 2025
Gene Product: December 1st, 2019
Variation: April 9th, 2011
7 days agocrp4 chloroplast RNA processing4:
 
GRMZM2G377761
Zm00001d018891
Zm00001eb300920
Rotondwa Rabelani Sinthumule et al. 2025. Enhancing Stress Resilience in a Drought-Tolerant Zea mays Cultivar by Integrating Morpho-Physiological and Proteomic Characterization Int J Plant Biol. 16:133.   AT3G03710 (TAIR)
LOC_Os07g07310 (MSU/TIGR)
Os07g0168000 (Gramene)
Reference: November 21st, 2025
Gene Product: April 12th, 2011
Variation: April 21st, 2011
7 days agomkk4 MAP kinase kinase4:
 
GRMZM5G878379
Zm00001d018326
Zm00001eb257340
Xiong, WD et al. 2025. Correlative Transcriptome and Metabolome Analysis of the Maize Shoot Response to Salt Stress Plants. 14:3554.     Reference: November 21st, 2025
Gene Product: June 11th, 2024
7 days agopal9 phenylalanine ammonia lyase9:
 
GRMZM2G029048
Zm00001d017275
Zm00001eb247630
Qingyu Xu et al. 2025. Genome-Wide Association Study Identified ZmMYB42 as a Negative Regulator for Resistance to Maize Head Smut. J Agric Food Chem. :doi: 10.1021/acs.jafc.5c12961.     Reference: November 21st, 2025
Gene Product: August 13th, 2022
7 days agopal8 phenylalanine ammonia lyase8:
 
GRMZM2G334660
Zm00001d017276
Zm00001eb247650
Qingyu Xu et al. 2025. Genome-Wide Association Study Identified ZmMYB42 as a Negative Regulator for Resistance to Maize Head Smut. J Agric Food Chem. :doi: 10.1021/acs.jafc.5c12961.     Reference: November 21st, 2025
Gene Product: August 13th, 2022
7 days agorcc2 regulator of chromosome condensation2:
 
GRMZM2G003565
Zm00001d003632
Zm00001eb082500
Rotondwa Rabelani Sinthumule et al. 2025. Enhancing Stress Resilience in a Drought-Tolerant Zea mays Cultivar by Integrating Morpho-Physiological and Proteomic Characterization Int J Plant Biol. 16:133.   AT5G63860 (TAIR) Reference: November 21st, 2025
Gene Product: August 2nd, 2021
Variation: November 18th, 2016
7 days agocdpk22 calcium dependent protein kinase22:
 
GRMZM2G157068
Zm00001d015100
Zm00001eb230910
Chuan Chen et al. 2025. qPH1.01, a dominant QTL that contributes to plant height and ear height in maize. Plant Genome. 18:e70157.     Reference: November 21st, 2025
Gene Product: December 3rd, 2013
Variation: March 17th, 2024
7 days agomkk2 mitogen-activated protein kinase kinase2:
 
GRMZM2G400470
Zm00001d045359
Zm00001eb377050
Xiong, WD et al. 2025. Correlative Transcriptome and Metabolome Analysis of the Maize Shoot Response to Salt Stress Plants. 14:3554.   AT4G29810 (TAIR) Reference: November 21st, 2025
Gene Product: July 12th, 2013
7 days agocybc7 cytochrome b-c1 complex subunit 7:
 
GRMZM2G318346
Zm00001d013041
Zm00001eb212550
Rotondwa Rabelani Sinthumule et al. 2025. Enhancing Stress Resilience in a Drought-Tolerant Zea mays Cultivar by Integrating Morpho-Physiological and Proteomic Characterization Int J Plant Biol. 16:133.     Reference: November 21st, 2025
Gene Product: January 30th, 2019
Variation: January 30th, 2019
7 days agopme19 pectin methylesterase19:
 
GRMZM2G136106
Zm00001d040650
Zm00001eb130500
Rotondwa Rabelani Sinthumule et al. 2025. Enhancing Stress Resilience in a Drought-Tolerant Zea mays Cultivar by Integrating Morpho-Physiological and Proteomic Characterization Int J Plant Biol. 16:133.     Reference: November 21st, 2025
Gene Product: September 10th, 2018
7 days agopme22 pectin methylesterase22:
 
GRMZM2G167637
Zm00001d042624
Zm00001eb145790
Rotondwa Rabelani Sinthumule et al. 2025. Enhancing Stress Resilience in a Drought-Tolerant Zea mays Cultivar by Integrating Morpho-Physiological and Proteomic Characterization Int J Plant Biol. 16:133.     Reference: November 21st, 2025
Gene Product: September 10th, 2018
7 days agohsp28 heat shock protein28:
 
GRMZM2G098167
Zm00001d018298
Zm00001eb257130
Rotondwa Rabelani Sinthumule et al. 2025. Enhancing Stress Resilience in a Drought-Tolerant Zea mays Cultivar by Integrating Morpho-Physiological and Proteomic Characterization Int J Plant Biol. 16:133.     Reference: November 21st, 2025
Gene Product: January 15th, 2019
7 days agoapx9 ascorbate peroxidase9:
 
GRMZM2G460406
Zm00001d053223
Zm00001eb202790
Qingyu Xu et al. 2025. Genome-Wide Association Study Identified ZmMYB42 as a Negative Regulator for Resistance to Maize Head Smut. J Agric Food Chem. :doi: 10.1021/acs.jafc.5c12961.     Reference: November 21st, 2025
Gene Product: January 20th, 2025
7 days agophi2 phosphohexose isomerase2:
 
GRMZM2G076075
Zm00001d005925
Zm00001eb101090
Rotondwa Rabelani Sinthumule et al. 2025. Enhancing Stress Resilience in a Drought-Tolerant Zea mays Cultivar by Integrating Morpho-Physiological and Proteomic Characterization Int J Plant Biol. 16:133.     Reference: November 21st, 2025
Gene Product: September 1st, 2003
7 days agopx19 peroxidase19:
 
GRMZM2G107228
Zm00001d040705
Zm00001eb131000
Xiong, WD et al. 2025. Correlative Transcriptome and Metabolome Analysis of the Maize Shoot Response to Salt Stress Plants. 14:3554.     Reference: November 21st, 2025
Gene Product: January 20th, 2025
7 days agogrx3 glutaredoxin3:
 
GRMZM2G148387
Zm00001d017240
Zm00001eb247320
Rotondwa Rabelani Sinthumule et al. 2025. Enhancing Stress Resilience in a Drought-Tolerant Zea mays Cultivar by Integrating Morpho-Physiological and Proteomic Characterization Int J Plant Biol. 16:133.     Reference: November 21st, 2025
Gene Product: January 21st, 2021
Variation: January 22nd, 2021
7 days agomsr1 methionine sulfoxide reductase1:
 
GRMZM2G022413
Zm00001d003271
Zm00001eb079380
Rotondwa Rabelani Sinthumule et al. 2025. Enhancing Stress Resilience in a Drought-Tolerant Zea mays Cultivar by Integrating Morpho-Physiological and Proteomic Characterization Int J Plant Biol. 16:133.     Reference: November 21st, 2025
Gene Product: January 25th, 2021
7 days agogpa4 glyceraldehyde-3-phosphate dehydrogenase4:
 
GRMZM2G162845
Zm00001d025599
Zm00001eb424150
Rotondwa Rabelani Sinthumule et al. 2025. Enhancing Stress Resilience in a Drought-Tolerant Zea mays Cultivar by Integrating Morpho-Physiological and Proteomic Characterization Int J Plant Biol. 16:133.     Reference: November 21st, 2025
Gene Product: September 1st, 2003
7 days agoglpx1 glutathione peroxidase1:
 
GRMZM2G012479
Zm00001d037079
Zm00001eb278300
Rotondwa Rabelani Sinthumule et al. 2025. Enhancing Stress Resilience in a Drought-Tolerant Zea mays Cultivar by Integrating Morpho-Physiological and Proteomic Characterization Int J Plant Biol. 16:133.     Reference: November 21st, 2025
Gene Product: March 4th, 2022
7 days agoccp11 cysteine protease11:
 
GRMZM2G097286
Zm00001d023973
Zm00001eb411210
Rotondwa Rabelani Sinthumule et al. 2025. Enhancing Stress Resilience in a Drought-Tolerant Zea mays Cultivar by Integrating Morpho-Physiological and Proteomic Characterization Int J Plant Biol. 16:133.     Reference: November 21st, 2025
Gene Product: October 11th, 2021
7 days agochi5 chalcone flavanone isomerase5:
5.04
GRMZM2G311919
Zm00001d016144
Zm00001eb238460
Rotondwa Rabelani Sinthumule et al. 2025. Enhancing Stress Resilience in a Drought-Tolerant Zea mays Cultivar by Integrating Morpho-Physiological and Proteomic Characterization Int J Plant Biol. 16:133.     Reference: November 21st, 2025
Gene Product: January 26th, 2021
7 days agohsp5 heat shock protein5:
9.06
GRMZM2G366532
Zm00001d047799
Zm00001eb397600
Rotondwa Rabelani Sinthumule et al. 2025. Enhancing Stress Resilience in a Drought-Tolerant Zea mays Cultivar by Integrating Morpho-Physiological and Proteomic Characterization Int J Plant Biol. 16:133.     Reference: November 21st, 2025
Gene Product: September 1st, 2003
7 days agoaoc1 allene oxide cyclase1:
1.04
GRMZM2G077316
Zm00001d029594
Zm00001eb020680
Rotondwa Rabelani Sinthumule et al. 2025. Enhancing Stress Resilience in a Drought-Tolerant Zea mays Cultivar by Integrating Morpho-Physiological and Proteomic Characterization Int J Plant Biol. 16:133.     Reference: November 21st, 2025
Gene Product: November 29th, 2005
Variation: May 10th, 2025
7 days agoss1 starch synthase I:
9.02
GRMZM2G129451
Zm00001d045261
Zm00001eb376100
Rotondwa Rabelani Sinthumule et al. 2025. Enhancing Stress Resilience in a Drought-Tolerant Zea mays Cultivar by Integrating Morpho-Physiological and Proteomic Characterization Int J Plant Biol. 16:133.     Reference: November 21st, 2025
Gene Product: October 14th, 2016
Variation: October 7th, 2010
7 days agoammt1 aminomethyltransferase1:
2.02
GRMZM5G876898
Zm00001d002258
Zm00001eb070250
Rotondwa Rabelani Sinthumule et al. 2025. Enhancing Stress Resilience in a Drought-Tolerant Zea mays Cultivar by Integrating Morpho-Physiological and Proteomic Characterization Int J Plant Biol. 16:133.     Reference: November 21st, 2025
Gene Product: January 14th, 2021
Variation: March 31st, 2005
7 days agoIDP125  :
3.00
GRMZM2G047509
Zm00001d039253
Zm00001eb118830
Rotondwa Rabelani Sinthumule et al. 2025. Enhancing Stress Resilience in a Drought-Tolerant Zea mays Cultivar by Integrating Morpho-Physiological and Proteomic Characterization Int J Plant Biol. 16:133.     Reference: November 21st, 2025
Variation: March 31st, 2005
7 days agosrph1 SGT1 disease resistance protein homolog1:
3.09
GRMZM2G105019
Zm00001d044172
Zm00001eb159420
Rotondwa Rabelani Sinthumule et al. 2025. Enhancing Stress Resilience in a Drought-Tolerant Zea mays Cultivar by Integrating Morpho-Physiological and Proteomic Characterization Int J Plant Biol. 16:133.     Reference: November 21st, 2025
Variation: March 31st, 2005
7 days agoIDP600  :
4.06
GRMZM2G026024
Zm00001d000164
Zm00001eb188120
Rotondwa Rabelani Sinthumule et al. 2025. Enhancing Stress Resilience in a Drought-Tolerant Zea mays Cultivar by Integrating Morpho-Physiological and Proteomic Characterization Int J Plant Biol. 16:133.     Reference: November 21st, 2025
Variation: March 31st, 2005
7 days agoIDP1465  :
9.06
GRMZM2G321725
Zm00001d048091
Zm00001eb400220
Rotondwa Rabelani Sinthumule et al. 2025. Enhancing Stress Resilience in a Drought-Tolerant Zea mays Cultivar by Integrating Morpho-Physiological and Proteomic Characterization Int J Plant Biol. 16:133.     Reference: November 21st, 2025
Variation: March 31st, 2005
7 days agocnh1 carbon-nitrogen hydrolase homolog1:
9.07
GRMZM2G169365
Zm00001d048292
Zm00001eb402000
Rotondwa Rabelani Sinthumule et al. 2025. Enhancing Stress Resilience in a Drought-Tolerant Zea mays Cultivar by Integrating Morpho-Physiological and Proteomic Characterization Int J Plant Biol. 16:133.     Reference: November 21st, 2025
Variation: March 24th, 2011
7 days agoaco2 aconitase2:
10.04
GRMZM5G858454
Zm00001d024952
Zm00001eb419110
Rotondwa Rabelani Sinthumule et al. 2025. Enhancing Stress Resilience in a Drought-Tolerant Zea mays Cultivar by Integrating Morpho-Physiological and Proteomic Characterization Int J Plant Biol. 16:133.     Reference: November 21st, 2025
Gene Product: September 1st, 2003
Variation: September 3rd, 2013
7 days agodxr1 deoxy xylulose reductoisomerase1:
3.04
GRMZM2G056975
Zm00001d040163
Zm00001eb126690
Rotondwa Rabelani Sinthumule et al. 2025. Enhancing Stress Resilience in a Drought-Tolerant Zea mays Cultivar by Integrating Morpho-Physiological and Proteomic Characterization Int J Plant Biol. 16:133.     Reference: November 21st, 2025
Gene Product: December 10th, 2011
Variation: May 11th, 2005
7 days agosbt32 subtilisin32:
5.07
GRMZM2G163749
Zm00001d018282
Zm00001eb256970
Rotondwa Rabelani Sinthumule et al. 2025. Enhancing Stress Resilience in a Drought-Tolerant Zea mays Cultivar by Integrating Morpho-Physiological and Proteomic Characterization Int J Plant Biol. 16:133.     Reference: November 21st, 2025
Gene Product: November 11th, 2016
7 days agopho2 starch phoshorylase2:
3.06
GRMZM2G085577
Zm00001d042842
Zm00001eb147780
Rotondwa Rabelani Sinthumule et al. 2025. Enhancing Stress Resilience in a Drought-Tolerant Zea mays Cultivar by Integrating Morpho-Physiological and Proteomic Characterization Int J Plant Biol. 16:133.     Reference: November 21st, 2025
Gene Product: March 26th, 2015
Variation: February 18th, 2025
7 days agocpps2 copalyl diphosphate synthase2:
1.04
GRMZM2G044481
Zm00001d029648
Zm00001eb021200
Chuan Chen et al. 2025. qPH1.01, a dominant QTL that contributes to plant height and ear height in maize. Plant Genome. 18:e70157.     Reference: November 21st, 2025
Gene Product: August 16th, 2012
Variation: January 22nd, 2018
7 days agodtc2 dicarboxylate/tricarboxylate transporter2:
6.05
GRMZM2G051630
Zm00001d037725
Zm00001eb283870
Rotondwa Rabelani Sinthumule et al. 2025. Enhancing Stress Resilience in a Drought-Tolerant Zea mays Cultivar by Integrating Morpho-Physiological and Proteomic Characterization Int J Plant Biol. 16:133.     Reference: November 21st, 2025
Gene Product: January 11th, 2020
7 days agopco098993  :
1.05
GRMZM2G071208
Zm00001d029848
Zm00001eb022930
Rotondwa Rabelani Sinthumule et al. 2025. Enhancing Stress Resilience in a Drought-Tolerant Zea mays Cultivar by Integrating Morpho-Physiological and Proteomic Characterization Int J Plant Biol. 16:133.     Reference: November 21st, 2025
Gene Product: August 31st, 2023
7 days agonad7(mtNB) NADH dehydrogenase subunit 7:
 
   Rotondwa Rabelani Sinthumule et al. 2025. Enhancing Stress Resilience in a Drought-Tolerant Zea mays Cultivar by Integrating Morpho-Physiological and Proteomic Characterization Int J Plant Biol. 16:133.     Reference: November 21st, 2025
Gene Product: March 22nd, 2022
7 days agonad9(mtNB) NADH dehydrogenase subunit 9:
 
   Rotondwa Rabelani Sinthumule et al. 2025. Enhancing Stress Resilience in a Drought-Tolerant Zea mays Cultivar by Integrating Morpho-Physiological and Proteomic Characterization Int J Plant Biol. 16:133.     Reference: November 21st, 2025
Gene Product: March 22nd, 2022
8 days agoctr1 constitutive triple response1:
5.04
GRMZM2G059671
Zm00001d016675
Zm00001eb242490
Yufeng Xiao et al. 2025. Enhanced Enterobacter ludwigii ES2-Mediated Thifensulfuron-Methyl Degradation and Maize Disease Resistance: A Multifunctional Microbial Technology Approach. J Agric Food Chem. :doi: 10.1021/acs.jafc.5c09776.     Reference: November 20th, 2025
Gene Product: May 13th, 2014
8 days agolox10 lipoxygenase10:
4.09
GRMZM2G015419
Zm00001d053675
Zm00001eb206040
Yufeng Xiao et al. 2025. Enhanced Enterobacter ludwigii ES2-Mediated Thifensulfuron-Methyl Degradation and Maize Disease Resistance: A Multifunctional Microbial Technology Approach. J Agric Food Chem. :doi: 10.1021/acs.jafc.5c09776.     Reference: November 20th, 2025
Gene Product: January 3rd, 2018
Variation: February 28th, 2020
8 days agowrky15 WRKY-transcription factor 15:
 
GRMZM2G004060
Zm00001d023615
Zm00001eb408520
Luyang Wei et al. 2025. Allelic Variation in Maize Malate Dehydrogenase 7 Shapes Promoter Methylation and Banded Leaf and Sheath Blight Resistance. Adv Sci. :e11356.     Reference: November 20th, 2025
Gene Product: July 24th, 2017
8 days agoprp5 pathogenesis related protein5:
1.06
GRMZM2G402631
Zm00001d031158
Zm00001eb032600
Yufeng Xiao et al. 2025. Enhanced Enterobacter ludwigii ES2-Mediated Thifensulfuron-Methyl Degradation and Maize Disease Resistance: A Multifunctional Microbial Technology Approach. J Agric Food Chem. :doi: 10.1021/acs.jafc.5c09776.     Reference: November 20th, 2025
Gene Product: December 12th, 2022
Variation: August 20th, 2011
8 days agoprp1 pathogenesis-related protein1:
8.03
AC205274.3_FG001
Zm00001d009296
Zm00001eb341580
Yufeng Xiao et al. 2025. Enhanced Enterobacter ludwigii ES2-Mediated Thifensulfuron-Methyl Degradation and Maize Disease Resistance: A Multifunctional Microbial Technology Approach. J Agric Food Chem. :doi: 10.1021/acs.jafc.5c09776.     Reference: November 20th, 2025
Gene Product: September 1st, 2003
Variation: September 1st, 2003
8 days agoaos1 allene oxide synthase1:
9.06
GRMZM2G067225
Zm00001d048021
Zm00001eb399600
Yufeng Xiao et al. 2025. Enhanced Enterobacter ludwigii ES2-Mediated Thifensulfuron-Methyl Degradation and Maize Disease Resistance: A Multifunctional Microbial Technology Approach. J Agric Food Chem. :doi: 10.1021/acs.jafc.5c09776.     Reference: November 20th, 2025
Gene Product: September 1st, 2003
Variation: September 24th, 2010
8 days agoopr2 12-oxo-phytodienoic acid reductase2:
8.05
GRMZM2G000236
Zm00001d044906
Zm00001eb373030
Yufeng Xiao et al. 2025. Enhanced Enterobacter ludwigii ES2-Mediated Thifensulfuron-Methyl Degradation and Maize Disease Resistance: A Multifunctional Microbial Technology Approach. J Agric Food Chem. :doi: 10.1021/acs.jafc.5c09776.     Reference: November 20th, 2025
Gene Product: September 3rd, 2010
Variation: January 30th, 2023
8 days agohpl1 hydroperoxide lyase1:
 
GRMZM6G986387
Zm00001d054067
Zm00001eb209760
Yufeng Xiao et al. 2025. Enhanced Enterobacter ludwigii ES2-Mediated Thifensulfuron-Methyl Degradation and Maize Disease Resistance: A Multifunctional Microbial Technology Approach. J Agric Food Chem. :doi: 10.1021/acs.jafc.5c09776.     Reference: November 20th, 2025
Variation: August 1st, 2008
8 days agoprp4 pathogenesis related protein4:
7.00
GRMZM2G465226
Zm00001d018738
Zm00001eb299370
Luyang Wei et al. 2025. Allelic Variation in Maize Malate Dehydrogenase 7 Shapes Promoter Methylation and Banded Leaf and Sheath Blight Resistance. Adv Sci. :e11356.     Reference: November 20th, 2025
Gene Product: December 12th, 2022
Variation: August 29th, 2011
8 days agochn33 chitinase33:
 
GRMZM2G117942
Zm00001d048950
Zm00001eb167720
Luyang Wei et al. 2025. Allelic Variation in Maize Malate Dehydrogenase 7 Shapes Promoter Methylation and Banded Leaf and Sheath Blight Resistance. Adv Sci. :e11356.     Reference: November 20th, 2025
Gene Product: May 31st, 2021
8 days agoprp6 pathogenesis-related protein6:
 
GRMZM2G112488
Zm00001d028816
Zm00001eb014010
Luyang Wei et al. 2025. Allelic Variation in Maize Malate Dehydrogenase 7 Shapes Promoter Methylation and Banded Leaf and Sheath Blight Resistance. Adv Sci. :e11356.     Reference: November 20th, 2025
Gene Product: December 12th, 2022
8 days agomdh7 malate dehydrogenase7:
 
GRMZM2G068455
Zm00001d050409
Zm00001eb179730
Luyang Wei et al. 2025. Allelic Variation in Maize Malate Dehydrogenase 7 Shapes Promoter Methylation and Banded Leaf and Sheath Blight Resistance. Adv Sci. :e11356.     Reference: November 20th, 2025
Gene Product: September 1st, 2003
Variation: November 20th, 2025
9 days agopimt1 protein-L-isoaspartate methyltransferase1:
 
GRMZM2G423027
Zm00001d049966
Zm00001eb176270
Zhang, YM et al. 2025. Natural variation in the ZmPIMT1 promoter enhances seed aging tolerance by regulating PABP2 repair in maize. Plant Cell. :doi: 10.1093/plcell/koaf217.     Reference: November 18th, 2025
Gene Product: September 1st, 2003
Variation: November 19th, 2025
9 days agomate25 multidrug and toxic compound extrusion25:
 
GRMZM2G000593
Zm00001d044133
Zm00001eb159120
Du, YM et al. 2025. Shrunken2 (Sh2) and Brittle2 (Bt2) play a crucial role in the developmental processes of the aleurone layers in maize. Plant Physiol. :doi: 10.1093/plphys/kiaf464.     Reference: November 19th, 2025
Gene Product: August 17th, 2015
9 days agopdcb24 plasmodesmata callose binding protein24:
 
GRMZM2G429873
Zm00001d044133
Zm00001eb159110
Du, YM et al. 2025. Shrunken2 (Sh2) and Brittle2 (Bt2) play a crucial role in the developmental processes of the aleurone layers in maize. Plant Physiol. :doi: 10.1093/plphys/kiaf464.     Reference: November 19th, 2025
Gene Product: August 21st, 2024
9 days agocyp72 cytochrome P450 72:
 
GRMZM2G177384
Zm00001d044120
Zm00001eb159000
Du, YM et al. 2025. Shrunken2 (Sh2) and Brittle2 (Bt2) play a crucial role in the developmental processes of the aleurone layers in maize. Plant Physiol. :doi: 10.1093/plphys/kiaf464.   AT1G11680 (TAIR) Reference: November 19th, 2025
Gene Product: December 30th, 2022
9 days agoZm00001d034455  :
 
Zm00001d034455
Zm00001eb060860
Du, YM et al. 2025. Shrunken2 (Sh2) and Brittle2 (Bt2) play a crucial role in the developmental processes of the aleurone layers in maize. Plant Physiol. :doi: 10.1093/plphys/kiaf464.     Reference: November 19th, 2025
Gene Product: August 21st, 2018
9 days agocsu845  :
3.09
GRMZM2G364528
Zm00001d044142
Zm00001eb159180
Du, YM et al. 2025. Shrunken2 (Sh2) and Brittle2 (Bt2) play a crucial role in the developmental processes of the aleurone layers in maize. Plant Physiol. :doi: 10.1093/plphys/kiaf464.     Reference: November 19th, 2025
Variation: September 1st, 2003
9 days agoa1 anthocyaninless1:
3.09
GRMZM2G026930
Zm00001d044122
Zm00001eb159020
Du, YM et al. 2025. Shrunken2 (Sh2) and Brittle2 (Bt2) play a crucial role in the developmental processes of the aleurone layers in maize. Plant Physiol. :doi: 10.1093/plphys/kiaf464.     Reference: November 19th, 2025
Gene Product: April 11th, 2013
Variation: August 25th, 2010
9 days agoacc1 acetyl-coenzyme A carboxylase1:
10.04
AC197672.3_FG002
Zm00001d024998
Zm00001eb419400
Du, YM et al. 2025. Shrunken2 (Sh2) and Brittle2 (Bt2) play a crucial role in the developmental processes of the aleurone layers in maize. Plant Physiol. :doi: 10.1093/plphys/kiaf464.     Reference: November 19th, 2025
Gene Product: September 1st, 2003
Variation: July 6th, 2012
9 days agofad15 fatty acid desaturase15:
10.03
GRMZM2G169240
Zm00001d023768
Zm00001eb409690
Du, YM et al. 2025. Shrunken2 (Sh2) and Brittle2 (Bt2) play a crucial role in the developmental processes of the aleurone layers in maize. Plant Physiol. :doi: 10.1093/plphys/kiaf464.     Reference: November 19th, 2025
Gene Product: January 6th, 2022
9 days agosum1 siroheme uroporphyrinogen methyltransferase1:
3.09
GRMZM2G105604
Zm00001d044138
Zm00001eb159150
Du, YM et al. 2025. Shrunken2 (Sh2) and Brittle2 (Bt2) play a crucial role in the developmental processes of the aleurone layers in maize. Plant Physiol. :doi: 10.1093/plphys/kiaf464.     Reference: November 19th, 2025
Gene Product: September 1st, 2003
Variation: March 18th, 2015
9 days agobt2 brittle endosperm2:
4.05
GRMZM2G068506
Zm00001d050032
Zm00001eb176800
Du, YM et al. 2025. Shrunken2 (Sh2) and Brittle2 (Bt2) play a crucial role in the developmental processes of the aleurone layers in maize. Plant Physiol. :doi: 10.1093/plphys/kiaf464.     Reference: November 19th, 2025
Gene Product: November 4th, 2014
Variation: May 8th, 2023
9 days agobx1 benzoxazinless1:
4.00
GRMZM2G085381
Zm00001d048709
Zm00001eb165610
Liu, H et al. 2025. Conservation and variability of long-range interactions in structurally diverse maize genomes Nat Commun. 16:10105.     Reference: November 19th, 2025
Gene Product: October 14th, 2011
Variation: April 12th, 2019
9 days agodek1 defective kernel1:
1.03
GRMZM2G321753
Zm00001d028818
Zm00001eb014030
Du, YM et al. 2025. Shrunken2 (Sh2) and Brittle2 (Bt2) play a crucial role in the developmental processes of the aleurone layers in maize. Plant Physiol. :doi: 10.1093/plphys/kiaf464.     Reference: November 19th, 2025
Gene Product: September 1st, 2003
Variation: February 18th, 2022
9 days agotps10 terpene synthase10:
10.03
GRMZM2G179092
Zm00001d024486
Zm00001eb415160
Engelberth, J et al. 2025. Leaf Developmental Stages Strongly Modulate Indole Emissions in Response to Simulated Insect Herbivory Preprints.org.     Reference: November 19th, 2025
Gene Product: September 4th, 2008
Variation: April 2nd, 2023
9 days agofl2 floury2:
4.03
GRMZM2G397687
Zm00001d049243
Zm00001eb170070
Du, YM et al. 2025. Shrunken2 (Sh2) and Brittle2 (Bt2) play a crucial role in the developmental processes of the aleurone layers in maize. Plant Physiol. :doi: 10.1093/plphys/kiaf464.     Reference: November 19th, 2025
Gene Product: September 1st, 2003
Variation: October 17th, 2014
9 days agoglb1 globulin1:
1.09
GRMZM2G067919
Zm00001d033447
Zm00001eb052450
Du, YM et al. 2025. Shrunken2 (Sh2) and Brittle2 (Bt2) play a crucial role in the developmental processes of the aleurone layers in maize. Plant Physiol. :doi: 10.1093/plphys/kiaf464.     Reference: November 19th, 2025
Gene Product: September 1st, 2003
Variation: January 29th, 2015
9 days agoln1 linoleic acid1:
6.04 - 6.04
GRMZM2G169089
Zm00001d036982
Zm00001eb277490
Du, YM et al. 2025. Shrunken2 (Sh2) and Brittle2 (Bt2) play a crucial role in the developmental processes of the aleurone layers in maize. Plant Physiol. :doi: 10.1093/plphys/kiaf464.     Reference: November 19th, 2025
Gene Product: August 12th, 2018
Variation: August 16th, 2014
9 days agosh2 shrunken2:
3.09
GRMZM2G429899
Zm00001d044129
Zm00001eb159060
Du, YM et al. 2025. Shrunken2 (Sh2) and Brittle2 (Bt2) play a crucial role in the developmental processes of the aleurone layers in maize. Plant Physiol. :doi: 10.1093/plphys/kiaf464.     Reference: November 19th, 2025
Gene Product: November 4th, 2014
Variation: November 19th, 2025
9 days agosu1 sugary1:
4.05
GRMZM2G138060
Zm00001d049753
Zm00001eb174590
Du, YM et al. 2025. Shrunken2 (Sh2) and Brittle2 (Bt2) play a crucial role in the developmental processes of the aleurone layers in maize. Plant Physiol. :doi: 10.1093/plphys/kiaf464.     Reference: November 19th, 2025
Gene Product: April 21st, 2016
Variation: June 6th, 2016
9 days agodzs10 delta zein structural10:
9.03 - 9.03
Zm00001d045937
Zm00001eb382030
Du, YM et al. 2025. Shrunken2 (Sh2) and Brittle2 (Bt2) play a crucial role in the developmental processes of the aleurone layers in maize. Plant Physiol. :doi: 10.1093/plphys/kiaf464.     Reference: November 19th, 2025
Gene Product: September 1st, 2003
Variation: November 21st, 2012
9 days agonactf36 NAC-transcription factor 36:
2.04
GRMZM2G081930
Zm00001d003052
Zm00001eb077580
Jae-Hong Kim et al. 2025. DNA extraction from a maize (Zea mays L.) seed without damaging germination ability. Plant Biotechnol. 42:93-98.     Reference: November 19th, 2025
Variation: September 1st, 2003
9 days agozpu1 pullulanase-type starch debranching enzyme1:
2.05
GRMZM2G158043
Zm00001d004438
Zm00001eb088740
Du, YM et al. 2025. Shrunken2 (Sh2) and Brittle2 (Bt2) play a crucial role in the developmental processes of the aleurone layers in maize. Plant Physiol. :doi: 10.1093/plphys/kiaf464.     Reference: November 19th, 2025
Gene Product: October 25th, 2011
Variation: June 29th, 2015
9 days agodof3 DNA binding with one finger3:
6.01
GRMZM2G179069
Zm00001d035651
Zm00001eb266750
Du, YM et al. 2025. Shrunken2 (Sh2) and Brittle2 (Bt2) play a crucial role in the developmental processes of the aleurone layers in maize. Plant Physiol. :doi: 10.1093/plphys/kiaf464.     Reference: November 19th, 2025
Gene Product: September 1st, 2003
Variation: April 18th, 2008
9 days agoumc1152  :
10.01 - 10.02
GRMZM2G050709
Zm00001d023394
Zm00001eb406550
Jae-Hong Kim et al. 2025. DNA extraction from a maize (Zea mays L.) seed without damaging germination ability. Plant Biotechnol. 42:93-98.     Reference: November 19th, 2025
Variation: September 1st, 2003
9 days agocr4 crinkly4:
10.02
GRMZM2G051637
Zm00001d023425
Zm00001eb406780
Du, YM et al. 2025. Shrunken2 (Sh2) and Brittle2 (Bt2) play a crucial role in the developmental processes of the aleurone layers in maize. Plant Physiol. :doi: 10.1093/plphys/kiaf464.     Reference: November 19th, 2025
Gene Product: September 1st, 2003
Variation: September 8th, 2025
9 days agogbss1 granule-bound starch synthase1:
 
GRMZM2G008263
Zm00001d019479
Zm00001eb305810
Du, YM et al. 2025. Shrunken2 (Sh2) and Brittle2 (Bt2) play a crucial role in the developmental processes of the aleurone layers in maize. Plant Physiol. :doi: 10.1093/plphys/kiaf464.     Reference: November 19th, 2025
Gene Product: June 4th, 2008
Variation: August 4th, 2011
9 days agothk1 thick aleurone1:
 
Zm00001d027278
Zm00001eb000340
Du, YM et al. 2025. Shrunken2 (Sh2) and Brittle2 (Bt2) play a crucial role in the developmental processes of the aleurone layers in maize. Plant Physiol. :doi: 10.1093/plphys/kiaf464.     Reference: November 19th, 2025
Gene Product: August 1st, 2020
Variation: August 1st, 2020
9 days agopep4 phosphoenolpyruvate carboxylase4:
7.02
GRMZM2G473001
Zm00001d020057
Zm00001eb309660
Du, YM et al. 2025. Shrunken2 (Sh2) and Brittle2 (Bt2) play a crucial role in the developmental processes of the aleurone layers in maize. Plant Physiol. :doi: 10.1093/plphys/kiaf464.     Reference: November 19th, 2025
Gene Product: September 1st, 2003
Variation: December 27th, 2010
9 days agozp15 zein protein, 15kDa15:
6.01 - 6.02
GRMZM2G086294
Zm00001d035760
Zm00001eb267570
Du, YM et al. 2025. Shrunken2 (Sh2) and Brittle2 (Bt2) play a crucial role in the developmental processes of the aleurone layers in maize. Plant Physiol. :doi: 10.1093/plphys/kiaf464.     Reference: November 19th, 2025
Gene Product: July 8th, 2013
Variation: August 27th, 2013
9 days agonkd2 naked endosperm2:
10.06
GRMZM5G884137
Zm00001d026113
Zm00001eb428940
Du, YM et al. 2025. Shrunken2 (Sh2) and Brittle2 (Bt2) play a crucial role in the developmental processes of the aleurone layers in maize. Plant Physiol. :doi: 10.1093/plphys/kiaf464.     Reference: November 19th, 2025
Gene Product: May 31st, 2024
Variation: December 21st, 2017
9 days agox1 putative transcription factor:
3.09
GRMZM2G160032
Zm00001d044127
Zm00001eb159040
Du, YM et al. 2025. Shrunken2 (Sh2) and Brittle2 (Bt2) play a crucial role in the developmental processes of the aleurone layers in maize. Plant Physiol. :doi: 10.1093/plphys/kiaf464.     Reference: November 19th, 2025
Variation: August 24th, 2013
9 days agozp27 27-kDa zein protein:
7.02
GRMZM2G138727
Zm00001d020592
Zm00001eb313800
Du, YM et al. 2025. Shrunken2 (Sh2) and Brittle2 (Bt2) play a crucial role in the developmental processes of the aleurone layers in maize. Plant Physiol. :doi: 10.1093/plphys/kiaf464.     Reference: November 19th, 2025
Gene Product: September 17th, 2010
Variation: December 10th, 2019
9 days agomdr1 maternal derepression of R1:
4.09 - 4.09
GRMZM2G422464
Zm00001d053251
Zm00001eb202980
Du, YM et al. 2025. Shrunken2 (Sh2) and Brittle2 (Bt2) play a crucial role in the developmental processes of the aleurone layers in maize. Plant Physiol. :doi: 10.1093/plphys/kiaf464.   AT5G04560 (TAIR)
Os01g0218032 (Gramene)
Reference: November 19th, 2025
Gene Product: October 5th, 2021
Variation: October 5th, 2021
9 days agopmm1 phosphomannomutase1:
2.00
GRMZM2G165535
Zm00001d001789
Zm00001eb065790
Jae-Hong Kim et al. 2025. DNA extraction from a maize (Zea mays L.) seed without damaging germination ability. Plant Biotechnol. 42:93-98.     Reference: November 19th, 2025
Gene Product: October 21st, 2020
9 days agogpat1 glycerol-3-phosphate acyltransferase1:
3.06
GRMZM2G083195
Zm00001d042813
Zm00001eb147550
Du, YM et al. 2025. Shrunken2 (Sh2) and Brittle2 (Bt2) play a crucial role in the developmental processes of the aleurone layers in maize. Plant Physiol. :doi: 10.1093/plphys/kiaf464.     Reference: November 19th, 2025
Gene Product: March 25th, 2019
Variation: March 23rd, 2015
9 days agoAY110540  :
3.08
GRMZM2G130358
Zm00001d044130
Zm00001eb159080
Du, YM et al. 2025. Shrunken2 (Sh2) and Brittle2 (Bt2) play a crucial role in the developmental processes of the aleurone layers in maize. Plant Physiol. :doi: 10.1093/plphys/kiaf464.     Reference: November 19th, 2025
Variation: March 17th, 2021
9 days agosal1 supernumerary aleurone1:
9.03
GRMZM2G117935
Zm00001d046599
Zm00001eb387090
Du, YM et al. 2025. Shrunken2 (Sh2) and Brittle2 (Bt2) play a crucial role in the developmental processes of the aleurone layers in maize. Plant Physiol. :doi: 10.1093/plphys/kiaf464.     Reference: November 19th, 2025
Variation: April 3rd, 2007
9 days agolacs8 long-chain acyl-coA synthase8:
 
GRMZM2G079236
Zm00001d005019
Zm00001eb093590
Du, YM et al. 2025. Shrunken2 (Sh2) and Brittle2 (Bt2) play a crucial role in the developmental processes of the aleurone layers in maize. Plant Physiol. :doi: 10.1093/plphys/kiaf464.     Reference: November 19th, 2025
Gene Product: October 31st, 2018
9 days agowri1 wrinkled1 transcription factor1:
 
GRMZM2G124524
Zm00001d005016
Zm00001eb093560
Du, YM et al. 2025. Shrunken2 (Sh2) and Brittle2 (Bt2) play a crucial role in the developmental processes of the aleurone layers in maize. Plant Physiol. :doi: 10.1093/plphys/kiaf464.   AT3G54320 (TAIR) Reference: November 19th, 2025
Gene Product: July 5th, 2019
Variation: April 11th, 2011
9 days agoaz19D2 alpha zein 19kDa D2:
1.05
AF546187.1_FG007
Zm00001d030855
Zm00001eb030160
Du, YM et al. 2025. Shrunken2 (Sh2) and Brittle2 (Bt2) play a crucial role in the developmental processes of the aleurone layers in maize. Plant Physiol. :doi: 10.1093/plphys/kiaf464.     Reference: November 19th, 2025
Gene Product: September 1st, 2003
9 days agoz1A-1 alpha zein 19kDa A-1:
4.02
GRMZM2G026939
Zm00001d049476
Zm00001eb171970
Du, YM et al. 2025. Shrunken2 (Sh2) and Brittle2 (Bt2) play a crucial role in the developmental processes of the aleurone layers in maize. Plant Physiol. :doi: 10.1093/plphys/kiaf464.     Reference: November 19th, 2025
Gene Product: September 1st, 2003
9 days agogz50 50kD gamma zein:
7.02
GRMZM2G138689
Zm00001d020591
Zm00001eb313790
Du, YM et al. 2025. Shrunken2 (Sh2) and Brittle2 (Bt2) play a crucial role in the developmental processes of the aleurone layers in maize. Plant Physiol. :doi: 10.1093/plphys/kiaf464.     Reference: November 19th, 2025
Gene Product: September 22nd, 2010
Variation: September 16th, 2010
9 days agoaz22z5 22kD alpha zein5:
4.01
GRMZM2G088365
Zm00001d048806
Du, YM et al. 2025. Shrunken2 (Sh2) and Brittle2 (Bt2) play a crucial role in the developmental processes of the aleurone layers in maize. Plant Physiol. :doi: 10.1093/plphys/kiaf464.     Reference: November 19th, 2025
Gene Product: September 1st, 2003
Variation: May 31st, 2010
9 days agoyz1 polypeptide: yz1:
 
GRMZM2G114048
Zm00001d044124
Zm00001eb159030
Du, YM et al. 2025. Shrunken2 (Sh2) and Brittle2 (Bt2) play a crucial role in the developmental processes of the aleurone layers in maize. Plant Physiol. :doi: 10.1093/plphys/kiaf464.     Reference: November 19th, 2025
Variation: January 26th, 2015
9 days agocah1 carbonic anhydrase1:
 
GRMZM2G121878
Zm00001d044099
Zm00001eb158810
Twohey, RJ, III et al. 2025. A spontaneous mutation in a key C4 pathway gene significantly alters leaf δ13C, uncoupling its relationship with WUE and photosynthetic performance in Zea mays. J Exp Bot. :doi: 10.1093/jxb/eraf436.     Reference: October 13th, 2025
Gene Product: September 22nd, 2025
Variation: November 19th, 2025
9 days agoga20ox3 gibberellin 20-oxidase3:
 
GRMZM2G368411
Zm00001d042611
Zm00001eb145600
Dohleman, FG et al. 2026. Short-stature maize systems reduce carbon intensity of grain production by an average of 13% compared to commercially relevant tall comparators. J Environ Qual. 55:e70097.     Reference: November 19th, 2025
Gene Product: October 28th, 2014
Variation: July 10th, 2020
9 days agoga20ox5 gibberellin 20-oxidase5:
 
GRMZM2G049418
Zm00001d012212
Zm00001eb366090
Dohleman, FG et al. 2026. Short-stature maize systems reduce carbon intensity of grain production by an average of 13% compared to commercially relevant tall comparators. J Environ Qual. 55:e70097.     Reference: November 19th, 2025
Gene Product: October 28th, 2014
Variation: July 6th, 2017
9 days agonkd1 naked endosperm1:
 
GRMZM2G129261
Zm00001d002654
Zm00001eb073830
Du, YM et al. 2025. Shrunken2 (Sh2) and Brittle2 (Bt2) play a crucial role in the developmental processes of the aleurone layers in maize. Plant Physiol. :doi: 10.1093/plphys/kiaf464.     Reference: November 19th, 2025
Gene Product: May 31st, 2024
Variation: January 3rd, 2015
9 days agozp2 zein protein2:
 
AF546188.1_FG005
Zm00001d019155
Zm00001eb303160
Du, YM et al. 2025. Shrunken2 (Sh2) and Brittle2 (Bt2) play a crucial role in the developmental processes of the aleurone layers in maize. Plant Physiol. :doi: 10.1093/plphys/kiaf464.     Reference: November 19th, 2025
Gene Product: September 1st, 2003
9 days agoslac1 slow anion channel-associated1:
 
GRMZM2G106881
GRMZM2G106921
Zm00001d002603
Zm00001eb073420
Zm00001eb073430
Piyush Jain et al. 2025. Loss of conductance between mesophyll symplasm and intercellular air spaces explains nonstomatal control of transpiration. Proc Natl Acad Sci, USA. 122:e2504862122.     Reference: November 19th, 2025
Gene Product: February 1st, 2018
Variation: September 9th, 2021
9 days agogpat8 glycerol-3-phosphate acyltransferase8:
 
GRMZM2G065203
Zm00001d044136
Zm00001eb159140
Du, YM et al. 2025. Shrunken2 (Sh2) and Brittle2 (Bt2) play a crucial role in the developmental processes of the aleurone layers in maize. Plant Physiol. :doi: 10.1093/plphys/kiaf464.     Reference: November 19th, 2025
Gene Product: March 25th, 2019
9 days agogbss2 granule-bound starch synthase2:
 
Zm00001d027242
Zm00001eb000080
Du, YM et al. 2025. Shrunken2 (Sh2) and Brittle2 (Bt2) play a crucial role in the developmental processes of the aleurone layers in maize. Plant Physiol. :doi: 10.1093/plphys/kiaf464.     Reference: November 19th, 2025
Gene Product: June 4th, 2008
9 days agoZm00001d009150  :
 
GRMZM2G003022
Zm00001d009150
Zm00001eb340490
Du, YM et al. 2025. Shrunken2 (Sh2) and Brittle2 (Bt2) play a crucial role in the developmental processes of the aleurone layers in maize. Plant Physiol. :doi: 10.1093/plphys/kiaf464.     Reference: November 19th, 2025
Gene Product: June 24th, 2022
9 days agoigl1 indole-3-glycerol phosphate lyase1:
1.11
GRMZM2G046191
Zm00001d034460
Zm00001eb060880
Engelberth, J et al. 2025. Leaf Developmental Stages Strongly Modulate Indole Emissions in Response to Simulated Insect Herbivory Preprints.org.     Reference: November 19th, 2025
Gene Product: October 14th, 2011
Variation: July 18th, 2014
9 days agorps10 ribosomal protein S10:
 
GRMZM2G095511
Zm00001d033951
Zm00001eb056700
Liu, H et al. 2025. Conservation and variability of long-range interactions in structurally diverse maize genomes Nat Commun. 16:10105.     Reference: November 19th, 2025
Gene Product: February 13th, 2008
Variation: February 13th, 2008
9 days agosacd1 stearoyl-acyl-carrier-protein desaturase1:
3.05
GRMZM5G852502
Zm00001d042344
Zm00001eb143300
Du, YM et al. 2025. Shrunken2 (Sh2) and Brittle2 (Bt2) play a crucial role in the developmental processes of the aleurone layers in maize. Plant Physiol. :doi: 10.1093/plphys/kiaf464.     Reference: November 19th, 2025
Gene Product: October 10th, 2016
Variation: June 15th, 2016
9 days agofat2 fatty acyl-ACP thioesterase2:
9.02
GRMZM5G829544
Zm00001d045387
Zm00001eb377350
Du, YM et al. 2025. Shrunken2 (Sh2) and Brittle2 (Bt2) play a crucial role in the developmental processes of the aleurone layers in maize. Plant Physiol. :doi: 10.1093/plphys/kiaf464.   AT1G08510 (TAIR) Reference: November 19th, 2025
Gene Product: May 23rd, 2012
Variation: May 6th, 2022
10 days agoptr13 peptide transporter13:
 
GRMZM2G079889
Zm00001d028354
Zm00001eb009980
Md. Sohel Mia et al. 2025. In silico evolutionary origin, structural properties, molecular docking, following expression analysis of the nitrate transporters in maize to explore their roles in abiotic stress tolerance Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01669-0.     Reference: November 18th, 2025
Gene Product: October 16th, 2025
10 days agonrt8 nitrate transport8:
 
GRMZM5G813578
Zm00001d016468
Zm00001eb240850
Zm00001eb240860
Md. Sohel Mia et al. 2025. In silico evolutionary origin, structural properties, molecular docking, following expression analysis of the nitrate transporters in maize to explore their roles in abiotic stress tolerance Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01669-0.     Reference: November 18th, 2025
Gene Product: October 16th, 2025
10 days agopimt2 protein-L-isoaspartate methyltransferase2:
 
GRMZM2G100315
Zm00001d003275
Zm00001eb079410
Zhang, YM et al. 2025. Natural variation in the ZmPIMT1 promoter enhances seed aging tolerance by regulating PABP2 repair in maize. Plant Cell. :doi: 10.1093/plcell/koaf217.     Reference: November 18th, 2025
Gene Product: September 1st, 2003
Variation: March 31st, 2023
10 days agoptr7 peptide transporter7:
 
GRMZM2G012306
Zm00001d030158
Zm00001eb025400
Md. Sohel Mia et al. 2025. In silico evolutionary origin, structural properties, molecular docking, following expression analysis of the nitrate transporters in maize to explore their roles in abiotic stress tolerance Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01669-0.     Reference: November 18th, 2025
Gene Product: October 16th, 2025
10 days agoptr5 peptide transporter5:
 
GRMZM5G826416
Zm00001d030233
Zm00001eb025860
Md. Sohel Mia et al. 2025. In silico evolutionary origin, structural properties, molecular docking, following expression analysis of the nitrate transporters in maize to explore their roles in abiotic stress tolerance Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01669-0.     Reference: November 18th, 2025
Gene Product: October 16th, 2025
10 days agoptr4 peptide transporter4:
 
GRMZM2G101576
Zm00001d030234
Zm00001eb025870
Md. Sohel Mia et al. 2025. In silico evolutionary origin, structural properties, molecular docking, following expression analysis of the nitrate transporters in maize to explore their roles in abiotic stress tolerance Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01669-0.     Reference: November 18th, 2025
Gene Product: October 16th, 2025
10 days agonpf25 nitrate transporter/peptide transporter family25:
 
GRMZM2G085411
Zm00001d031213
Zm00001eb033080
Md. Sohel Mia et al. 2025. In silico evolutionary origin, structural properties, molecular docking, following expression analysis of the nitrate transporters in maize to explore their roles in abiotic stress tolerance Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01669-0.     Reference: November 18th, 2025
Gene Product: October 16th, 2025
10 days agonpf42 nitrate transporter/peptide transporter family42:
 
GRMZM2G085210
Zm00001d031413
Zm00001eb034670
Md. Sohel Mia et al. 2025. In silico evolutionary origin, structural properties, molecular docking, following expression analysis of the nitrate transporters in maize to explore their roles in abiotic stress tolerance Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01669-0.     Reference: November 18th, 2025
Gene Product: October 16th, 2025
10 days agoptr16 peptide transporter16:
 
GRMZM2G001764
Zm00001d032744
Zm00001eb046210
Md. Sohel Mia et al. 2025. In silico evolutionary origin, structural properties, molecular docking, following expression analysis of the nitrate transporters in maize to explore their roles in abiotic stress tolerance Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01669-0.     Reference: November 18th, 2025
Gene Product: October 16th, 2025
10 days agonpf24 nitrate transporter/peptide transporter family24:
 
GRMZM2G104542
Zm00001d033528
Zm00001eb053220
Md. Sohel Mia et al. 2025. In silico evolutionary origin, structural properties, molecular docking, following expression analysis of the nitrate transporters in maize to explore their roles in abiotic stress tolerance Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01669-0.     Reference: November 18th, 2025
Gene Product: October 16th, 2025
10 days agonpf45 nitrate transporter/peptide transporter family45:
 
GRMZM2G150468
Zm00001d001976
Zm00001eb067510
Md. Sohel Mia et al. 2025. In silico evolutionary origin, structural properties, molecular docking, following expression analysis of the nitrate transporters in maize to explore their roles in abiotic stress tolerance Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01669-0.     Reference: November 18th, 2025
Gene Product: October 16th, 2025
10 days agonpf26 nitrate transporter/peptide transporter family26:
 
GRMZM2G112039
Zm00001d003603
Zm00001eb082170
Md. Sohel Mia et al. 2025. In silico evolutionary origin, structural properties, molecular docking, following expression analysis of the nitrate transporters in maize to explore their roles in abiotic stress tolerance Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01669-0.     Reference: November 18th, 2025
Gene Product: October 16th, 2025
10 days agonpf31 nitrate transporter/peptide transporter family31:
 
GRMZM2G055545
Zm00001d041163
Zm00001eb133760
Md. Sohel Mia et al. 2025. In silico evolutionary origin, structural properties, molecular docking, following expression analysis of the nitrate transporters in maize to explore their roles in abiotic stress tolerance Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01669-0.     Reference: November 18th, 2025
Gene Product: October 16th, 2025
10 days agonpf37 nitrate transporter/peptide transporter family37:
 
GRMZM2G004653
Zm00001d042683
Zm00001eb146380
Md. Sohel Mia et al. 2025. In silico evolutionary origin, structural properties, molecular docking, following expression analysis of the nitrate transporters in maize to explore their roles in abiotic stress tolerance Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01669-0.     Reference: November 18th, 2025
Gene Product: October 16th, 2025
10 days agonpf48 nitrate transporter/peptide transporter family48:
 
GRMZM2G035790
Zm00001d043374
Zm00001eb152390
Md. Sohel Mia et al. 2025. In silico evolutionary origin, structural properties, molecular docking, following expression analysis of the nitrate transporters in maize to explore their roles in abiotic stress tolerance Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01669-0.     Reference: November 18th, 2025
Gene Product: October 16th, 2025
10 days agonpf28 nitrate transporter/peptide transporter family28:
 
GRMZM2G043926
Zm00001d043463
Zm00001eb153210
Md. Sohel Mia et al. 2025. In silico evolutionary origin, structural properties, molecular docking, following expression analysis of the nitrate transporters in maize to explore their roles in abiotic stress tolerance Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01669-0.     Reference: November 18th, 2025
Gene Product: October 16th, 2025
10 days agonpf46 nitrate transporter/peptide transporter family46:
 
AC184794.2_FG003
Zm00001d050456
Zm00001eb180070
Md. Sohel Mia et al. 2025. In silico evolutionary origin, structural properties, molecular docking, following expression analysis of the nitrate transporters in maize to explore their roles in abiotic stress tolerance Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01669-0.     Reference: November 18th, 2025
Gene Product: October 16th, 2025
10 days agoptr12 peptide transporter12:
 
GRMZM2G012242
Zm00001d051548
Zm00001eb188080
Md. Sohel Mia et al. 2025. In silico evolutionary origin, structural properties, molecular docking, following expression analysis of the nitrate transporters in maize to explore their roles in abiotic stress tolerance Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01669-0.     Reference: November 18th, 2025
Gene Product: October 16th, 2025
10 days agonpf41 nitrate transporter/peptide transporter family41:
 
GRMZM2G181491
Zm00001d052876
Zm00001eb199740
Md. Sohel Mia et al. 2025. In silico evolutionary origin, structural properties, molecular docking, following expression analysis of the nitrate transporters in maize to explore their roles in abiotic stress tolerance Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01669-0.     Reference: November 18th, 2025
Gene Product: October 16th, 2025
10 days agonpf33 nitrate transporter/peptide transporter family33:
 
GRMZM2G143998
Zm00001d012953
Zm00001eb211600
Md. Sohel Mia et al. 2025. In silico evolutionary origin, structural properties, molecular docking, following expression analysis of the nitrate transporters in maize to explore their roles in abiotic stress tolerance Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01669-0.     Reference: November 18th, 2025
Gene Product: October 16th, 2025
10 days agoptr10 peptide transporter10:
 
GRMZM2G375113
Zm00001d017714
Zm00001eb251550
Md. Sohel Mia et al. 2025. In silico evolutionary origin, structural properties, molecular docking, following expression analysis of the nitrate transporters in maize to explore their roles in abiotic stress tolerance Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01669-0.     Reference: November 18th, 2025
Gene Product: October 16th, 2025
10 days agonpf49 nitrate transporter/peptide transporter family49:
 
GRMZM2G322220
Zm00001d038185
Zm00001eb288010
Md. Sohel Mia et al. 2025. In silico evolutionary origin, structural properties, molecular docking, following expression analysis of the nitrate transporters in maize to explore their roles in abiotic stress tolerance Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01669-0.     Reference: November 18th, 2025
Gene Product: October 16th, 2025
10 days agonpf38 nitrate transporter/peptide transporter family38:
 
GRMZM2G077498
Zm00001d038333
Zm00001eb289280
Md. Sohel Mia et al. 2025. In silico evolutionary origin, structural properties, molecular docking, following expression analysis of the nitrate transporters in maize to explore their roles in abiotic stress tolerance Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01669-0.     Reference: November 18th, 2025
Gene Product: October 16th, 2025
10 days agonpf19 nitrate transporter/peptide transporter family19:
 
GRMZM5G817436
Zm00001d012138
Zm00001eb365540
Md. Sohel Mia et al. 2025. In silico evolutionary origin, structural properties, molecular docking, following expression analysis of the nitrate transporters in maize to explore their roles in abiotic stress tolerance Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01669-0.     Reference: November 18th, 2025
Gene Product: October 16th, 2025
10 days agonpf50 nitrate transporter/peptide transporter family50:
 
GRMZM2G361652
Zm00001d045667
Zm00001eb380020
Md. Sohel Mia et al. 2025. In silico evolutionary origin, structural properties, molecular docking, following expression analysis of the nitrate transporters in maize to explore their roles in abiotic stress tolerance Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01669-0.     Reference: November 18th, 2025
Gene Product: October 16th, 2025
10 days agoptr9 peptide transporter9:
 
AC208110.2_FG011
Zm00001d026221
Zm00001eb430150
Md. Sohel Mia et al. 2025. In silico evolutionary origin, structural properties, molecular docking, following expression analysis of the nitrate transporters in maize to explore their roles in abiotic stress tolerance Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01669-0.     Reference: November 18th, 2025
Gene Product: October 16th, 2025
10 days agonrt18 nitrate transport18:
 
GRMZM5G808737
Zm00001d019656
Zm00001eb306980
Md. Sohel Mia et al. 2025. In silico evolutionary origin, structural properties, molecular docking, following expression analysis of the nitrate transporters in maize to explore their roles in abiotic stress tolerance Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01669-0.     Reference: November 18th, 2025
Gene Product: October 16th, 2025
10 days agonpf47 nitrate transporter/peptide transporter family47:
 
GRMZM2G158807
Zm00001d043375
Zm00001eb152400
Md. Sohel Mia et al. 2025. In silico evolutionary origin, structural properties, molecular docking, following expression analysis of the nitrate transporters in maize to explore their roles in abiotic stress tolerance Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01669-0.     Reference: November 18th, 2025
Gene Product: October 16th, 2025
10 days agonpf27 nitrate transporter/peptide transporter family27:
 
GRMZM2G026459
Zm00001d049349
Zm00001eb170950
Md. Sohel Mia et al. 2025. In silico evolutionary origin, structural properties, molecular docking, following expression analysis of the nitrate transporters in maize to explore their roles in abiotic stress tolerance Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01669-0.     Reference: November 18th, 2025
Gene Product: October 16th, 2025
10 days agonpf30 nitrate transporter/peptide transporter family30:
 
GRMZM2G034389
Zm00001d004621
Zm00001eb090200
Md. Sohel Mia et al. 2025. In silico evolutionary origin, structural properties, molecular docking, following expression analysis of the nitrate transporters in maize to explore their roles in abiotic stress tolerance Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01669-0.     Reference: November 18th, 2025
Gene Product: October 16th, 2025
10 days agonpf15 nitrate transporter/peptide transporter family15:
 
GRMZM5G821252
Zm00001d046383
Zm00001eb385450
Md. Sohel Mia et al. 2025. In silico evolutionary origin, structural properties, molecular docking, following expression analysis of the nitrate transporters in maize to explore their roles in abiotic stress tolerance Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01669-0.     Reference: November 18th, 2025
Gene Product: October 16th, 2025
10 days agoptr15 peptide transporter15:
 
GRMZM5G865298
Zm00001d014060
Zm00001eb222030
Md. Sohel Mia et al. 2025. In silico evolutionary origin, structural properties, molecular docking, following expression analysis of the nitrate transporters in maize to explore their roles in abiotic stress tolerance Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01669-0.     Reference: November 18th, 2025
Gene Product: October 16th, 2025
10 days agonpf34 nitrate transporter/peptide transporter family34:
 
GRMZM2G055834
Zm00001d034674
Zm00001eb062900
Md. Sohel Mia et al. 2025. In silico evolutionary origin, structural properties, molecular docking, following expression analysis of the nitrate transporters in maize to explore their roles in abiotic stress tolerance Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01669-0.     Reference: November 18th, 2025
Gene Product: October 16th, 2025
10 days agonpf44 nitrate transporter/peptide transporter family44:
 
GRMZM2G378604
Zm00001d038334
Zm00001d038335
Zm00001eb289290
Md. Sohel Mia et al. 2025. In silico evolutionary origin, structural properties, molecular docking, following expression analysis of the nitrate transporters in maize to explore their roles in abiotic stress tolerance Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01669-0.     Reference: November 18th, 2025
Gene Product: October 16th, 2025
10 days agonrt11 nitrate transport11:
 
AC205726.4_FG003
GRMZM2G080209
Zm00001d053030
Zm00001d053031
Zm00001eb201040
Md. Sohel Mia et al. 2025. In silico evolutionary origin, structural properties, molecular docking, following expression analysis of the nitrate transporters in maize to explore their roles in abiotic stress tolerance Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01669-0.     Reference: November 18th, 2025
Gene Product: October 16th, 2025
10 days agonpf16 nitrate transporter/peptide transporter family16:
 
GRMZM2G161794
Zm00001d017842
Zm00001eb252740
Md. Sohel Mia et al. 2025. In silico evolutionary origin, structural properties, molecular docking, following expression analysis of the nitrate transporters in maize to explore their roles in abiotic stress tolerance Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01669-0.     Reference: November 18th, 2025
Gene Product: October 16th, 2025
10 days agonpf17 nitrate transporter/peptide transporter family17:
 
GRMZM2G161794
Zm00001d017842
Zm00001eb252750
Md. Sohel Mia et al. 2025. In silico evolutionary origin, structural properties, molecular docking, following expression analysis of the nitrate transporters in maize to explore their roles in abiotic stress tolerance Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01669-0.     Reference: November 18th, 2025
Gene Product: October 16th, 2025
10 days agonpf18 nitrate transporter/peptide transporter family18:
 
GRMZM2G419328
Zm00001d042473
Zm00001eb144350
Md. Sohel Mia et al. 2025. In silico evolutionary origin, structural properties, molecular docking, following expression analysis of the nitrate transporters in maize to explore their roles in abiotic stress tolerance Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01669-0.     Reference: November 18th, 2025
Gene Product: October 16th, 2025
10 days agonpf21 nitrate transporter/peptide transporter family21:
 
GRMZM2G475673
Zm00001d045909
Zm00001eb381860
Md. Sohel Mia et al. 2025. In silico evolutionary origin, structural properties, molecular docking, following expression analysis of the nitrate transporters in maize to explore their roles in abiotic stress tolerance Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01669-0.     Reference: November 18th, 2025
Gene Product: October 16th, 2025
10 days agonpf22 nitrate transporter/peptide transporter family22:
 
GRMZM2G533860
Zm00001d020199
Zm00001eb310680
Md. Sohel Mia et al. 2025. In silico evolutionary origin, structural properties, molecular docking, following expression analysis of the nitrate transporters in maize to explore their roles in abiotic stress tolerance Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01669-0.     Reference: November 18th, 2025
Gene Product: October 16th, 2025
10 days agonpf20 nitrate transporter/peptide transporter family20:
 
GRMZM2G115916
Zm00001d031123
Zm00001eb032250
Md. Sohel Mia et al. 2025. In silico evolutionary origin, structural properties, molecular docking, following expression analysis of the nitrate transporters in maize to explore their roles in abiotic stress tolerance Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01669-0.     Reference: November 18th, 2025
Gene Product: October 16th, 2025
10 days agonrt10 nitrate transport10:
 
GRMZM2G124396
Zm00001d025783
Zm00001eb425910
Md. Sohel Mia et al. 2025. In silico evolutionary origin, structural properties, molecular docking, following expression analysis of the nitrate transporters in maize to explore their roles in abiotic stress tolerance Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01669-0.     Reference: November 18th, 2025
Gene Product: October 16th, 2025
10 days agoprx43 peroxidase43:
 
GRMZM2G061230
Zm00001d049071
Zm00001eb168620
Arwa Abdulkreem AL-Huqail et al. 2025. Spectral Light Quality Regulates Salinity Stress Tolerance in Maize (Zea Mays L.) by Enhancing Photosynthetic Efficiency and Antioxidant Mechanisms J Plant Growth Reg. :doi: 10.1007/s00344-025-11914-1.     Reference: November 18th, 2025
Gene Product: January 20th, 2025
10 days agomam1 mRNA adenosine methylase1:
 
GRMZM2G116563
Zm00001d017566
Zm00001eb250310
Li, CL et al. 2025. Comprehensive identification, characterization, and expression analysis of m6A methylation transferase gene family in maize (Zea mays L.) Frontiers in Plant Science. 16:1673408.   AT4G10760 (TAIR) Reference: November 18th, 2025
Gene Product: November 24th, 2023
Variation: November 24th, 2023
10 days agomam2 mRNA adenosine methylase2:
 
Zm00001d027671
Zm00001eb003840
Li, CL et al. 2025. Comprehensive identification, characterization, and expression analysis of m6A methylation transferase gene family in maize (Zea mays L.) Frontiers in Plant Science. 16:1673408.   AT4G09980 (TAIR) Reference: November 18th, 2025
Gene Product: November 24th, 2023
10 days agomam3 mRNA adenosine methylase3:
 
GRMZM2G005844
Zm00001d028128
Zm00001eb007930
Li, CL et al. 2025. Comprehensive identification, characterization, and expression analysis of m6A methylation transferase gene family in maize (Zea mays L.) Frontiers in Plant Science. 16:1673408.     Reference: November 18th, 2025
Gene Product: November 24th, 2023
10 days agoeif5a elongation initiation factor5A:
2.08
GRMZM2G113696
Zm00001d006760
Zm00001eb108410
Zhang, YM et al. 2025. Natural variation in the ZmPIMT1 promoter enhances seed aging tolerance by regulating PABP2 repair in maize. Plant Cell. :doi: 10.1093/plcell/koaf217.     Reference: November 18th, 2025
Gene Product: September 1st, 2003
Variation: February 24th, 2014
10 days agonrt15 nitrate transport15:
 
AC208110.2_FG005
Zm00001d026220
Md. Sohel Mia et al. 2025. In silico evolutionary origin, structural properties, molecular docking, following expression analysis of the nitrate transporters in maize to explore their roles in abiotic stress tolerance Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01669-0.     Reference: November 18th, 2025
Gene Product: October 16th, 2025
10 days agonrt12 nitrate transport12:
 
Zm00001d024912
Md. Sohel Mia et al. 2025. In silico evolutionary origin, structural properties, molecular docking, following expression analysis of the nitrate transporters in maize to explore their roles in abiotic stress tolerance Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01669-0.     Reference: November 18th, 2025
Gene Product: October 16th, 2025
10 days agonrt13 nitrate transport13:
 
GRMZM2G453488
Zm00001d004394
Md. Sohel Mia et al. 2025. In silico evolutionary origin, structural properties, molecular docking, following expression analysis of the nitrate transporters in maize to explore their roles in abiotic stress tolerance Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01669-0.     Reference: November 18th, 2025
Gene Product: October 16th, 2025
10 days agonrt14 nitrate transport14:
 
GRMZM2G373933
Zm00001d046666
Md. Sohel Mia et al. 2025. In silico evolutionary origin, structural properties, molecular docking, following expression analysis of the nitrate transporters in maize to explore their roles in abiotic stress tolerance Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01669-0.     Reference: November 18th, 2025
Gene Product: October 16th, 2025
10 days agonrt16 nitrate transport16:
 
   Md. Sohel Mia et al. 2025. In silico evolutionary origin, structural properties, molecular docking, following expression analysis of the nitrate transporters in maize to explore their roles in abiotic stress tolerance Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01669-0.     Reference: November 18th, 2025
Gene Product: October 16th, 2025
10 days agonrt17 nitrate transport17:
 
   Md. Sohel Mia et al. 2025. In silico evolutionary origin, structural properties, molecular docking, following expression analysis of the nitrate transporters in maize to explore their roles in abiotic stress tolerance Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01669-0.     Reference: November 18th, 2025
Gene Product: October 16th, 2025
10 days agoptr11 peptide transporter11:
5.06
GRMZM2G076313
Zm00001d017713
Zm00001eb251540
Md. Sohel Mia et al. 2025. In silico evolutionary origin, structural properties, molecular docking, following expression analysis of the nitrate transporters in maize to explore their roles in abiotic stress tolerance Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01669-0.     Reference: November 18th, 2025
Gene Product: October 16th, 2025
Variation: September 1st, 2003
10 days agonrt9 nitrate transport9:
3.09
Zm00001d044504
Zm00001eb162310
Md. Sohel Mia et al. 2025. In silico evolutionary origin, structural properties, molecular docking, following expression analysis of the nitrate transporters in maize to explore their roles in abiotic stress tolerance Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01669-0.     Reference: November 18th, 2025
Gene Product: October 16th, 2025
10 days agoptr14 peptide transporter14:
1.08
GRMZM2G001676
Zm00001d032740
Zm00001eb046170
Md. Sohel Mia et al. 2025. In silico evolutionary origin, structural properties, molecular docking, following expression analysis of the nitrate transporters in maize to explore their roles in abiotic stress tolerance Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01669-0.     Reference: November 18th, 2025
Gene Product: October 16th, 2025
10 days agonpf39 nitrate transporter/peptide transporter family39:
8.07
GRMZM2G148800
Zm00001d012259
Zm00001eb366570
Md. Sohel Mia et al. 2025. In silico evolutionary origin, structural properties, molecular docking, following expression analysis of the nitrate transporters in maize to explore their roles in abiotic stress tolerance Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01669-0.     Reference: November 18th, 2025
Gene Product: October 16th, 2025
10 days agobif1 barren inflorescence1:
8.03 - 8.03
GRMZM2G130953
Zm00001d008749
Zm00001eb336930
Dongdong Dang et al. 2025. Genome-wide association studies on leaf midrib architecture in maize Frontiers in Plant Science. 16:1671460.     Reference: November 18th, 2025
Gene Product: October 16th, 2015
Variation: October 16th, 2015
10 days agocat2 catalase2:
1.01
GRMZM2G090568
Zm00001d027511
Zm00001eb002510
Arwa Abdulkreem AL-Huqail et al. 2025. Spectral Light Quality Regulates Salinity Stress Tolerance in Maize (Zea Mays L.) by Enhancing Photosynthetic Efficiency and Antioxidant Mechanisms J Plant Growth Reg. :doi: 10.1007/s00344-025-11914-1.     Reference: November 18th, 2025
Gene Product: September 1st, 2003
Variation: September 21st, 2012
10 days agomn2 miniature seed2:
7.02 - 7.06
GRMZM2G156794
Zm00001d019294
Zm00001eb304390
Md. Sohel Mia et al. 2025. In silico evolutionary origin, structural properties, molecular docking, following expression analysis of the nitrate transporters in maize to explore their roles in abiotic stress tolerance Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01669-0.     Reference: November 18th, 2025
Gene Product: October 16th, 2025
Variation: December 14th, 2023
10 days agosh1 shrunken1:
9.01
GRMZM2G089713
Zm00001d045042
Zm00001eb374090
Zhang, YM et al. 2025. Natural variation in the ZmPIMT1 promoter enhances seed aging tolerance by regulating PABP2 repair in maize. Plant Cell. :doi: 10.1093/plcell/koaf217.     Reference: November 18th, 2025
Gene Product: October 25th, 2006
Variation: June 9th, 2020
10 days agowx1 waxy1:
9.03
GRMZM2G024993
Zm00001d045462
Zm00001eb378140
Zhang, YM et al. 2025. Natural variation in the ZmPIMT1 promoter enhances seed aging tolerance by regulating PABP2 repair in maize. Plant Cell. :doi: 10.1093/plcell/koaf217.     Reference: November 18th, 2025
Gene Product: June 4th, 2008
Variation: September 9th, 2023
10 days agonpf13 nitrate transporter/peptide transporter family13:
2.08
GRMZM2G127134
Zm00001d007255
Zm00001eb112180
Md. Sohel Mia et al. 2025. In silico evolutionary origin, structural properties, molecular docking, following expression analysis of the nitrate transporters in maize to explore their roles in abiotic stress tolerance Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01669-0.     Reference: November 18th, 2025
Gene Product: October 16th, 2025
Variation: September 1st, 2003
10 days agoelfg2 elongation factor gamma2:
5.04
GRMZM2G029559
Zm00001d016358
Zm00001eb240090
Zhang, YM et al. 2025. Natural variation in the ZmPIMT1 promoter enhances seed aging tolerance by regulating PABP2 repair in maize. Plant Cell. :doi: 10.1093/plcell/koaf217.     Reference: November 18th, 2025
Gene Product: October 22nd, 2022
10 days agobzr4 BZR-transcription factor 4:
 
GRMZM2G446515
Zm00001d019756
Zm00001d019757
Zm00001eb307700
Zhang, YM et al. 2025. Natural variation in the ZmPIMT1 promoter enhances seed aging tolerance by regulating PABP2 repair in maize. Plant Cell. :doi: 10.1093/plcell/koaf217.   AT2G45880 (TAIR) Reference: November 18th, 2025
Gene Product: May 4th, 2022
Variation: April 14th, 2025
10 days agoprc3 proteasome component3:
1.01
GRMZM2G472167
Zm00001d027593
Zm00001eb003170
Md. Sohel Mia et al. 2025. In silico evolutionary origin, structural properties, molecular docking, following expression analysis of the nitrate transporters in maize to explore their roles in abiotic stress tolerance Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01669-0.     Reference: November 18th, 2025
Gene Product: September 1st, 2003
Variation: April 28th, 2011
10 days agonrt2 nitrate transport2:
4.11
GRMZM2G010280
Zm00001d054057
Zm00001eb209670
Md. Sohel Mia et al. 2025. In silico evolutionary origin, structural properties, molecular docking, following expression analysis of the nitrate transporters in maize to explore their roles in abiotic stress tolerance Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01669-0.     Reference: November 18th, 2025
Gene Product: October 16th, 2025
Variation: January 17th, 2023
10 days agoAY104214  :
2.03
GRMZM2G059365
Zm00001d003031
Zm00001eb077380
Zhang, YM et al. 2025. Natural variation in the ZmPIMT1 promoter enhances seed aging tolerance by regulating PABP2 repair in maize. Plant Cell. :doi: 10.1093/plcell/koaf217.     Reference: November 18th, 2025
Variation: September 25th, 2007
10 days agoptr8 peptide transporter8:
2.08
AC205608.4_FG004
Zm00001d006823
Zm00001eb108840
Md. Sohel Mia et al. 2025. In silico evolutionary origin, structural properties, molecular docking, following expression analysis of the nitrate transporters in maize to explore their roles in abiotic stress tolerance Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01669-0.     Reference: November 18th, 2025
Gene Product: October 16th, 2025
10 days agonpf40 nitrate transporter/peptide transporter family40:
3.06
GRMZM2G400602
Zm00001d042684
Zm00001eb146390
Md. Sohel Mia et al. 2025. In silico evolutionary origin, structural properties, molecular docking, following expression analysis of the nitrate transporters in maize to explore their roles in abiotic stress tolerance Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01669-0.     Reference: November 18th, 2025
Gene Product: October 16th, 2025
10 days agoyab6 C2C2-YABBY-transcription factor 6:
 
GRMZM2G074124
Zm00001d013662
Zm00001eb218500
Dongdong Dang et al. 2025. Genome-wide association studies on leaf midrib architecture in maize Frontiers in Plant Science. 16:1671460.     Reference: November 18th, 2025
Gene Product: October 16th, 2015
Variation: May 6th, 2020
10 days agonrt1 nitrate transport1:
 
GRMZM2G010251
Zm00001d054060
Zm00001eb209690
Md. Sohel Mia et al. 2025. In silico evolutionary origin, structural properties, molecular docking, following expression analysis of the nitrate transporters in maize to explore their roles in abiotic stress tolerance Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01669-0.     Reference: November 18th, 2025
Gene Product: October 16th, 2025
10 days agonrt3 nitrate transport3:
 
GRMZM2G163866
Zm00001d014976
Zm00001eb229750
Md. Sohel Mia et al. 2025. In silico evolutionary origin, structural properties, molecular docking, following expression analysis of the nitrate transporters in maize to explore their roles in abiotic stress tolerance Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01669-0.     Reference: November 18th, 2025
Gene Product: October 16th, 2025
10 days agophi002  :
 
GRMZM2G346455
Zm00001d032605
Zm00001eb044840
Zhang, YM et al. 2025. Natural variation in the ZmPIMT1 promoter enhances seed aging tolerance by regulating PABP2 repair in maize. Plant Cell. :doi: 10.1093/plcell/koaf217.     Reference: November 18th, 2025
Variation: April 22nd, 2016
10 days agonpf2 nitrate transporter/peptide transporter family2:
 
GRMZM2G161459
Zm00001d029932
Zm00001eb023600
Md. Sohel Mia et al. 2025. In silico evolutionary origin, structural properties, molecular docking, following expression analysis of the nitrate transporters in maize to explore their roles in abiotic stress tolerance Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01669-0.   AT1G12110 (TAIR) Reference: November 18th, 2025
Gene Product: October 16th, 2025
Variation: September 11th, 2017
10 days agonpf3 nitrate transporter/peptide transporter family3:
 
GRMZM2G112154
Zm00001d029933
Zm00001eb023610
Md. Sohel Mia et al. 2025. In silico evolutionary origin, structural properties, molecular docking, following expression analysis of the nitrate transporters in maize to explore their roles in abiotic stress tolerance Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01669-0.     Reference: November 18th, 2025
Gene Product: October 16th, 2025
10 days agonpf4 nitrate transporter/peptide transporter family4:
 
GRMZM2G161483
Zm00001d027285
Zm00001eb000390
Md. Sohel Mia et al. 2025. In silico evolutionary origin, structural properties, molecular docking, following expression analysis of the nitrate transporters in maize to explore their roles in abiotic stress tolerance Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01669-0.     Reference: November 18th, 2025
Gene Product: October 16th, 2025
10 days agonpf6 nitrate transporter/peptide transporter family6:
 
GRMZM2G137421
Zm00001d036941
Zm00001d036942
Zm00001eb277160
Md. Sohel Mia et al. 2025. In silico evolutionary origin, structural properties, molecular docking, following expression analysis of the nitrate transporters in maize to explore their roles in abiotic stress tolerance Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01669-0.     Reference: November 18th, 2025
Gene Product: October 16th, 2025
10 days agonpf7 nitrate transporter/peptide transporter family7:
 
GRMZM2G064091
Zm00001d044529
Zm00001eb162570
Md. Sohel Mia et al. 2025. In silico evolutionary origin, structural properties, molecular docking, following expression analysis of the nitrate transporters in maize to explore their roles in abiotic stress tolerance Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01669-0.     Reference: November 18th, 2025
Gene Product: October 16th, 2025
10 days agonpf8 nitrate transporter/peptide transporter family8:
 
GRMZM2G476069
Zm00001d009399
Zm00001eb342280
Md. Sohel Mia et al. 2025. In silico evolutionary origin, structural properties, molecular docking, following expression analysis of the nitrate transporters in maize to explore their roles in abiotic stress tolerance Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01669-0.     Reference: November 18th, 2025
Gene Product: October 16th, 2025
10 days agonpf9 nitrate transporter/peptide transporter family9:
 
GRMZM2G176253
Zm00001d016982
Zm00001eb245250
Md. Sohel Mia et al. 2025. In silico evolutionary origin, structural properties, molecular docking, following expression analysis of the nitrate transporters in maize to explore their roles in abiotic stress tolerance Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01669-0.     Reference: November 18th, 2025
Gene Product: October 16th, 2025
10 days agonpf10 nitrate transporter/peptide transporter family10:
 
GRMZM2G044851
Zm00001d017666
Zm00001eb251130
Md. Sohel Mia et al. 2025. In silico evolutionary origin, structural properties, molecular docking, following expression analysis of the nitrate transporters in maize to explore their roles in abiotic stress tolerance Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01669-0.     Reference: November 18th, 2025
Gene Product: October 16th, 2025
10 days agonpf11 nitrate transporter/peptide transporter family11:
 
GRMZM2G061303
Zm00001d051637
Zm00001eb189000
Md. Sohel Mia et al. 2025. In silico evolutionary origin, structural properties, molecular docking, following expression analysis of the nitrate transporters in maize to explore their roles in abiotic stress tolerance Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01669-0.     Reference: November 18th, 2025
Gene Product: October 16th, 2025
10 days agonrt5 nitrate transport5:
 
GRMZM2G455124
Zm00001d011679
Zm00001eb361110
Md. Sohel Mia et al. 2025. In silico evolutionary origin, structural properties, molecular docking, following expression analysis of the nitrate transporters in maize to explore their roles in abiotic stress tolerance Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01669-0.     Reference: November 18th, 2025
Gene Product: October 16th, 2025
10 days agordr1 RNA-dependent RNA polymerase1:
 
GRMZM2G481730
Zm00001d017962
Zm00001eb253860
Dongdong Dang et al. 2025. Genome-wide association studies on leaf midrib architecture in maize Frontiers in Plant Science. 16:1671460.     Reference: November 18th, 2025
Gene Product: August 8th, 2006
10 days agocl17982_1a  :
5.06
GRMZM5G832989
Zm00001d017961
Zm00001eb253850
Dongdong Dang et al. 2025. Genome-wide association studies on leaf midrib architecture in maize Frontiers in Plant Science. 16:1671460.     Reference: November 18th, 2025
Variation: September 25th, 2007
10 days agoaldh16 aldehyde dehydrogenase16:
 
GRMZM2G128114
Zm00001d015404
Zm00001eb233300
Zhang, YM et al. 2025. Natural variation in the ZmPIMT1 promoter enhances seed aging tolerance by regulating PABP2 repair in maize. Plant Cell. :doi: 10.1093/plcell/koaf217.     Reference: November 18th, 2025
Gene Product: January 5th, 2024
10 days agoptr2 peptide transporter 2:
 
GRMZM2G026523
Zm00001d038186
Zm00001eb288020
Md. Sohel Mia et al. 2025. In silico evolutionary origin, structural properties, molecular docking, following expression analysis of the nitrate transporters in maize to explore their roles in abiotic stress tolerance Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01669-0.     Reference: November 18th, 2025
Gene Product: October 16th, 2025
10 days agosod11 superoxide dismutase11:
 
GRMZM2G042080
Zm00001d045538
Zm00001eb378880
Arwa Abdulkreem AL-Huqail et al. 2025. Spectral Light Quality Regulates Salinity Stress Tolerance in Maize (Zea Mays L.) by Enhancing Photosynthetic Efficiency and Antioxidant Mechanisms J Plant Growth Reg. :doi: 10.1007/s00344-025-11914-1.     Reference: November 18th, 2025
Gene Product: October 4th, 2021
10 days agopab2 polyA binding protein2:
 
GRMZM2G102829
Zm00001d005276
Zm00001eb095540
Zhang, YM et al. 2025. Natural variation in the ZmPIMT1 promoter enhances seed aging tolerance by regulating PABP2 repair in maize. Plant Cell. :doi: 10.1093/plcell/koaf217.     Reference: November 18th, 2025
Gene Product: August 4th, 2020
10 days agonrt6 nitrate transport6:
 
GRMZM2G141491
Zm00001d000071
Zm00001eb025900
Md. Sohel Mia et al. 2025. In silico evolutionary origin, structural properties, molecular docking, following expression analysis of the nitrate transporters in maize to explore their roles in abiotic stress tolerance Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01669-0.     Reference: November 18th, 2025
Gene Product: October 16th, 2025
10 days agoapx6 ascorbate peroxidase6:
 
GRMZM2G004211
Zm00001d025047
Zm00001eb419790
Arwa Abdulkreem AL-Huqail et al. 2025. Spectral Light Quality Regulates Salinity Stress Tolerance in Maize (Zea Mays L.) by Enhancing Photosynthetic Efficiency and Antioxidant Mechanisms J Plant Growth Reg. :doi: 10.1007/s00344-025-11914-1.     Reference: November 18th, 2025
Gene Product: January 20th, 2025
10 days agonpf35 nitrate transporter/peptide transporter family35:
 
GRMZM2G057611
Zm00001d044768
Zm00001eb371840
Md. Sohel Mia et al. 2025. In silico evolutionary origin, structural properties, molecular docking, following expression analysis of the nitrate transporters in maize to explore their roles in abiotic stress tolerance Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01669-0.     Reference: November 18th, 2025
Gene Product: October 16th, 2025
10 days agonrt7 nitrate transport7:
 
GRMZM5G811593
Zm00001d030235
Zm00001eb025880
Md. Sohel Mia et al. 2025. In silico evolutionary origin, structural properties, molecular docking, following expression analysis of the nitrate transporters in maize to explore their roles in abiotic stress tolerance Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01669-0.     Reference: November 18th, 2025
Gene Product: October 16th, 2025
10 days agosod12 superoxide dismutase12:
 
GRMZM5G864424
Zm00001d036135
Zm00001eb270380
Arwa Abdulkreem AL-Huqail et al. 2025. Spectral Light Quality Regulates Salinity Stress Tolerance in Maize (Zea Mays L.) by Enhancing Photosynthetic Efficiency and Antioxidant Mechanisms J Plant Growth Reg. :doi: 10.1007/s00344-025-11914-1.     Reference: November 18th, 2025
Gene Product: October 4th, 2021
10 days agoelfb1 elongation factor 1-beta1:
 
GRMZM2G439201
Zm00001d022513
Zm00001eb329960
Zhang, YM et al. 2025. Natural variation in the ZmPIMT1 promoter enhances seed aging tolerance by regulating PABP2 repair in maize. Plant Cell. :doi: 10.1093/plcell/koaf217.     Reference: November 18th, 2025
Gene Product: September 2nd, 2021
10 days agosaur48 small auxin up RNA48:
 
GRMZM2G332390
Zm00001d013616
Zm00001eb218030
Dongdong Dang et al. 2025. Genome-wide association studies on leaf midrib architecture in maize Frontiers in Plant Science. 16:1671460.     Reference: November 18th, 2025
Gene Product: November 26th, 2021
10 days agonpf12 nitrate transporter/peptide transporter family12:
 
GRMZM2G138731
Zm00001d003208
Zm00001eb078860
Md. Sohel Mia et al. 2025. In silico evolutionary origin, structural properties, molecular docking, following expression analysis of the nitrate transporters in maize to explore their roles in abiotic stress tolerance Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01669-0.     Reference: November 18th, 2025
Gene Product: October 16th, 2025
10 days agonpf14 nitrate transporter/peptide transporter family14:
 
GRMZM5G827496
Zm00001d038181
Zm00001eb287980
Md. Sohel Mia et al. 2025. In silico evolutionary origin, structural properties, molecular docking, following expression analysis of the nitrate transporters in maize to explore their roles in abiotic stress tolerance Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01669-0.     Reference: November 18th, 2025
Gene Product: October 16th, 2025
10 days agonpf29 nitrate transporter/peptide transporter family29:
 
GRMZM2G018353
Zm00001d025748
Zm00001eb425550
Md. Sohel Mia et al. 2025. In silico evolutionary origin, structural properties, molecular docking, following expression analysis of the nitrate transporters in maize to explore their roles in abiotic stress tolerance Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01669-0.     Reference: November 18th, 2025
Gene Product: October 16th, 2025
10 days agonpf32 nitrate transporter/peptide transporter family32:
 
GRMZM2G083176
Zm00001d040201
Zm00001eb126980
Md. Sohel Mia et al. 2025. In silico evolutionary origin, structural properties, molecular docking, following expression analysis of the nitrate transporters in maize to explore their roles in abiotic stress tolerance Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01669-0.     Reference: November 18th, 2025
Gene Product: October 16th, 2025
10 days agonpf43 nitrate transporter/peptide transporter family43:
8.03
GRMZM2G316889
Zm00001d010195
Zm00001eb348700
Md. Sohel Mia et al. 2025. In silico evolutionary origin, structural properties, molecular docking, following expression analysis of the nitrate transporters in maize to explore their roles in abiotic stress tolerance Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01669-0.     Reference: November 18th, 2025
Gene Product: October 16th, 2025
10 days agonpf36 nitrate transporter/peptide transporter family36:
10.07
GRMZM2G011590
Zm00001d026695
Zm00001eb434430
Md. Sohel Mia et al. 2025. In silico evolutionary origin, structural properties, molecular docking, following expression analysis of the nitrate transporters in maize to explore their roles in abiotic stress tolerance Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01669-0.     Reference: November 18th, 2025
Gene Product: October 16th, 2025
10 days agoAY103944  :
2.04
GRMZM2G352129
Zm00001d003106
Zm00001eb078040
Zhang, YM et al. 2025. Natural variation in the ZmPIMT1 promoter enhances seed aging tolerance by regulating PABP2 repair in maize. Plant Cell. :doi: 10.1093/plcell/koaf217.     Reference: November 18th, 2025
Variation: September 25th, 2007
10 days agoptr3 peptide transporter3:
8.02
GRMZM2G020484
Zm00001d008604
Zm00001eb335710
Md. Sohel Mia et al. 2025. In silico evolutionary origin, structural properties, molecular docking, following expression analysis of the nitrate transporters in maize to explore their roles in abiotic stress tolerance Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01669-0.     Reference: November 18th, 2025
Gene Product: October 16th, 2025
10 days agonpf23 nitrate transporter/peptide transporter family23:
5.01
GRMZM2G122251
Zm00001d013529
Zm00001eb217190
Md. Sohel Mia et al. 2025. In silico evolutionary origin, structural properties, molecular docking, following expression analysis of the nitrate transporters in maize to explore their roles in abiotic stress tolerance Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01669-0.     Reference: November 18th, 2025
Gene Product: October 16th, 2025
10 days agoptr6 peptide transporter6:
1.05
GRMZM2G015767
Zm00001d000072
Zm00001eb025890
Md. Sohel Mia et al. 2025. In silico evolutionary origin, structural properties, molecular docking, following expression analysis of the nitrate transporters in maize to explore their roles in abiotic stress tolerance Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01669-0.     Reference: November 18th, 2025
Gene Product: October 16th, 2025
10 days agonpf1 nitrate transporter/peptide transporter family1:
10.03
GRMZM2G086496
Zm00001d024587
Zm00001eb416090
Md. Sohel Mia et al. 2025. In silico evolutionary origin, structural properties, molecular docking, following expression analysis of the nitrate transporters in maize to explore their roles in abiotic stress tolerance Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01669-0.   AT1G12110 (TAIR) Reference: November 18th, 2025
Gene Product: October 16th, 2025
Variation: September 11th, 2017
10 days agotct1 translationally controlled tumor1:
5.03
GRMZM2G075624
Zm00001d014954
Zm00001eb229550
Zhang, YM et al. 2025. Natural variation in the ZmPIMT1 promoter enhances seed aging tolerance by regulating PABP2 repair in maize. Plant Cell. :doi: 10.1093/plcell/koaf217.     Reference: November 18th, 2025
Gene Product: September 1st, 2003
Variation: June 25th, 2015
11 days agoppr130 pentatricopeptide repeat protein130:
 
GRMZM2G021567
Zm00001d006822
Zm00001eb108830
M Regina Scarpin et al. 2022. An updated nomenclature for plant ribosomal protein genes. Plant Cell. :doi: 10.1093/plcell/koac333.     Reference: November 17th, 2025
Gene Product: December 27th, 2016
11 days agoppr193 pentatricopeptide repeat protein193:
 
AC233851.1_FG014
Zm00001d043225
Zm00001eb151070
M Regina Scarpin et al. 2022. An updated nomenclature for plant ribosomal protein genes. Plant Cell. :doi: 10.1093/plcell/koac333.     Reference: November 17th, 2025
Gene Product: December 27th, 2016
11 days agoppr469 pentatricopeptide repeat protein469:
 
GRMZM2G350319
Zm00001d045492
Zm00001eb378440
M Regina Scarpin et al. 2022. An updated nomenclature for plant ribosomal protein genes. Plant Cell. :doi: 10.1093/plcell/koac333.     Reference: November 17th, 2025
Gene Product: December 27th, 2016
11 days agoppr456 pentatricopeptide repeat protein456:
 
GRMZM2G139141
Zm00001d012606
Zm00001eb369740
M Regina Scarpin et al. 2022. An updated nomenclature for plant ribosomal protein genes. Plant Cell. :doi: 10.1093/plcell/koac333.     Reference: November 17th, 2025
Gene Product: December 27th, 2016
11 days agoLOC541869  :
 
GRMZM6G870163
Zm00001d013309
Zm00001eb215210
M Regina Scarpin et al. 2022. An updated nomenclature for plant ribosomal protein genes. Plant Cell. :doi: 10.1093/plcell/koac333.     Reference: November 17th, 2025
Gene Product: February 13th, 2008
11 days agoLOC103629793  :
 
GRMZM2G470245
Zm00001d036913
Zm00001eb276960
M Regina Scarpin et al. 2022. An updated nomenclature for plant ribosomal protein genes. Plant Cell. :doi: 10.1093/plcell/koac333.     Reference: November 17th, 2025
Gene Product: August 22nd, 2024
11 days agohcf60 high chlorophyll fluorescence60:
 
GRMZM2G055165
Zm00001d012353
Zm00001eb367450
M Regina Scarpin et al. 2022. An updated nomenclature for plant ribosomal protein genes. Plant Cell. :doi: 10.1093/plcell/koac333.   At1g79850 (TAIR) Reference: November 17th, 2025
Variation: August 23rd, 2023
11 days agopx64 peroxidase64:
 
GRMZM6G514393
Zm00001d009138
Zm00001eb340430
Mu, XH et al. 2025. Hunting for the genetic loci underlying root lodging resistance by BSR-seq and QTL mapping in maize BMC Plant Biology. 25:1584.     Reference: November 17th, 2025
Gene Product: January 20th, 2025
11 days agoppr182 pentatricopeptide repeat protein182:
3.05
GRMZM2G118362
Zm00001d042508
Zm00001eb144640
M Regina Scarpin et al. 2022. An updated nomenclature for plant ribosomal protein genes. Plant Cell. :doi: 10.1093/plcell/koac333.     Reference: November 17th, 2025
Gene Product: December 27th, 2016
11 days agouaz251b(rpS11)  :
2.02
GRMZM2G044800
Zm00001d002339
Zm00001eb070950
M Regina Scarpin et al. 2022. An updated nomenclature for plant ribosomal protein genes. Plant Cell. :doi: 10.1093/plcell/koac333.     Reference: November 17th, 2025
Gene Product: September 1st, 2003
11 days agophm4880  :
2.05
GRMZM2G325749
GRMZM2G325762
Zm00001d004410
Zm00001eb088470
M Regina Scarpin et al. 2022. An updated nomenclature for plant ribosomal protein genes. Plant Cell. :doi: 10.1093/plcell/koac333.     Reference: November 17th, 2025
Variation: November 3rd, 2017
11 days agorpl14c ribosomal large subunit protein 14c:
3.04
GRMZM2G098957
Zm00001d041322
Zm00001eb134780
M Regina Scarpin et al. 2022. An updated nomenclature for plant ribosomal protein genes. Plant Cell. :doi: 10.1093/plcell/koac333.     Reference: November 17th, 2025
Gene Product: August 22nd, 2024
11 days agorpl13 60S ribosomal protein L13:
6.05
GRMZM2G409407
Zm00001d037620
Zm00001eb282960
M Regina Scarpin et al. 2022. An updated nomenclature for plant ribosomal protein genes. Plant Cell. :doi: 10.1093/plcell/koac333.     Reference: November 17th, 2025
Gene Product: January 13th, 2020
11 days agomagi53573  :
1.07
GRMZM2G144387
Zm00001d031956
Zm00001eb039550
M Regina Scarpin et al. 2022. An updated nomenclature for plant ribosomal protein genes. Plant Cell. :doi: 10.1093/plcell/koac333.     Reference: November 17th, 2025
Variation: April 7th, 2021
11 days agorps21b 40S ribosomal protein S21b:
 
GRMZM2G134109
Zm00001d029124
Zm00001eb016600
M Regina Scarpin et al. 2022. An updated nomenclature for plant ribosomal protein genes. Plant Cell. :doi: 10.1093/plcell/koac333.     Reference: November 17th, 2025
Gene Product: September 1st, 2003
Variation: July 14th, 2008
11 days agorpl19 ribosomal protein L19:
5.06
GRMZM2G171444
Zm00001d017449
Zm00001eb249160
M Regina Scarpin et al. 2022. An updated nomenclature for plant ribosomal protein genes. Plant Cell. :doi: 10.1093/plcell/koac333.     Reference: November 17th, 2025
Gene Product: September 1st, 2003
Variation: September 1st, 2003
11 days agomch2 maize CRY1 homolog2:
 
GRMZM2G069762
Zm00001d000120
Zm00001eb181430
M Regina Scarpin et al. 2022. An updated nomenclature for plant ribosomal protein genes. Plant Cell. :doi: 10.1093/plcell/koac333.     Reference: November 17th, 2025
Gene Product: September 1st, 2003
Variation: October 14th, 2010
11 days agorpl15a 60S ribosomal protein L15:
2.08
GRMZM2G034794
Zm00001d006388
Zm00001eb105120
M Regina Scarpin et al. 2022. An updated nomenclature for plant ribosomal protein genes. Plant Cell. :doi: 10.1093/plcell/koac333.     Reference: November 17th, 2025
Gene Product: September 1st, 2003
Variation: June 3rd, 2013
11 days agorps27c ribosomal protein S27c:
5.01
GRMZM2G132121
Zm00001d013282
Zm00001eb214990
M Regina Scarpin et al. 2022. An updated nomenclature for plant ribosomal protein genes. Plant Cell. :doi: 10.1093/plcell/koac333.     Reference: November 17th, 2025
Variation: March 14th, 2015
11 days agorpl29 ribosomal protein L29:
4.08
GRMZM2G028216
Zm00001d052216
Zm00001eb194130
M Regina Scarpin et al. 2022. An updated nomenclature for plant ribosomal protein genes. Plant Cell. :doi: 10.1093/plcell/koac333.     Reference: November 17th, 2025
Gene Product: September 1st, 2003
11 days agoemb27 embryo specific27:
1.09
GRMZM2G153476
Zm00001d033665
Zm00001eb054380
M Regina Scarpin et al. 2022. An updated nomenclature for plant ribosomal protein genes. Plant Cell. :doi: 10.1093/plcell/koac333.     Reference: November 17th, 2025
Variation: January 10th, 2024
11 days agoumc1313  :
4.09
GRMZM2G054149
Zm00001d053377
Zm00001eb204010
M Regina Scarpin et al. 2022. An updated nomenclature for plant ribosomal protein genes. Plant Cell. :doi: 10.1093/plcell/koac333.     Reference: November 17th, 2025
Variation: September 1st, 2003
11 days agorps8 ribosomal protein S8 homolog:
4.09
GRMZM2G336875
Zm00001d053630
Zm00001eb205630
M Regina Scarpin et al. 2022. An updated nomenclature for plant ribosomal protein genes. Plant Cell. :doi: 10.1093/plcell/koac333.     Reference: November 17th, 2025
Gene Product: September 1st, 2003
Variation: April 17th, 2015
11 days agorps22a ribosomal protein S22 homolog:
9.06
GRMZM2G092296
Zm00001d045448
Zm00001eb378000
M Regina Scarpin et al. 2022. An updated nomenclature for plant ribosomal protein genes. Plant Cell. :doi: 10.1093/plcell/koac333.     Reference: November 17th, 2025
Gene Product: September 1st, 2003
Variation: July 3rd, 2013
11 days agoarpp3 acidic ribosomal protein P3:
5.03
GRMZM2G077208
Zm00001d014679
Zm00001eb226990
M Regina Scarpin et al. 2022. An updated nomenclature for plant ribosomal protein genes. Plant Cell. :doi: 10.1093/plcell/koac333.     Reference: November 17th, 2025
Gene Product: September 1st, 2003
Variation: April 23rd, 2012
11 days agobnl3.04  :
10.00
GRMZM2G127393
GRMZM2G427014
Zm00001d023292
Zm00001d023293
Zm00001eb405570
M Regina Scarpin et al. 2022. An updated nomenclature for plant ribosomal protein genes. Plant Cell. :doi: 10.1093/plcell/koac333.     Reference: November 17th, 2025
Variation: September 1st, 2003
11 days agorpl40 50S ribosomal protein L40:
8.01
GRMZM2G157007
Zm00001d008228
Zm00001eb332630
M Regina Scarpin et al. 2022. An updated nomenclature for plant ribosomal protein genes. Plant Cell. :doi: 10.1093/plcell/koac333.     Reference: November 17th, 2025
Variation: April 12th, 2017
11 days agoumc62  :
6.07
GRMZM2G022453
Zm00001d039020
Zm00001eb295940
M Regina Scarpin et al. 2022. An updated nomenclature for plant ribosomal protein genes. Plant Cell. :doi: 10.1093/plcell/koac333.     Reference: November 17th, 2025
Variation: August 29th, 2018
11 days agocsu36b(rpL19)  :
5.04
GRMZM5G887054
Zm00001d015300
Zm00001eb232520
M Regina Scarpin et al. 2022. An updated nomenclature for plant ribosomal protein genes. Plant Cell. :doi: 10.1093/plcell/koac333.     Reference: November 17th, 2025
Gene Product: September 1st, 2003
11 days agorpl14 (cp) 50S ribosomal protein L14 gene:
 
   M Regina Scarpin et al. 2022. An updated nomenclature for plant ribosomal protein genes. Plant Cell. :doi: 10.1093/plcell/koac333.     Reference: November 17th, 2025
Gene Product: September 1st, 2003
11 days agorps8 (cp) 30S ribosomal protein S8 gene:
 
GRMZM5G845244
M Regina Scarpin et al. 2022. An updated nomenclature for plant ribosomal protein genes. Plant Cell. :doi: 10.1093/plcell/koac333.     Reference: November 17th, 2025
Gene Product: September 1st, 2003
11 days agorps4 (cp) 30S ribosomal protein S4 gene:
 
   M Regina Scarpin et al. 2022. An updated nomenclature for plant ribosomal protein genes. Plant Cell. :doi: 10.1093/plcell/koac333.     Reference: November 17th, 2025
Gene Product: September 1st, 2003
11 days agorps2 (cp) 30S ribosomal protein S2 gene:
 
   M Regina Scarpin et al. 2022. An updated nomenclature for plant ribosomal protein genes. Plant Cell. :doi: 10.1093/plcell/koac333.     Reference: November 17th, 2025
Gene Product: September 1st, 2003
11 days agoLOC103642224  :
 
GRMZM2G038013
Zm00001d026697
Zm00001eb434460
M Regina Scarpin et al. 2022. An updated nomenclature for plant ribosomal protein genes. Plant Cell. :doi: 10.1093/plcell/koac333.   At1g79850 (TAIR) Reference: November 17th, 2025
Gene Product: September 1st, 2003
11 days agorpl5a 60S ribosomal protein L5-1 homolog a:
3.05
GRMZM5G815894
Zm00001d042525
Zm00001eb144760
M Regina Scarpin et al. 2022. An updated nomenclature for plant ribosomal protein genes. Plant Cell. :doi: 10.1093/plcell/koac333.     Reference: November 17th, 2025
Gene Product: December 1st, 2019
Variation: April 9th, 2011
11 days agonzp1 non-zein protein1:
8.05
GRMZM2G024838
Zm00001d010994
Zm00001eb355270
M Regina Scarpin et al. 2022. An updated nomenclature for plant ribosomal protein genes. Plant Cell. :doi: 10.1093/plcell/koac333.     Reference: November 17th, 2025
Gene Product: October 13th, 2021
Variation: October 13th, 2021
11 days agoemb18 embryo specific18:
9.03
GRMZM2G136559
Zm00001d046555
Zm00001eb386680
M Regina Scarpin et al. 2022. An updated nomenclature for plant ribosomal protein genes. Plant Cell. :doi: 10.1093/plcell/koac333.     Reference: November 17th, 2025
Gene Product: March 9th, 2013
Variation: August 22nd, 2013
11 days agoqm1 QM1 homolog1:
5.03
GRMZM2G087233
Zm00001d013777
Zm00001eb219490
M Regina Scarpin et al. 2022. An updated nomenclature for plant ribosomal protein genes. Plant Cell. :doi: 10.1093/plcell/koac333.     Reference: November 17th, 2025
Gene Product: October 2nd, 2006
Variation: September 1st, 2003
11 days agorpl17a ribosomal protein L17a:
8.03
GRMZM2G119169
Zm00001d010009
Zm00001eb347340
M Regina Scarpin et al. 2022. An updated nomenclature for plant ribosomal protein genes. Plant Cell. :doi: 10.1093/plcell/koac333.     Reference: November 17th, 2025
Gene Product: September 1st, 2003
Variation: June 7th, 2013
11 days agorpl30 ribosomal protein L30:
8.01
GRMZM2G027728
Zm00001d008245
Zm00001eb332790
M Regina Scarpin et al. 2022. An updated nomenclature for plant ribosomal protein genes. Plant Cell. :doi: 10.1093/plcell/koac333.     Reference: November 17th, 2025
Gene Product: September 1st, 2003
Variation: September 1st, 2003
11 days agorps5 ribosomal protein S5:
8.01
GRMZM2G156673
Zm00001d008387
Zm00001eb334050
M Regina Scarpin et al. 2022. An updated nomenclature for plant ribosomal protein genes. Plant Cell. :doi: 10.1093/plcell/koac333.     Reference: November 17th, 2025
Gene Product: September 1st, 2003
Variation: August 25th, 2015
11 days agoarpp2a acidic ribosomal protein P2a:
8.03
GRMZM2G119809
Zm00001d009653
Zm00001eb344440
M Regina Scarpin et al. 2022. An updated nomenclature for plant ribosomal protein genes. Plant Cell. :doi: 10.1093/plcell/koac333.     Reference: November 17th, 2025
Gene Product: September 1st, 2003
Variation: January 28th, 2009
11 days agorps12 ribosomal proteinS12 (homolog):
7.02
GRMZM2G063340
Zm00001d019219
Zm00001eb303720
M Regina Scarpin et al. 2022. An updated nomenclature for plant ribosomal protein genes. Plant Cell. :doi: 10.1093/plcell/koac333.     Reference: November 17th, 2025
Gene Product: September 1st, 2003
Variation: July 14th, 2008
11 days agorpl35 60S ribosomal protein L35:
5.04
GRMZM2G043279
Zm00001d016549
Zm00001eb241550
M Regina Scarpin et al. 2022. An updated nomenclature for plant ribosomal protein genes. Plant Cell. :doi: 10.1093/plcell/koac333.     Reference: November 17th, 2025
Gene Product: August 22nd, 2019
11 days agoAY109733  :
5.01
GRMZM2G130544
Zm00001d013086
Zm00001eb213080
M Regina Scarpin et al. 2022. An updated nomenclature for plant ribosomal protein genes. Plant Cell. :doi: 10.1093/plcell/koac333.     Reference: November 17th, 2025
Variation: July 29th, 2004
11 days agopco098394  :
1.01
GRMZM2G149257
Zm00001d027618
Zm00001eb003420
M Regina Scarpin et al. 2022. An updated nomenclature for plant ribosomal protein genes. Plant Cell. :doi: 10.1093/plcell/koac333.     Reference: November 17th, 2025
Variation: September 25th, 2007
11 days agopco128954a  :
2.06
GRMZM2G139900
Zm00001d005200
Zm00001eb095080
M Regina Scarpin et al. 2022. An updated nomenclature for plant ribosomal protein genes. Plant Cell. :doi: 10.1093/plcell/koac333.     Reference: November 17th, 2025
Variation: September 25th, 2007
11 days agoarpp2a-3 acidic ribosomal protein P2a-3:
2.01
GRMZM2G010257
Zm00001d001899
Zm00001eb066820
M Regina Scarpin et al. 2022. An updated nomenclature for plant ribosomal protein genes. Plant Cell. :doi: 10.1093/plcell/koac333.     Reference: November 17th, 2025
Variation: December 23rd, 2015
11 days agoarpp2a-2 acidic ribosomal protein P2a-2:
8.03
GRMZM2G102891
Zm00001d009652
Zm00001eb344440
M Regina Scarpin et al. 2022. An updated nomenclature for plant ribosomal protein genes. Plant Cell. :doi: 10.1093/plcell/koac333.     Reference: November 17th, 2025
Variation: January 14th, 2016
11 days agoarpp1a acidic ribosomal protein P1a:
6.00
GRMZM2G032315
Zm00001d035087
Zm00001eb260880
M Regina Scarpin et al. 2022. An updated nomenclature for plant ribosomal protein genes. Plant Cell. :doi: 10.1093/plcell/koac333.     Reference: November 17th, 2025
Gene Product: September 1st, 2003
Variation: January 28th, 2009
11 days agorpl17b ribosomal protein L17b:
 
GRMZM2G702426
Zm00001d049815
Zm00001eb175100
M Regina Scarpin et al. 2022. An updated nomenclature for plant ribosomal protein genes. Plant Cell. :doi: 10.1093/plcell/koac333.     Reference: November 17th, 2025
Variation: June 7th, 2013
11 days agorpl17c ribosomal protein L17c:
 
GRMZM2G148744
Zm00001d031611
Zm00001eb036530
M Regina Scarpin et al. 2022. An updated nomenclature for plant ribosomal protein genes. Plant Cell. :doi: 10.1093/plcell/koac333.     Reference: November 17th, 2025
Variation: June 7th, 2013
11 days agopco072913  :
4.08
GRMZM2G177720
Zm00001d052885
Zm00001eb199800
M Regina Scarpin et al. 2022. An updated nomenclature for plant ribosomal protein genes. Plant Cell. :doi: 10.1093/plcell/koac333.     Reference: November 17th, 2025
Variation: September 25th, 2007
11 days agorpl39 ribosomal protein L39:
 
GRMZM2G100467
Zm00001d018383
M Regina Scarpin et al. 2022. An updated nomenclature for plant ribosomal protein genes. Plant Cell. :doi: 10.1093/plcell/koac333.     Reference: November 17th, 2025
Gene Product: September 1st, 2003
Variation: January 13th, 2015
11 days agoppr315 pentatricopeptide repeat protein315:
5.05
GRMZM2G165290
Zm00001d017317
Zm00001eb248020
M Regina Scarpin et al. 2022. An updated nomenclature for plant ribosomal protein genes. Plant Cell. :doi: 10.1093/plcell/koac333.     Reference: November 17th, 2025
Gene Product: December 27th, 2016
11 days agorpl5c 60S ribosomal protein L5, mitochondrial-like homolog c:
 
GRMZM5G831780
Zm00001d018755
Zm00001eb299530
M Regina Scarpin et al. 2022. An updated nomenclature for plant ribosomal protein genes. Plant Cell. :doi: 10.1093/plcell/koac333.     Reference: November 17th, 2025
Gene Product: December 1st, 2019
11 days agorps21c 40S ribosomal protein S21c:
 
Zm00001d037884
M Regina Scarpin et al. 2022. An updated nomenclature for plant ribosomal protein genes. Plant Cell. :doi: 10.1093/plcell/koac333.     Reference: November 17th, 2025
Gene Product: September 1st, 2003
11 days agorpl23a 60S ribosomal protein L23a:
 
GRMZM2G166659
Zm00001d037489
Zm00001eb281810
M Regina Scarpin et al. 2022. An updated nomenclature for plant ribosomal protein genes. Plant Cell. :doi: 10.1093/plcell/koac333.     Reference: November 17th, 2025
Gene Product: September 1st, 2003
11 days agobbc1 breast basic conserved homolog1:
 
GRMZM2G145280
Zm00001d011992
Zm00001eb364190
M Regina Scarpin et al. 2022. An updated nomenclature for plant ribosomal protein genes. Plant Cell. :doi: 10.1093/plcell/koac333.   AT3G49010 (TAIR) Reference: November 17th, 2025
Gene Product: January 13th, 2020
11 days agorpl15c 60S ribosomal protein L15:
 
GRMZM2G024354
Zm00001d018903
Zm00001eb301010
M Regina Scarpin et al. 2022. An updated nomenclature for plant ribosomal protein genes. Plant Cell. :doi: 10.1093/plcell/koac333.     Reference: November 17th, 2025
Gene Product: September 1st, 2003
11 days agorps21d 40S ribosomal protein S21d:
 
GRMZM2G125300
Zm00001d012886
Zm00001eb211090
M Regina Scarpin et al. 2022. An updated nomenclature for plant ribosomal protein genes. Plant Cell. :doi: 10.1093/plcell/koac333.     Reference: November 17th, 2025
Gene Product: September 1st, 2003
11 days agorpl14a 60S ribosomal protein L14:
 
GRMZM2G140116
Zm00001d006287
Zm00001eb104220
M Regina Scarpin et al. 2022. An updated nomenclature for plant ribosomal protein genes. Plant Cell. :doi: 10.1093/plcell/koac333.     Reference: November 17th, 2025
Gene Product: August 22nd, 2024
11 days agorpl14b 60S ribosomal protein L14:
 
GRMZM2G028883
Zm00001d025857
Zm00001eb426610
M Regina Scarpin et al. 2022. An updated nomenclature for plant ribosomal protein genes. Plant Cell. :doi: 10.1093/plcell/koac333.     Reference: November 17th, 2025
Gene Product: August 22nd, 2024
11 days agorps12a ribosomal proteinS12 (homolog):
6.07
GRMZM2G132929
Zm00001d039106
Zm00001eb296700
M Regina Scarpin et al. 2022. An updated nomenclature for plant ribosomal protein genes. Plant Cell. :doi: 10.1093/plcell/koac333.     Reference: November 17th, 2025
Gene Product: September 1st, 2003
11 days agopco093173  :
6.06
GRMZM2G044137
Zm00001d038535
Zm00001eb291240
M Regina Scarpin et al. 2022. An updated nomenclature for plant ribosomal protein genes. Plant Cell. :doi: 10.1093/plcell/koac333.     Reference: November 17th, 2025
Variation: September 25th, 2007
11 days agosams2 S-adenosylmethionine synthetase2:
8.03
GRMZM2G054123
Zm00001d009146
Zm00001eb340450
Mu, XH et al. 2025. Hunting for the genetic loci underlying root lodging resistance by BSR-seq and QTL mapping in maize BMC Plant Biology. 25:1584.     Reference: November 17th, 2025
Gene Product: January 27th, 2020
11 days agopco154872  :
8.03
GRMZM2G113720
Zm00001d009579
Zm00001eb343830
M Regina Scarpin et al. 2022. An updated nomenclature for plant ribosomal protein genes. Plant Cell. :doi: 10.1093/plcell/koac333.     Reference: November 17th, 2025
Variation: September 25th, 2007
11 days agopco138567b  :
9.04
GRMZM5G862107
Zm00001d047581
Zm00001eb395590
M Regina Scarpin et al. 2022. An updated nomenclature for plant ribosomal protein genes. Plant Cell. :doi: 10.1093/plcell/koac333.     Reference: November 17th, 2025
Variation: September 25th, 2007
11 days agolem1 lethal embryo mutant1:
1.10
AC234157.1_FG002
Zm00001d034192
Zm00001eb058750
M Regina Scarpin et al. 2022. An updated nomenclature for plant ribosomal protein genes. Plant Cell. :doi: 10.1093/plcell/koac333.     Reference: November 17th, 2025
Gene Product: March 29th, 2004
Variation: January 4th, 2013
11 days agomagi32402  :
1.07
GRMZM2G057608
Zm00001d031939
Zm00001eb039380
M Regina Scarpin et al. 2022. An updated nomenclature for plant ribosomal protein genes. Plant Cell. :doi: 10.1093/plcell/koac333.     Reference: November 17th, 2025
Variation: March 31st, 2005
11 days agoIDP2420  :
1.01
GRMZM2G176820
Zm00001d027421
Zm00001eb001640
M Regina Scarpin et al. 2022. An updated nomenclature for plant ribosomal protein genes. Plant Cell. :doi: 10.1093/plcell/koac333.     Reference: November 17th, 2025
Variation: March 31st, 2005
11 days agoIDP243  :
1.07
GRMZM2G152552
Zm00001d032181
Zm00001eb041340
M Regina Scarpin et al. 2022. An updated nomenclature for plant ribosomal protein genes. Plant Cell. :doi: 10.1093/plcell/koac333.     Reference: November 17th, 2025
Variation: March 31st, 2005
11 days agoIDP644  :
1.07
GRMZM2G025855
Zm00001d032420
Zm00001eb043240
M Regina Scarpin et al. 2022. An updated nomenclature for plant ribosomal protein genes. Plant Cell. :doi: 10.1093/plcell/koac333.     Reference: November 17th, 2025
Variation: March 31st, 2005
11 days agomagi7806  :
1.10
GRMZM2G165619
Zm00001d034223
Zm00001eb058980
M Regina Scarpin et al. 2022. An updated nomenclature for plant ribosomal protein genes. Plant Cell. :doi: 10.1093/plcell/koac333.     Reference: November 17th, 2025
Variation: April 8th, 2021
11 days agoIDP810  :
1.02
GRMZM2G164965
Zm00001d028240
Zm00001eb008910
M Regina Scarpin et al. 2022. An updated nomenclature for plant ribosomal protein genes. Plant Cell. :doi: 10.1093/plcell/koac333.     Reference: November 17th, 2025
Variation: April 10th, 2021
11 days agoIDP3811  :
1.01
GRMZM2G119471
Zm00001d027442
Zm00001eb001840
M Regina Scarpin et al. 2022. An updated nomenclature for plant ribosomal protein genes. Plant Cell. :doi: 10.1093/plcell/koac333.     Reference: November 17th, 2025
Variation: April 9th, 2021
11 days agoIDP4043  :
1.01
GRMZM2G092719
Zm00001d027527
Zm00001eb002640
M Regina Scarpin et al. 2022. An updated nomenclature for plant ribosomal protein genes. Plant Cell. :doi: 10.1093/plcell/koac333.     Reference: November 17th, 2025
Variation: March 31st, 2005
11 days agorpl12 ribosomal protein L12:
2.04
AC196489.3_FG002
Zm00001d003896
Zm00001eb084920
M Regina Scarpin et al. 2022. An updated nomenclature for plant ribosomal protein genes. Plant Cell. :doi: 10.1093/plcell/koac333.     Reference: November 17th, 2025
Gene Product: September 1st, 2003
Variation: March 31st, 2005
11 days agoIDP469  :
2.08
GRMZM2G010991
Zm00001d007154
Zm00001eb111360
M Regina Scarpin et al. 2022. An updated nomenclature for plant ribosomal protein genes. Plant Cell. :doi: 10.1093/plcell/koac333.     Reference: November 17th, 2025
Variation: March 31st, 2005
11 days agoIDP661  :
2.09
GRMZM2G111172
Zm00001d007810
Zm00001eb116830
M Regina Scarpin et al. 2022. An updated nomenclature for plant ribosomal protein genes. Plant Cell. :doi: 10.1093/plcell/koac333.     Reference: November 17th, 2025
Variation: March 31st, 2005
11 days agoIDP4031  :
3.05
GRMZM2G171484
Zm00001d042023
Zm00001eb140330
M Regina Scarpin et al. 2022. An updated nomenclature for plant ribosomal protein genes. Plant Cell. :doi: 10.1093/plcell/koac333.     Reference: November 17th, 2025
Variation: March 31st, 2005
11 days agoIDP483  :
4.01
GRMZM2G165208
Zm00001d048787
M Regina Scarpin et al. 2022. An updated nomenclature for plant ribosomal protein genes. Plant Cell. :doi: 10.1093/plcell/koac333.     Reference: November 17th, 2025
Variation: March 31st, 2005
11 days agoIDP486  :
5.03
GRMZM2G026216
Zm00001d014082
Zm00001eb222240
M Regina Scarpin et al. 2022. An updated nomenclature for plant ribosomal protein genes. Plant Cell. :doi: 10.1093/plcell/koac333.     Reference: November 17th, 2025
Variation: March 31st, 2005
11 days agoIDP758  :
5.05
GRMZM2G061938
Zm00001d017529
Zm00001eb249970
M Regina Scarpin et al. 2022. An updated nomenclature for plant ribosomal protein genes. Plant Cell. :doi: 10.1093/plcell/koac333.     Reference: November 17th, 2025
Variation: March 31st, 2005
11 days agomagi92568  :
6.05
GRMZM5G850966
Zm00001d038374
Zm00001eb289680
M Regina Scarpin et al. 2022. An updated nomenclature for plant ribosomal protein genes. Plant Cell. :doi: 10.1093/plcell/koac333.     Reference: November 17th, 2025
Variation: March 31st, 2005
11 days agoIDP764  :
6.05
GRMZM2G078985
Zm00001d037929
Zm00001eb285610
M Regina Scarpin et al. 2022. An updated nomenclature for plant ribosomal protein genes. Plant Cell. :doi: 10.1093/plcell/koac333.     Reference: November 17th, 2025
Variation: March 31st, 2005
11 days agomagi99589  :
7.03
GRMZM5G870752
Zm00001d021061
Zm00001eb317810
M Regina Scarpin et al. 2022. An updated nomenclature for plant ribosomal protein genes. Plant Cell. :doi: 10.1093/plcell/koac333.     Reference: November 17th, 2025
Variation: March 31st, 2005
11 days agoIDP65  :
9.07
GRMZM2G150058
Zm00001d048368
Zm00001eb402790
M Regina Scarpin et al. 2022. An updated nomenclature for plant ribosomal protein genes. Plant Cell. :doi: 10.1093/plcell/koac333.     Reference: November 17th, 2025
Variation: March 31st, 2005
11 days agoIDP756  :
9.04
GRMZM2G007103
Zm00001d047262
Zm00001eb392950
M Regina Scarpin et al. 2022. An updated nomenclature for plant ribosomal protein genes. Plant Cell. :doi: 10.1093/plcell/koac333.     Reference: November 17th, 2025
Variation: September 25th, 2007
11 days agoIDP245  :
10.04
GRMZM2G043737
Zm00001d025413
Zm00001eb422490
M Regina Scarpin et al. 2022. An updated nomenclature for plant ribosomal protein genes. Plant Cell. :doi: 10.1093/plcell/koac333.     Reference: November 17th, 2025
Variation: March 31st, 2005
11 days agoIDP3950  :
10.04
GRMZM2G124411
Zm00001d025784
Zm00001eb425920
M Regina Scarpin et al. 2022. An updated nomenclature for plant ribosomal protein genes. Plant Cell. :doi: 10.1093/plcell/koac333.     Reference: November 17th, 2025
Variation: March 31st, 2005
11 days agocsu36c(rpL19)  :
3.09
GRMZM2G116135
Zm00001d044287
Zm00001eb160340
M Regina Scarpin et al. 2022. An updated nomenclature for plant ribosomal protein genes. Plant Cell. :doi: 10.1093/plcell/koac333.     Reference: November 17th, 2025
Variation: March 17th, 2021
11 days agorpl15b 60S ribosomal protein L15:
7.03
GRMZM2G180724
Zm00001d021508
Zm00001eb321580
M Regina Scarpin et al. 2022. An updated nomenclature for plant ribosomal protein genes. Plant Cell. :doi: 10.1093/plcell/koac333.     Reference: November 17th, 2025
Gene Product: September 1st, 2003
Variation: June 2nd, 2013
11 days agoarpp40 acidic ribosomal protein P40:
9.07
GRMZM2G126821
Zm00001d048346
Zm00001eb402570
M Regina Scarpin et al. 2022. An updated nomenclature for plant ribosomal protein genes. Plant Cell. :doi: 10.1093/plcell/koac333.     Reference: November 17th, 2025
Gene Product: September 1st, 2003
Variation: August 27th, 2015
11 days agorps4 ribosomal protein S4:
5.00
GRMZM2G125271
Zm00001d012878
Zm00001eb211010
M Regina Scarpin et al. 2022. An updated nomenclature for plant ribosomal protein genes. Plant Cell. :doi: 10.1093/plcell/koac333.     Reference: November 17th, 2025
Gene Product: September 1st, 2003
Variation: May 21st, 2009
12 days agoincw1 cell wall invertase1:
5.04
GRMZM2G139300
Zm00001d016708
Zm00001eb242820
Lipps, S et al. 2025. Resistance to Gibberella ear rot in maize: Insights from near‐isogenic line populations Crop Sci. :doi:10.1002/csc2.70187.     Reference: November 16th, 2025
Gene Product: June 12th, 2018
Variation: May 27th, 2015
12 days agoomt2 Caffeoyl CoA O-methyltransferase2:
9.02
GRMZM2G099363
Zm00001d045206
Zm00001eb375610
Lipps, S et al. 2025. Resistance to Gibberella ear rot in maize: Insights from near‐isogenic line populations Crop Sci. :doi:10.1002/csc2.70187.     Reference: November 16th, 2025
Gene Product: January 5th, 2014
Variation: May 13th, 2016
13 days agotps28 terpene synthase28:
 
GRMZM2G108609
Zm00001d004279
Zm00001eb087570
Wu, MX et al. 2025. A multifunctional sesquiterpene synthase integrates with cytochrome P450s to reinforce the terpenoid defense network in maize. Plant J. 124:e70575.     Reference: November 15th, 2025
Gene Product: December 6th, 2023
13 days agotps29 terpene synthase29:
 
GRMZM2G061023
Zm00001d053916
Zm00001eb208380
Wu, MX et al. 2025. A multifunctional sesquiterpene synthase integrates with cytochrome P450s to reinforce the terpenoid defense network in maize. Plant J. 124:e70575.     Reference: November 15th, 2025
Gene Product: December 6th, 2023
13 days agotps30 terpene synthase30:
 
GRMZM2G451187
Zm00001d035682
Zm00001eb267020
Wu, MX et al. 2025. A multifunctional sesquiterpene synthase integrates with cytochrome P450s to reinforce the terpenoid defense network in maize. Plant J. 124:e70575.     Reference: November 15th, 2025
Gene Product: December 6th, 2023
13 days agotps31 terpene synthase31:
 
GRMZM2G390124
Zm00001d018611
Zm00001eb298110
Wu, MX et al. 2025. A multifunctional sesquiterpene synthase integrates with cytochrome P450s to reinforce the terpenoid defense network in maize. Plant J. 124:e70575.     Reference: November 15th, 2025
Gene Product: December 6th, 2023
13 days agotps22 terpene synthase22:
 
GRMZM2G038340
Zm00001d024359
Zm00001eb414190
Wu, MX et al. 2025. A multifunctional sesquiterpene synthase integrates with cytochrome P450s to reinforce the terpenoid defense network in maize. Plant J. 124:e70575.     Reference: November 15th, 2025
Gene Product: December 6th, 2023
13 days agotps16 terpene synthase16:
 
GRMZM2G309126
Zm00001d024667
Zm00001eb416710
Wu, MX et al. 2025. A multifunctional sesquiterpene synthase integrates with cytochrome P450s to reinforce the terpenoid defense network in maize. Plant J. 124:e70575.     Reference: November 15th, 2025
Gene Product: December 6th, 2023
13 days agotps32 terpene synthase32:
 
Zm00001d029523
Zm00001eb020070
Zm00031ab020550
Wu, MX et al. 2025. A multifunctional sesquiterpene synthase integrates with cytochrome P450s to reinforce the terpenoid defense network in maize. Plant J. 124:e70575.     Reference: November 15th, 2025
Gene Product: December 6th, 2023
13 days agomdh9 malate dehydrogenase9:
 
GRMZM2G101290
Zm00001d002741
Zm00001eb074700
Zhenggao Xiao et al. 2025. Photoaging Exacerbates Nanoplastic Phytotoxicity and Differentially Activates Defense Mechanisms in Wild versus Cultivated Maize Environ Sci Technol. :doi: 10.1021/acs.est.5c13121.     Reference: November 15th, 2025
Gene Product: September 1st, 2003
13 days agotps20 terpene synthase20:
 
GRMZM2G084496
Zm00001d024669
Zm00001eb416720
Wu, MX et al. 2025. A multifunctional sesquiterpene synthase integrates with cytochrome P450s to reinforce the terpenoid defense network in maize. Plant J. 124:e70575.     Reference: November 15th, 2025
Gene Product: December 6th, 2023
13 days agotps25 terpene synthase25:
 
GRMZM2G061016
Zm00001d053918
Zm00001eb208400
Wu, MX et al. 2025. A multifunctional sesquiterpene synthase integrates with cytochrome P450s to reinforce the terpenoid defense network in maize. Plant J. 124:e70575.     Reference: November 15th, 2025
Gene Product: December 6th, 2023
13 days agotps36 terpene synthase36:
 
Zm00001d024479
Zm00001eb415090
Wu, MX et al. 2025. A multifunctional sesquiterpene synthase integrates with cytochrome P450s to reinforce the terpenoid defense network in maize. Plant J. 124:e70575.     Reference: November 15th, 2025
Gene Product: December 6th, 2023
13 days agotps34 terpene synthase34:
 
Zm00001d024480
Zm00001eb415100
Wu, MX et al. 2025. A multifunctional sesquiterpene synthase integrates with cytochrome P450s to reinforce the terpenoid defense network in maize. Plant J. 124:e70575.     Reference: November 15th, 2025
Gene Product: December 6th, 2023
13 days agotps33 terpene synthase33:
 
GRMZM2G445854
Zm00001d048867
Wu, MX et al. 2025. A multifunctional sesquiterpene synthase integrates with cytochrome P450s to reinforce the terpenoid defense network in maize. Plant J. 124:e70575.     Reference: November 15th, 2025
Gene Product: December 6th, 2023
13 days agotps23 terpene synthase23:
10.03
GRMZM2G127336
Zm00001d024234
Zm00001eb413120
Wu, MX et al. 2025. A multifunctional sesquiterpene synthase integrates with cytochrome P450s to reinforce the terpenoid defense network in maize. Plant J. 124:e70575.     Reference: November 15th, 2025
Gene Product: July 21st, 2008
Variation: November 21st, 2017
13 days agoan1 anther ear1:
1.08
GRMZM2G081554
Zm00001d032961
Zm00001eb048020
Wu, MX et al. 2025. A multifunctional sesquiterpene synthase integrates with cytochrome P450s to reinforce the terpenoid defense network in maize. Plant J. 124:e70575.     Reference: November 15th, 2025
Gene Product: August 16th, 2012
Variation: May 13th, 2020
13 days agotps11 terpene synthase11:
10.03
GRMZM2G127087
Zm00001d024210
Zm00001eb412980
Wu, MX et al. 2025. A multifunctional sesquiterpene synthase integrates with cytochrome P450s to reinforce the terpenoid defense network in maize. Plant J. 124:e70575.     Reference: November 15th, 2025
Gene Product: September 3rd, 2008
Variation: September 3rd, 2008
13 days agotps4 terpene synthase4:
10.03
GRMZM2G117319
Zm00001d024478
Zm00001eb415080
Wu, MX et al. 2025. A multifunctional sesquiterpene synthase integrates with cytochrome P450s to reinforce the terpenoid defense network in maize. Plant J. 124:e70575.     Reference: November 15th, 2025
Gene Product: September 4th, 2008
Variation: September 4th, 2008
13 days agotps5 terpene synthase5:
10.03
GRMZM2G074309
Zm00001d024481
Zm00001eb415130
Wu, MX et al. 2025. A multifunctional sesquiterpene synthase integrates with cytochrome P450s to reinforce the terpenoid defense network in maize. Plant J. 124:e70575.     Reference: November 15th, 2025
Gene Product: September 4th, 2008
Variation: September 4th, 2008
13 days agotps26 terpene synthase26:
6.04
GRMZM2G030583
Zm00001d037092
Zm00001eb278400
Wu, MX et al. 2025. A multifunctional sesquiterpene synthase integrates with cytochrome P450s to reinforce the terpenoid defense network in maize. Plant J. 124:e70575.     Reference: November 15th, 2025
Gene Product: September 5th, 2008
Variation: September 5th, 2008
13 days agostc1 sesquiterpene cyclase1:
9.01
GRMZM2G177098
Zm00001d045054
Zm00001eb374210
Wu, MX et al. 2025. A multifunctional sesquiterpene synthase integrates with cytochrome P450s to reinforce the terpenoid defense network in maize. Plant J. 124:e70575.     Reference: November 15th, 2025
Gene Product: September 5th, 2008
Variation: June 30th, 2012
13 days agochi1 chalcone flavanone isomerase1:
1.11
GRMZM2G155329
Zm00001d034635
Zm00001eb062510
Zhenggao Xiao et al. 2025. Photoaging Exacerbates Nanoplastic Phytotoxicity and Differentially Activates Defense Mechanisms in Wild versus Cultivated Maize Environ Sci Technol. :doi: 10.1021/acs.est.5c13121.     Reference: November 15th, 2025
Gene Product: January 26th, 2021
Variation: October 10th, 2012
13 days agotps8 terpene synthase8:
1.04 - 1.04
GRMZM2G038153
Zm00001d029195
Zm00001eb017120
Wu, MX et al. 2025. A multifunctional sesquiterpene synthase integrates with cytochrome P450s to reinforce the terpenoid defense network in maize. Plant J. 124:e70575.     Reference: November 15th, 2025
Gene Product: December 6th, 2023
Variation: May 29th, 2012
13 days agotps1 terpene synthase1:
2.02
GRMZM2G049538
Zm00001d002351
Zm00001eb071090
Wu, MX et al. 2025. A multifunctional sesquiterpene synthase integrates with cytochrome P450s to reinforce the terpenoid defense network in maize. Plant J. 124:e70575.     Reference: November 15th, 2025
Gene Product: May 28th, 2012
Variation: December 27th, 2023
13 days agoivr1 invertase1:
2.03
GRMZM2G394450
Zm00001d002830
Zm00001eb075530
Zhenggao Xiao et al. 2025. Photoaging Exacerbates Nanoplastic Phytotoxicity and Differentially Activates Defense Mechanisms in Wild versus Cultivated Maize Environ Sci Technol. :doi: 10.1021/acs.est.5c13121.     Reference: November 15th, 2025
Gene Product: June 12th, 2018
Variation: September 1st, 2003
13 days agotps2 terpene synthase2:
 
GRMZM2G046615
Zm00001d015053
Zm00001eb230410
Wu, MX et al. 2025. A multifunctional sesquiterpene synthase integrates with cytochrome P450s to reinforce the terpenoid defense network in maize. Plant J. 124:e70575.     Reference: November 15th, 2025
Gene Product: December 6th, 2023
Variation: May 28th, 2012
13 days agotps3 terpene synthase3:
 
GRMZM2G064406
Zm00001d015054
Zm00001eb230440
Wu, MX et al. 2025. A multifunctional sesquiterpene synthase integrates with cytochrome P450s to reinforce the terpenoid defense network in maize. Plant J. 124:e70575.     Reference: November 15th, 2025
Gene Product: December 6th, 2023
Variation: May 28th, 2012
13 days agotps7 terpene synthase7:
 
AC217050.4_FG007
Zm00001d032230
Zm00001eb041770
Wu, MX et al. 2025. A multifunctional sesquiterpene synthase integrates with cytochrome P450s to reinforce the terpenoid defense network in maize. Plant J. 124:e70575.     Reference: November 15th, 2025
Gene Product: July 17th, 2016
Variation: May 28th, 2012
13 days agotps9 terpene synthase9:
 
GRMZM2G465812
Zm00001d024477
Zm00001eb415070
Zm00026ab417460
Wu, MX et al. 2025. A multifunctional sesquiterpene synthase integrates with cytochrome P450s to reinforce the terpenoid defense network in maize. Plant J. 124:e70575.     Reference: November 15th, 2025
Gene Product: September 4th, 2008
Variation: May 28th, 2012
13 days agotrpp2 trehalose-6-phosphate phosphatase2:
 
GRMZM2G140078
Zm00001d005658
Zm00001eb098650
Zhenggao Xiao et al. 2025. Photoaging Exacerbates Nanoplastic Phytotoxicity and Differentially Activates Defense Mechanisms in Wild versus Cultivated Maize Environ Sci Technol. :doi: 10.1021/acs.est.5c13121.     Reference: November 15th, 2025
Gene Product: October 3rd, 2020
13 days agotrps5 trehalose-6-phosphate synthase5:
 
GRMZM2G527891
Zm00001d005687
Zm00001eb098910
Zhenggao Xiao et al. 2025. Photoaging Exacerbates Nanoplastic Phytotoxicity and Differentially Activates Defense Mechanisms in Wild versus Cultivated Maize Environ Sci Technol. :doi: 10.1021/acs.est.5c13121.     Reference: November 15th, 2025
Gene Product: October 3rd, 2020
13 days agocpps3 copalyl diphosphate synthase3:
 
GRMZM2G068808
Zm00001d024512
Zm00001eb415420
Wu, MX et al. 2025. A multifunctional sesquiterpene synthase integrates with cytochrome P450s to reinforce the terpenoid defense network in maize. Plant J. 124:e70575.     Reference: November 15th, 2025
Gene Product: August 16th, 2012
13 days agoks1 kaurene synthase1:
 
GRMZM2G016922
Zm00001d032858
Zm00001eb047160
Wu, MX et al. 2025. A multifunctional sesquiterpene synthase integrates with cytochrome P450s to reinforce the terpenoid defense network in maize. Plant J. 124:e70575.     Reference: November 15th, 2025
Gene Product: August 16th, 2012
13 days agoks2 kaurene synthase2:
 
GRMZM2G093526
Zm00001d002350
Zm00001eb071080
Wu, MX et al. 2025. A multifunctional sesquiterpene synthase integrates with cytochrome P450s to reinforce the terpenoid defense network in maize. Plant J. 124:e70575.     Reference: November 15th, 2025
Gene Product: August 16th, 2012
13 days agoks4 kaurene synthase4:
 
AC214360.3_FG001
Zm00001d041082
Zm00001eb133200
Wu, MX et al. 2025. A multifunctional sesquiterpene synthase integrates with cytochrome P450s to reinforce the terpenoid defense network in maize. Plant J. 124:e70575.     Reference: November 15th, 2025
Gene Product: August 16th, 2012
13 days agoks5 kaurene synthase5:
 
Zm00001d024514
Zm00001eb415430
Wu, MX et al. 2025. A multifunctional sesquiterpene synthase integrates with cytochrome P450s to reinforce the terpenoid defense network in maize. Plant J. 124:e70575.     Reference: November 15th, 2025
Gene Product: August 16th, 2012
13 days agofnsii1 flavone synthase typeII1:
 
GRMZM2G148441
Zm00001d024946
Zm00001eb419040
Zhenggao Xiao et al. 2025. Photoaging Exacerbates Nanoplastic Phytotoxicity and Differentially Activates Defense Mechanisms in Wild versus Cultivated Maize Environ Sci Technol. :doi: 10.1021/acs.est.5c13121.     Reference: November 15th, 2025
Gene Product: August 14th, 2015
13 days agohct9 hydroxycinnamoyltransferase9:
 
GRMZM2G131165
Zm00001d032148
Zm00001eb041100
Zhenggao Xiao et al. 2025. Photoaging Exacerbates Nanoplastic Phytotoxicity and Differentially Activates Defense Mechanisms in Wild versus Cultivated Maize Environ Sci Technol. :doi: 10.1021/acs.est.5c13121.     Reference: November 15th, 2025
Gene Product: November 7th, 2015
13 days agoks6 kaurene synthase6:
 
GRMZM2G391312
Zm00001d049957
Zm00001eb176190
Wu, MX et al. 2025. A multifunctional sesquiterpene synthase integrates with cytochrome P450s to reinforce the terpenoid defense network in maize. Plant J. 124:e70575.     Reference: November 15th, 2025
Gene Product: August 16th, 2012
13 days agotps17 terpene synthase17:
 
GRMZM2G010356
Zm00001d004509
Zm00001eb089360
Zm00038ab090090
Wu, MX et al. 2025. A multifunctional sesquiterpene synthase integrates with cytochrome P450s to reinforce the terpenoid defense network in maize. Plant J. 124:e70575.     Reference: November 15th, 2025
Gene Product: December 6th, 2023
Variation: July 17th, 2016
13 days agomatl1 matrilineal1:
 
GRMZM2G471240
Zm00001d029412
Zm00001eb019170
Armstrong, C et al. 2025. Haploid embryogenic cultures of maize (Zea mays L.): stability, doubling efficiency, and use in gene editing In Vitro Cell Dev Biol-Plant. :doi: 10.1007/s11627-025-10592-8.     Reference: November 15th, 2025
Gene Product: June 12th, 2020
Variation: February 10th, 2017
13 days agotps21 terpene synthase21:
 
GRMZM2G011151
Zm00001d047440
Zm00001eb394330
Wu, MX et al. 2025. A multifunctional sesquiterpene synthase integrates with cytochrome P450s to reinforce the terpenoid defense network in maize. Plant J. 124:e70575.     Reference: November 15th, 2025
Gene Product: December 6th, 2023
13 days agocyp22 cytochrome P-450 22:
 
GRMZM2G067591
Zm00001d014136
Zm00001eb222680
Wu, MX et al. 2025. A multifunctional sesquiterpene synthase integrates with cytochrome P450s to reinforce the terpenoid defense network in maize. Plant J. 124:e70575.     Reference: November 15th, 2025
Gene Product: December 30th, 2022
13 days agocpps4 copalyl diphosphate synthase4:
 
AC218998.2_FG011
Zm00001d048874
Zm00001eb167120
Wu, MX et al. 2025. A multifunctional sesquiterpene synthase integrates with cytochrome P450s to reinforce the terpenoid defense network in maize. Plant J. 124:e70575.     Reference: November 15th, 2025
Gene Product: August 16th, 2012
13 days agoaco8 aconitase8:
 
GRMZM2G467338
Zm00001d004564
Zm00001eb089800
Zhenggao Xiao et al. 2025. Photoaging Exacerbates Nanoplastic Phytotoxicity and Differentially Activates Defense Mechanisms in Wild versus Cultivated Maize Environ Sci Technol. :doi: 10.1021/acs.est.5c13121.     Reference: November 15th, 2025
Gene Product: September 1st, 2003
13 days agosus7 sucrose synthase7:
 
GRMZM2G060659
Zm00001d014876
Zm00001eb228780
Zhenggao Xiao et al. 2025. Photoaging Exacerbates Nanoplastic Phytotoxicity and Differentially Activates Defense Mechanisms in Wild versus Cultivated Maize Environ Sci Technol. :doi: 10.1021/acs.est.5c13121.     Reference: November 15th, 2025
Gene Product: October 25th, 2006
13 days agotps14 terpene synthase14:
 
GRMZM2G319445
Zm00001d004484
Zm00001eb089110
Zm00038ab090300
Wu, MX et al. 2025. A multifunctional sesquiterpene synthase integrates with cytochrome P450s to reinforce the terpenoid defense network in maize. Plant J. 124:e70575.     Reference: November 15th, 2025
Gene Product: December 6th, 2023
13 days agotps27 terpene synthase27:
 
AC205502.4_FG004
Zm00001d029139
Zm00001eb016730
Wu, MX et al. 2025. A multifunctional sesquiterpene synthase integrates with cytochrome P450s to reinforce the terpenoid defense network in maize. Plant J. 124:e70575.     Reference: November 15th, 2025
Gene Product: December 6th, 2023
13 days agotps12 terpene synthase12:
 
Zm00001d024208
Zm00001eb412970
Wu, MX et al. 2025. A multifunctional sesquiterpene synthase integrates with cytochrome P450s to reinforce the terpenoid defense network in maize. Plant J. 124:e70575.     Reference: November 15th, 2025
Gene Product: September 3rd, 2008
13 days agotps13 terpene synthase13:
 
GRMZM2G028306
Zm00001d024211
Zm00001eb412990
Wu, MX et al. 2025. A multifunctional sesquiterpene synthase integrates with cytochrome P450s to reinforce the terpenoid defense network in maize. Plant J. 124:e70575.     Reference: November 15th, 2025
Gene Product: September 3rd, 2008
13 days agocyp29 cytochrome P450 CYP71Z19:
 
GRMZM2G122654
Zm00001d014121
Zm00001eb222540
Wu, MX et al. 2025. A multifunctional sesquiterpene synthase integrates with cytochrome P450s to reinforce the terpenoid defense network in maize. Plant J. 124:e70575.     Reference: November 15th, 2025
Gene Product: December 30th, 2022
13 days agocyp30 cytochrome P450 CYP71Z16:
 
Zm00001d014134
Zm00001eb222660
Wu, MX et al. 2025. A multifunctional sesquiterpene synthase integrates with cytochrome P450s to reinforce the terpenoid defense network in maize. Plant J. 124:e70575.     Reference: November 15th, 2025
Gene Product: December 30th, 2022
13 days agocyp39 cytochrome P450 39:
 
GRMZM2G407650
Zm00001d024943
Zm00001eb419010
Zhenggao Xiao et al. 2025. Photoaging Exacerbates Nanoplastic Phytotoxicity and Differentially Activates Defense Mechanisms in Wild versus Cultivated Maize Environ Sci Technol. :doi: 10.1021/acs.est.5c13121.     Reference: November 15th, 2025
Gene Product: December 30th, 2022
13 days agocyp47 cytochrome P450 47:
8.03
GRMZM2G139874
Zm00001d009858
Zm00001eb346150
Zhenggao Xiao et al. 2025. Photoaging Exacerbates Nanoplastic Phytotoxicity and Differentially Activates Defense Mechanisms in Wild versus Cultivated Maize Environ Sci Technol. :doi: 10.1021/acs.est.5c13121.   AT2G30490 (TAIR) Reference: November 15th, 2025
Gene Product: December 30th, 2022
13 days agochi6 chalcone flavanone isomerase6:
3.09
GRMZM2G175076
Zm00001d044683
Zm00001eb163860
Zhenggao Xiao et al. 2025. Photoaging Exacerbates Nanoplastic Phytotoxicity and Differentially Activates Defense Mechanisms in Wild versus Cultivated Maize Environ Sci Technol. :doi: 10.1021/acs.est.5c13121.     Reference: November 15th, 2025
Gene Product: January 26th, 2021
Variation: March 31st, 2005
13 days agocenH3 centromeric histone H3:
6.06
GRMZM2G158526
Zm00001d038533
Zm00001eb291210
Armstrong, C et al. 2025. Haploid embryogenic cultures of maize (Zea mays L.): stability, doubling efficiency, and use in gene editing In Vitro Cell Dev Biol-Plant. :doi: 10.1007/s11627-025-10592-8.     Reference: November 15th, 2025
Gene Product: December 24th, 2015
Variation: March 18th, 2024
13 days agotps6 terpene synthase6:
10.03
GRMZM2G127087
Zm00001d024207
Zm00001eb412960
Wu, MX et al. 2025. A multifunctional sesquiterpene synthase integrates with cytochrome P450s to reinforce the terpenoid defense network in maize. Plant J. 124:e70575.     Reference: November 15th, 2025
Gene Product: September 3rd, 2008
Variation: May 28th, 2012
13 days agoks3 kaurene synthase3:
2.02
GRMZM2G093603
Zm00001d002349
Zm00001eb071070
Wu, MX et al. 2025. A multifunctional sesquiterpene synthase integrates with cytochrome P450s to reinforce the terpenoid defense network in maize. Plant J. 124:e70575.     Reference: November 15th, 2025
Gene Product: August 16th, 2012
Variation: July 22nd, 2023
14 days agohsp18a 18 kda heat shock protein18a:
9.04 - 9.05
GRMZM2G404249
Zm00001d047548
Zm00001eb395360
Yifei Sun et al. 2025. Development stage-specific recovery of remedial nitrogen fertilizer application after waterlogging in maize through photosynthetic capacity and nitrogen allocation J Integr Agric. :doi: 10.1016/j.jia.2025.11.015.     Reference: November 14th, 2025
Gene Product: September 1st, 2003
Variation: June 27th, 2014
14 days agohsp26 heat shock protein26:
1.03
GRMZM2G149647
Zm00001d028408
Zm00001eb010530
Yifei Sun et al. 2025. Development stage-specific recovery of remedial nitrogen fertilizer application after waterlogging in maize through photosynthetic capacity and nitrogen allocation J Integr Agric. :doi: 10.1016/j.jia.2025.11.015.     Reference: November 14th, 2025
Gene Product: September 1st, 2003
Variation: January 30th, 2015
14 days agohsp12 heat shock protein12:
 
GRMZM2G158232
Zm00001d039936
Zm00001eb124960
Yifei Sun et al. 2025. Development stage-specific recovery of remedial nitrogen fertilizer application after waterlogging in maize through photosynthetic capacity and nitrogen allocation J Integr Agric. :doi: 10.1016/j.jia.2025.11.015.     Reference: November 14th, 2025
Gene Product: January 15th, 2019
15 days agozfp30 putative zinc finger protein30:
4.09
GRMZM2G116079
Zm00001d053622
Zm00001eb205550
Xiu, Y, Li, Z, et al. (2025) Zinc Finger Protein 30 Is a Novel Candidate Gene for Kernel Row Number in Maize.Plants. 14 (21):3361.     Reference: November 13th, 2025
Gene Product: November 14th, 2022
Variation: May 19th, 2015
15 days agosbp2 SBP-domain protein2:
4.09
GRMZM2G168229
Zm00001d053756
Zm00001eb206830
Xiu, Y, Li, Z, et al. (2025) Zinc Finger Protein 30 Is a Novel Candidate Gene for Kernel Row Number in Maize.Plants. 14 (21):3361.     Reference: November 13th, 2025
Gene Product: July 5th, 2019
Variation: October 8th, 2011
15 days agoarftf16 ARF-transcription factor 16:
 
GRMZM2G028980
Zm00001d053819
Zm00001eb207450
Xiu, Y, Li, Z, et al. (2025) Zinc Finger Protein 30 Is a Novel Candidate Gene for Kernel Row Number in Maize.Plants. 14 (21):3361.     Reference: November 13th, 2025
Gene Product: January 29th, 2022
Variation: January 10th, 2020
15 days agojmj10 JUMONJI-transcription factor 10:
 
GRMZM2G044301
Zm00001d037803
Zm00001eb284570
Maciej Lenort et al. 2025. DArTseq-Based, High-Throughput Identification of Novel Molecular Markers for the Detection of Fusarium Resistance in Maize Int J Mol Sci. 26:10534.     Reference: November 13th, 2025
Gene Product: April 3rd, 2019
15 days agoperk1 proline-rich extensin-like receptor kinase1:
6.05
GRMZM2G055678
Zm00001d037811
Zm00001eb284700
Maciej Lenort et al. 2025. DArTseq-Based, High-Throughput Identification of Novel Molecular Markers for the Detection of Fusarium Resistance in Maize Int J Mol Sci. 26:10534.     Reference: November 13th, 2025
Gene Product: September 7th, 2022
Variation: September 25th, 2007
15 days agockx12 cytokinin oxidase12:
 
GRMZM2G008792
Zm00001d002989
Zm00001eb076990
Xiu, Y, Li, Z, et al. (2025) Zinc Finger Protein 30 Is a Novel Candidate Gene for Kernel Row Number in Maize.Plants. 14 (21):3361.     Reference: November 13th, 2025
Gene Product: July 19th, 2021
15 days agosbp19 SBP-transcription factor 19:
4.09
GRMZM2G163813
Zm00001d053775
Zm00001eb207010
Xiu, Y, Li, Z, et al. (2025) Zinc Finger Protein 30 Is a Novel Candidate Gene for Kernel Row Number in Maize.Plants. 14 (21):3361.     Reference: November 13th, 2025
Gene Product: July 5th, 2019
15 days agodnaj144 DnaJ family protein144:
5.06
GRMZM2G140070
Zm00001d017995
Zm00001eb254160
Maciej Lenort et al. 2025. DArTseq-Based, High-Throughput Identification of Novel Molecular Markers for the Detection of Fusarium Resistance in Maize Int J Mol Sci. 26:10534.     Reference: November 13th, 2025
Gene Product: September 1st, 2003
15 days agochn22 chitinase22:
 
GRMZM2G099454
Zm00001d027524
Zm00001eb002620
Udaya Shetty et al. 2025. Genome-Wide Association Study Reveals Novel QTNs and Candidate Genes Implicated in Resistance to Northern Corn Leaf Blight in Maize (Zea mays L.) Int J Mol Sci. 25:10677.     Reference: November 13th, 2025
Gene Product: May 31st, 2021
15 days agochn32 chitinase32:
 
GRMZM2G099454
Zm00001d027525
Zm00001eb002620
Udaya Shetty et al. 2025. Genome-Wide Association Study Reveals Novel QTNs and Candidate Genes Implicated in Resistance to Northern Corn Leaf Blight in Maize (Zea mays L.) Int J Mol Sci. 25:10677.     Reference: November 13th, 2025
Gene Product: May 31st, 2021
15 days agoppr300 pentatricopeptide repeat protein300:
 
GRMZM2G007372
Zm00001d015377
Zm00001eb233080
Xiu, Y, Li, Z, et al. (2025) Zinc Finger Protein 30 Is a Novel Candidate Gene for Kernel Row Number in Maize.Plants. 14 (21):3361.     Reference: November 13th, 2025
Gene Product: December 27th, 2016
15 days agoprx65 peroxidase65:
 
GRMZM2G442008
Zm00001d017996
Zm00001eb254170
Maciej Lenort et al. 2025. DArTseq-Based, High-Throughput Identification of Novel Molecular Markers for the Detection of Fusarium Resistance in Maize Int J Mol Sci. 26:10534.     Reference: November 13th, 2025
Gene Product: January 20th, 2025
Variation: April 8th, 2022
15 days agopub82 plant U-box type E3 ubiquitin ligase82:
8.06
GRMZM5G821267
Zm00001d012146
Zm00001eb365610
Maciej Lenort et al. 2025. DArTseq-Based, High-Throughput Identification of Novel Molecular Markers for the Detection of Fusarium Resistance in Maize Int J Mol Sci. 26:10534.     Reference: November 13th, 2025
Gene Product: February 1st, 2024
15 days agoIDP86  :
6.05
GRMZM5G874277
Zm00001d037813
Zm00001eb284720
Maciej Lenort et al. 2025. DArTseq-Based, High-Throughput Identification of Novel Molecular Markers for the Detection of Fusarium Resistance in Maize Int J Mol Sci. 26:10534.     Reference: November 13th, 2025
Variation: March 31st, 2005
15 days agocdk2 cyclin-dependent kinase2:
8.04
GRMZM2G149286
Zm00001d010476
Zm00001eb350890
Maciej Lenort et al. 2025. DArTseq-Based, High-Throughput Identification of Novel Molecular Markers for the Detection of Fusarium Resistance in Maize Int J Mol Sci. 26:10534.     Reference: November 13th, 2025
Gene Product: October 19th, 2022
16 days agoZm00001d007549  :
 
GRMZM2G158175
Zm00001d007549
Zm00001eb114610
Kaur, A et al. 2025. Natural variation in tetrapyrrole biosynthetic enzymes and their regulation modifies the maize chlorophyll mutant Oy1-N1989. Plant Physiol 199(3): kiaf431   LOC_Os11g37650 (MSU/TIGR)
Os11g0587000 (Gramene)
Reference: November 12th, 2025
Gene Product: January 6th, 2023
16 days agogtr2 glutamyl-tRNA reductase2:
 
GRMZM2G107402
Zm00001d013915
Zm00001eb220800
Kaur, A et al. 2025. Natural variation in tetrapyrrole biosynthetic enzymes and their regulation modifies the maize chlorophyll mutant Oy1-N1989. Plant Physiol 199(3): kiaf431     Reference: November 12th, 2025
Gene Product: October 23rd, 2023
16 days agogtr3 glutamyl-tRNA reductase3:
 
AC213521.3_FG005
Zm00001d032532
Zm00001eb044210
Kaur, A et al. 2025. Natural variation in tetrapyrrole biosynthetic enzymes and their regulation modifies the maize chlorophyll mutant Oy1-N1989. Plant Physiol 199(3): kiaf431     Reference: November 12th, 2025
Gene Product: October 23rd, 2023
16 days agorccr1 red chlorophyll catabolite reductase1:
 
GRMZM2G458824
Zm00001d030549
Zm00001eb027950
Kaur, A et al. 2025. Natural variation in tetrapyrrole biosynthetic enzymes and their regulation modifies the maize chlorophyll mutant Oy1-N1989. Plant Physiol 199(3): kiaf431     Reference: November 12th, 2025
Gene Product: September 16th, 2025
16 days agoles28 lesion mimic28:
 
   Kaur, A et al. 2025. Natural variation in tetrapyrrole biosynthetic enzymes and their regulation modifies the maize chlorophyll mutant Oy1-N1989. Plant Physiol 199(3): kiaf431     Reference: November 12th, 2025
Variation: April 2nd, 2015
16 days agogts5 glutamyl-tRNA synthetase5:
 
   Kaur, A et al. 2025. Natural variation in tetrapyrrole biosynthetic enzymes and their regulation modifies the maize chlorophyll mutant Oy1-N1989. Plant Physiol 199(3): kiaf431     Reference: November 12th, 2025
Gene Product: September 25th, 2024
16 days agoZm00001d011386  :
 
   Kaur, A et al. 2025. Natural variation in tetrapyrrole biosynthetic enzymes and their regulation modifies the maize chlorophyll mutant Oy1-N1989. Plant Physiol 199(3): kiaf431     Reference: November 12th, 2025
Gene Product: September 1st, 2003
16 days agoLOC118473148  :
 
   Kaur, A et al. 2025. Natural variation in tetrapyrrole biosynthetic enzymes and their regulation modifies the maize chlorophyll mutant Oy1-N1989. Plant Physiol 199(3): kiaf431     Reference: November 12th, 2025
Gene Product: September 1st, 2003
16 days agocbr2 chlorophyll(ide) b reductase2:
 
   Kaur, A et al. 2025. Natural variation in tetrapyrrole biosynthetic enzymes and their regulation modifies the maize chlorophyll mutant Oy1-N1989. Plant Physiol 199(3): kiaf431     Reference: November 12th, 2025
Gene Product: December 15th, 2016
16 days agohcar1 hydroxymethyl chlorophyll a reductase1:
 
   Kaur, A et al. 2025. Natural variation in tetrapyrrole biosynthetic enzymes and their regulation modifies the maize chlorophyll mutant Oy1-N1989. Plant Physiol 199(3): kiaf431     Reference: November 12th, 2025
Gene Product: September 16th, 2025
16 days agoppao2 pheophorbide a oxygenase2:
 
   Kaur, A et al. 2025. Natural variation in tetrapyrrole biosynthetic enzymes and their regulation modifies the maize chlorophyll mutant Oy1-N1989. Plant Physiol 199(3): kiaf431     Reference: November 12th, 2025
Gene Product: August 26th, 2020
16 days agogts4 glutamate tRNA synthetase4:
 
   Kaur, A et al. 2025. Natural variation in tetrapyrrole biosynthetic enzymes and their regulation modifies the maize chlorophyll mutant Oy1-N1989. Plant Physiol 199(3): kiaf431     Reference: November 12th, 2025
Gene Product: September 25th, 2024
16 days agoho4 heme oxygenase4:
 
   Kaur, A et al. 2025. Natural variation in tetrapyrrole biosynthetic enzymes and their regulation modifies the maize chlorophyll mutant Oy1-N1989. Plant Physiol 199(3): kiaf431     Reference: November 12th, 2025
Gene Product: September 24th, 2014
16 days agoho5 heme oxygenase5:
 
   Kaur, A et al. 2025. Natural variation in tetrapyrrole biosynthetic enzymes and their regulation modifies the maize chlorophyll mutant Oy1-N1989. Plant Physiol 199(3): kiaf431     Reference: November 12th, 2025
Gene Product: September 24th, 2014
16 days agoho7 heme oxygenase7:
 
   Kaur, A et al. 2025. Natural variation in tetrapyrrole biosynthetic enzymes and their regulation modifies the maize chlorophyll mutant Oy1-N1989. Plant Physiol 199(3): kiaf431     Reference: November 12th, 2025
Gene Product: September 24th, 2014
16 days agochlh1 Mg chelatase subunit H 1:
 
GRMZM2G323024
Zm00001d026603
Zm00001eb433610
Kaur, A et al. 2025. Natural variation in tetrapyrrole biosynthetic enzymes and their regulation modifies the maize chlorophyll mutant Oy1-N1989. Plant Physiol 199(3): kiaf431   AT5G13630 (TAIR)
LOC_Os03g20700 (MSU/TIGR)
Reference: November 12th, 2025
Gene Product: June 11th, 2007
16 days agochlh2 Mg chelatase subunit H 2:
 
GRMZM2G105319
Zm00001d001850
Zm00001eb066400
Zm00001eb066410
Kaur, A et al. 2025. Natural variation in tetrapyrrole biosynthetic enzymes and their regulation modifies the maize chlorophyll mutant Oy1-N1989. Plant Physiol 199(3): kiaf431     Reference: November 12th, 2025
Gene Product: June 11th, 2007
16 days agogtr1 glutamyl-tRNA reductase1:
10.07
GRMZM2G177412
Zm00001d026405
Zm00001eb431800
Kaur, A et al. 2025. Natural variation in tetrapyrrole biosynthetic enzymes and their regulation modifies the maize chlorophyll mutant Oy1-N1989. Plant Physiol 199(3): kiaf431     Reference: November 12th, 2025
Gene Product: October 23rd, 2023
Variation: October 23rd, 2023
16 days agompec1 magnesium-protoporphyrin ester cyclase1:
8.01
GRMZM2G081462
Zm00001d008230
Zm00001eb332650
Kaur, A et al. 2025. Natural variation in tetrapyrrole biosynthetic enzymes and their regulation modifies the maize chlorophyll mutant Oy1-N1989. Plant Physiol 199(3): kiaf431   AT3G56940 (TAIR) Reference: November 12th, 2025
Gene Product: July 7th, 2022
Variation: July 7th, 2022
16 days agoprpo2 protoporphyrinogen IX oxidase2:
2.04
GRMZM2G364901
Zm00001d003214
Zm00001eb078900
Kaur, A et al. 2025. Natural variation in tetrapyrrole biosynthetic enzymes and their regulation modifies the maize chlorophyll mutant Oy1-N1989. Plant Physiol 199(3): kiaf431     Reference: November 12th, 2025
Gene Product: December 17th, 2014
16 days agod8 dwarf plant8:
1.09
GRMZM2G144744
Zm00001d033680
Zm00001eb054480
Kaur, A et al. 2025. Natural variation in tetrapyrrole biosynthetic enzymes and their regulation modifies the maize chlorophyll mutant Oy1-N1989. Plant Physiol 199(3): kiaf431     Reference: November 12th, 2025
Gene Product: February 12th, 2007
Variation: August 29th, 2007
16 days agod9 dwarf plant9:
5.01
GRMZM2G024973
Zm00001d013465
Zm00001eb216610
Kaur, A et al. 2025. Natural variation in tetrapyrrole biosynthetic enzymes and their regulation modifies the maize chlorophyll mutant Oy1-N1989. Plant Physiol 199(3): kiaf431     Reference: November 12th, 2025
Gene Product: February 12th, 2007
Variation: January 30th, 2014
16 days agog2 golden plant2:
3.00 - 3.01
GRMZM2G087804
Zm00001d039260
Zm00001eb118900
Kaur, A et al. 2025. Natural variation in tetrapyrrole biosynthetic enzymes and their regulation modifies the maize chlorophyll mutant Oy1-N1989. Plant Physiol 199(3): kiaf431     Reference: November 12th, 2025
Gene Product: July 11th, 2019
Variation: October 24th, 2017
16 days agogt1 grassy tillers1:
1.04
GRMZM2G005624
Zm00001d028129
Zm00001eb007950
Kaur, A et al. 2025. Natural variation in tetrapyrrole biosynthetic enzymes and their regulation modifies the maize chlorophyll mutant Oy1-N1989. Plant Physiol 199(3): kiaf431     Reference: November 12th, 2025
Gene Product: March 5th, 2012
Variation: July 14th, 2025
16 days agolls1 lethal leaf spot1:
1.01
GRMZM2G339563
Zm00001d027656
Zm00001eb003760
Kaur, A et al. 2025. Natural variation in tetrapyrrole biosynthetic enzymes and their regulation modifies the maize chlorophyll mutant Oy1-N1989. Plant Physiol 199(3): kiaf431     Reference: November 12th, 2025
Gene Product: September 16th, 2025
Variation: March 18th, 2022
16 days agooy1 oil yellow1:
10.02
GRMZM2G419806
Zm00001d023536
Zm00001eb407780
Kaur, A et al. 2025. Natural variation in tetrapyrrole biosynthetic enzymes and their regulation modifies the maize chlorophyll mutant Oy1-N1989. Plant Physiol 199(3): kiaf431     Reference: November 12th, 2025
Gene Product: June 8th, 2007
Variation: August 6th, 2025
16 days agotb1 teosinte branched1:
1.09
AC233950.1_FG002
Zm00001d033673
Zm00001eb054440
Kaur, A et al. 2025. Natural variation in tetrapyrrole biosynthetic enzymes and their regulation modifies the maize chlorophyll mutant Oy1-N1989. Plant Physiol 199(3): kiaf431     Reference: November 12th, 2025
Gene Product: September 14th, 2016
Variation: December 28th, 2023
16 days agocpx2 coproporphyrinogen III oxidase2:
10.06
GRMZM2G032282
Zm00001d026277
Zm00001eb430670
Kaur, A et al. 2025. Natural variation in tetrapyrrole biosynthetic enzymes and their regulation modifies the maize chlorophyll mutant Oy1-N1989. Plant Physiol 199(3): kiaf431     Reference: November 12th, 2025
Gene Product: December 17th, 2014
Variation: September 22nd, 2011
16 days agoles22 lesion22:
1.04
GRMZM2G044074
Zm00001d029074
Zm00001eb016170
Kaur, A et al. 2025. Natural variation in tetrapyrrole biosynthetic enzymes and their regulation modifies the maize chlorophyll mutant Oy1-N1989. Plant Physiol 199(3): kiaf431     Reference: November 12th, 2025
Gene Product: September 1st, 2003
Variation: April 1st, 2015
16 days agodvr1 divinyl reductase1:
 
GRMZM2G063048
Zm00001d029150
Zm00001eb016830
Kaur, A et al. 2025. Natural variation in tetrapyrrole biosynthetic enzymes and their regulation modifies the maize chlorophyll mutant Oy1-N1989. Plant Physiol 199(3): kiaf431     Reference: November 12th, 2025
Gene Product: October 8th, 2014
16 days agoprpo1 protoporphyrinogen IX oxidase1:
8.01
GRMZM2G039396
Zm00001d008203
Zm00001eb332380
Kaur, A et al. 2025. Natural variation in tetrapyrrole biosynthetic enzymes and their regulation modifies the maize chlorophyll mutant Oy1-N1989. Plant Physiol 199(3): kiaf431     Reference: November 12th, 2025
Gene Product: December 17th, 2014
Variation: December 30th, 2015
16 days agophyA1 phytochromeA1:
1.10
GRMZM2G157727
Zm00001d033799
Zm00001eb055460
Kaur, A et al. 2025. Natural variation in tetrapyrrole biosynthetic enzymes and their regulation modifies the maize chlorophyll mutant Oy1-N1989. Plant Physiol 199(3): kiaf431     Reference: November 12th, 2025
Gene Product: June 30th, 2009
Variation: September 25th, 2007
16 days agophyA2 phytochromeA2:
5.01
GRMZM2G181028
Zm00001d013402
Zm00001eb216020
Kaur, A et al. 2025. Natural variation in tetrapyrrole biosynthetic enzymes and their regulation modifies the maize chlorophyll mutant Oy1-N1989. Plant Physiol 199(3): kiaf431     Reference: November 12th, 2025
Gene Product: June 30th, 2009
Variation: September 1st, 2003
16 days agocox15 cytochrome c oxidase15:
1.06
GRMZM6G274034
Zm00001d031308
Zm00001d031309
Zm00001eb033900
Kaur, A et al. 2025. Natural variation in tetrapyrrole biosynthetic enzymes and their regulation modifies the maize chlorophyll mutant Oy1-N1989. Plant Physiol 199(3): kiaf431     Reference: November 12th, 2025
Gene Product: September 1st, 2003
Variation: July 29th, 2004
16 days agoycf54 ycf54 homolog:
1.04
GRMZM2G010196
Zm00001d029027
Zm00001eb015790
Kaur, A et al. 2025. Natural variation in tetrapyrrole biosynthetic enzymes and their regulation modifies the maize chlorophyll mutant Oy1-N1989. Plant Physiol 199(3): kiaf431     Reference: November 12th, 2025
Variation: November 10th, 2020
16 days agocf1 camouflage1:
5.04
GRMZM2G026117
Zm00001d015366
Zm00001eb233020
Kaur, A et al. 2025. Natural variation in tetrapyrrole biosynthetic enzymes and their regulation modifies the maize chlorophyll mutant Oy1-N1989. Plant Physiol 199(3): kiaf431   AT5G08280 (TAIR)
LOC_Os02g0168800 (MSU/TIGR)
Reference: November 12th, 2025
Gene Product: December 8th, 2014
Variation: September 9th, 2009
16 days agovt2 vanishing tassel2:
 
GRMZM2G127308
Zm00001d008700
Zm00001eb336530
Kaur, A et al. 2025. Natural variation in tetrapyrrole biosynthetic enzymes and their regulation modifies the maize chlorophyll mutant Oy1-N1989. Plant Physiol 199(3): kiaf431   AT1G70560 (TAIR) Reference: November 12th, 2025
Gene Product: April 30th, 2011
Variation: June 24th, 2011
16 days agogts3 glutamate tRNA synthetase3:
4.10
AC233922.1_FG004
Zm00001d053901
Zm00001eb208250
Kaur, A et al. 2025. Natural variation in tetrapyrrole biosynthetic enzymes and their regulation modifies the maize chlorophyll mutant Oy1-N1989. Plant Physiol 199(3): kiaf431     Reference: November 12th, 2025
Gene Product: September 25th, 2024
16 days agopin10 PIN-formed protein10:
 
GRMZM2G126260
Zm00001d044083
Zm00001eb158690
Kaur, A et al. 2025. Natural variation in tetrapyrrole biosynthetic enzymes and their regulation modifies the maize chlorophyll mutant Oy1-N1989. Plant Physiol 199(3): kiaf431     Reference: November 12th, 2025
Gene Product: April 3rd, 2024
16 days agoelm2 elongated mesocotyl2:
 
GRMZM2G101004
Zm00001d046492
Zm00001eb386220
Kaur, A et al. 2025. Natural variation in tetrapyrrole biosynthetic enzymes and their regulation modifies the maize chlorophyll mutant Oy1-N1989. Plant Physiol 199(3): kiaf431     Reference: November 12th, 2025
Gene Product: September 24th, 2014
Variation: September 24th, 2014
16 days agoho2 heme oxygenase2:
 
GRMZM2G043277
Zm00001d036894
Zm00001eb276750
Kaur, A et al. 2025. Natural variation in tetrapyrrole biosynthetic enzymes and their regulation modifies the maize chlorophyll mutant Oy1-N1989. Plant Physiol 199(3): kiaf431     Reference: November 12th, 2025
Gene Product: September 24th, 2014
16 days agoho3 heme oxygenase3:
 
GRMZM2G157936
Zm00001d046493
Zm00001eb386230
Kaur, A et al. 2025. Natural variation in tetrapyrrole biosynthetic enzymes and their regulation modifies the maize chlorophyll mutant Oy1-N1989. Plant Physiol 199(3): kiaf431     Reference: November 12th, 2025
Gene Product: September 24th, 2014
Variation: July 15th, 2021
16 days agoccd7 carotenoid cleavage dioxygenase7:
 
GRMZM2G158657
Zm00001d002736
Zm00001eb074640
Kaur, A et al. 2025. Natural variation in tetrapyrrole biosynthetic enzymes and their regulation modifies the maize chlorophyll mutant Oy1-N1989. Plant Physiol 199(3): kiaf431   AT2G44990 (TAIR) Reference: November 12th, 2025
Gene Product: September 20th, 2012
16 days agochph1 chlorophyllase1:
 
GRMZM2G170734
Zm00001d019758
Zm00001eb307720
Kaur, A et al. 2025. Natural variation in tetrapyrrole biosynthetic enzymes and their regulation modifies the maize chlorophyll mutant Oy1-N1989. Plant Physiol 199(3): kiaf431     Reference: November 12th, 2025
Gene Product: August 5th, 2016
16 days agoggh1 geranylgeranyl hydrogenase1:
 
GRMZM2G105644
Zm00001d018034
Zm00001eb254510
Kaur, A et al. 2025. Natural variation in tetrapyrrole biosynthetic enzymes and their regulation modifies the maize chlorophyll mutant Oy1-N1989. Plant Physiol 199(3): kiaf431     Reference: November 12th, 2025
Gene Product: October 4th, 2014
16 days agoggh2 geranylgeranyl hydrogenase2:
 
GRMZM2G419111
Zm00001d040356
Zm00001eb128250
Kaur, A et al. 2025. Natural variation in tetrapyrrole biosynthetic enzymes and their regulation modifies the maize chlorophyll mutant Oy1-N1989. Plant Physiol 199(3): kiaf431     Reference: November 12th, 2025
Gene Product: October 4th, 2014
16 days agopin3 PIN-formed protein3:
4.08
GRMZM2G149184
Zm00001d052269
Zm00001eb194640
Kaur, A et al. 2025. Natural variation in tetrapyrrole biosynthetic enzymes and their regulation modifies the maize chlorophyll mutant Oy1-N1989. Plant Physiol 199(3): kiaf431     Reference: November 12th, 2025
Gene Product: April 3rd, 2024
16 days agochph2 chlorophyllase2:
 
GRMZM2G127421
Zm00001d032926
Zm00001eb047780
Kaur, A et al. 2025. Natural variation in tetrapyrrole biosynthetic enzymes and their regulation modifies the maize chlorophyll mutant Oy1-N1989. Plant Physiol 199(3): kiaf431     Reference: November 12th, 2025
Gene Product: August 5th, 2016
Variation: August 5th, 2016
16 days agopcr2 protochlorophyllide reductase2:
 
GRMZM2G036455
Zm00001d032576
Zm00001eb044650
Kaur, A et al. 2025. Natural variation in tetrapyrrole biosynthetic enzymes and their regulation modifies the maize chlorophyll mutant Oy1-N1989. Plant Physiol 199(3): kiaf431     Reference: November 12th, 2025
Gene Product: June 8th, 2019
16 days agopcr3 protochlorophyllide reductase3:
 
GRMZM2G073351
Zm00001d013937
Zm00001eb220940
Kaur, A et al. 2025. Natural variation in tetrapyrrole biosynthetic enzymes and their regulation modifies the maize chlorophyll mutant Oy1-N1989. Plant Physiol 199(3): kiaf431     Reference: November 12th, 2025
Gene Product: June 8th, 2019
Variation: June 8th, 2019
16 days agochlg1 chlorophyll synthase G1:
 
GRMZM2G162672
Zm00001d037984
Zm00001eb286140
Kaur, A et al. 2025. Natural variation in tetrapyrrole biosynthetic enzymes and their regulation modifies the maize chlorophyll mutant Oy1-N1989. Plant Physiol 199(3): kiaf431     Reference: November 12th, 2025
Gene Product: January 8th, 2018
16 days agocox10a cytochrome c oxidase subunit10a:
 
GRMZM2G178859
Zm00001d048318
Zm00001eb402310
Kaur, A et al. 2025. Natural variation in tetrapyrrole biosynthetic enzymes and their regulation modifies the maize chlorophyll mutant Oy1-N1989. Plant Physiol 199(3): kiaf431     Reference: November 12th, 2025
Gene Product: September 1st, 2003
16 days agocox10b cytochrome c oxidase subunit10b:
 
GRMZM2G162776
Zm00001d027848
Zm00001eb005400
Kaur, A et al. 2025. Natural variation in tetrapyrrole biosynthetic enzymes and their regulation modifies the maize chlorophyll mutant Oy1-N1989. Plant Physiol 199(3): kiaf431     Reference: November 12th, 2025
Gene Product: September 1st, 2003
16 days agotir1 transport inhibitor response1:
 
GRMZM2G135978
Zm00001d010863
Zm00001eb354200
Kaur, A et al. 2025. Natural variation in tetrapyrrole biosynthetic enzymes and their regulation modifies the maize chlorophyll mutant Oy1-N1989. Plant Physiol 199(3): kiaf431   LOC_Os05g05800 (MSU/TIGR)
Os05g0150500 (Gramene)
Reference: November 12th, 2025
Gene Product: April 27th, 2022
16 days agotin1 tiller number1:
 
GRMZM2G059088
Zm00001d018816
Zm00001eb300220
Kaur, A et al. 2025. Natural variation in tetrapyrrole biosynthetic enzymes and their regulation modifies the maize chlorophyll mutant Oy1-N1989. Plant Physiol 199(3): kiaf431     Reference: November 12th, 2025
Gene Product: November 14th, 2022
Variation: December 6th, 2019
16 days agophao1 pheophorbide a oxygenase1:
 
GRMZM2G171390
Zm00001d042026
Zm00001eb140370
Kaur, A et al. 2025. Natural variation in tetrapyrrole biosynthetic enzymes and their regulation modifies the maize chlorophyll mutant Oy1-N1989. Plant Physiol 199(3): kiaf431     Reference: November 12th, 2025
Gene Product: August 26th, 2020
16 days agonye1 non-yellowing1:
 
GRMZM2G091837
Zm00001d021288
Zm00001eb319560
Kaur, A et al. 2025. Natural variation in tetrapyrrole biosynthetic enzymes and their regulation modifies the maize chlorophyll mutant Oy1-N1989. Plant Physiol 199(3): kiaf431     Reference: November 12th, 2025
Gene Product: August 26th, 2020
16 days agonye2 non-yellowing2:
 
GRMZM2G379563
Zm00001d006211
Zm00001eb103480
Kaur, A et al. 2025. Natural variation in tetrapyrrole biosynthetic enzymes and their regulation modifies the maize chlorophyll mutant Oy1-N1989. Plant Physiol 199(3): kiaf431     Reference: November 12th, 2025
Gene Product: August 26th, 2020
16 days agochph3 chlorophyllase3:
 
GRMZM2G103197
Zm00001d031934
Zm00001eb039350
Kaur, A et al. 2025. Natural variation in tetrapyrrole biosynthetic enzymes and their regulation modifies the maize chlorophyll mutant Oy1-N1989. Plant Physiol 199(3): kiaf431     Reference: November 12th, 2025
Gene Product: August 5th, 2016
16 days agochld1 Mg chelataseD1:
5.00
GRMZM2G043453
Zm00001d013013
Zm00001eb212250
Kaur, A et al. 2025. Natural variation in tetrapyrrole biosynthetic enzymes and their regulation modifies the maize chlorophyll mutant Oy1-N1989. Plant Physiol 199(3): kiaf431     Reference: November 12th, 2025
Gene Product: June 11th, 2007
Variation: December 14th, 2020
16 days agochao3 chlorophyllide a oxygenase3:
 
Zm00001d004531
Zm00001eb089520
Kaur, A et al. 2025. Natural variation in tetrapyrrole biosynthetic enzymes and their regulation modifies the maize chlorophyll mutant Oy1-N1989. Plant Physiol 199(3): kiaf431     Reference: November 12th, 2025
Gene Product: February 12th, 2021
16 days agoupd1 uroporphyrinogen decarboxylase1:
 
Zm00001d044321
Zm00001eb160660
Kaur, A et al. 2025. Natural variation in tetrapyrrole biosynthetic enzymes and their regulation modifies the maize chlorophyll mutant Oy1-N1989. Plant Physiol 199(3): kiaf431     Reference: November 12th, 2025
Gene Product: September 1st, 2003
16 days agoga20ox8 gibberellin 20-oxidase8:
 
GRMZM2G002704
Zm00001d049926
Zm00001eb175950
Kaur, A et al. 2025. Natural variation in tetrapyrrole biosynthetic enzymes and their regulation modifies the maize chlorophyll mutant Oy1-N1989. Plant Physiol 199(3): kiaf431     Reference: November 12th, 2025
Gene Product: October 28th, 2014
16 days agoiqd18 IQ-domain 18:
 
GRMZM2G147840
Zm00001d008819
Zm00001eb337540
Shuyan Li et al. 2025. Characterization of non‐crossover recombination spectrum by single‐microspore sequencing in maize and rice Plant J. 124:e70551.     Reference: November 12th, 2025
Gene Product: May 23rd, 2021
16 days agogid5 gibberellin-insensitive dwarf protein homolog5:
 
GRMZM2G459166
Zm00001d016973
Zm00001eb245180
Kaur, A et al. 2025. Natural variation in tetrapyrrole biosynthetic enzymes and their regulation modifies the maize chlorophyll mutant Oy1-N1989. Plant Physiol 199(3): kiaf431     Reference: November 12th, 2025
Gene Product: April 27th, 2022
16 days agogts2 glutamate tRNA synthetase2:
 
GRMZM5G891373
Zm00001d015037
Zm00001eb230310
Kaur, A et al. 2025. Natural variation in tetrapyrrole biosynthetic enzymes and their regulation modifies the maize chlorophyll mutant Oy1-N1989. Plant Physiol 199(3): kiaf431     Reference: November 12th, 2025
Gene Product: September 25th, 2024
16 days agompec2 magnesium-protoporphyrin ester cyclase2:
 
GRMZM2G043109
Zm00001d040463
Zm00001eb129000
Kaur, A et al. 2025. Natural variation in tetrapyrrole biosynthetic enzymes and their regulation modifies the maize chlorophyll mutant Oy1-N1989. Plant Physiol 199(3): kiaf431   AT3G56940 (TAIR) Reference: November 12th, 2025
Gene Product: July 7th, 2022
16 days agopin2 PIN-formed protein2:
5.06
GRMZM2G074267
Zm00001d018024
Zm00001eb254390
Kaur, A et al. 2025. Natural variation in tetrapyrrole biosynthetic enzymes and their regulation modifies the maize chlorophyll mutant Oy1-N1989. Plant Physiol 199(3): kiaf431     Reference: November 12th, 2025
Gene Product: April 21st, 2014
Variation: June 11th, 2007
16 days agochao2 chlorophyllide a oxygenase2:
8.06
GRMZM2G038487
Zm00001d011819
Zm00001eb362510
Kaur, A et al. 2025. Natural variation in tetrapyrrole biosynthetic enzymes and their regulation modifies the maize chlorophyll mutant Oy1-N1989. Plant Physiol 199(3): kiaf431     Reference: November 12th, 2025
Gene Product: February 12th, 2021
Variation: February 12th, 2021
16 days agoho6 heme oxygenase6:
9.04
GRMZM2G004222
Zm00001d047238
Zm00001eb392680
Kaur, A et al. 2025. Natural variation in tetrapyrrole biosynthetic enzymes and their regulation modifies the maize chlorophyll mutant Oy1-N1989. Plant Physiol 199(3): kiaf431     Reference: November 12th, 2025
Gene Product: September 24th, 2014
16 days agoIDP2353  :
10.02
GRMZM2G164113
Zm00001d023426
Zm00001eb406800
Kaur, A et al. 2025. Natural variation in tetrapyrrole biosynthetic enzymes and their regulation modifies the maize chlorophyll mutant Oy1-N1989. Plant Physiol 199(3): kiaf431     Reference: November 12th, 2025
Variation: March 31st, 2005
16 days agoelm1 elongated mesocotyl1:
8.06
GRMZM5G861678
Zm00001d011876
Zm00001eb363080
Kaur, A et al. 2025. Natural variation in tetrapyrrole biosynthetic enzymes and their regulation modifies the maize chlorophyll mutant Oy1-N1989. Plant Physiol 199(3): kiaf431   AT3G09150 (TAIR) Reference: November 12th, 2025
Gene Product: May 7th, 2006
Variation: March 30th, 2009
16 days agonyc1 non-yellow coloring1:
3.01
GRMZM2G170013
Zm00001d039312
Zm00001eb119410
Kaur, A et al. 2025. Natural variation in tetrapyrrole biosynthetic enzymes and their regulation modifies the maize chlorophyll mutant Oy1-N1989. Plant Physiol 199(3): kiaf431   AT4g13250 (TAIR)
LOC_Os01g12710 (MSU/TIGR)
Os01g0227100 (Gramene)
Reference: November 12th, 2025
Gene Product: December 15th, 2016
Variation: December 15th, 2016
16 days agopcr1 protochlorophyllide reductase1:
2.01
GRMZM2G084958
Zm00001d001820
Zm00001eb066060
Kaur, A et al. 2025. Natural variation in tetrapyrrole biosynthetic enzymes and their regulation modifies the maize chlorophyll mutant Oy1-N1989. Plant Physiol 199(3): kiaf431     Reference: November 12th, 2025
Gene Product: June 8th, 2019
Variation: February 25th, 2013
17 days agoshki1 shikimate kinase1:
 
GRMZM2G004590
Zm00001d002128
Zm00001eb069000
Li, K et al. 2025. Genetic basis of flavor complexity in sweet corn Nature Genetics. :doi: 10.1038/s41588-025-02401-0.   AT2G21940 (TAIR) Reference: November 11th, 2025
Gene Product: January 2nd, 2023
17 days agoZm00001d052205  :
 
   Yixia Zhu et al. 2025. CuO@SiO2 Seed Priming Enhances Drought Tolerance and Phosphorus Acquisition Efficiency of Maize. Environ Sci Technol. :doi: 10.1021/acs.est.5c11193.     Reference: November 11th, 2025
Gene Product: November 26th, 2024
17 days agosaur37 small auxin up RNA37:
4.04
GRMZM2G420812
Zm00001d049659
Zm00001eb173630
Yixia Zhu et al. 2025. CuO@SiO2 Seed Priming Enhances Drought Tolerance and Phosphorus Acquisition Efficiency of Maize. Environ Sci Technol. :doi: 10.1021/acs.est.5c11193.     Reference: November 11th, 2025
Gene Product: November 26th, 2021
17 days agobzip129 bZIP-transcription factor 129:
2.06
Zm00001d005143
Zm00001eb094570
Yixia Zhu et al. 2025. CuO@SiO2 Seed Priming Enhances Drought Tolerance and Phosphorus Acquisition Efficiency of Maize. Environ Sci Technol. :doi: 10.1021/acs.est.5c11193.     Reference: November 11th, 2025
Gene Product: August 21st, 2018
17 days agoereb102 AP2-EREBP-transcription factor 102:
7.02
GRMZM2G052667
Zm00001d020595
Zm00001eb313850
Yixia Zhu et al. 2025. CuO@SiO2 Seed Priming Enhances Drought Tolerance and Phosphorus Acquisition Efficiency of Maize. Environ Sci Technol. :doi: 10.1021/acs.est.5c11193.     Reference: November 11th, 2025
Variation: September 1st, 2003
17 days agoumc1620  :
4.07
Zm00001d052066
Zm00001eb192730
Yixia Zhu et al. 2025. CuO@SiO2 Seed Priming Enhances Drought Tolerance and Phosphorus Acquisition Efficiency of Maize. Environ Sci Technol. :doi: 10.1021/acs.est.5c11193.     Reference: November 11th, 2025
Variation: September 1st, 2003
17 days agoarftf15 ARF-transcription factor 15:
 
GRMZM2G081406
Zm00001d051172
Zm00001eb185290
Yixia Zhu et al. 2025. CuO@SiO2 Seed Priming Enhances Drought Tolerance and Phosphorus Acquisition Efficiency of Maize. Environ Sci Technol. :doi: 10.1021/acs.est.5c11193.     Reference: November 11th, 2025
Gene Product: January 29th, 2022
17 days agoarftf19 ARF-transcription factor 19:
 
AC207656.3_FG002
GRMZM2G013663
Zm00001d014507
Zm00001eb225570
Yixia Zhu et al. 2025. CuO@SiO2 Seed Priming Enhances Drought Tolerance and Phosphorus Acquisition Efficiency of Maize. Environ Sci Technol. :doi: 10.1021/acs.est.5c11193.     Reference: November 11th, 2025
Gene Product: January 29th, 2022
Variation: June 22nd, 2021
17 days agobes1 brassinosteroid insensitive EMS-suppressor homolog1:
 
GRMZM2G102514
Zm00001d021927
Zm00001eb325550
Yixia Zhu et al. 2025. CuO@SiO2 Seed Priming Enhances Drought Tolerance and Phosphorus Acquisition Efficiency of Maize. Environ Sci Technol. :doi: 10.1021/acs.est.5c11193.     Reference: November 11th, 2025
Gene Product: May 4th, 2022
Variation: June 27th, 2022
17 days agohsftf27 HSF-transcription factor 27:
 
GRMZM2G025685
Zm00001d022295
Zm00001eb328900
Yixia Zhu et al. 2025. CuO@SiO2 Seed Priming Enhances Drought Tolerance and Phosphorus Acquisition Efficiency of Maize. Environ Sci Technol. :doi: 10.1021/acs.est.5c11193.     Reference: November 11th, 2025
Gene Product: May 15th, 2020
17 days agonactf60 NAC-transcription factor 60:
 
GRMZM2G336533
Zm00001d013003
Zm00001eb212120
Yixia Zhu et al. 2025. CuO@SiO2 Seed Priming Enhances Drought Tolerance and Phosphorus Acquisition Efficiency of Maize. Environ Sci Technol. :doi: 10.1021/acs.est.5c11193.     Reference: November 11th, 2025
Gene Product: July 8th, 2019
17 days agowrky111 WRKY-transcription factor 111:
 
GRMZM2G013391
Zm00001d012746
Zm00001eb370960
Yixia Zhu et al. 2025. CuO@SiO2 Seed Priming Enhances Drought Tolerance and Phosphorus Acquisition Efficiency of Maize. Environ Sci Technol. :doi: 10.1021/acs.est.5c11193.     Reference: November 11th, 2025
Gene Product: July 24th, 2017
Variation: July 24th, 2017
17 days agowrky79 WRKY-transcription factor 79:
 
GRMZM2G025895
Zm00001d020137
Zm00001eb310270
Yixia Zhu et al. 2025. CuO@SiO2 Seed Priming Enhances Drought Tolerance and Phosphorus Acquisition Efficiency of Maize. Environ Sci Technol. :doi: 10.1021/acs.est.5c11193.     Reference: November 11th, 2025
Gene Product: July 24th, 2017
17 days agozim30 ZIM-transcription factor 30:
 
AC197764.4_FG003
Zm00001d014250
Zm00001eb223590
Yixia Zhu et al. 2025. CuO@SiO2 Seed Priming Enhances Drought Tolerance and Phosphorus Acquisition Efficiency of Maize. Environ Sci Technol. :doi: 10.1021/acs.est.5c11193.     Reference: November 11th, 2025
Gene Product: February 24th, 2021
17 days agobzip100 bZIP-transcription factor 100:
 
GRMZM2G033413
Zm00001d044940
Zm00001eb373300
Yixia Zhu et al. 2025. CuO@SiO2 Seed Priming Enhances Drought Tolerance and Phosphorus Acquisition Efficiency of Maize. Environ Sci Technol. :doi: 10.1021/acs.est.5c11193.     Reference: November 11th, 2025
Gene Product: August 21st, 2018
17 days agobzip68 bZIP-transcription factor 68:
 
GRMZM2G157722
Zm00001d050018
Zm00001eb176680
Yixia Zhu et al. 2025. CuO@SiO2 Seed Priming Enhances Drought Tolerance and Phosphorus Acquisition Efficiency of Maize. Environ Sci Technol. :doi: 10.1021/acs.est.5c11193.     Reference: November 11th, 2025
Variation: May 11th, 2022
17 days agoexpa4 alpha-expansin4:
1.11
GRMZM2G368886
Zm00001d034663
Zm00001eb062750
Yixia Zhu et al. 2025. CuO@SiO2 Seed Priming Enhances Drought Tolerance and Phosphorus Acquisition Efficiency of Maize. Environ Sci Technol. :doi: 10.1021/acs.est.5c11193.     Reference: November 11th, 2025
Variation: December 1st, 2016
17 days agoexpa2 alpha expansin2:
5.05
GRMZM2G105844
Zm00001d018031
Zm00001eb254470
Yixia Zhu et al. 2025. CuO@SiO2 Seed Priming Enhances Drought Tolerance and Phosphorus Acquisition Efficiency of Maize. Environ Sci Technol. :doi: 10.1021/acs.est.5c11193.     Reference: November 11th, 2025
Gene Product: March 12th, 2008
Variation: September 1st, 2003
17 days agohsp90 heat shock protein, 90 kDa:
10.04
GRMZM5G833699
Zm00001d024903
Zm00001eb418610
Yixia Zhu et al. 2025. CuO@SiO2 Seed Priming Enhances Drought Tolerance and Phosphorus Acquisition Efficiency of Maize. Environ Sci Technol. :doi: 10.1021/acs.est.5c11193.     Reference: November 11th, 2025
Gene Product: May 18th, 2021
Variation: September 1st, 2003
17 days agogid1 gibberellin-insensitive dwarf protein homolog1:
6.05
GRMZM2G173630
Zm00001d038165
Zm00001eb287800
Yixia Zhu et al. 2025. CuO@SiO2 Seed Priming Enhances Drought Tolerance and Phosphorus Acquisition Efficiency of Maize. Environ Sci Technol. :doi: 10.1021/acs.est.5c11193.     Reference: November 11th, 2025
Gene Product: October 6th, 2021
17 days agorafs1 raffinose synthase1:
3.03
GRMZM2G150906
Zm00001d039685
Zm00001eb122980
Yixia Zhu et al. 2025. CuO@SiO2 Seed Priming Enhances Drought Tolerance and Phosphorus Acquisition Efficiency of Maize. Environ Sci Technol. :doi: 10.1021/acs.est.5c11193.     Reference: November 11th, 2025
Gene Product: October 25th, 2019
Variation: March 23rd, 2018
17 days agomyc7 myc transcription factor7:
1.05
GRMZM2G001930
Zm00001d030028
Zm00001eb024330
Yixia Zhu et al. 2025. CuO@SiO2 Seed Priming Enhances Drought Tolerance and Phosphorus Acquisition Efficiency of Maize. Environ Sci Technol. :doi: 10.1021/acs.est.5c11193.     Reference: November 11th, 2025
Gene Product: September 14th, 2016
Variation: June 20th, 2022
17 days agosfp1 sulfate permease1:
1.02
GRMZM2G159632
Zm00001d028162
Zm00001eb008160
Yixia Zhu et al. 2025. CuO@SiO2 Seed Priming Enhances Drought Tolerance and Phosphorus Acquisition Efficiency of Maize. Environ Sci Technol. :doi: 10.1021/acs.est.5c11193.   AT1G22150 (TAIR) Reference: November 11th, 2025
Gene Product: May 8th, 2020
17 days agolea8 late embryogenesis abundant protein8:
1.10
GRMZM2G025793
Zm00001d034003
Zm00001eb057130
Yixia Zhu et al. 2025. CuO@SiO2 Seed Priming Enhances Drought Tolerance and Phosphorus Acquisition Efficiency of Maize. Environ Sci Technol. :doi: 10.1021/acs.est.5c11193.     Reference: November 11th, 2025
Gene Product: January 31st, 2019
17 days agosaur4 small auxin up RNA4:
1.07
GRMZM2G460861
Zm00001d032088
Zm00001eb040610
Yixia Zhu et al. 2025. CuO@SiO2 Seed Priming Enhances Drought Tolerance and Phosphorus Acquisition Efficiency of Maize. Environ Sci Technol. :doi: 10.1021/acs.est.5c11193.     Reference: November 11th, 2025
Gene Product: November 26th, 2021
17 days agoelip2 early light inducible protein2:
 
GRMZM2G425728
Zm00001d018940
Zm00001eb301260
Yixia Zhu et al. 2025. CuO@SiO2 Seed Priming Enhances Drought Tolerance and Phosphorus Acquisition Efficiency of Maize. Environ Sci Technol. :doi: 10.1021/acs.est.5c11193.     Reference: November 11th, 2025
Gene Product: July 27th, 2013
17 days agoprh7 protein phosphatase homolog7:
 
GRMZM2G082487
Zm00001d005609
Zm00001eb098220
Yixia Zhu et al. 2025. CuO@SiO2 Seed Priming Enhances Drought Tolerance and Phosphorus Acquisition Efficiency of Maize. Environ Sci Technol. :doi: 10.1021/acs.est.5c11193.     Reference: November 11th, 2025
Gene Product: October 25th, 2021
17 days agoprh11 protein phosphatase homolog11:
 
GRMZM2G159811
Zm00001d025055
Zm00001eb419870
Yixia Zhu et al. 2025. CuO@SiO2 Seed Priming Enhances Drought Tolerance and Phosphorus Acquisition Efficiency of Maize. Environ Sci Technol. :doi: 10.1021/acs.est.5c11193.     Reference: November 11th, 2025
Gene Product: October 25th, 2021
17 days agosnrkII9 SnRK2 serine threonine protein kinase9:
 
GRMZM2G081915
Zm00001d033339
Zm00001eb051510
Yixia Zhu et al. 2025. CuO@SiO2 Seed Priming Enhances Drought Tolerance and Phosphorus Acquisition Efficiency of Maize. Environ Sci Technol. :doi: 10.1021/acs.est.5c11193.     Reference: November 11th, 2025
Gene Product: April 14th, 2018
17 days agopyl3 pyrabactin resistance-like protein3:
 
GRMZM2G154987
Zm00001d016294
Zm00001eb239670
Yixia Zhu et al. 2025. CuO@SiO2 Seed Priming Enhances Drought Tolerance and Phosphorus Acquisition Efficiency of Maize. Environ Sci Technol. :doi: 10.1021/acs.est.5c11193.     Reference: November 11th, 2025
Gene Product: January 31st, 2021
17 days agonii1 nitrate reductase1:
 
GRMZM2G102959
Zm00001d018161
Zm00001eb255880
Yixia Zhu et al. 2025. CuO@SiO2 Seed Priming Enhances Drought Tolerance and Phosphorus Acquisition Efficiency of Maize. Environ Sci Technol. :doi: 10.1021/acs.est.5c11193.     Reference: November 11th, 2025
Gene Product: September 1st, 2003
17 days agogid2 gibberellin-insensitive dwarf protein homolog2:
 
GRMZM2G016605
Zm00001d010308
Zm00001eb349710
Yixia Zhu et al. 2025. CuO@SiO2 Seed Priming Enhances Drought Tolerance and Phosphorus Acquisition Efficiency of Maize. Environ Sci Technol. :doi: 10.1021/acs.est.5c11193.     Reference: November 11th, 2025
Gene Product: October 6th, 2021
17 days agovq58 VQ motif-transcription factor58:
 
GRMZM2G180262
Zm00001d023269
Zm00001eb405310
Li, K et al. 2025. Genetic basis of flavor complexity in sweet corn Nature Genetics. :doi: 10.1038/s41588-025-02401-0.     Reference: November 11th, 2025
Gene Product: August 31st, 2019
17 days agoaas8 auxin amido synthetase8:
 
GRMZM2G053338
Zm00001d022017
Zm00001eb326420
Yixia Zhu et al. 2025. CuO@SiO2 Seed Priming Enhances Drought Tolerance and Phosphorus Acquisition Efficiency of Maize. Environ Sci Technol. :doi: 10.1021/acs.est.5c11193.     Reference: November 11th, 2025
Gene Product: October 21st, 2019
17 days agoaas2 auxin amido synthetase2:
 
GRMZM2G378106
Zm00001d006753
Zm00001eb108330
Yixia Zhu et al. 2025. CuO@SiO2 Seed Priming Enhances Drought Tolerance and Phosphorus Acquisition Efficiency of Maize. Environ Sci Technol. :doi: 10.1021/acs.est.5c11193.     Reference: November 11th, 2025
Gene Product: October 21st, 2019
17 days agoabre1 ABA-responsive cis-element binding protein1:
 
Zm00001d042779
Zm00001eb147240
Yixia Zhu et al. 2025. CuO@SiO2 Seed Priming Enhances Drought Tolerance and Phosphorus Acquisition Efficiency of Maize. Environ Sci Technol. :doi: 10.1021/acs.est.5c11193.     Reference: November 11th, 2025
Gene Product: January 2nd, 2020
17 days agoplc9 phospholipase C9:
 
GRMZM2G422670
Zm00001d034875
Zm00001eb064750
Yixia Zhu et al. 2025. CuO@SiO2 Seed Priming Enhances Drought Tolerance and Phosphorus Acquisition Efficiency of Maize. Environ Sci Technol. :doi: 10.1021/acs.est.5c11193.     Reference: November 11th, 2025
Gene Product: January 12th, 2021
17 days agopyl7 pyrabactin resistance-like protein7:
 
GRMZM2G144224
Zm00001d028793
Zm00001eb013780
Yixia Zhu et al. 2025. CuO@SiO2 Seed Priming Enhances Drought Tolerance and Phosphorus Acquisition Efficiency of Maize. Environ Sci Technol. :doi: 10.1021/acs.est.5c11193.     Reference: November 11th, 2025
Gene Product: January 31st, 2021
17 days agopgl23 polygalacturonase23:
 
AC210013.4_FG017
Zm00001d013032
Zm00001eb212450
Yixia Zhu et al. 2025. CuO@SiO2 Seed Priming Enhances Drought Tolerance and Phosphorus Acquisition Efficiency of Maize. Environ Sci Technol. :doi: 10.1021/acs.est.5c11193.     Reference: November 11th, 2025
Gene Product: October 4th, 2021
17 days agosaur5 small auxin up RNA5:
 
GRMZM2G400156
Zm00001d032091
Zm00001eb040650
Yixia Zhu et al. 2025. CuO@SiO2 Seed Priming Enhances Drought Tolerance and Phosphorus Acquisition Efficiency of Maize. Environ Sci Technol. :doi: 10.1021/acs.est.5c11193.     Reference: November 11th, 2025
Gene Product: November 26th, 2021
17 days agosaur6 small auxin up RNA6:
 
GRMZM2G059138
Zm00001d032094
Zm00001eb040680
Yixia Zhu et al. 2025. CuO@SiO2 Seed Priming Enhances Drought Tolerance and Phosphorus Acquisition Efficiency of Maize. Environ Sci Technol. :doi: 10.1021/acs.est.5c11193.     Reference: November 11th, 2025
Gene Product: November 26th, 2021
17 days agosaur49 small auxin up RNA49:
 
GRMZM2G113135
Zm00001d013869
Yixia Zhu et al. 2025. CuO@SiO2 Seed Priming Enhances Drought Tolerance and Phosphorus Acquisition Efficiency of Maize. Environ Sci Technol. :doi: 10.1021/acs.est.5c11193.     Reference: November 11th, 2025
Gene Product: November 26th, 2021
17 days agosaur51 small auxin up RNA51:
 
GRMZM2G361993
Zm00001d014774
Zm00001eb227970
Yixia Zhu et al. 2025. CuO@SiO2 Seed Priming Enhances Drought Tolerance and Phosphorus Acquisition Efficiency of Maize. Environ Sci Technol. :doi: 10.1021/acs.est.5c11193.     Reference: November 11th, 2025
Gene Product: November 26th, 2021
17 days agosaur52 small auxin up RNA52:
 
GRMZM2G050080
Zm00001d015354
Zm00001eb232940
Yixia Zhu et al. 2025. CuO@SiO2 Seed Priming Enhances Drought Tolerance and Phosphorus Acquisition Efficiency of Maize. Environ Sci Technol. :doi: 10.1021/acs.est.5c11193.     Reference: November 11th, 2025
Gene Product: November 26th, 2021
17 days agosaur54 small auxin up RNA54:
 
GRMZM2G312274
Zm00001d016582
Zm00001eb241870
Yixia Zhu et al. 2025. CuO@SiO2 Seed Priming Enhances Drought Tolerance and Phosphorus Acquisition Efficiency of Maize. Environ Sci Technol. :doi: 10.1021/acs.est.5c11193.     Reference: November 11th, 2025
Gene Product: November 26th, 2021
17 days agosaur55 small auxin up RNA55:
 
GRMZM2G391596
Zm00001d017397
Zm00001eb248690
Yixia Zhu et al. 2025. CuO@SiO2 Seed Priming Enhances Drought Tolerance and Phosphorus Acquisition Efficiency of Maize. Environ Sci Technol. :doi: 10.1021/acs.est.5c11193.     Reference: November 11th, 2025
Gene Product: November 26th, 2021
17 days agosaur59 small auxin up RNA59:
 
GRMZM2G462760
Zm00001d036623
Zm00001eb274080
Yixia Zhu et al. 2025. CuO@SiO2 Seed Priming Enhances Drought Tolerance and Phosphorus Acquisition Efficiency of Maize. Environ Sci Technol. :doi: 10.1021/acs.est.5c11193.     Reference: November 11th, 2025
Gene Product: November 26th, 2021
17 days agosaur65 small auxin up RNA65:
 
GRMZM2G012636
Zm00001d021454
Zm00001eb321070
Yixia Zhu et al. 2025. CuO@SiO2 Seed Priming Enhances Drought Tolerance and Phosphorus Acquisition Efficiency of Maize. Environ Sci Technol. :doi: 10.1021/acs.est.5c11193.     Reference: November 11th, 2025
Gene Product: November 26th, 2021
17 days agosaur66 small auxin up RNA66:
 
GRMZM2G042429
Zm00001d021455
Zm00001eb321090
Yixia Zhu et al. 2025. CuO@SiO2 Seed Priming Enhances Drought Tolerance and Phosphorus Acquisition Efficiency of Maize. Environ Sci Technol. :doi: 10.1021/acs.est.5c11193.     Reference: November 11th, 2025
Gene Product: November 26th, 2021
17 days agosaur77 small auxin up RNA77:
 
GRMZM2G456644
Zm00001d026262
Zm00001eb430530
Yixia Zhu et al. 2025. CuO@SiO2 Seed Priming Enhances Drought Tolerance and Phosphorus Acquisition Efficiency of Maize. Environ Sci Technol. :doi: 10.1021/acs.est.5c11193.     Reference: November 11th, 2025
Gene Product: November 26th, 2021
17 days agosaur78 small auxin up RNA78:
 
GRMZM2G354209
Zm00001d026308
Zm00001eb431010
Yixia Zhu et al. 2025. CuO@SiO2 Seed Priming Enhances Drought Tolerance and Phosphorus Acquisition Efficiency of Maize. Environ Sci Technol. :doi: 10.1021/acs.est.5c11193.     Reference: November 11th, 2025
Gene Product: November 26th, 2021
17 days agosaur79 small auxin up RNA79:
 
GRMZM2G442000
Zm00001d026530
Zm00001eb432920
Yixia Zhu et al. 2025. CuO@SiO2 Seed Priming Enhances Drought Tolerance and Phosphorus Acquisition Efficiency of Maize. Environ Sci Technol. :doi: 10.1021/acs.est.5c11193.     Reference: November 11th, 2025
Gene Product: November 26th, 2021
17 days agodhn16 dehydrin16:
 
GRMZM2G052364
Zm00001d010102
Zm00001eb348010
Yixia Zhu et al. 2025. CuO@SiO2 Seed Priming Enhances Drought Tolerance and Phosphorus Acquisition Efficiency of Maize. Environ Sci Technol. :doi: 10.1021/acs.est.5c11193.     Reference: November 11th, 2025
Gene Product: August 5th, 2017
17 days agoena2 efflux transporter of NA2:
 
GRMZM2G432480
Zm00001d014611
Zm00001eb226430
Yixia Zhu et al. 2025. CuO@SiO2 Seed Priming Enhances Drought Tolerance and Phosphorus Acquisition Efficiency of Maize. Environ Sci Technol. :doi: 10.1021/acs.est.5c11193.     Reference: November 11th, 2025
Gene Product: January 18th, 2022
17 days agoring238 RING-type E3 ligase238:
 
GRMZM2G044773
Zm00001d050798
Zm00001eb182360
Yixia Zhu et al. 2025. CuO@SiO2 Seed Priming Enhances Drought Tolerance and Phosphorus Acquisition Efficiency of Maize. Environ Sci Technol. :doi: 10.1021/acs.est.5c11193.     Reference: November 11th, 2025
Gene Product: May 22nd, 2025
17 days agocrr5 cytokinin response regulator5:
3.05
GRMZM2G156019
GRMZM6G980248
Zm00001d042066
Zm00001eb140730
Li, K et al. 2025. Genetic basis of flavor complexity in sweet corn Nature Genetics. :doi: 10.1038/s41588-025-02401-0.     Reference: November 11th, 2025
Gene Product: June 30th, 2017
Variation: March 31st, 2005
17 days agoIDP2557  :
5.00
GRMZM2G110881
GRMZM2G410865
Zm00001d012980
Zm00001eb211960
Li, K et al. 2025. Genetic basis of flavor complexity in sweet corn Nature Genetics. :doi: 10.1038/s41588-025-02401-0.     Reference: November 11th, 2025
Variation: March 31st, 2005
17 days agosfp3 sulfate transporter3:
1.02
GRMZM2G042171
Zm00001d028164
Zm00001eb008170
Yixia Zhu et al. 2025. CuO@SiO2 Seed Priming Enhances Drought Tolerance and Phosphorus Acquisition Efficiency of Maize. Environ Sci Technol. :doi: 10.1021/acs.est.5c11193.     Reference: November 11th, 2025
Gene Product: May 8th, 2020
17 days agohk4 histidine kinase4:
1.10
GRMZM2G155767
Zm00001d033786
Zm00001eb055280
Yixia Zhu et al. 2025. CuO@SiO2 Seed Priming Enhances Drought Tolerance and Phosphorus Acquisition Efficiency of Maize. Environ Sci Technol. :doi: 10.1021/acs.est.5c11193.     Reference: November 11th, 2025
Gene Product: May 20th, 2016
17 days agocrr4 cytokinin response regulator4:
8.06
GRMZM2G319187
Zm00001d011849
Zm00001eb362820
Yixia Zhu et al. 2025. CuO@SiO2 Seed Priming Enhances Drought Tolerance and Phosphorus Acquisition Efficiency of Maize. Environ Sci Technol. :doi: 10.1021/acs.est.5c11193.     Reference: November 11th, 2025
Gene Product: June 30th, 2017
18 days agomkkk29 MAP kinase kinase kinase29:
 
GRMZM2G011070
Zm00001d035817
Zm00001eb268050
Xiaodong Gong et al. 2025. Phosphoproteomic Insights into the Dynamic Responses of Maize (Zea mays L.) to Setosphaeria turcica Infection. J Agric Food Chem. :doi: 10.1021/acs.jafc.5c08224.     Reference: November 10th, 2025
Gene Product: March 14th, 2022
18 days agorps6a ribosomal proteinS6a:
7.04
GRMZM2G054136
Zm00001d022180
Zm00001eb327790
Xiaodong Gong et al. 2025. Phosphoproteomic Insights into the Dynamic Responses of Maize (Zea mays L.) to Setosphaeria turcica Infection. J Agric Food Chem. :doi: 10.1021/acs.jafc.5c08224.     Reference: November 10th, 2025
Gene Product: September 1st, 2003
Variation: July 3rd, 2013
18 days agomyb2 myb transcription factor2:
3.05
AC203535.4_FG001
Zm00001d042287
Zm00001eb142770
Xiaodong Gong et al. 2025. Phosphoproteomic Insights into the Dynamic Responses of Maize (Zea mays L.) to Setosphaeria turcica Infection. J Agric Food Chem. :doi: 10.1021/acs.jafc.5c08224.     Reference: November 10th, 2025
Gene Product: September 1st, 2003
Variation: January 30th, 2013
18 days agocdpk4 calcium dependent protein kinase4:
10.06
GRMZM2G321239
Zm00001d026018
Zm00001eb428080
Kaur, R et al. 2022. Characterization of drought tolerance in maize: omics approaches. In: Bioinformatics in Agriculture; Next Generation Sequencing Era. Edited by: Pradeep Sharma, Dinesh Yadav and Rajarshi Kumar Gaur; ISBN: 978-0-323-89778-5; Academic Press     Reference: November 10th, 2025
Gene Product: December 3rd, 2013
Variation: January 10th, 2018
18 days agopep1 phosphoenolpyruvate carboxylase1:
9.03
GRMZM2G083841
Zm00001d046170
Zm00001eb383680
Xiaodong Gong et al. 2025. Phosphoproteomic Insights into the Dynamic Responses of Maize (Zea mays L.) to Setosphaeria turcica Infection. J Agric Food Chem. :doi: 10.1021/acs.jafc.5c08224.     Reference: November 10th, 2025
Gene Product: September 1st, 2003
Variation: May 27th, 2020
18 days agoumc1115  :
10.04
GRMZM2G167280
Zm00001d025726
Zm00001eb425300
Xiaodong Gong et al. 2025. Phosphoproteomic Insights into the Dynamic Responses of Maize (Zea mays L.) to Setosphaeria turcica Infection. J Agric Food Chem. :doi: 10.1021/acs.jafc.5c08224.     Reference: November 10th, 2025
Variation: September 1st, 2003
18 days agonfya1 nuclear transcription factor y subunit a1:
1.02
GRMZM2G000686
Zm00001d027874
Zm00001eb005690
Kaur, R et al. 2022. Characterization of drought tolerance in maize: omics approaches. In: Bioinformatics in Agriculture; Next Generation Sequencing Era. Edited by: Pradeep Sharma, Dinesh Yadav and Rajarshi Kumar Gaur; ISBN: 978-0-323-89778-5; Academic Press     Reference: November 10th, 2025
Gene Product: August 9th, 2016
Variation: July 21st, 2022
18 days agocadtfr11 CCAAT-DR1-transcription factor 11:
 
GRMZM2G146286
Zm00001d032328
Zm00001eb042490
Kaur, R et al. 2022. Characterization of drought tolerance in maize: omics approaches. In: Bioinformatics in Agriculture; Next Generation Sequencing Era. Edited by: Pradeep Sharma, Dinesh Yadav and Rajarshi Kumar Gaur; ISBN: 978-0-323-89778-5; Academic Press     Reference: November 10th, 2025
Gene Product: August 9th, 2016
18 days agoca3p2 CCAAT-HAP3-transcription factor 32:
 
GRMZM2G480621
Zm00001d001775
Zm00001eb065670
Kaur, R et al. 2022. Characterization of drought tolerance in maize: omics approaches. In: Bioinformatics in Agriculture; Next Generation Sequencing Era. Edited by: Pradeep Sharma, Dinesh Yadav and Rajarshi Kumar Gaur; ISBN: 978-0-323-89778-5; Academic Press     Reference: November 10th, 2025
Gene Product: August 9th, 2016
18 days agowrky48 WRKY-transcription factor 48:
 
GRMZM2G120320
Zm00001d015515
Zm00001eb234120
Kaur, R et al. 2022. Characterization of drought tolerance in maize: omics approaches. In: Bioinformatics in Agriculture; Next Generation Sequencing Era. Edited by: Pradeep Sharma, Dinesh Yadav and Rajarshi Kumar Gaur; ISBN: 978-0-323-89778-5; Academic Press     Reference: November 10th, 2025
Variation: April 16th, 2025
18 days agosimk1 salt-induced MAP kinase1:
 
GRMZM2G127141
Zm00001d047349
Zm00001eb393610
Xiaodong Gong et al. 2025. Phosphoproteomic Insights into the Dynamic Responses of Maize (Zea mays L.) to Setosphaeria turcica Infection. J Agric Food Chem. :doi: 10.1021/acs.jafc.5c08224.     Reference: November 10th, 2025
Gene Product: July 12th, 2013
18 days agoaasr3 abscisic acid stress ripening3:
2.04
GRMZM2G044132
GRMZM5G806182
Zm00001d003712
Zm00001eb083180
Kaur, R et al. 2022. Characterization of drought tolerance in maize: omics approaches. In: Bioinformatics in Agriculture; Next Generation Sequencing Era. Edited by: Pradeep Sharma, Dinesh Yadav and Rajarshi Kumar Gaur; ISBN: 978-0-323-89778-5; Academic Press     Reference: November 10th, 2025
Gene Product: December 1st, 2011
18 days agopck1 phosphoenolpyruvate carboxykinase1:
1.03
GRMZM2G001696
Zm00001d028471
Zm00001eb011080
Xiaodong Gong et al. 2025. Phosphoproteomic Insights into the Dynamic Responses of Maize (Zea mays L.) to Setosphaeria turcica Infection. J Agric Food Chem. :doi: 10.1021/acs.jafc.5c08224.     Reference: November 10th, 2025
Gene Product: August 7th, 2014
Variation: September 25th, 2014
18 days agodnaJ70 DnaJ/Hsp40 70:
 
GRMZM2G145152
Zm00001d020762
Zm00001eb315320
Xiaodong Gong et al. 2025. Phosphoproteomic Insights into the Dynamic Responses of Maize (Zea mays L.) to Setosphaeria turcica Infection. J Agric Food Chem. :doi: 10.1021/acs.jafc.5c08224.     Reference: November 10th, 2025
Gene Product: September 1st, 2003
18 days agomkp1 MAP kinase phosphatase1:
 
GRMZM2G005350
Zm00001d011037
Zm00001eb355580
Xiaodong Gong et al. 2025. Phosphoproteomic Insights into the Dynamic Responses of Maize (Zea mays L.) to Setosphaeria turcica Infection. J Agric Food Chem. :doi: 10.1021/acs.jafc.5c08224.   AT3G55270 (TAIR) Reference: November 10th, 2025
Gene Product: June 21st, 2019
18 days agotipd1 tip growth defective1:
 
GRMZM2G087806
Zm00001d046590
Zm00001eb386990
Kaur, R et al. 2022. Characterization of drought tolerance in maize: omics approaches. In: Bioinformatics in Agriculture; Next Generation Sequencing Era. Edited by: Pradeep Sharma, Dinesh Yadav and Rajarshi Kumar Gaur; ISBN: 978-0-323-89778-5; Academic Press   AT5G20350 (TAIR) Reference: November 10th, 2025
Gene Product: February 26th, 2022
Variation: November 8th, 2019
18 days agorfp1 ring finger protein1:
 
GRMZM2G492252
Zm00001d047823
Zm00001eb397760
Kaur, R et al. 2022. Characterization of drought tolerance in maize: omics approaches. In: Bioinformatics in Agriculture; Next Generation Sequencing Era. Edited by: Pradeep Sharma, Dinesh Yadav and Rajarshi Kumar Gaur; ISBN: 978-0-323-89778-5; Academic Press     Reference: November 10th, 2025
Gene Product: May 22nd, 2025
18 days agodbf1 DRE-binding protein 1:
1.07
GRMZM2G061487
Zm00001d032295
Zm00001eb042240
Kaur, R et al. 2022. Characterization of drought tolerance in maize: omics approaches. In: Bioinformatics in Agriculture; Next Generation Sequencing Era. Edited by: Pradeep Sharma, Dinesh Yadav and Rajarshi Kumar Gaur; ISBN: 978-0-323-89778-5; Academic Press     Reference: November 10th, 2025
Gene Product: April 10th, 2013
Variation: July 27th, 2005
18 days agodbf2 DRE-binding protein 2:
9.04
GRMZM5G889719
Zm00001d000179
Zm00001eb391190
Kaur, R et al. 2022. Characterization of drought tolerance in maize: omics approaches. In: Bioinformatics in Agriculture; Next Generation Sequencing Era. Edited by: Pradeep Sharma, Dinesh Yadav and Rajarshi Kumar Gaur; ISBN: 978-0-323-89778-5; Academic Press     Reference: November 10th, 2025
Gene Product: April 10th, 2013
18 days agopsei4 cystatin4:
8.01
GRMZM2G013461
Zm00001d008268
Zm00001eb333010
Kaur, R et al. 2022. Characterization of drought tolerance in maize: omics approaches. In: Bioinformatics in Agriculture; Next Generation Sequencing Era. Edited by: Pradeep Sharma, Dinesh Yadav and Rajarshi Kumar Gaur; ISBN: 978-0-323-89778-5; Academic Press     Reference: November 10th, 2025
Gene Product: April 21st, 2008
Variation: April 21st, 2008
19 days agocat1 catalase1:
5.03
GRMZM2G088212
Zm00001d014848
Zm00001eb228570
Wan Woo Yeom et al. 2025. Multifunctional Zea mays GLUTAREDOXIN S17 acts as a macromolecular regulator to improve drought resilience in field-grown maize. Int J Biol Macromol. :148637.     Reference: November 9th, 2025
Gene Product: September 1st, 2003
Variation: September 1st, 2003
19 days agodhn2 dehydrin2:
9.03
GRMZM2G098750
Zm00001d045321
Zm00001eb376710
Wan Woo Yeom et al. 2025. Multifunctional Zea mays GLUTAREDOXIN S17 acts as a macromolecular regulator to improve drought resilience in field-grown maize. Int J Biol Macromol. :148637.     Reference: November 9th, 2025
Gene Product: September 1st, 2003
19 days agosod2 superoxide dismutase2:
7.05
GRMZM2G025992
Zm00001d022505
Zm00001eb330020
Wan Woo Yeom et al. 2025. Multifunctional Zea mays GLUTAREDOXIN S17 acts as a macromolecular regulator to improve drought resilience in field-grown maize. Int J Biol Macromol. :148637.     Reference: November 9th, 2025
Gene Product: October 4th, 2021
Variation: August 2nd, 2013
19 days agonactf25 NAC-transcription factor 25:
 
GRMZM2G127379
Zm00001d023294
Zm00001eb405590
Wan Woo Yeom et al. 2025. Multifunctional Zea mays GLUTAREDOXIN S17 acts as a macromolecular regulator to improve drought resilience in field-grown maize. Int J Biol Macromol. :148637.   AT3G04070 (TAIR)
LOC_Os11g03300 (MSU/TIGR)
Reference: November 9th, 2025
Gene Product: July 8th, 2019
Variation: September 22nd, 2015
19 days agogsr1 glutathione reductase1:
1.01
GRMZM2G172322
Zm00001d027769
Zm00001eb004790
Wan Woo Yeom et al. 2025. Multifunctional Zea mays GLUTAREDOXIN S17 acts as a macromolecular regulator to improve drought resilience in field-grown maize. Int J Biol Macromol. :148637.     Reference: November 9th, 2025
Gene Product: September 1st, 2003
Variation: January 30th, 2015
19 days agoso1 sulfite oxidase1:
1.06
GRMZM2G114739
Zm00001d031617
Zm00001eb036560
Wan Woo Yeom et al. 2025. Multifunctional Zea mays GLUTAREDOXIN S17 acts as a macromolecular regulator to improve drought resilience in field-grown maize. Int J Biol Macromol. :148637.     Reference: November 9th, 2025
Gene Product: April 16th, 2013
19 days agonced4 nine-cis-epoxycarotenoid dioxygenase4:
 
GRMZM2G408158
Zm00001d007876
Zm00001eb117480
Wan Woo Yeom et al. 2025. Multifunctional Zea mays GLUTAREDOXIN S17 acts as a macromolecular regulator to improve drought resilience in field-grown maize. Int J Biol Macromol. :148637.     Reference: November 9th, 2025
Gene Product: September 20th, 2012
19 days agovpp5 vacuolar-type H+-pyrophosphatase5:
 
GRMZM2G170927
Zm00001d046591
Zm00001eb387010
Wan Woo Yeom et al. 2025. Multifunctional Zea mays GLUTAREDOXIN S17 acts as a macromolecular regulator to improve drought resilience in field-grown maize. Int J Biol Macromol. :148637.   AT1G15690 (TAIR)
LOC_Os02g09150 (MSU/TIGR)
Reference: November 9th, 2025
Gene Product: August 16th, 2016
Variation: August 16th, 2016
19 days agogshs1 glutathione synthetase1:
 
AC217814.2_FG006
GRMZM2G038492
GRMZM2G360494
Zm00001d007667
Zm00001eb115560
Wan Woo Yeom et al. 2025. Multifunctional Zea mays GLUTAREDOXIN S17 acts as a macromolecular regulator to improve drought resilience in field-grown maize. Int J Biol Macromol. :148637.     Reference: November 9th, 2025
Gene Product: December 2nd, 2018
19 days agogrx23 glutaredoxin23:
 
GRMZM2G131769
Zm00001d032546
Zm00001eb044380
Wan Woo Yeom et al. 2025. Multifunctional Zea mays GLUTAREDOXIN S17 acts as a macromolecular regulator to improve drought resilience in field-grown maize. Int J Biol Macromol. :148637.     Reference: November 9th, 2025
Gene Product: January 21st, 2021
19 days agogrx24 glutaredoxin24:
5.03
GRMZM2G090736
Zm00001d013927
Zm00001eb220880
Wan Woo Yeom et al. 2025. Multifunctional Zea mays GLUTAREDOXIN S17 acts as a macromolecular regulator to improve drought resilience in field-grown maize. Int J Biol Macromol. :148637.     Reference: November 9th, 2025
Gene Product: January 21st, 2021
20 days agoLOC100285088  :
 
GRMZM2G166767
Zm00001d047796
Zm00001eb397570
Yan, MZ et al. 2025. The Influence of ZmDRR206 Regulated Cell Wall Biosynthesis on Photosynthesis in Maize Seedlings J Plant Growth Reg. :doi: 10.1007/s00344-025-11924-z.     Reference: November 8th, 2025
Gene Product: May 26th, 2016
20 days agoprx71 peroxidase71:
 
GRMZM2G171078
Zm00001d036835
Zm00001eb276250
Wang, XQ et al. 2025. ZmPRX38 is required for improving stalk strength and yield in maize J Genet Genomics. :doi: 10.1016/j.jgg.2025.10.009.     Reference: November 8th, 2025
Gene Product: January 20th, 2025
20 days agoZm00001eb410710  :
 
   Yan, MZ et al. 2025. The Influence of ZmDRR206 Regulated Cell Wall Biosynthesis on Photosynthesis in Maize Seedlings J Plant Growth Reg. :doi: 10.1007/s00344-025-11924-z.     Reference: November 8th, 2025
Gene Product: January 20th, 2025
20 days agoprx47 peroxidase47:
 
   Wang, XQ et al. 2025. ZmPRX38 is required for improving stalk strength and yield in maize J Genet Genomics. :doi: 10.1016/j.jgg.2025.10.009.     Reference: November 8th, 2025
Gene Product: January 20th, 2025
20 days agoinvan6 invertase alkaline neutral6:
5.03
GRMZM2G477236
Zm00001d015094
Zm00001eb230860
Maude Bélanger et al. 2025. Characterization of a alkaline/neutral invertase, ZmINVAN8, in heterotrophic plastids of developing maize endosperm. Plant Physiol Biochem. :110715.     Reference: November 8th, 2025
Gene Product: June 12th, 2018
Variation: September 15th, 2022
20 days agocbl3 calcineurin B-like3:
1.09
GRMZM2G112672
Zm00001d033295
Zm00001eb051150
Singh, SK et al. 2025. Synergy between Piriformospora Indica and Salicylic Acid Modulates Maize Stress Physiology, Ultrastructure, and Gene Expression J Plant Growth Reg. :doi: 10.1007/s00344-025-11926-x.     Reference: November 8th, 2025
Gene Product: October 19th, 2016
20 days agoprx42 peroxidase42:
4.08
AC197758.3_FG004
Zm00001d052336
Zm00001eb195210
Wang, XQ et al. 2025. ZmPRX38 is required for improving stalk strength and yield in maize J Genet Genomics. :doi: 10.1016/j.jgg.2025.10.009.     Reference: November 8th, 2025
Gene Product: January 20th, 2025
20 days agoplt2 phospholipid transfer protein homolog2:
3.09
GRMZM2G010868
Zm00001d044686
Zm00001eb163910
Yan, MZ et al. 2025. The Influence of ZmDRR206 Regulated Cell Wall Biosynthesis on Photosynthesis in Maize Seedlings J Plant Growth Reg. :doi: 10.1007/s00344-025-11924-z.     Reference: November 8th, 2025
Gene Product: September 1st, 2003
Variation: September 1st, 2003
20 days agogl1 glossy1:
7.02
GRMZM2G114642
Zm00001d020557
Zm00001eb313510
Yan, MZ et al. 2025. The Influence of ZmDRR206 Regulated Cell Wall Biosynthesis on Photosynthesis in Maize Seedlings J Plant Growth Reg. :doi: 10.1007/s00344-025-11924-z.     Reference: November 8th, 2025
Gene Product: September 1st, 2003
Variation: October 26th, 2006
20 days agogl4 glossy4:
4.06
GRMZM2G003501
Zm00001d051787
Zm00001eb190120
Yan, MZ et al. 2025. The Influence of ZmDRR206 Regulated Cell Wall Biosynthesis on Photosynthesis in Maize Seedlings J Plant Growth Reg. :doi: 10.1007/s00344-025-11924-z.     Reference: November 8th, 2025
Gene Product: November 1st, 2018
Variation: November 1st, 2018
20 days agopr1 red aleurone1:
5.05
GRMZM2G025832
Zm00001d017077
Zm00001eb245960
Yan, MZ et al. 2025. The Influence of ZmDRR206 Regulated Cell Wall Biosynthesis on Photosynthesis in Maize Seedlings J Plant Growth Reg. :doi: 10.1007/s00344-025-11924-z.     Reference: November 8th, 2025
Gene Product: June 20th, 2018
Variation: June 10th, 2011
20 days agosm1 salmon silks1:
6.05 - 6.05
GRMZM2G031311
Zm00001d037784
Zm00001eb284390
Yan, MZ et al. 2025. The Influence of ZmDRR206 Regulated Cell Wall Biosynthesis on Photosynthesis in Maize Seedlings J Plant Growth Reg. :doi: 10.1007/s00344-025-11924-z.     Reference: November 8th, 2025
Gene Product: May 26th, 2016
Variation: May 26th, 2016
20 days agowhp1 white pollen1:
2.08
GRMZM2G151227
Zm00001d007403
Zm00001eb113440
Yan, MZ et al. 2025. The Influence of ZmDRR206 Regulated Cell Wall Biosynthesis on Photosynthesis in Maize Seedlings J Plant Growth Reg. :doi: 10.1007/s00344-025-11924-z.     Reference: November 8th, 2025
Gene Product: September 1st, 2003
Variation: August 24th, 2013
20 days agoplt12 phospholipid transfer protein12:
1.01
GRMZM2G137329
Zm00001d027332
Zm00001eb000850
Yan, MZ et al. 2025. The Influence of ZmDRR206 Regulated Cell Wall Biosynthesis on Photosynthesis in Maize Seedlings J Plant Growth Reg. :doi: 10.1007/s00344-025-11924-z.     Reference: November 8th, 2025
Gene Product: September 1st, 2003
Variation: March 9th, 2016
20 days agohsbp1 herbicide safener binding protein1:
2.05
GRMZM2G085924
Zm00001d004689
Zm00001eb090830
Yan, MZ et al. 2025. The Influence of ZmDRR206 Regulated Cell Wall Biosynthesis on Photosynthesis in Maize Seedlings J Plant Growth Reg. :doi: 10.1007/s00344-025-11924-z.     Reference: November 8th, 2025
Gene Product: September 1st, 2003
Variation: September 1st, 2003
20 days agoplt7 phospholipid transfer protein7:
3.09
GRMZM2G107839
Zm00001d044685
Zm00001eb163880
Yan, MZ et al. 2025. The Influence of ZmDRR206 Regulated Cell Wall Biosynthesis on Photosynthesis in Maize Seedlings J Plant Growth Reg. :doi: 10.1007/s00344-025-11924-z.     Reference: November 8th, 2025
Gene Product: September 1st, 2003
Variation: September 1st, 2003
20 days agomybr97 MYB-related-transcription factor 97:
 
GRMZM2G057955
Zm00001d044194
Zm00001eb159610
Yan, MZ et al. 2025. The Influence of ZmDRR206 Regulated Cell Wall Biosynthesis on Photosynthesis in Maize Seedlings J Plant Growth Reg. :doi: 10.1007/s00344-025-11924-z.     Reference: November 8th, 2025
Variation: March 13th, 2023
20 days agotip1 tonoplast intrinsic protein1:
10.04
Zm00001d027652
Zm00001eb003730
Singh, SK et al. 2025. Synergy between Piriformospora Indica and Salicylic Acid Modulates Maize Stress Physiology, Ultrastructure, and Gene Expression J Plant Growth Reg. :doi: 10.1007/s00344-025-11926-x.     Reference: November 8th, 2025
Gene Product: January 27th, 2022
Variation: September 1st, 2003
20 days agopip1b plasma membrane intrinsic protein1:
5.06
AC209208.3_FG002
Zm00001d017526
Zm00001eb249940
Singh, SK et al. 2025. Synergy between Piriformospora Indica and Salicylic Acid Modulates Maize Stress Physiology, Ultrastructure, and Gene Expression J Plant Growth Reg. :doi: 10.1007/s00344-025-11926-x.     Reference: November 8th, 2025
Gene Product: January 27th, 2022
Variation: April 26th, 2016
20 days agoinvan2 invertase alkaline neutral2:
5.05
GRMZM2G118737
Zm00001d016768
Zm00001eb243380
Maude Bélanger et al. 2025. Characterization of a alkaline/neutral invertase, ZmINVAN8, in heterotrophic plastids of developing maize endosperm. Plant Physiol Biochem. :110715.     Reference: November 8th, 2025
Gene Product: June 12th, 2018
Variation: September 1st, 2003
20 days agobx3 benzoxazinone synthesis3:
4.01
GRMZM2G167549
Zm00001d048702
Zm00001eb165550
Yan, MZ et al. 2025. The Influence of ZmDRR206 Regulated Cell Wall Biosynthesis on Photosynthesis in Maize Seedlings J Plant Growth Reg. :doi: 10.1007/s00344-025-11924-z.     Reference: November 8th, 2025
Gene Product: October 19th, 2011
Variation: November 12th, 2013
20 days agobx5 benzoxazinone synthesis5:
4.01
GRMZM2G063756
Zm00001d048705
Zm00001eb165580
Yan, MZ et al. 2025. The Influence of ZmDRR206 Regulated Cell Wall Biosynthesis on Photosynthesis in Maize Seedlings J Plant Growth Reg. :doi: 10.1007/s00344-025-11924-z.     Reference: November 8th, 2025
Gene Product: October 24th, 2011
Variation: October 27th, 2011
20 days agobx2 benzoxazinone synthesis2:
4.01
GRMZM2G085661
Zm00001d048710
Zm00001eb165620
Yan, MZ et al. 2025. The Influence of ZmDRR206 Regulated Cell Wall Biosynthesis on Photosynthesis in Maize Seedlings J Plant Growth Reg. :doi: 10.1007/s00344-025-11924-z.     Reference: November 8th, 2025
Gene Product: April 8th, 2013
Variation: February 26th, 2025
20 days agozag4 zea agamous4:
3.03
GRMZM2G471089
Zm00001d039434
Zm00001eb120710
Yan, MZ et al. 2025. The Influence of ZmDRR206 Regulated Cell Wall Biosynthesis on Photosynthesis in Maize Seedlings J Plant Growth Reg. :doi: 10.1007/s00344-025-11924-z.     Reference: November 8th, 2025
Gene Product: September 10th, 2021
Variation: September 1st, 2003
20 days agoexpa5 alpha expansin5:
6.06
GRMZM2G361064
Zm00001d038476
Zm00001eb290590
Yan, MZ et al. 2025. The Influence of ZmDRR206 Regulated Cell Wall Biosynthesis on Photosynthesis in Maize Seedlings J Plant Growth Reg. :doi: 10.1007/s00344-025-11924-z.     Reference: November 8th, 2025
Gene Product: March 12th, 2008
Variation: November 24th, 2023
20 days agolox1 lipoxygenase1:
3.06
GRMZM2G156861
Zm00001d042541
Zm00001eb144960
Yan, MZ et al. 2025. The Influence of ZmDRR206 Regulated Cell Wall Biosynthesis on Photosynthesis in Maize Seedlings J Plant Growth Reg. :doi: 10.1007/s00344-025-11924-z.     Reference: November 8th, 2025
Gene Product: November 13th, 2014
Variation: July 24th, 2008
20 days agoinvan7 invertase alkaline neutral7:
1.03
GRMZM2G084940
Zm00001d028926
Zm00001eb015090
Maude Bélanger et al. 2025. Characterization of a alkaline/neutral invertase, ZmINVAN8, in heterotrophic plastids of developing maize endosperm. Plant Physiol Biochem. :110715.     Reference: November 8th, 2025
Gene Product: June 12th, 2018
20 days agoplt1 phospholipid transfer protein homolog1:
3.06
GRMZM2G101958
Zm00001d023343
Zm00001eb406100
Yan, MZ et al. 2025. The Influence of ZmDRR206 Regulated Cell Wall Biosynthesis on Photosynthesis in Maize Seedlings J Plant Growth Reg. :doi: 10.1007/s00344-025-11924-z.     Reference: November 8th, 2025
Gene Product: September 1st, 2003
Variation: March 17th, 2015
20 days agopx14 peroxidase14:
2.03
GRMZM2G108219
Zm00001d002897
Zm00001eb076170
Wang, XQ et al. 2025. ZmPRX38 is required for improving stalk strength and yield in maize J Genet Genomics. :doi: 10.1016/j.jgg.2025.10.009.     Reference: November 8th, 2025
Gene Product: January 20th, 2025
Variation: February 22nd, 2015
20 days agofht1 flavanone 3-hydroxylase1:
2.01 - 2.02
GRMZM2G062396
Zm00001d001960
Zm00001eb067380
Yan, MZ et al. 2025. The Influence of ZmDRR206 Regulated Cell Wall Biosynthesis on Photosynthesis in Maize Seedlings J Plant Growth Reg. :doi: 10.1007/s00344-025-11924-z.     Reference: November 8th, 2025
Gene Product: June 12th, 2025
Variation: September 1st, 2003
20 days agokcs13 3-ketoacyl-CoA synthase13:
1.02
GRMZM2G445602
Zm00001d027904
Zm00001eb006020
Yan, MZ et al. 2025. The Influence of ZmDRR206 Regulated Cell Wall Biosynthesis on Photosynthesis in Maize Seedlings J Plant Growth Reg. :doi: 10.1007/s00344-025-11924-z.     Reference: November 8th, 2025
Gene Product: November 1st, 2018
20 days agoamyb5 beta amylase5:
7.03
GRMZM2G058310
Zm00001d021702
Zm00001eb323450
Yan, MZ et al. 2025. The Influence of ZmDRR206 Regulated Cell Wall Biosynthesis on Photosynthesis in Maize Seedlings J Plant Growth Reg. :doi: 10.1007/s00344-025-11924-z.     Reference: November 8th, 2025
Gene Product: February 26th, 2021
Variation: July 14th, 2012
20 days agoinvan5 invertase alkaline neutral5:
2.05
GRMZM2G115451
Zm00001d004804
Zm00001eb091640
Maude Bélanger et al. 2025. Characterization of a alkaline/neutral invertase, ZmINVAN8, in heterotrophic plastids of developing maize endosperm. Plant Physiol Biochem. :110715.     Reference: November 8th, 2025
Gene Product: June 12th, 2018
20 days agolox2 lipoxygenase2:
3.06
GRMZM2G156861
Zm00001d042540
Zm00001eb144930
Yan, MZ et al. 2025. The Influence of ZmDRR206 Regulated Cell Wall Biosynthesis on Photosynthesis in Maize Seedlings J Plant Growth Reg. :doi: 10.1007/s00344-025-11924-z.     Reference: November 8th, 2025
Gene Product: January 3rd, 2018
Variation: July 18th, 2017
20 days agoasn4 asparagine synthetase4:
9.06
GRMZM2G078472
Zm00001d047736
Zm00001eb396990
Kumar, P et al. 2025. Harnessing teosinte for quality traits enhancement and genetic diversity in maize Cereal Res Commun. :doi: 10.1007/s42976-025-00734-4.     Reference: November 8th, 2025
Gene Product: February 1st, 2021
Variation: November 16th, 2022
20 days agofls1 flavonol synthase1:
 
GRMZM2G152801
Zm00001d018184
Zm00001eb256020
Yan, MZ et al. 2025. The Influence of ZmDRR206 Regulated Cell Wall Biosynthesis on Photosynthesis in Maize Seedlings J Plant Growth Reg. :doi: 10.1007/s00344-025-11924-z.     Reference: November 8th, 2025
Gene Product: October 10th, 2012
Variation: October 9th, 2012
20 days agoelip1 early light inducible protein1:
 
GRMZM2G355752
Zm00001d007827
Zm00001eb116960
Yan, MZ et al. 2025. The Influence of ZmDRR206 Regulated Cell Wall Biosynthesis on Photosynthesis in Maize Seedlings J Plant Growth Reg. :doi: 10.1007/s00344-025-11924-z.     Reference: November 8th, 2025
Gene Product: July 27th, 2013
20 days agopox1 guaiacol peroxidase1:
 
GRMZM2G104394
Zm00001d040702
Zm00001eb130940
Wang, XQ et al. 2025. ZmPRX38 is required for improving stalk strength and yield in maize J Genet Genomics. :doi: 10.1016/j.jgg.2025.10.009.     Reference: November 8th, 2025
Gene Product: September 1st, 2003
20 days agosweet4a sugars will eventually be exported transporter4a:
 
GRMZM2G000812
Zm00001d015905
Zm00001eb236760
Yan, MZ et al. 2025. The Influence of ZmDRR206 Regulated Cell Wall Biosynthesis on Photosynthesis in Maize Seedlings J Plant Growth Reg. :doi: 10.1007/s00344-025-11924-z.     Reference: November 8th, 2025
Gene Product: November 4th, 2015
20 days agosweet17a sugars will eventually be exported transporter17a:
 
GRMZM2G106462
Zm00001d040656
Zm00001eb130550
Yan, MZ et al. 2025. The Influence of ZmDRR206 Regulated Cell Wall Biosynthesis on Photosynthesis in Maize Seedlings J Plant Growth Reg. :doi: 10.1007/s00344-025-11924-z.     Reference: November 8th, 2025
Gene Product: November 4th, 2015
Variation: February 23rd, 2019
20 days agohct8 hydroxycinnamoyltransferase8:
 
GRMZM2G178769
Zm00001d039956
Zm00001eb125080
Yan, MZ et al. 2025. The Influence of ZmDRR206 Regulated Cell Wall Biosynthesis on Photosynthesis in Maize Seedlings J Plant Growth Reg. :doi: 10.1007/s00344-025-11924-z.     Reference: November 8th, 2025
Gene Product: November 7th, 2015
20 days agopal7 phenylalanine ammonia lyase7:
 
GRMZM2G170692
Zm00001d017279
Zm00001eb247660
Yan, MZ et al. 2025. The Influence of ZmDRR206 Regulated Cell Wall Biosynthesis on Photosynthesis in Maize Seedlings J Plant Growth Reg. :doi: 10.1007/s00344-025-11924-z.     Reference: November 8th, 2025
Gene Product: August 13th, 2022
20 days agopal6 phenylalanine ammonia lyase6:
 
GRMZM2G118345
Zm00001d003015
Zm00001eb077220
Yan, MZ et al. 2025. The Influence of ZmDRR206 Regulated Cell Wall Biosynthesis on Photosynthesis in Maize Seedlings J Plant Growth Reg. :doi: 10.1007/s00344-025-11924-z.     Reference: November 8th, 2025
Gene Product: August 13th, 2022
20 days agoinvan1 invertase alkaline neutral1:
 
GRMZM2G136139
Zm00001d051666
Zm00001eb189220
Maude Bélanger et al. 2025. Characterization of a alkaline/neutral invertase, ZmINVAN8, in heterotrophic plastids of developing maize endosperm. Plant Physiol Biochem. :110715.     Reference: November 8th, 2025
Gene Product: June 12th, 2018
20 days agoinvan3 invertase alkaline neutral3:
 
GRMZM2G170842
Zm00001d050716
Zm00001eb181880
Maude Bélanger et al. 2025. Characterization of a alkaline/neutral invertase, ZmINVAN8, in heterotrophic plastids of developing maize endosperm. Plant Physiol Biochem. :110715.     Reference: November 8th, 2025
Gene Product: June 12th, 2018
20 days agoinvan4 invertase alkaline neutral4:
 
GRMZM2G007277
Zm00001d053017
Zm00001eb200930
Maude Bélanger et al. 2025. Characterization of a alkaline/neutral invertase, ZmINVAN8, in heterotrophic plastids of developing maize endosperm. Plant Physiol Biochem. :110715.     Reference: November 8th, 2025
Gene Product: June 12th, 2018
20 days agoinvan8 invertase alkaline neutral8:
 
GRMZM2G040843
Zm00001d050645
Zm00001eb181370
Maude Bélanger et al. 2025. Characterization of a alkaline/neutral invertase, ZmINVAN8, in heterotrophic plastids of developing maize endosperm. Plant Physiol Biochem. :110715.     Reference: November 8th, 2025
Gene Product: June 12th, 2018
20 days agoinvan9 invertase alkaline neutral9:
 
GRMZM2G022782
Zm00001d009177
Zm00001eb340670
Maude Bélanger et al. 2025. Characterization of a alkaline/neutral invertase, ZmINVAN8, in heterotrophic plastids of developing maize endosperm. Plant Physiol Biochem. :110715.     Reference: November 8th, 2025
Gene Product: June 12th, 2018
20 days agoinvan10 invertase alkaline neutral10:
 
GRMZM2G084694
Zm00001d040735
Zm00001eb131170
Maude Bélanger et al. 2025. Characterization of a alkaline/neutral invertase, ZmINVAN8, in heterotrophic plastids of developing maize endosperm. Plant Physiol Biochem. :110715.     Reference: November 8th, 2025
Gene Product: June 12th, 2018
20 days agonhx8 Na+/H+ antiporter 8:
 
GRMZM2G067747
Zm00001d019978
Zm00001eb308990
Singh, SK et al. 2025. Synergy between Piriformospora Indica and Salicylic Acid Modulates Maize Stress Physiology, Ultrastructure, and Gene Expression J Plant Growth Reg. :doi: 10.1007/s00344-025-11926-x.   AT1G79610 (TAIR) Reference: November 8th, 2025
Gene Product: April 26th, 2021
20 days agopme15 pectin methylesterase15:
 
GRMZM2G175499
Zm00001d050082
Zm00001eb177120
Yan, MZ et al. 2025. The Influence of ZmDRR206 Regulated Cell Wall Biosynthesis on Photosynthesis in Maize Seedlings J Plant Growth Reg. :doi: 10.1007/s00344-025-11924-z.     Reference: November 8th, 2025
Gene Product: September 10th, 2018
20 days agopme20 pectin methylesterase20:
 
GRMZM2G025182
Zm00001d022460
Zm00001eb330500
Yan, MZ et al. 2025. The Influence of ZmDRR206 Regulated Cell Wall Biosynthesis on Photosynthesis in Maize Seedlings J Plant Growth Reg. :doi: 10.1007/s00344-025-11924-z.     Reference: November 8th, 2025
Gene Product: September 10th, 2018
20 days agokcs9 3-ketoacyl-CoA synthase9:
 
GRMZM2G104626
Zm00001d047931
Zm00001eb398750
Yan, MZ et al. 2025. The Influence of ZmDRR206 Regulated Cell Wall Biosynthesis on Photosynthesis in Maize Seedlings J Plant Growth Reg. :doi: 10.1007/s00344-025-11924-z.     Reference: November 8th, 2025
Gene Product: November 1st, 2018
20 days agokcs11 3-ketoacyl-CoA synthase11:
 
GRMZM2G149636
Zm00001d028406
Zm00001eb010500
Yan, MZ et al. 2025. The Influence of ZmDRR206 Regulated Cell Wall Biosynthesis on Photosynthesis in Maize Seedlings J Plant Growth Reg. :doi: 10.1007/s00344-025-11924-z.     Reference: November 8th, 2025
Gene Product: November 1st, 2018
20 days agokcs28 3-ketoacyl-CoA synthase28:
 
GRMZM2G164974
Zm00001d028241
Zm00001eb008920
Yan, MZ et al. 2025. The Influence of ZmDRR206 Regulated Cell Wall Biosynthesis on Photosynthesis in Maize Seedlings J Plant Growth Reg. :doi: 10.1007/s00344-025-11924-z.     Reference: November 8th, 2025
Gene Product: November 1st, 2018
20 days agoprx26 peroxidase26:
 
GRMZM2G133475
Zm00001d007160
Zm00001eb111420
Wang, XQ et al. 2025. ZmPRX38 is required for improving stalk strength and yield in maize J Genet Genomics. :doi: 10.1016/j.jgg.2025.10.009.     Reference: November 8th, 2025
Gene Product: January 20th, 2025
20 days agodrg6 dark response gene6:
 
GRMZM2G112538
Zm00001d028814
Zm00001eb013990
Yan, MZ et al. 2025. The Influence of ZmDRR206 Regulated Cell Wall Biosynthesis on Photosynthesis in Maize Seedlings J Plant Growth Reg. :doi: 10.1007/s00344-025-11924-z.     Reference: November 8th, 2025
Gene Product: December 12th, 2022
20 days agopx16 peroxidase16:
 
GRMZM2G025441
Zm00001d022458
Zm00001eb330530
Wang, XQ et al. 2025. ZmPRX38 is required for improving stalk strength and yield in maize J Genet Genomics. :doi: 10.1016/j.jgg.2025.10.009.     Reference: November 8th, 2025
Gene Product: January 20th, 2025
20 days agoIDP2138  :
 
GRMZM2G079308
Zm00001d036919
Zm00001eb277000
Yan, MZ et al. 2025. The Influence of ZmDRR206 Regulated Cell Wall Biosynthesis on Photosynthesis in Maize Seedlings J Plant Growth Reg. :doi: 10.1007/s00344-025-11924-z.     Reference: November 8th, 2025
Variation: June 30th, 2021
20 days agocipk15 calcineurin B-like-interacting protein kinase15:
 
GRMZM2G113967
Zm00001d052340
Zm00001eb195230
Singh, SK et al. 2025. Synergy between Piriformospora Indica and Salicylic Acid Modulates Maize Stress Physiology, Ultrastructure, and Gene Expression J Plant Growth Reg. :doi: 10.1007/s00344-025-11926-x.     Reference: November 8th, 2025
Gene Product: August 25th, 2018
Variation: December 6th, 2021
20 days agoprp14 pathogenesis-related protein14:
 
GRMZM2G304442
Zm00001d029558
Zm00001eb020340
Yan, MZ et al. 2025. The Influence of ZmDRR206 Regulated Cell Wall Biosynthesis on Photosynthesis in Maize Seedlings J Plant Growth Reg. :doi: 10.1007/s00344-025-11924-z.     Reference: November 8th, 2025
Gene Product: December 12th, 2022
20 days agostp23 sugar transport protein23:
 
GRMZM2G079342
Zm00001d025572
Zm00001eb423890
Yan, MZ et al. 2025. The Influence of ZmDRR206 Regulated Cell Wall Biosynthesis on Photosynthesis in Maize Seedlings J Plant Growth Reg. :doi: 10.1007/s00344-025-11924-z.     Reference: November 8th, 2025
Gene Product: January 2nd, 2023
20 days agopx26 peroxidase26:
7.05
GRMZM2G126261
Zm00001d022456
Zm00001eb330550
Wang, XQ et al. 2025. ZmPRX38 is required for improving stalk strength and yield in maize J Genet Genomics. :doi: 10.1016/j.jgg.2025.10.009.     Reference: November 8th, 2025
Gene Product: January 20th, 2025
20 days agomads67 MADS-transcription factor 67:
7.04
GRMZM2G147716
Zm00001d022088
Zm00001eb327040
Yan, MZ et al. 2025. The Influence of ZmDRR206 Regulated Cell Wall Biosynthesis on Photosynthesis in Maize Seedlings J Plant Growth Reg. :doi: 10.1007/s00344-025-11924-z.     Reference: November 8th, 2025
Gene Product: September 10th, 2021
20 days agopck2 phosphoenolpyruvate carboxykinase homolog2:
9.06
GRMZM5G870932
Zm00001d047893
Zm00001eb398370
Yan, MZ et al. 2025. The Influence of ZmDRR206 Regulated Cell Wall Biosynthesis on Photosynthesis in Maize Seedlings J Plant Growth Reg. :doi: 10.1007/s00344-025-11924-z.     Reference: November 8th, 2025
Gene Product: August 7th, 2014
Variation: September 26th, 2014
20 days agoxth1 xyloglucan endo-transglycosylase/hydrolase1:
10.03
GRMZM2G119783
Zm00001d024386
Zm00001eb414390
Yan, MZ et al. 2025. The Influence of ZmDRR206 Regulated Cell Wall Biosynthesis on Photosynthesis in Maize Seedlings J Plant Growth Reg. :doi: 10.1007/s00344-025-11924-z.     Reference: November 8th, 2025
Gene Product: March 23rd, 2024
Variation: January 25th, 2015
20 days agoabcg11 ABC transporter G family member 11:
2.02
GRMZM2G177812
Zm00001d002871
Zm00001eb075940
Yan, MZ et al. 2025. The Influence of ZmDRR206 Regulated Cell Wall Biosynthesis on Photosynthesis in Maize Seedlings J Plant Growth Reg. :doi: 10.1007/s00344-025-11924-z.     Reference: November 8th, 2025
Gene Product: December 28th, 2015
Variation: December 30th, 2015
20 days agoxth6 xyloglucan endo-transglycosylase/hydrolase6:
4.08
GRMZM2G004699
Zm00001d052651
Zm00001eb197870
Yan, MZ et al. 2025. The Influence of ZmDRR206 Regulated Cell Wall Biosynthesis on Photosynthesis in Maize Seedlings J Plant Growth Reg. :doi: 10.1007/s00344-025-11924-z.     Reference: November 8th, 2025
Gene Product: March 23rd, 2024
20 days agoprx38 peroxidase38:
3.04
GRMZM2G144648
Zm00001d040399
Zm00001eb128620
Wang, XQ et al. 2025. ZmPRX38 is required for improving stalk strength and yield in maize J Genet Genomics. :doi: 10.1016/j.jgg.2025.10.009.     Reference: November 8th, 2025
Gene Product: January 20th, 2025
21 days agoapx2 ascorbate peroxidase2:
2.08
GRMZM2G140667
Zm00001d007234
Zm00001eb112040
Tahira Yasmeen et al. 2025. Halotolerant PGPRs attenuate salinity stress in maize through differential expression of stress-related genes and regulated Na+/K+ homeostasis S Afr J Bot. 187:557-568.     Reference: November 7th, 2025
Gene Product: September 1st, 2003
Variation: February 16th, 2015
21 days agosca1 short chain alcohol dehydrogenase1:
5.00
GRMZM2G332976
Zm00001d013015
Zm00001eb212270
Li, Q et al. 2025. ZmABA2 Modulates Drought-Stress Response in Maize Russ J Plant Physiol. 72:208.     Reference: November 7th, 2025
Gene Product: September 1st, 2003
Variation: November 7th, 2025
21 days agoht2 Helminthosporium turcicum resistance2:
8.05 - 8.06
   Sheng-hui Wen et al. 2025. Genome-wide association study and transcriptome analysis of candidate resistance genes for northern corn leaf blight. Plant Dis.     Reference: November 7th, 2025
Variation: September 1st, 2003
21 days agoht3 Helminthosporium turcicum resistance3:
 
   Sheng-hui Wen et al. 2025. Genome-wide association study and transcriptome analysis of candidate resistance genes for northern corn leaf blight. Plant Dis.     Reference: November 7th, 2025
Variation: September 1st, 2003
21 days agoarftf23 ARF-transcription factor 23:
 
GRMZM2G441325
Zm00001d038698
Zm00001eb292830
Sheng-hui Wen et al. 2025. Genome-wide association study and transcriptome analysis of candidate resistance genes for northern corn leaf blight. Plant Dis.     Reference: November 7th, 2025
Gene Product: January 29th, 2022
Variation: July 7th, 2017
21 days agoglk28 G2-like-transcription factor 28:
 
GRMZM2G100176
Zm00001d018698
Zm00001eb298990
Sheng-hui Wen et al. 2025. Genome-wide association study and transcriptome analysis of candidate resistance genes for northern corn leaf blight. Plant Dis.     Reference: November 7th, 2025
Variation: July 15th, 2021
21 days agoglk36 G2-like-transcription factor 36:
 
GRMZM2G125704
Zm00001d002439
Zm00001eb071920
Sheng-hui Wen et al. 2025. Genome-wide association study and transcriptome analysis of candidate resistance genes for northern corn leaf blight. Plant Dis.     Reference: November 7th, 2025
Variation: September 14th, 2023
21 days agohtn1 Helminthosporium turcicum resistanceN1:
8.06
GRMZM2G164612
GRMZM2G164640
Zm00001d011629
Zm00001eb360640
Sheng-hui Wen et al. 2025. Genome-wide association study and transcriptome analysis of candidate resistance genes for northern corn leaf blight. Plant Dis.   At1g66980 (TAIR)
LOC_Os01g49580 (MSU/TIGR)
Reference: November 7th, 2025
Gene Product: July 10th, 2019
Variation: July 14th, 2015
21 days agonced3 nine-cis-epoxycarotenoid dioxygenase3:
 
GRMZM5G858784
Zm00001d041319
Zm00001eb134760
Tahira Yasmeen et al. 2025. Halotolerant PGPRs attenuate salinity stress in maize through differential expression of stress-related genes and regulated Na+/K+ homeostasis S Afr J Bot. 187:557-568.     Reference: November 7th, 2025
Gene Product: September 20th, 2012
21 days agompk6 MAP kinase6:
10.03
GRMZM2G089484
Zm00001d024807
Zm00001eb417810
Sheng-hui Wen et al. 2025. Genome-wide association study and transcriptome analysis of candidate resistance genes for northern corn leaf blight. Plant Dis.     Reference: November 7th, 2025
Gene Product: July 12th, 2013
Variation: March 8th, 2024
21 days agosmc4 structural maintenance of chromosomes4:
6.06
GRMZM2G383623
Zm00001d038583
Zm00001eb291710
Sheng-hui Wen et al. 2025. Genome-wide association study and transcriptome analysis of candidate resistance genes for northern corn leaf blight. Plant Dis.   AT5G48600 (TAIR) Reference: November 7th, 2025
Gene Product: December 10th, 2019
22 days agoglp15 germin-like protein15:
 
GRMZM2G074443
Zm00001d049433
Zm00001eb171610
Zhang, SW et al. 2025. Arbuscular mycorrhizal fungi improve maize growth and antioxidant activity by modulating phytohormone contents and metabolic pathways under drought stress. Plant Physiol Biochem. 229(Pt D):110676.     Reference: November 6th, 2025
Gene Product: December 24th, 2015
22 days agoglp17 germin-like protein17:
 
GRMZM2G093076
Zm00001d049430
Zm00001eb171590
Zhang, SW et al. 2025. Arbuscular mycorrhizal fungi improve maize growth and antioxidant activity by modulating phytohormone contents and metabolic pathways under drought stress. Plant Physiol Biochem. 229(Pt D):110676.     Reference: November 6th, 2025
Gene Product: December 24th, 2015
22 days agohipp65 heavy metal-associated isoprenylated plant protein65:
 
   Zhang, SW et al. 2025. Arbuscular mycorrhizal fungi improve maize growth and antioxidant activity by modulating phytohormone contents and metabolic pathways under drought stress. Plant Physiol Biochem. 229(Pt D):110676.     Reference: November 6th, 2025
Gene Product: February 12th, 2022
22 days agoring255 RING-type E3 ligase255:
 
   Zhang, SW et al. 2025. Arbuscular mycorrhizal fungi improve maize growth and antioxidant activity by modulating phytohormone contents and metabolic pathways under drought stress. Plant Physiol Biochem. 229(Pt D):110676.     Reference: November 6th, 2025
Gene Product: May 22nd, 2025
22 days agogl2 glossy2:
2.02
GRMZM2G098239
Zm00001d002353
Zm00001eb071110
Zhang, SW et al. 2025. Arbuscular mycorrhizal fungi improve maize growth and antioxidant activity by modulating phytohormone contents and metabolic pathways under drought stress. Plant Physiol Biochem. 229(Pt D):110676.   AT4G24510 (TAIR) Reference: November 6th, 2025
Gene Product: February 28th, 2020
Variation: December 7th, 2012
22 days agoemp4 empty pericarp4:
1.10
GRMZM2G092198
Zm00001d033869
Zm00001eb055980
Cui, Y et al. 2025. Mapping-by-Sequencing via eBSRmap (Easy Bulk Segregate RNA Mapping) in a B73 EMS Mutant Population Genes. 16:1337.   LOC_Os03g51840 (MSU/TIGR)
Os03g0728200 (Gramene)
Reference: November 6th, 2025
Gene Product: September 15th, 2012
Variation: November 21st, 2016
22 days agoabi14 ABI3-VP1-transcription factor 14:
 
GRMZM2G106673
Zm00001d049369
Zm00001eb171080
Zhang, SW et al. 2025. Arbuscular mycorrhizal fungi improve maize growth and antioxidant activity by modulating phytohormone contents and metabolic pathways under drought stress. Plant Physiol Biochem. 229(Pt D):110676.     Reference: November 6th, 2025
Gene Product: January 29th, 2022
22 days agosudh11 succinate dehydrogenase11:
 
GRMZM2G306945
Zm00001eb018220
Zhang, SW et al. 2025. Arbuscular mycorrhizal fungi improve maize growth and antioxidant activity by modulating phytohormone contents and metabolic pathways under drought stress. Plant Physiol Biochem. 229(Pt D):110676.     Reference: November 6th, 2025
Gene Product: October 25th, 2016
22 days agouce7 ubiquitin conjugating enzyme7:
 
GRMZM2G053764
Zm00001d032831
Zm00001eb046980
Zm00001eb046990
Zhang, SW et al. 2025. Arbuscular mycorrhizal fungi improve maize growth and antioxidant activity by modulating phytohormone contents and metabolic pathways under drought stress. Plant Physiol Biochem. 229(Pt D):110676.     Reference: November 6th, 2025
Gene Product: December 19th, 2019
Variation: August 23rd, 2017
22 days agocdpk40 calcium dependent protein kinase40:
 
GRMZM5G856738
Zm00001d044185
Zm00001eb159530
Zhang, SW et al. 2025. Arbuscular mycorrhizal fungi improve maize growth and antioxidant activity by modulating phytohormone contents and metabolic pathways under drought stress. Plant Physiol Biochem. 229(Pt D):110676.     Reference: November 6th, 2025
Gene Product: December 3rd, 2013
22 days agogad2 glutamate decarboxylase2:
 
GRMZM2G355906
Zm00001d003522
Zm00001eb081550
Zhang, SW et al. 2025. Arbuscular mycorrhizal fungi improve maize growth and antioxidant activity by modulating phytohormone contents and metabolic pathways under drought stress. Plant Physiol Biochem. 229(Pt D):110676.   AT1G65960 (TAIR) Reference: November 6th, 2025
Gene Product: June 5th, 2025
22 days agoppr278 pentatricopeptide repeat protein278:
 
GRMZM2G406165
GRMZM2G570528
Zm00001d015156
Zm00001eb231370
Cui, Y et al. 2025. Mapping-by-Sequencing via eBSRmap (Easy Bulk Segregate RNA Mapping) in a B73 EMS Mutant Population Genes. 16:1337.     Reference: November 6th, 2025
Gene Product: December 27th, 2016
Variation: March 11th, 2022
22 days agonhx17 Na+/H+ antiporter 17:
1.03
GRMZM2G311165
Zm00001d028330
Zm00001eb009800
Zhang, SW et al. 2025. Arbuscular mycorrhizal fungi improve maize growth and antioxidant activity by modulating phytohormone contents and metabolic pathways under drought stress. Plant Physiol Biochem. 229(Pt D):110676.     Reference: November 6th, 2025
Gene Product: April 26th, 2021
Variation: March 31st, 2005
22 days agomn7 miniature seed7:
2.04
GRMZM2G018223
Zm00001d003621
Zm00001eb082380
Cui, Y et al. 2025. Mapping-by-Sequencing via eBSRmap (Easy Bulk Segregate RNA Mapping) in a B73 EMS Mutant Population Genes. 16:1337.   AT5G13680 (TAIR) Reference: November 6th, 2025
Gene Product: December 15th, 2023
Variation: December 15th, 2023
22 days agodek51 defective kernel51:
5.01
GRMZM5G897976
Zm00001d013056
Zm00001eb212700
Cui, Y et al. 2025. Mapping-by-Sequencing via eBSRmap (Easy Bulk Segregate RNA Mapping) in a B73 EMS Mutant Population Genes. 16:1337.   At3g18600 (TAIR) Reference: November 6th, 2025
Gene Product: December 13th, 2022
Variation: May 29th, 2025
22 days agoIDP1417  :
7.00
GRMZM2G019200
Zm00001d018659
Zm00001eb298610
Cui, Y et al. 2025. Mapping-by-Sequencing via eBSRmap (Easy Bulk Segregate RNA Mapping) in a B73 EMS Mutant Population Genes. 16:1337.     Reference: November 6th, 2025
Variation: March 31st, 2005
22 days agomn6 miniature seed6:
6.05
GRMZM2G035526
Zm00001d037926
Zm00001eb285570
Cui, Y et al. 2025. Mapping-by-Sequencing via eBSRmap (Easy Bulk Segregate RNA Mapping) in a B73 EMS Mutant Population Genes. 16:1337.     Reference: November 6th, 2025
Gene Product: December 21st, 2020
Variation: December 21st, 2020
23 days agozbl1 zebra lesion1:
 
GRMZM2G141636
Zm00001d027721
Zm00001eb004310
Mixue Wang et al. 2025. A maize Ni2+/Co2+ transporter ZBL1 maintains cobalt and nickel homeostasis and contributes to photosynthesis. Plant J. 123:e70422.     Reference: November 5th, 2025
Gene Product: September 11th, 2025
Variation: November 5th, 2025
23 days agomyb88 MYB-transcription factor 88:
4.00
GRMZM2G048136
Zm00001d048623
Zm00001eb164740
Xu, G et al. 2025. The dominance of gene expression controlled by trans-eQTL hotspots contributes to phenotypic heterosis in maize bioRxiv preprint.     Reference: November 5th, 2025
Gene Product: July 25th, 2017
23 days agolhcb3 light harvesting chlorophyll a/b binding protein3:
8.03
GRMZM2G155216
Zm00001d009589
Zm00001eb343900
Xu, G et al. 2025. The dominance of gene expression controlled by trans-eQTL hotspots contributes to phenotypic heterosis in maize bioRxiv preprint.     Reference: November 5th, 2025
Gene Product: January 8th, 2005
Variation: August 20th, 2014
23 days agor1 colored1:
10.06
GRMZM5G822829
Zm00001d026147
Zm00001eb429330
Xu, G et al. 2025. The dominance of gene expression controlled by trans-eQTL hotspots contributes to phenotypic heterosis in maize bioRxiv preprint.     Reference: November 5th, 2025
Gene Product: October 13th, 2010
Variation: February 9th, 2024
23 days agoys1 yellow stripe1:
5.05 - 5.06
GRMZM2G156599
Zm00001d017429
Zm00001eb249020
Mixue Wang et al. 2025. A maize Ni2+/Co2+ transporter ZBL1 maintains cobalt and nickel homeostasis and contributes to photosynthesis. Plant J. 123:e70422.     Reference: November 5th, 2025
Gene Product: September 1st, 2003
Variation: March 9th, 2018
23 days agoaps1 ATP sulfurylase1:
1.10
GRMZM2G149952
Zm00001d033981
Zm00001eb056910
Li, K et al. 2025. Unraveling the genetic mechanisms of waterlogging stress through the leaf metabolome of a sweet corn panel BMC Plant Biology. 25:1503.     Reference: November 5th, 2025
Gene Product: September 1st, 2003
Variation: September 26th, 2017
23 days agoarftf7 ARF-transcription factor 7:
 
GRMZM2G475263
Zm00001d039267
Zm00001eb118970
Xu, G et al. 2025. The dominance of gene expression controlled by trans-eQTL hotspots contributes to phenotypic heterosis in maize bioRxiv preprint.     Reference: November 5th, 2025
Gene Product: January 29th, 2022
23 days agoca5p11 CCAAT-HAP5-transcription factor 511:
 
GRMZM2G089812
Zm00001d028432
Zm00001eb010770
Li, K et al. 2025. Unraveling the genetic mechanisms of waterlogging stress through the leaf metabolome of a sweet corn panel BMC Plant Biology. 25:1503.     Reference: November 5th, 2025
Gene Product: August 9th, 2016
23 days agocesa2 cellulose synthase2:
6.05
GRMZM2G027723
Zm00001d037636
Zm00001eb283110
Xu, G et al. 2025. The dominance of gene expression controlled by trans-eQTL hotspots contributes to phenotypic heterosis in maize bioRxiv preprint.     Reference: November 5th, 2025
Gene Product: October 7th, 2016
Variation: October 9th, 2012
23 days agogln2 glutamine synthetase2:
1.09
GRMZM2G024104
Zm00001d033747
Zm00001eb054990
Li, K et al. 2025. Unraveling the genetic mechanisms of waterlogging stress through the leaf metabolome of a sweet corn panel BMC Plant Biology. 25:1503.     Reference: November 5th, 2025
Gene Product: September 1st, 2003
Variation: September 10th, 2025
23 days agogst26 glutathione transferase26:
4.05
GRMZM2G363540
Zm00001d049657
Zm00001eb173570
Zhaohao Guo et al. 2025. ZmGST26: A Negative Regulatory Member of the Glutathione S-Transferase Family Involved in Maize Drought Response SSRN.     Reference: November 5th, 2025
Gene Product: September 1st, 2003
23 days agoereb22 AP2-EREBP-transcription factor 22:
8.03
GRMZM2G006745
Zm00001d010048
Zm00001eb347600
Zhaohao Guo et al. 2025. ZmGST26: A Negative Regulatory Member of the Glutathione S-Transferase Family Involved in Maize Drought Response SSRN.     Reference: November 5th, 2025
Variation: July 17th, 2020
23 days agolhcb10 light harvesting chlorophyll a/b binding protein10:
 
GRMZM2G351977
Zm00001d011285
Zm00001eb357740
Xu, G et al. 2025. The dominance of gene expression controlled by trans-eQTL hotspots contributes to phenotypic heterosis in maize bioRxiv preprint.     Reference: November 5th, 2025
Gene Product: September 1st, 2003
23 days agosbe4 starch branching enzyme4:
 
GRMZM2G073054
Zm00001d003817
Zm00001eb084160
Xu, G et al. 2025. The dominance of gene expression controlled by trans-eQTL hotspots contributes to phenotypic heterosis in maize bioRxiv preprint.     Reference: November 5th, 2025
Gene Product: June 6th, 2011
Variation: April 29th, 2021
23 days agoskus6 skewed root growth similar6:
 
GRMZM2G076225
Zm00001d021599
Zm00001eb322470
Xu, G et al. 2025. The dominance of gene expression controlled by trans-eQTL hotspots contributes to phenotypic heterosis in maize bioRxiv preprint.     Reference: November 5th, 2025
Gene Product: October 9th, 2020
23 days agohpc1 High PhosphatidylCholine1:
 
GRMZM2G353444
Zm00001d039542
Zm00001eb121780
Li, K et al. 2025. Unraveling the genetic mechanisms of waterlogging stress through the leaf metabolome of a sweet corn panel BMC Plant Biology. 25:1503.     Reference: November 5th, 2025
Gene Product: June 12th, 2020
23 days agomagi21275  :
3.06
GRMZM2G078314
Zm00001d042730
Zm00001eb146770
Xu, G et al. 2025. The dominance of gene expression controlled by trans-eQTL hotspots contributes to phenotypic heterosis in maize bioRxiv preprint.     Reference: November 5th, 2025
Variation: March 31st, 2005
24 days agotrps2 trehalose-6-phosphate synthase2:
1.03
GRMZM2G099860
Zm00001d028267
Zm00001eb009160
Wadzani P Dauda et al. 2025. In-silico Characterization of the Structure of Trehalose-6- Phosphate Synthase Genes in Maize Reveals the Significant Expression of Unique ZmTPS1 Gene in Maize under Drought Stress AGE J Sci. 1:0001.     Reference: November 4th, 2025
Gene Product: October 3rd, 2020
24 days agoa3 anthocyanin3:
3.08
   Shoeb Ahmed et al. 2025. Chromatic grains: Revolutionizing nutrition with pigmented cereals and fortified foods J Food Meas Charact. :doi: 10.1007/s11694-025-03681-0.     Reference: November 4th, 2025
Gene Product: September 1st, 2003
Variation: March 13th, 2023
24 days agob1 colored plant1:
2.03
GRMZM2G172795
Zm00001d000236
Zm00001eb074320
Shoeb Ahmed et al. 2025. Chromatic grains: Revolutionizing nutrition with pigmented cereals and fortified foods J Food Meas Charact. :doi: 10.1007/s11694-025-03681-0.     Reference: November 4th, 2025
Gene Product: October 13th, 2010
Variation: December 10th, 2024
24 days agobz1 bronze1:
9.02
GRMZM2G165390
Zm00001d045055
Zm00001eb374230
Shoeb Ahmed et al. 2025. Chromatic grains: Revolutionizing nutrition with pigmented cereals and fortified foods J Food Meas Charact. :doi: 10.1007/s11694-025-03681-0.     Reference: November 4th, 2025
Gene Product: July 4th, 2018
Variation: December 17th, 2022
24 days agoc1 colored aleurone1:
9.01
GRMZM2G005066
Zm00001d044975
Zm00001eb373660
Shoeb Ahmed et al. 2025. Chromatic grains: Revolutionizing nutrition with pigmented cereals and fortified foods J Food Meas Charact. :doi: 10.1007/s11694-025-03681-0.     Reference: November 4th, 2025
Gene Product: June 16th, 2015
Variation: February 9th, 2024
24 days agolyce1 lycopene epsilon cyclase1:
8.05
GRMZM2G012966
Zm00001d011210
Zm00001eb357090
Shoeb Ahmed et al. 2025. Chromatic grains: Revolutionizing nutrition with pigmented cereals and fortified foods J Food Meas Charact. :doi: 10.1007/s11694-025-03681-0.     Reference: November 4th, 2025
Gene Product: December 10th, 2011
Variation: October 9th, 2023
24 days agolc1 red leaf color1:
10.06
   Shoeb Ahmed et al. 2025. Chromatic grains: Revolutionizing nutrition with pigmented cereals and fortified foods J Food Meas Charact. :doi: 10.1007/s11694-025-03681-0.     Reference: November 4th, 2025
Gene Product: September 1st, 2003
Variation: September 1st, 2003
24 days agop1 pericarp color1:
1.03
GRMZM2G084799
Zm00001d028850
Zm00001eb014290
Lee, EA and Harper, V. 2002. Maydica 47:51-58     Reference: November 4th, 2025
Gene Product: October 13th, 2010
Variation: January 3rd, 2024
24 days agopl1 purple plant1:
6.04
GRMZM2G701063
Zm00001d037118
Zm00001eb278680
Shoeb Ahmed et al. 2025. Chromatic grains: Revolutionizing nutrition with pigmented cereals and fortified foods J Food Meas Charact. :doi: 10.1007/s11694-025-03681-0.     Reference: November 4th, 2025
Gene Product: June 16th, 2015
Variation: May 30th, 2024
24 days agosn1 scutellar node color1:
10.06
   Shoeb Ahmed et al. 2025. Chromatic grains: Revolutionizing nutrition with pigmented cereals and fortified foods J Food Meas Charact. :doi: 10.1007/s11694-025-03681-0.     Reference: November 4th, 2025
Gene Product: September 1st, 2003
Variation: December 24th, 2009
24 days agoy1 yellow endosperm1:
6.01
GRMZM2G300348
Zm00001d036345
Zm00001eb271860
Shoeb Ahmed et al. 2025. Chromatic grains: Revolutionizing nutrition with pigmented cereals and fortified foods J Food Meas Charact. :doi: 10.1007/s11694-025-03681-0.     Reference: November 4th, 2025
Gene Product: December 14th, 2011
Variation: August 26th, 2014
24 days agotip3a tonoplast intrinsic protein3:
5.03
GRMZM2G305446
Zm00001d013956
Zm00001eb221090
Nichole A Ginnan et al. 2025. Precipitation legacy effects on soil microbiota facilitate adaptive drought responses in plants. Nat Microbiol. 10:2823-2844.     Reference: November 4th, 2025
Gene Product: January 27th, 2022
Variation: January 27th, 2022
24 days agohda108 histone deacetylase:
4.05
GRMZM2G136067
Zm00001d050139
Zm00001eb177560
Shoeb Ahmed et al. 2025. Chromatic grains: Revolutionizing nutrition with pigmented cereals and fortified foods J Food Meas Charact. :doi: 10.1007/s11694-025-03681-0.     Reference: November 4th, 2025
Gene Product: September 1st, 2003
Variation: February 1st, 2018
24 days agotrps7 trehalose-6-phosphate synthase7:
3.07
GRMZM2G123277
Zm00001d043469
Zm00001eb153280
Wadzani P Dauda et al. 2025. In-silico Characterization of the Structure of Trehalose-6- Phosphate Synthase Genes in Maize Reveals the Significant Expression of Unique ZmTPS1 Gene in Maize under Drought Stress AGE J Sci. 1:0001.     Reference: November 4th, 2025
Gene Product: October 3rd, 2020
Variation: September 25th, 2007
24 days agotrps1 trehalose-6-phosphate synthase1:
 
GRMZM2G068943
Zm00001d010755
Zm00001eb353280
Wadzani P Dauda et al. 2025. In-silico Characterization of the Structure of Trehalose-6- Phosphate Synthase Genes in Maize Reveals the Significant Expression of Unique ZmTPS1 Gene in Maize under Drought Stress AGE J Sci. 1:0001.     Reference: November 4th, 2025
Gene Product: October 3rd, 2020
24 days agonas7 nicotianamine synthase7:
 
AC233955.1_FG003
Zm00001d047639
Zm00001eb396120
Nichole A Ginnan et al. 2025. Precipitation legacy effects on soil microbiota facilitate adaptive drought responses in plants. Nat Microbiol. 10:2823-2844.     Reference: November 4th, 2025
Gene Product: July 26th, 2013
24 days agotrps3 trehalose-6-phosphate synthase3:
 
GRMZM2G079928
Zm00001d032118
Zm00001eb040940
Wadzani P Dauda et al. 2025. In-silico Characterization of the Structure of Trehalose-6- Phosphate Synthase Genes in Maize Reveals the Significant Expression of Unique ZmTPS1 Gene in Maize under Drought Stress AGE J Sci. 1:0001.     Reference: November 4th, 2025
Gene Product: October 3rd, 2020
24 days agotrps4 trehalose-6-phosphate synthase4:
 
GRMZM2G008226
Zm00001d032311
Zm00001eb042370
Wadzani P Dauda et al. 2025. In-silico Characterization of the Structure of Trehalose-6- Phosphate Synthase Genes in Maize Reveals the Significant Expression of Unique ZmTPS1 Gene in Maize under Drought Stress AGE J Sci. 1:0001.     Reference: November 4th, 2025
Gene Product: October 3rd, 2020
24 days agotrps6 trehalose-6-phosphate synthase6:
 
GRMZM2G304274
Zm00001d043468
Zm00001eb153270
Wadzani P Dauda et al. 2025. In-silico Characterization of the Structure of Trehalose-6- Phosphate Synthase Genes in Maize Reveals the Significant Expression of Unique ZmTPS1 Gene in Maize under Drought Stress AGE J Sci. 1:0001.     Reference: November 4th, 2025
Gene Product: October 3rd, 2020
24 days agotrps8 trehalose-6-phosphate synthase8:
 
GRMZM2G007736
Zm00001d050069
Zm00001eb177020
Wadzani P Dauda et al. 2025. In-silico Characterization of the Structure of Trehalose-6- Phosphate Synthase Genes in Maize Reveals the Significant Expression of Unique ZmTPS1 Gene in Maize under Drought Stress AGE J Sci. 1:0001.     Reference: November 4th, 2025
Gene Product: October 3rd, 2020
24 days agotrps9 trehalose-6-phosphate synthase9:
 
GRMZM2G366659
Zm00001d050293
Zm00001eb178890
Wadzani P Dauda et al. 2025. In-silico Characterization of the Structure of Trehalose-6- Phosphate Synthase Genes in Maize Reveals the Significant Expression of Unique ZmTPS1 Gene in Maize under Drought Stress AGE J Sci. 1:0001.     Reference: November 4th, 2025
Gene Product: October 3rd, 2020
24 days agotrps10 trehalose-6-phosphate synthase10:
 
GRMZM2G312521
Zm00001d052060
Zm00001eb192680
Wadzani P Dauda et al. 2025. In-silico Characterization of the Structure of Trehalose-6- Phosphate Synthase Genes in Maize Reveals the Significant Expression of Unique ZmTPS1 Gene in Maize under Drought Stress AGE J Sci. 1:0001.     Reference: November 4th, 2025
Gene Product: October 3rd, 2020
Variation: March 18th, 2021
24 days agotrps11 trehalose-6-phosphate synthase11:
 
GRMZM2G122231
Zm00001d018342
Zm00001eb257510
Wadzani P Dauda et al. 2025. In-silico Characterization of the Structure of Trehalose-6- Phosphate Synthase Genes in Maize Reveals the Significant Expression of Unique ZmTPS1 Gene in Maize under Drought Stress AGE J Sci. 1:0001.     Reference: November 4th, 2025
Gene Product: October 3rd, 2020
24 days agotrps12 trehalose-6-phosphate synthase12:
 
GRMZM2G001304
GRMZM2G133966
Zm00001d038728
Zm00001eb293110
Wadzani P Dauda et al. 2025. In-silico Characterization of the Structure of Trehalose-6- Phosphate Synthase Genes in Maize Reveals the Significant Expression of Unique ZmTPS1 Gene in Maize under Drought Stress AGE J Sci. 1:0001.     Reference: November 4th, 2025
Gene Product: October 3rd, 2020
24 days agotrps13 trehalose-6-phosphate synthase13:
 
GRMZM2G019183
Zm00001d020396
Zm00001eb312020
Wadzani P Dauda et al. 2025. In-silico Characterization of the Structure of Trehalose-6- Phosphate Synthase Genes in Maize Reveals the Significant Expression of Unique ZmTPS1 Gene in Maize under Drought Stress AGE J Sci. 1:0001.     Reference: November 4th, 2025
Gene Product: October 3rd, 2020
24 days agotrps14 trehalose-6-phosphate synthase14:
 
GRMZM2G416836
Zm00001d008338
Zm00001eb333590
Wadzani P Dauda et al. 2025. In-silico Characterization of the Structure of Trehalose-6- Phosphate Synthase Genes in Maize Reveals the Significant Expression of Unique ZmTPS1 Gene in Maize under Drought Stress AGE J Sci. 1:0001.     Reference: November 4th, 2025
Gene Product: October 3rd, 2020
24 days agotrps15 trehalose-6-phosphate synthase15:
 
GRMZM2G118462
Zm00001d012748
Zm00001eb370990
Wadzani P Dauda et al. 2025. In-silico Characterization of the Structure of Trehalose-6- Phosphate Synthase Genes in Maize Reveals the Significant Expression of Unique ZmTPS1 Gene in Maize under Drought Stress AGE J Sci. 1:0001.     Reference: November 4th, 2025
Gene Product: October 3rd, 2020
25 days agorpn10 regulatory particle non-ATPase 10:
 
GRMZM2G147671
Zm00001d047941
Zm00001eb398860
Yao Wang et al. 2025. Advances in understanding molecular regulatory mechanisms of leaf angle New Crops. :doi: 10.1016/j.ncrops.2025.100091.   AT4G38630 (TAIR) Reference: November 3rd, 2025
Variation: December 22nd, 2022
25 days agoidd3 indeterminate domain3:
 
GRMZM2G123094
Zm00001d031759
Zm00001eb037730
Yao Wang et al. 2025. Advances in understanding molecular regulatory mechanisms of leaf angle New Crops. :doi: 10.1016/j.ncrops.2025.100091.     Reference: November 3rd, 2025
Gene Product: May 31st, 2024
25 days agoknox1 knotted related homeobox1:
1.01
GRMZM2G159431
Zm00001d027431
Zm00001eb001720
Yao Wang et al. 2025. Advances in understanding molecular regulatory mechanisms of leaf angle New Crops. :doi: 10.1016/j.ncrops.2025.100091.     Reference: November 3rd, 2025
Gene Product: September 1st, 2003
Variation: September 1st, 2003
25 days agospi1 sparse inflorescence1:
3.08
GRMZM2G025222
Zm00001d044069
Zm00001eb158550
Yao Wang et al. 2025. Advances in understanding molecular regulatory mechanisms of leaf angle New Crops. :doi: 10.1016/j.ncrops.2025.100091.     Reference: November 3rd, 2025
Gene Product: June 18th, 2018
Variation: September 5th, 2019
25 days agokn1 knotted1:
1.10
GRMZM2G017087
Zm00001d033859
Zm00001eb055920
Yao Wang et al. 2025. Advances in understanding molecular regulatory mechanisms of leaf angle New Crops. :doi: 10.1016/j.ncrops.2025.100091.     Reference: November 3rd, 2025
Gene Product: February 21st, 2025
Variation: December 6th, 2013
25 days agola1 lazy plant1:
4.03 - 4.04
GRMZM2G135019
Zm00001d049174
Zm00001eb169480
Yao Wang et al. 2025. Advances in understanding molecular regulatory mechanisms of leaf angle New Crops. :doi: 10.1016/j.ncrops.2025.100091.     Reference: November 3rd, 2025
Gene Product: October 9th, 2013
Variation: February 26th, 2015
25 days agolg3 liguleless3:
3.04
GRMZM2G087741
Zm00001d040611
Zm00001eb130180
Yao Wang et al. 2025. Advances in understanding molecular regulatory mechanisms of leaf angle New Crops. :doi: 10.1016/j.ncrops.2025.100091.     Reference: November 3rd, 2025
Gene Product: August 22nd, 2014
Variation: March 16th, 2015
25 days agolg4 liguleless4:
8.05
GRMZM2G094241
Zm00001d010948
Zm00001eb354880
Yao Wang et al. 2025. Advances in understanding molecular regulatory mechanisms of leaf angle New Crops. :doi: 10.1016/j.ncrops.2025.100091.     Reference: November 3rd, 2025
Gene Product: August 22nd, 2014
Variation: May 18th, 2012
25 days agona2 nana plant2:
5.03
GRMZM2G057000
Zm00001d014887
Zm00001eb228910
Yao Wang et al. 2025. Advances in understanding molecular regulatory mechanisms of leaf angle New Crops. :doi: 10.1016/j.ncrops.2025.100091.   AT3G19820 (TAIR) Reference: November 3rd, 2025
Gene Product: June 13th, 2016
Variation: June 13th, 2016
25 days agorgd1 ragged seedling1:
6.01 - 6.01
GRMZM2G020187
Zm00001d035256
Zm00001eb264310
Yao Wang et al. 2025. Advances in understanding molecular regulatory mechanisms of leaf angle New Crops. :doi: 10.1016/j.ncrops.2025.100091.   AT5G23570 (TAIR) Reference: November 3rd, 2025
Gene Product: December 18th, 2014
Variation: June 8th, 2015
25 days agoidd1 indeterminate domain1:
1.02
GRMZM2G171073
Zm00001d028139
Zm00001eb008010
Yao Wang et al. 2025. Advances in understanding molecular regulatory mechanisms of leaf angle New Crops. :doi: 10.1016/j.ncrops.2025.100091.     Reference: November 3rd, 2025
Gene Product: May 31st, 2024
Variation: September 1st, 2003
25 days agocko1 cytokinin oxidase1:
3.02
GRMZM2G146644
Zm00001d039520
Zm00001eb121500
Yao Wang et al. 2025. Advances in understanding molecular regulatory mechanisms of leaf angle New Crops. :doi: 10.1016/j.ncrops.2025.100091.     Reference: November 3rd, 2025
Gene Product: April 4th, 2014
Variation: September 1st, 2003
25 days agobzr1 BZR-transcription factor 1:
 
GRMZM5G812774
Zm00001d046305
Zm00001eb384820
Yao Wang et al. 2025. Advances in understanding molecular regulatory mechanisms of leaf angle New Crops. :doi: 10.1016/j.ncrops.2025.100091.     Reference: November 3rd, 2025
Gene Product: May 4th, 2022
Variation: June 27th, 2022
25 days agocchh25 Cys2His2 Zinc Finger25:
 
GRMZM2G465595
Zm00001d028361
Zm00001eb010050
Yao Wang et al. 2025. Advances in understanding molecular regulatory mechanisms of leaf angle New Crops. :doi: 10.1016/j.ncrops.2025.100091.   AT2G01940 (TAIR)
LOC_Os03g13400 (MSU/TIGR)
Os03g0237250 (Gramene)
Reference: November 3rd, 2025
Gene Product: November 14th, 2022
Variation: April 28th, 2022
25 days agogras42 GRAS-transcription factor 42:
 
AC234164.1_FG004
Zm00001d045507
Zm00001eb378590
Yao Wang et al. 2025. Advances in understanding molecular regulatory mechanisms of leaf angle New Crops. :doi: 10.1016/j.ncrops.2025.100091.   AT1G63100 (TAIR) Reference: November 3rd, 2025
Variation: February 10th, 2025
25 days agorld1 rolled leaf1:
9.07 - 9.08
GRMZM2G109987
Zm00001d048527
Zm00001eb404260
Yao Wang et al. 2025. Advances in understanding molecular regulatory mechanisms of leaf angle New Crops. :doi: 10.1016/j.ncrops.2025.100091.     Reference: November 3rd, 2025
Gene Product: October 6th, 2015
Variation: June 30th, 2012
25 days agommp245  :
3.05
GRMZM6G437417
Zm00001d043634
Zm00001eb154730
Yao Wang et al. 2025. Advances in understanding molecular regulatory mechanisms of leaf angle New Crops. :doi: 10.1016/j.ncrops.2025.100091.     Reference: November 3rd, 2025
Gene Product: June 23rd, 2021
25 days agod14a dwarf14 ortholog-a:
1.00
GRMZM2G077127
Zm00001d028094
Zm00001eb007670
Yao Wang et al. 2025. Advances in understanding molecular regulatory mechanisms of leaf angle New Crops. :doi: 10.1016/j.ncrops.2025.100091.   AT3G03990 (TAIR) Reference: November 3rd, 2025
Gene Product: December 27th, 2022
Variation: December 27th, 2022
25 days agoyab14 yabby14:
10.05
GRMZM2G005353
Zm00001d025944
Zm00001eb427470
Yao Wang et al. 2025. Advances in understanding molecular regulatory mechanisms of leaf angle New Crops. :doi: 10.1016/j.ncrops.2025.100091.     Reference: November 3rd, 2025
Gene Product: October 16th, 2015
Variation: March 23rd, 2009
25 days agodrl2 drooping leaf2:
9.06
GRMZM2G102218
Zm00001d048083
Zm00001eb400130
Yao Wang et al. 2025. Advances in understanding molecular regulatory mechanisms of leaf angle New Crops. :doi: 10.1016/j.ncrops.2025.100091.   AT1G69180 (TAIR)
LOC_Os03g11600 (MSU/TIGR)
Reference: November 3rd, 2025
Gene Product: October 16th, 2015
Variation: July 12th, 2017
25 days agoifa1 indeterminate floral apex1:
 
GRMZM2G088309
Zm00001d028216
Zm00001eb008680
Yao Wang et al. 2025. Advances in understanding molecular regulatory mechanisms of leaf angle New Crops. :doi: 10.1016/j.ncrops.2025.100091.   AT1G69180 (TAIR)
LOC_Os03g11600 (MSU/TIGR)
Reference: November 3rd, 2025
Gene Product: October 16th, 2015
Variation: July 13th, 2017
25 days agobrd1 brassinosteroid-deficient dwarf1:
 
GRMZM2G103773
Zm00001d033180
Zm00001eb050010
Yao Wang et al. 2025. Advances in understanding molecular regulatory mechanisms of leaf angle New Crops. :doi: 10.1016/j.ncrops.2025.100091.     Reference: November 3rd, 2025
Gene Product: February 18th, 2012
Variation: August 16th, 2019
25 days agodwil1 dwarf & irregular leaf1:
 
GRMZM2G013657
Zm00001d038087
Zm00001eb287100
Yao Wang et al. 2025. Advances in understanding molecular regulatory mechanisms of leaf angle New Crops. :doi: 10.1016/j.ncrops.2025.100091.     Reference: November 3rd, 2025
Gene Product: July 5th, 2019
Variation: February 10th, 2025
25 days agobri1a brassinosteroid insensitive1a:
 
GRMZM2G048294
Zm00001d011721
Zm00001eb361520
Yao Wang et al. 2025. Advances in understanding molecular regulatory mechanisms of leaf angle New Crops. :doi: 10.1016/j.ncrops.2025.100091.   AT4G39400 (TAIR)
LOC_Os01g52050 (MSU/TIGR)
Reference: November 3rd, 2025
Gene Product: June 23rd, 2021
Variation: July 17th, 2015
25 days agobri1b brassinosteroid insensitive1b:
 
GRMZM2G449830
Zm00001eb227890
Yao Wang et al. 2025. Advances in understanding molecular regulatory mechanisms of leaf angle New Crops. :doi: 10.1016/j.ncrops.2025.100091.     Reference: November 3rd, 2025
Gene Product: June 23rd, 2021
Variation: July 17th, 2015
25 days agotac1 tiller angle control1:
 
GRMZM2G447987
Zm00001d006184
Zm00001eb103250
Yao Wang et al. 2025. Advances in understanding molecular regulatory mechanisms of leaf angle New Crops. :doi: 10.1016/j.ncrops.2025.100091.   LOC_Os09g35980 (MSU/TIGR) Reference: November 3rd, 2025
Variation: November 13th, 2017
25 days agoili1 increased leaf inclination1:
 
GRMZM2G072820
Zm00001d002121
Zm00001eb068900
Yao Wang et al. 2025. Advances in understanding molecular regulatory mechanisms of leaf angle New Crops. :doi: 10.1016/j.ncrops.2025.100091.   LOC_Os04g54900 (MSU/TIGR)
Os04g0641700 (Gramene)
Reference: November 3rd, 2025
Gene Product: September 14th, 2016
Variation: September 19th, 2019
25 days agoibh1 increased leaf inclination1-binding bhlh 1:
 
GRMZM2G388823
Zm00001d001982
Zm00001eb067570
Yao Wang et al. 2025. Advances in understanding molecular regulatory mechanisms of leaf angle New Crops. :doi: 10.1016/j.ncrops.2025.100091.   AT2G43060 (TAIR) Reference: November 3rd, 2025
Gene Product: September 14th, 2016
Variation: January 28th, 2020
25 days agoyab15 yabby15:
5.05
GRMZM2G529859
Zm00001d017391
Zm00001eb248640
Yao Wang et al. 2025. Advances in understanding molecular regulatory mechanisms of leaf angle New Crops. :doi: 10.1016/j.ncrops.2025.100091.     Reference: November 3rd, 2025
Gene Product: October 16th, 2015
Variation: December 30th, 2014
25 days agoZm00001d012510  :
 
GRMZM2G010468
Zm00001d012510
Zm00001eb368900
Yao Wang et al. 2025. Advances in understanding molecular regulatory mechanisms of leaf angle New Crops. :doi: 10.1016/j.ncrops.2025.100091.   AT2G30490 (TAIR) Reference: November 3rd, 2025
Gene Product: December 29th, 2022
25 days agoidd14 indeterminate domain14:
 
GRMZM2G141031
Zm00001d020683
Zm00001eb314580
Yao Wang et al. 2025. Advances in understanding molecular regulatory mechanisms of leaf angle New Crops. :doi: 10.1016/j.ncrops.2025.100091.   AT1G68130 (TAIR) Reference: November 3rd, 2025
Gene Product: November 14th, 2022
25 days agopin1 PIN-formed protein1:
9.01
GRMZM2G098643
Zm00001d044812
Zm00001eb372180
Yao Wang et al. 2025. Advances in understanding molecular regulatory mechanisms of leaf angle New Crops. :doi: 10.1016/j.ncrops.2025.100091.     Reference: November 3rd, 2025
Gene Product: April 21st, 2014
Variation: January 20th, 2015
26 days agomkk7 mitogen-activated protein kinase kinase7:
 
GRMZM2G344388
Zm00001d028273
Zm00001eb009250
Yali Yang et al. 2025. Single-cell transcriptional decoding of iron deficiency responses in maize root tips. Plant Cell Rep. 44:258.     Reference: November 2nd, 2025
Gene Product: June 11th, 2024
26 days agodnaJ38 DnaJ/Hsp40 38:
 
GRMZM2G023786
Zm00001d044426
Zm00001eb161610
Yali Yang et al. 2025. Single-cell transcriptional decoding of iron deficiency responses in maize root tips. Plant Cell Rep. 44:258.     Reference: November 2nd, 2025
Gene Product: September 1st, 2003
26 days agodnaJ76 DnaJ/Hsp40 76:
 
GRMZM2G119316
Zm00001d009556
Zm00001eb343630
Yali Yang et al. 2025. Single-cell transcriptional decoding of iron deficiency responses in maize root tips. Plant Cell Rep. 44:258.     Reference: November 2nd, 2025
Gene Product: September 1st, 2003
26 days agocdj3 chaperone DNA J3:
5.03
GRMZM2G134980
Zm00001d013669
Zm00001eb218560
Yali Yang et al. 2025. Single-cell transcriptional decoding of iron deficiency responses in maize root tips. Plant Cell Rep. 44:258.     Reference: November 2nd, 2025
Gene Product: September 1st, 2003
Variation: August 27th, 2021
26 days agonaat1 nicotianamine aminotransferase1:
4.09
GRMZM2G096958
Zm00001d053281
Zm00001eb203230
Yali Yang et al. 2025. Single-cell transcriptional decoding of iron deficiency responses in maize root tips. Plant Cell Rep. 44:258.     Reference: November 2nd, 2025
Gene Product: January 18th, 2022
Variation: April 9th, 2015
26 days agothi2 thiamine biosynthesis2:
3.09
GRMZM2G074097
Zm00001d044228
Zm00001eb159850
Yali Yang et al. 2025. Single-cell transcriptional decoding of iron deficiency responses in maize root tips. Plant Cell Rep. 44:258.     Reference: November 2nd, 2025
Gene Product: February 1st, 2013
Variation: August 3rd, 2013
26 days agompk1 MAP kinase1:
9.06
GRMZM2G053987
Zm00001d047758
Zm00001eb397190
Yali Yang et al. 2025. Single-cell transcriptional decoding of iron deficiency responses in maize root tips. Plant Cell Rep. 44:258.     Reference: November 2nd, 2025
Gene Product: July 12th, 2013
Variation: January 16th, 2013
26 days agomyb39 myb transcription factor39:
 
GRMZM2G127857
Zm00001d051149
Zm00001eb185160
Yali Yang et al. 2025. Single-cell transcriptional decoding of iron deficiency responses in maize root tips. Plant Cell Rep. 44:258.     Reference: November 2nd, 2025
Gene Product: February 16th, 2011
Variation: May 12th, 2011
26 days agolimtf13 LIM-transcription factor 13:
 
GRMZM2G151934
Zm00001d047837
Zm00001eb397900
Yali Yang et al. 2025. Single-cell transcriptional decoding of iron deficiency responses in maize root tips. Plant Cell Rep. 44:258.     Reference: November 2nd, 2025
Gene Product: December 16th, 2019
26 days agonactf49 NAC-transcription factor 49:
 
GRMZM2G347043
Zm00001d034601
Zm00001eb062170
Yali Yang et al. 2025. Single-cell transcriptional decoding of iron deficiency responses in maize root tips. Plant Cell Rep. 44:258.     Reference: November 2nd, 2025
Gene Product: July 8th, 2019
Variation: March 3rd, 2017
26 days agobhlh100 bHLH-transcription factor 100:
 
GRMZM2G313756
Zm00001d025205
Zm00001eb420910
Yali Yang et al. 2025. Single-cell transcriptional decoding of iron deficiency responses in maize root tips. Plant Cell Rep. 44:258.     Reference: November 2nd, 2025
Variation: August 10th, 2024
26 days agobhlh86 bHLH-transcription factor 86:
7.03
GRMZM5G818643
Zm00001d020826
Zm00001eb315870
Yali Yang et al. 2025. Single-cell transcriptional decoding of iron deficiency responses in maize root tips. Plant Cell Rep. 44:258.     Reference: November 2nd, 2025
Variation: September 1st, 2003
26 days agorps24 ribosomal protein S24:
5.04
GRMZM2G091383
Zm00001d016276
Zm00001eb239530
Yali Yang et al. 2025. Single-cell transcriptional decoding of iron deficiency responses in maize root tips. Plant Cell Rep. 44:258.     Reference: November 2nd, 2025
Gene Product: September 1st, 2003
Variation: June 11th, 2015
26 days agonas6 nicotianamine synthase6:
 
GRMZM2G704488
Zm00001d047639
Zm00001eb396110
Yali Yang et al. 2025. Single-cell transcriptional decoding of iron deficiency responses in maize root tips. Plant Cell Rep. 44:258.     Reference: November 2nd, 2025
Gene Product: July 26th, 2013
26 days agoprh5 protein phosphatase homolog5:
 
GRMZM2G010855
Zm00001d028574
Zm00001eb012040
Yali Yang et al. 2025. Single-cell transcriptional decoding of iron deficiency responses in maize root tips. Plant Cell Rep. 44:258.     Reference: November 2nd, 2025
Gene Product: October 25th, 2021
26 days agonpf5 nitrate transporter/peptide transporter family5:
 
GRMZM2G179294
Zm00001d017095
Zm00001eb246140
Yali Yang et al. 2025. Single-cell transcriptional decoding of iron deficiency responses in maize root tips. Plant Cell Rep. 44:258.     Reference: November 2nd, 2025
Gene Product: October 16th, 2025
26 days agolac18 laccase18:
 
GRMZM2G388587
Zm00001d052324
Zm00001eb195100
Yali Yang et al. 2025. Single-cell transcriptional decoding of iron deficiency responses in maize root tips. Plant Cell Rep. 44:258.     Reference: November 2nd, 2025
Gene Product: March 31st, 2018
26 days agoysl12 yellow stripe-like transporter12:
 
GRMZM5G893444
Zm00001d025887
Zm00001eb426920
Yali Yang et al. 2025. Single-cell transcriptional decoding of iron deficiency responses in maize root tips. Plant Cell Rep. 44:258.     Reference: November 2nd, 2025
Gene Product: September 1st, 2003
26 days agoysl13 yellow stripe-like transporter13:
 
GRMZM2G024196
Zm00001d002974
Zm00001eb076900
Yali Yang et al. 2025. Single-cell transcriptional decoding of iron deficiency responses in maize root tips. Plant Cell Rep. 44:258.     Reference: November 2nd, 2025
Gene Product: September 1st, 2003
26 days agoumc1353b  :
 
Zm00001d027291
Zm00001eb000450
Yali Yang et al. 2025. Single-cell transcriptional decoding of iron deficiency responses in maize root tips. Plant Cell Rep. 44:258.     Reference: November 2nd, 2025
Variation: February 25th, 2021
26 days agodmas1 deoxymugineic acid synthase 1:
 
GRMZM2G060952
Zm00001d028360
Zm00001eb010040
Yali Yang et al. 2025. Single-cell transcriptional decoding of iron deficiency responses in maize root tips. Plant Cell Rep. 44:258.     Reference: November 2nd, 2025
Gene Product: April 27th, 2021
26 days agocipk29 calcineurin B-like-interacting protein kinase29:
 
GRMZM2G177050
Zm00001d022451
Zm00001eb330590
Yali Yang et al. 2025. Single-cell transcriptional decoding of iron deficiency responses in maize root tips. Plant Cell Rep. 44:258.     Reference: November 2nd, 2025
Gene Product: August 25th, 2018
26 days agosnrkII2 SnRK2 serine threonine protein kinase2:
7.04
GRMZM2G056732
Zm00001d022179
Zm00001eb327780
Yali Yang et al. 2025. Single-cell transcriptional decoding of iron deficiency responses in maize root tips. Plant Cell Rep. 44:258.     Reference: November 2nd, 2025
Gene Product: April 14th, 2018
27 days agobhlh186 bHLH-transcription factor 186:
 
GRMZM2G156734
Zm00001d016941
Zm00001eb244960
Zhong, T et al. 2025. A hypersensitive response‐like lesion‐inducing protein modulates basal immunity against grey leaf spot in maize Plant Biotechnol J. 23:4732-4734.     Reference: November 1st, 2025
Gene Product: September 14th, 2016
27 days agowakl40 wall associated kinase like40:
 
GRMZM2G395778
Zm00001d008458
Zm00001eb334630
Zhong, T et al. 2025. A hypersensitive response‐like lesion‐inducing protein modulates basal immunity against grey leaf spot in maize Plant Biotechnol J. 23:4732-4734.     Reference: November 1st, 2025
Gene Product: December 7th, 2023
Variation: January 18th, 2024
27 days agoprx11 peroxidase11:
 
GRMZM2G176085
Zm00001d013212
Zm00001eb214260
Zhong, T et al. 2025. A hypersensitive response‐like lesion‐inducing protein modulates basal immunity against grey leaf spot in maize Plant Biotechnol J. 23:4732-4734.     Reference: November 1st, 2025
Gene Product: January 20th, 2025
27 days agocybv15 cytochrome b5-15:
8.06
GRMZM2G067601
Zm00001d011786
Zm00001eb362250
Zhong, T et al. 2025. A hypersensitive response‐like lesion‐inducing protein modulates basal immunity against grey leaf spot in maize Plant Biotechnol J. 23:4732-4734.   AT5G48810 (TAIR) Reference: November 1st, 2025
Gene Product: March 18th, 2025
27 days agoprx6 peroxidase6:
1.05 - 1.05
GRMZM2G085198
Zm00001d029747
Zm00001eb022050
Zhong, T et al. 2025. A hypersensitive response‐like lesion‐inducing protein modulates basal immunity against grey leaf spot in maize Plant Biotechnol J. 23:4732-4734.     Reference: November 1st, 2025
Gene Product: January 20th, 2025
Variation: September 30th, 2016
27 days agoumc1490  :
6.07
GRMZM2G174741
Zm00001d038885
Zm00001eb294640
Zhong, T et al. 2025. A hypersensitive response‐like lesion‐inducing protein modulates basal immunity against grey leaf spot in maize Plant Biotechnol J. 23:4732-4734.     Reference: November 1st, 2025
Variation: September 1st, 2003
27 days agotubtf6 TUB-transcription factor 6:
 
GRMZM2G176340
Zm00001d051568
Zm00001eb188370
Wang, S et al. 2025. Predicted protein 3D structure provides essential insights into the genetic architecture underlying phenotypic diversity in maize. Genome Res. :doi: 10.1101/gr.280514.125.     Reference: November 1st, 2025
Gene Product: September 29th, 2015
27 days agoclx1 calnexin homolog1:
2.04
GRMZM2G134668
Zm00001d003857
Zm00001eb084590
Zhong, T et al. 2025. A hypersensitive response‐like lesion‐inducing protein modulates basal immunity against grey leaf spot in maize Plant Biotechnol J. 23:4732-4734.     Reference: November 1st, 2025
Gene Product: September 1st, 2003
Variation: November 16th, 2012
27 days agogn1 gnarley1:
2.10
GRMZM2G452178
Zm00001d007842
Zm00001eb117820
Wang, S et al. 2025. Predicted protein 3D structure provides essential insights into the genetic architecture underlying phenotypic diversity in maize. Genome Res. :doi: 10.1101/gr.280514.125.     Reference: November 1st, 2025
Gene Product: September 1st, 2003
Variation: May 30th, 2014
27 days agogl26 glossy26:
8.02
GRMZM2G481843
Zm00001d008622
Zm00001eb335900
Zhong, T et al. 2025. A hypersensitive response‐like lesion‐inducing protein modulates basal immunity against grey leaf spot in maize Plant Biotechnol J. 23:4732-4734.     Reference: November 1st, 2025
Gene Product: October 31st, 2018
Variation: October 31st, 2018
27 days agomha3 membrane H(+)-ATPase3:
 
GRMZM2G104325
Zm00001d019062
Zm00001eb302400
Zhong, T et al. 2025. A hypersensitive response‐like lesion‐inducing protein modulates basal immunity against grey leaf spot in maize Plant Biotechnol J. 23:4732-4734.     Reference: November 1st, 2025
Gene Product: August 15th, 2024
Variation: January 22nd, 2016
27 days agonpr1 nonexpressor of pathogenesis-related genes homolog 1:
 
GRMZM2G076450
Zm00001d012660
Zm00001eb370160
Zhong, T et al. 2025. A hypersensitive response‐like lesion‐inducing protein modulates basal immunity against grey leaf spot in maize Plant Biotechnol J. 23:4732-4734.     Reference: November 1st, 2025
Gene Product: March 19th, 2025
27 days agokrn2 kernel row number2:
 
GRMZM2G125656
Zm00001d002641
Zm00001eb073740
Wang, S et al. 2025. Predicted protein 3D structure provides essential insights into the genetic architecture underlying phenotypic diversity in maize. Genome Res. :doi: 10.1101/gr.280514.125.   Os04g0568400 (Gramene) Reference: November 1st, 2025
Gene Product: December 19th, 2020
Variation: March 24th, 2022
28 days agoumc1591  :
5.04
GRMZM2G083526
Zm00001d015477
Zm00001eb233880
Salinas Moreno, Y et al. 2025. Structural Characteristics and Phenolic Composition of Maize Pericarp and Their Relationship to Susceptibility to Fusarium spp. in Populations and Inbred Lines Agriculture. 15:2240.     Reference: October 31st, 2025
Variation: September 1st, 2003
28 days agomyb95 myb transcription factor95:
 
GRMZM2G051528
Zm00001d009088
Zm00001eb340000
Yongyan Lian et al. 2025. Natural variation in ZmDapF1 enhances maize drought resilience Nature Plants. :doi: 10.1038/s41477-025-02141-3.     Reference: October 31st, 2025
Variation: February 17th, 2011
28 days agocko4b cytokinin oxidase4b:
 
GRMZM2G024476
Zm00001d012641
Zm00001eb370000
Liu, SX et al. 2025. Integrated Transcriptome and Metabolome Analysis Identifies Key Genes Regulating Maize Tolerance to Alkaline Stress Int J Mol Sci. 25:10632.     Reference: October 31st, 2025
Gene Product: July 19th, 2021
29 days agougt3 uridine diphosphate glycosyltransferase3:
 
GRMZM2G055446
Zm00001d039891
Zm00001eb124620
Qu, ZB et al. 2025. Genome-wide association study of seven agronomy traits under drought-stressed and well-watered in maize. Mol Breed. 45:87.     Reference: October 30th, 2025
Gene Product: September 24th, 2018
29 days agolacs5 long-chain acyl-coA synthase5:
 
GRMZM5G812228
Zm00001d045295
Zm00001eb376490
Zilong Zhao et al. 2025. Meta-QTL analysis for mining key genes associated with seed oil content in maize BMC Plant Biology. 25:1466.     Reference: October 30th, 2025
Gene Product: October 31st, 2018
29 days agoarm45 armadillo domain protein45:
 
GRMZM2G448330
Zm00001d047937
Zm00001eb398820
Zhang, MY et al. 2025. GWAS and gene co-expression network analysis reveal the genetic control of seed germination under salt stress in maize. Theor Appl Genet. 138:285.     Reference: October 30th, 2025
Gene Product: February 1st, 2021
29 days agothy1 tryptophan 5-hydroxylase1:
 
   Zilong Zhao et al. 2025. Meta-QTL analysis for mining key genes associated with seed oil content in maize BMC Plant Biology. 25:1466.     Reference: October 30th, 2025
Gene Product: September 5th, 2024
29 days agotst2 tonoplast sugar transporter2:
5.04
GRMZM2G012923
Zm00001d016274
Zm00001eb239520
Zilong Zhao et al. 2025. Meta-QTL analysis for mining key genes associated with seed oil content in maize BMC Plant Biology. 25:1466.     Reference: October 30th, 2025
Gene Product: October 28th, 2021
Variation: September 25th, 2007
29 days agomyb40 myb transcription factor40:
3.04
GRMZM2G051256
Zm00001d040621
Zm00001eb130260
Zhang, MY et al. 2025. GWAS and gene co-expression network analysis reveal the genetic control of seed germination under salt stress in maize. Theor Appl Genet. 138:285.     Reference: October 30th, 2025
Variation: November 21st, 2024
29 days agomyb33 MYB-transcription factor 33:
1.07
GRMZM2G131937
Zm00001d032179
Zm00001eb041330
Qu, ZB et al. 2025. Genome-wide association study of seven agronomy traits under drought-stressed and well-watered in maize. Mol Breed. 45:87.     Reference: October 30th, 2025
Variation: September 25th, 2007
29 days agosacd11 stearoyl-acyl-carrier-protein desaturase11:
10.04
AC215690.3_FG002
Zm00001d025170
Zm00001eb420640
Zilong Zhao et al. 2025. Meta-QTL analysis for mining key genes associated with seed oil content in maize BMC Plant Biology. 25:1466.     Reference: October 30th, 2025
Gene Product: October 10th, 2016
29 days agopza01735  :
2.06
GRMZM2G061885
Zm00001d005831
Zm00001eb100310
Zilong Zhao et al. 2025. Meta-QTL analysis for mining key genes associated with seed oil content in maize BMC Plant Biology. 25:1466.     Reference: October 30th, 2025
Gene Product: August 12th, 2018
29 days agosid1 sister of indeterminate spikelet1:
 
GRMZM2G176175
Zm00001d019230
Zm00001eb303810
Zilong Zhao et al. 2025. Meta-QTL analysis for mining key genes associated with seed oil content in maize BMC Plant Biology. 25:1466.     Reference: October 30th, 2025
Gene Product: July 5th, 2019
Variation: October 17th, 2014
29 days agoidh1 isocitrate dehydrogenase1:
8.06 - 8.06
GRMZM2G432128
Zm00001d011487
Zm00001eb359420
Qu, ZB et al. 2025. Genome-wide association study of seven agronomy traits under drought-stressed and well-watered in maize. Mol Breed. 45:87.     Reference: October 30th, 2025
Gene Product: October 2nd, 2023
Variation: September 1st, 2003
29 days agopgm2 phosphoglucomutase2:
5.01
GRMZM2G109383
Zm00001d013428
Zm00001eb216260
Zilong Zhao et al. 2025. Meta-QTL analysis for mining key genes associated with seed oil content in maize BMC Plant Biology. 25:1466.     Reference: October 30th, 2025
Gene Product: September 1st, 2003
Variation: September 1st, 2003
29 days agochn21 chitinase21:
8.03
GRMZM2G062974
Zm00001d009936
Zm00001eb346860
Qu, ZB et al. 2025. Genome-wide association study of seven agronomy traits under drought-stressed and well-watered in maize. Mol Breed. 45:87.     Reference: October 30th, 2025
Gene Product: May 31st, 2021
Variation: September 1st, 2003
29 days agoabi3 ABI3-VP1-transcription factor 3:
 
GRMZM2G149940
Zm00001d001838
Zm00001eb066270
Zilong Zhao et al. 2025. Meta-QTL analysis for mining key genes associated with seed oil content in maize BMC Plant Biology. 25:1466.     Reference: October 30th, 2025
Gene Product: January 29th, 2022
29 days agocadtfr7 CCAAT-DR1-transcription factor 7:
 
GRMZM2G124663
Zm00001d051697
Zm00001eb189490
Zilong Zhao et al. 2025. Meta-QTL analysis for mining key genes associated with seed oil content in maize BMC Plant Biology. 25:1466.     Reference: October 30th, 2025
Gene Product: August 9th, 2016
29 days agoca3p1 CCAAT-HAP3-transcription factor 31:
 
GRMZM2G303465
Zm00001d042968
Zm00001eb148850
Zilong Zhao et al. 2025. Meta-QTL analysis for mining key genes associated with seed oil content in maize BMC Plant Biology. 25:1466.     Reference: October 30th, 2025
Gene Product: August 9th, 2016
29 days agohsftf10 HSF-transcription factor 10:
 
GRMZM2G165272
Zm00001d021263
Zm00001eb319350
Cao, LR et al. 2025. Heat stress response factor ZmHSF10 positively regulates heat tolerance in maize BMC Plant Biology. 25:1473.     Reference: October 30th, 2025
Gene Product: May 15th, 2020
29 days agohsftf12 HSF-transcription factor 12:
 
GRMZM2G173090
Zm00001d046204
Zm00001eb384070
Cao, LR et al. 2025. Heat stress response factor ZmHSF10 positively regulates heat tolerance in maize BMC Plant Biology. 25:1473.     Reference: October 30th, 2025
Gene Product: May 15th, 2020
29 days agohsftf13 HSF-transcription factor 13:
 
GRMZM2G165972
Zm00001d027757
Zm00001eb004670
Cao, LR et al. 2025. Heat stress response factor ZmHSF10 positively regulates heat tolerance in maize BMC Plant Biology. 25:1473.     Reference: October 30th, 2025
Gene Product: May 15th, 2020
Variation: November 21st, 2024
29 days agohsftf14 HSF-transcription factor 14:
 
GRMZM2G118485
Zm00001d028269
Zm00001eb009170
Cao, LR et al. 2025. Heat stress response factor ZmHSF10 positively regulates heat tolerance in maize BMC Plant Biology. 25:1473.     Reference: October 30th, 2025
Gene Product: May 15th, 2020
29 days agohsftf17 HSF-transcription factor 17:
 
GRMZM2G003489
Zm00001d033987
Zm00001eb056980
Cao, LR et al. 2025. Heat stress response factor ZmHSF10 positively regulates heat tolerance in maize BMC Plant Biology. 25:1473.     Reference: October 30th, 2025
Gene Product: May 15th, 2020
Variation: June 7th, 2024
29 days agohsftf18 HSF-transcription factor 18:
 
GRMZM2G105348
Zm00001d016255
Zm00001eb239380
Cao, LR et al. 2025. Heat stress response factor ZmHSF10 positively regulates heat tolerance in maize BMC Plant Biology. 25:1473.     Reference: October 30th, 2025
Gene Product: May 15th, 2020
Variation: November 21st, 2024
29 days agohsftf20 HSF-transcription factor 20:
 
GRMZM2G301485
Zm00001d026094
Zm00001eb428800
Cao, LR et al. 2025. Heat stress response factor ZmHSF10 positively regulates heat tolerance in maize BMC Plant Biology. 25:1473.     Reference: October 30th, 2025
Gene Product: May 15th, 2020
Variation: November 21st, 2024
29 days agohsftf24 HSF-transcription factor 24:
 
GRMZM2G010871
Zm00001d032923
Zm00001eb047760
Cao, LR et al. 2025. Heat stress response factor ZmHSF10 positively regulates heat tolerance in maize BMC Plant Biology. 25:1473.     Reference: October 30th, 2025
Gene Product: May 15th, 2020
Variation: November 21st, 2024
29 days agohsftf5 HSF-transcription factor 5:
 
GRMZM2G115456
Zm00001d034886
Zm00001eb064860
Cao, LR et al. 2025. Heat stress response factor ZmHSF10 positively regulates heat tolerance in maize BMC Plant Biology. 25:1473.     Reference: October 30th, 2025
Gene Product: May 15th, 2020
29 days agohsftf6 HSF-transcription factor 6:
 
GRMZM2G059851
Zm00001d016674
Zm00001eb242480
Cao, LR et al. 2025. Heat stress response factor ZmHSF10 positively regulates heat tolerance in maize BMC Plant Biology. 25:1473.     Reference: October 30th, 2025
Gene Product: May 15th, 2020
Variation: November 21st, 2024
29 days agohsftf7 HSF-transcription factor 7:
 
GRMZM2G098696
Zm00001d052738
Zm00001eb198620
Cao, LR et al. 2025. Heat stress response factor ZmHSF10 positively regulates heat tolerance in maize BMC Plant Biology. 25:1473.     Reference: October 30th, 2025
Gene Product: May 15th, 2020
29 days agohsftf8 HSF-transcription factor 8:
 
GRMZM2G164909
Zm00001d031736
Zm00001eb037600
Cao, LR et al. 2025. Heat stress response factor ZmHSF10 positively regulates heat tolerance in maize BMC Plant Biology. 25:1473.     Reference: October 30th, 2025
Gene Product: May 15th, 2020
29 days agoknox7 knotted related homeobox7:
4.09 - 4.10
GRMZM2G433591
Zm00001d053749
Zm00001eb206760
Zilong Zhao et al. 2025. Meta-QTL analysis for mining key genes associated with seed oil content in maize BMC Plant Biology. 25:1466.     Reference: October 30th, 2025
Gene Product: September 1st, 2003
Variation: August 12th, 2014
29 days agostp1 sugar transport1:
8.03
GRMZM2G097768
Zm00001d009669
Zm00001eb344570
Zilong Zhao et al. 2025. Meta-QTL analysis for mining key genes associated with seed oil content in maize BMC Plant Biology. 25:1466.     Reference: October 30th, 2025
Gene Product: January 2nd, 2023
Variation: August 26th, 2015
29 days agomads1 MADS1:
9.07
GRMZM2G171365
Zm00001d048474
Zm00001eb403750
Zhang, MY et al. 2025. GWAS and gene co-expression network analysis reveal the genetic control of seed germination under salt stress in maize. Theor Appl Genet. 138:285.     Reference: October 30th, 2025
Gene Product: September 10th, 2021
Variation: April 15th, 2008
29 days agogol1 goliath1:
4.08
GRMZM2G080079
Zm00001d052268
Zm00001eb194620
Qu, ZB et al. 2025. Genome-wide association study of seven agronomy traits under drought-stressed and well-watered in maize. Mol Breed. 45:87.     Reference: October 30th, 2025
Gene Product: September 1st, 2003
Variation: April 4th, 2015
29 days agoagp2 ADP glucose pyrophosphorylase2:
6.07 - 6.08
GRMZM2G027955
Zm00001d039131
Zm00001eb296990
Zilong Zhao et al. 2025. Meta-QTL analysis for mining key genes associated with seed oil content in maize BMC Plant Biology. 25:1466.     Reference: October 30th, 2025
Gene Product: July 22nd, 2015
Variation: June 15th, 2012
29 days agolacs11 long-chain acyl-coA synthase11:
10.02
GRMZM2G118286
Zm00001d023538
Zm00001eb407800
Zilong Zhao et al. 2025. Meta-QTL analysis for mining key genes associated with seed oil content in maize BMC Plant Biology. 25:1466.     Reference: October 30th, 2025
Gene Product: October 31st, 2018
Variation: July 29th, 2004
29 days agosut2 sucrose transporter2:
3.04
GRMZM2G307561
Zm00001d041192
Zm00001eb133930
Zilong Zhao et al. 2025. Meta-QTL analysis for mining key genes associated with seed oil content in maize BMC Plant Biology. 25:1466.     Reference: October 30th, 2025
Gene Product: September 14th, 2013
Variation: February 20th, 2017
29 days agoabh2 abscisic acid 8'-hydroxylase2:
 
GRMZM2G126505
Zm00001d051554
Zm00001eb188270
Zilong Zhao et al. 2025. Meta-QTL analysis for mining key genes associated with seed oil content in maize BMC Plant Biology. 25:1466.     Reference: October 30th, 2025
Gene Product: February 15th, 2013
Variation: September 1st, 2011
29 days agoagpll2 ADP glucose pyrophosphorylase large subunit leaf2:
 
GRMZM2G144002
Zm00001d019266
Zm00001eb304130
Zilong Zhao et al. 2025. Meta-QTL analysis for mining key genes associated with seed oil content in maize BMC Plant Biology. 25:1466.     Reference: October 30th, 2025
Gene Product: January 3rd, 2014
29 days agosut5 sucrose transporter5:
 
GRMZM2G081589
Zm00001d016938
Zm00001eb244930
Zilong Zhao et al. 2025. Meta-QTL analysis for mining key genes associated with seed oil content in maize BMC Plant Biology. 25:1466.     Reference: October 30th, 2025
Gene Product: September 14th, 2013
Variation: April 13th, 2017
29 days agoago6 argonaute6:
 
GRMZM2G347402
GRMZM2G432075
Zm00001d019905
Zm00001eb308470
Qu, ZB et al. 2025. Genome-wide association study of seven agronomy traits under drought-stressed and well-watered in maize. Mol Breed. 45:87.     Reference: October 30th, 2025
Gene Product: August 12th, 2016
29 days agocyp19 cytochrome P-450 19:
 
GRMZM2G102079
Zm00001d018839
Zm00001eb300490
Zilong Zhao et al. 2025. Meta-QTL analysis for mining key genes associated with seed oil content in maize BMC Plant Biology. 25:1466.     Reference: October 30th, 2025
Gene Product: September 26th, 2016
29 days agoemp602 empty pericarp602:
 
GRMZM2G464510
Zm00001d028046
Zm00001eb007190
Zhang, MY et al. 2025. GWAS and gene co-expression network analysis reveal the genetic control of seed germination under salt stress in maize. Theor Appl Genet. 138:285.   AT1G02420 (TAIR)
LOC_Os03g11020 (MSU/TIGR)
Reference: October 30th, 2025
Gene Product: December 27th, 2016
Variation: January 11th, 2021
29 days agoysl14 yellow stripe-like transporter14:
 
GRMZM2G120922
Zm00001d017323
Zm00001eb248060
Qu, ZB et al. 2025. Genome-wide association study of seven agronomy traits under drought-stressed and well-watered in maize. Mol Breed. 45:87.     Reference: October 30th, 2025
Gene Product: September 1st, 2003
29 days agofad1 fatty acid desaturase1:
 
GRMZM2G064701
Zm00001d051636
Zm00001eb188990
Zilong Zhao et al. 2025. Meta-QTL analysis for mining key genes associated with seed oil content in maize BMC Plant Biology. 25:1466.     Reference: October 30th, 2025
Gene Product: November 27th, 2020
29 days agocyp38 cytochrome P450 38:
 
GRMZM2G170047
Zm00001d039310
Zm00001eb119390
Zilong Zhao et al. 2025. Meta-QTL analysis for mining key genes associated with seed oil content in maize BMC Plant Biology. 25:1466.     Reference: October 30th, 2025
Gene Product: December 30th, 2022
29 days agoprh64 protein phosphatase homolog64:
 
GRMZM2G155991
Zm00001d026269
Zm00001eb430620
Qu, ZB et al. 2025. Genome-wide association study of seven agronomy traits under drought-stressed and well-watered in maize. Mol Breed. 45:87.     Reference: October 30th, 2025
Gene Product: October 25th, 2021
29 days agobhlh185 bHLH-transcription factor 185:
 
GRMZM2G350312
Zm00001d029339
Zm00001eb018460
Zhang, MY et al. 2025. GWAS and gene co-expression network analysis reveal the genetic control of seed germination under salt stress in maize. Theor Appl Genet. 138:285.   AT3G47640 (TAIR)
LOC_Os03g26210 (MSU/TIGR)
Os03g0379300 (Gramene)
Reference: October 30th, 2025
Gene Product: September 14th, 2016
29 days agowakl49 wall associated kinase like49:
 
GRMZM2G172396
Zm00001d008584
Zm00001d008585
Zm00001eb335510
Zilong Zhao et al. 2025. Meta-QTL analysis for mining key genes associated with seed oil content in maize BMC Plant Biology. 25:1466.     Reference: October 30th, 2025
Gene Product: December 7th, 2023
29 days agofat4 fatty acyl-ACP thioesterase4:
 
GRMZM2G007489
Zm00001d036137
Zm00001eb270390
Zilong Zhao et al. 2025. Meta-QTL analysis for mining key genes associated with seed oil content in maize BMC Plant Biology. 25:1466.     Reference: October 30th, 2025
Gene Product: May 23rd, 2012
29 days agocadtfr12 CCAAT-DR1-transcription factor 12:
9.03
GRMZM2G167576
Zm00001d045772
Zm00001eb380770
Zilong Zhao et al. 2025. Meta-QTL analysis for mining key genes associated with seed oil content in maize BMC Plant Biology. 25:1466.     Reference: October 30th, 2025
Gene Product: August 9th, 2016
29 days agoea1 egg apparatus1:
7.04
GRMZM2G456746
Zm00001d022090
Zm00001eb327080
Zheng, XX et al. 2026. Manual Isolation of Parthenogenetic Egg Cells Combined with Comparative Transcriptomics to Identify Parthenogenesis Genes in Tripsacum. Methods in Molecular Biology. 2987:105-123.     Reference: October 30th, 2025
Gene Product: December 4th, 2021
29 days agoIDP494  :
3.09
GRMZM2G049866
Zm00001d044469
Zm00001eb162020
Qu, ZB et al. 2025. Genome-wide association study of seven agronomy traits under drought-stressed and well-watered in maize. Mol Breed. 45:87.     Reference: October 30th, 2025
Variation: March 31st, 2005
29 days agoIDP2462  :
9.06
GRMZM2G138589
Zm00001d048178
Zm00001eb401030
Zilong Zhao et al. 2025. Meta-QTL analysis for mining key genes associated with seed oil content in maize BMC Plant Biology. 25:1466.     Reference: October 30th, 2025
Variation: March 31st, 2005
29 days agocyp12 cytochrome P450 12:
2.06
GRMZM2G091588
Zm00001d005822
Zm00001eb100210
Zilong Zhao et al. 2025. Meta-QTL analysis for mining key genes associated with seed oil content in maize BMC Plant Biology. 25:1466.     Reference: October 30th, 2025
Gene Product: September 26th, 2016
Variation: January 22nd, 2010
29 days agokch5 potassium channel5:
8.06
GRMZM2G171279
Zm00001d011473
Zm00001eb359320
Zhang, MY et al. 2025. GWAS and gene co-expression network analysis reveal the genetic control of seed germination under salt stress in maize. Theor Appl Genet. 138:285.     Reference: October 30th, 2025
Gene Product: November 27th, 2023
Variation: October 30th, 2025
30 days agodnaJ44 DnaJ/Hsp40 44:
 
GRMZM2G069603
Zm00001d053972
Zm00001eb208880
Liang Tu et al. 2025. Integrated GWAS and Transcriptome Analysis to Identify Genes Underlying Plant Height and Ear Height Plasticity in Maize Germplasm Genes. 16:1225.     Reference: October 29th, 2025
Gene Product: September 1st, 2003
30 days agonrf4 non-reduction in female4:
7.05
GRMZM2G148133
Zm00001d022368
Zm00001eb329530
Chumak, N et al. 2025. Generating clonal seeds using non-reduction in female4 (nrf4), a novel meiotic mutant of maize bioRxiv preprint.     Reference: October 29th, 2025
Variation: October 29th, 2025
30 days agovpp4 vacuolar proton pump4:
10.02
GRMZM2G028432
Zm00001d023542
Zm00001eb407840
Paulina Bolc et al. 2025. Regulatory Landscapes of Non-Coding RNAs During Drought Stress in Plants. Int J Mol Sci. 26:9892.     Reference: October 29th, 2025
Gene Product: September 1st, 2003
Variation: August 23rd, 2013
30 days agopip1a plasma membrane intrinsic protein1:
2.03
GRMZM2G174807
Zm00001d002690
Zm00001eb074210
Jia Yang et al. 2025. SPc nanoparticles enhance drought tolerance through modulating plasma membrane aquaporins and improving water transport in maize Plant Physiol Biochem. :doi: 10.1016/j.plaphy.2025.110674.     Reference: October 29th, 2025
Gene Product: January 27th, 2022
Variation: June 6th, 2005
30 days agopip2a plasma membrane intrinsic protein2:
2.03
GRMZM2G178693
Zm00001d003006
Zm00001eb077130
Jia Yang et al. 2025. SPc nanoparticles enhance drought tolerance through modulating plasma membrane aquaporins and improving water transport in maize Plant Physiol Biochem. :doi: 10.1016/j.plaphy.2025.110674.     Reference: October 29th, 2025
Gene Product: September 1st, 2003
Variation: June 6th, 2024
30 days agopip1d plasma membrane intrinsic protein1:
4.06
GRMZM2G392975
Zm00001d051403
Zm00001eb186900
Jia Yang et al. 2025. SPc nanoparticles enhance drought tolerance through modulating plasma membrane aquaporins and improving water transport in maize Plant Physiol Biochem. :doi: 10.1016/j.plaphy.2025.110674.     Reference: October 29th, 2025
Gene Product: January 27th, 2022
Variation: October 29th, 2014
30 days agopip1e plasma membrane intrinsic protein1:
4.06
GRMZM2G081843
Zm00001d051872
Zm00001eb190950
Jia Yang et al. 2025. SPc nanoparticles enhance drought tolerance through modulating plasma membrane aquaporins and improving water transport in maize Plant Physiol Biochem. :doi: 10.1016/j.plaphy.2025.110674.     Reference: October 29th, 2025
Gene Product: January 27th, 2022
Variation: October 24th, 2014
30 days agopip2e plasma membrane intrinsic protein2:
7.02
GRMZM2G014914
Zm00001d019563
Zm00001eb306380
Jia Yang et al. 2025. SPc nanoparticles enhance drought tolerance through modulating plasma membrane aquaporins and improving water transport in maize Plant Physiol Biochem. :doi: 10.1016/j.plaphy.2025.110674.     Reference: October 29th, 2025
Gene Product: September 1st, 2003
Variation: June 6th, 2005
30 days agopip2b plasma membrane intrinsic protein2:
2.06
GRMZM2G092125
Zm00001d005421
Zm00001eb096680
Jia Yang et al. 2025. SPc nanoparticles enhance drought tolerance through modulating plasma membrane aquaporins and improving water transport in maize Plant Physiol Biochem. :doi: 10.1016/j.plaphy.2025.110674.     Reference: October 29th, 2025
Gene Product: September 1st, 2003
Variation: March 19th, 2013
30 days agopip2c plasma membrane intrinsic protein2:
4.06
GRMZM2G081192
Zm00001d051174
Zm00001eb185300
Jia Yang et al. 2025. SPc nanoparticles enhance drought tolerance through modulating plasma membrane aquaporins and improving water transport in maize Plant Physiol Biochem. :doi: 10.1016/j.plaphy.2025.110674.     Reference: October 29th, 2025
Gene Product: September 1st, 2003
Variation: March 25th, 2013
30 days agopip2d plasma membrane intrinsic protein2:
5.05
GRMZM2G154628
Zm00001d017288
Zm00001eb247760
Jia Yang et al. 2025. SPc nanoparticles enhance drought tolerance through modulating plasma membrane aquaporins and improving water transport in maize Plant Physiol Biochem. :doi: 10.1016/j.plaphy.2025.110674.     Reference: October 29th, 2025
Gene Product: September 1st, 2003
Variation: June 28th, 2024
30 days agoglu12 beta-glucosidase12:
3.06
GRMZM2G069024
Zm00001d043110
Zm00001eb149960
Liang Tu et al. 2025. Integrated GWAS and Transcriptome Analysis to Identify Genes Underlying Plant Height and Ear Height Plasticity in Maize Germplasm Genes. 16:1225.     Reference: October 29th, 2025
Gene Product: June 26th, 2019
30 days agosod16 superoxide dismutase16:
 
GRMZM2G173628
Zm00001d045384
Zm00001eb377310
Liang Tu et al. 2025. Integrated GWAS and Transcriptome Analysis to Identify Genes Underlying Plant Height and Ear Height Plasticity in Maize Germplasm Genes. 16:1225.     Reference: October 29th, 2025
Gene Product: October 4th, 2021
30 days agoago1 argonaute1:
8.05
AC199001.3_FG005
GRMZM2G162525
Zm00001d011096
Zm00001eb356140
Paulina Bolc et al. 2025. Regulatory Landscapes of Non-Coding RNAs During Drought Stress in Plants. Int J Mol Sci. 26:9892.     Reference: October 29th, 2025
Gene Product: August 12th, 2016
Variation: November 5th, 2010
30 days agoomt1 Caffeoyl-CoA O-methyltransferase1:
6.02
GRMZM2G127948
Zm00001d036293
Zm00001eb271480
Cao, YY et al. 2025. The Zma-miRNA319-ZmMYB74 Module Regulates Maize Resistance to Stalk Rot Disease by Modulating Lignin Deposition. Plant Biotechnol J. :doi: 10.1111/pbi.70424.     Reference: October 29th, 2025
Gene Product: January 5th, 2014
Variation: December 26th, 2016
30 days agoago104 argonaute104:
6.07
GRMZM2G141818
Zm00001d039214
Zm00001eb297760
Paulina Bolc et al. 2025. Regulatory Landscapes of Non-Coding RNAs During Drought Stress in Plants. Int J Mol Sci. 26:9892.     Reference: October 29th, 2025
Gene Product: August 12th, 2016
Variation: September 4th, 2013
31 days agogrf10 general regulatory factor10:
 
GRMZM2G329740
Zm00001d033357
Zm00001eb051710
Tanya Singh et al. 2025. From Soil to Cell: Systemic Signalling and Regulatory Networks in Zea mays Under Phosphorus Deprivation. Plant Cell Environ. :doi: 10.1111/pce.70262.     Reference: October 28th, 2025
Gene Product: March 6th, 2023
31 days agopdr1 pleiotropic drug resistance protein1:
 
GRMZM2G000614
Zm00001d043598
Zm00001eb154460
Tanya Singh et al. 2025. From Soil to Cell: Systemic Signalling and Regulatory Networks in Zea mays Under Phosphorus Deprivation. Plant Cell Environ. :doi: 10.1111/pce.70262.     Reference: October 28th, 2025
Gene Product: December 28th, 2015
31 days agothx17 Trihelix-transcription factor 17:
3.08
GRMZM2G080583
Zm00001d043902
Zm00001eb157080
Yang, SP et al. 2025. A pangenome of maize provides genetic insights into drought resistance Nature Genetics. :doi: 10.1038/s41588-025-02378-w.     Reference: October 28th, 2025
Gene Product: November 9th, 2021
Variation: September 25th, 2007
31 days agophyC2 phytochromeC2:
5.01
GRMZM2G129889
Zm00001d013262
Zm00001eb214800
Haiyue Fang et al. 2025. Meta-QTL Analysis and Identification of Candidate Genes Associated with Stalk Lodging in Maize (Zea mays L.) Curr Issues Mol Biol. 47:792.     Reference: October 28th, 2025
Gene Product: June 30th, 2009
Variation: August 26th, 2021
31 days agoago18a argonaute18a:
2.07
GRMZM2G105250
Zm00001d006351
Zm00001eb104820
Singh, M et al. 2025. Epigenetic control of seed development and dormancy in cereals. Plant Signal Behav. 20:2568929.     Reference: October 28th, 2025
Gene Product: August 12th, 2016
31 days agobv1 brevis plant1:
5.04 - 5.05
GRMZM2G366698
Zm00001d016486
Zm00001eb241060
Haiyue Fang et al. 2025. Meta-QTL Analysis and Identification of Candidate Genes Associated with Stalk Lodging in Maize (Zea mays L.) Curr Issues Mol Biol. 47:792.   LOC_Os02g27620 (MSU/TIGR)
Os02g0477700 (Gramene)
Reference: October 28th, 2025
Gene Product: January 16th, 2016
Variation: January 16th, 2016
31 days agoid1 indeterminate growth1:
1.08
GRMZM2G011357
Zm00001d032922
Zm00001eb047750
Tanya Singh et al. 2025. From Soil to Cell: Systemic Signalling and Regulatory Networks in Zea mays Under Phosphorus Deprivation. Plant Cell Environ. :doi: 10.1111/pce.70262.     Reference: October 28th, 2025
Gene Product: May 31st, 2024
Variation: March 22nd, 2023
31 days agovp1 viviparous1:
3.05
GRMZM2G133398
Zm00001d042396
Zm00001eb143690
Singh, M et al. 2025. Epigenetic control of seed development and dormancy in cereals. Plant Signal Behav. 20:2568929.     Reference: October 28th, 2025
Gene Product: January 29th, 2022
Variation: August 22nd, 2013
31 days agoereb97 AP2-EREBP-transcription factor 97:
 
GRMZM2G068967
Zm00001d002364
Zm00001eb071190
Yang, SP et al. 2025. A pangenome of maize provides genetic insights into drought resistance Nature Genetics. :doi: 10.1038/s41588-025-02378-w.     Reference: October 28th, 2025
Variation: May 14th, 2024
31 days agoarftf1 ARF-transcription factor 1:
 
GRMZM2G169820
Zm00001d031522
Zm00001eb035640
Tanya Singh et al. 2025. From Soil to Cell: Systemic Signalling and Regulatory Networks in Zea mays Under Phosphorus Deprivation. Plant Cell Environ. :doi: 10.1111/pce.70262.     Reference: October 28th, 2025
Gene Product: January 29th, 2022
31 days agoglk17 G2-like-transcription factor 17:
 
GRMZM2G006477
Zm00001d029020
Zm00001eb015750
Tanya Singh et al. 2025. From Soil to Cell: Systemic Signalling and Regulatory Networks in Zea mays Under Phosphorus Deprivation. Plant Cell Environ. :doi: 10.1111/pce.70262.     Reference: October 28th, 2025
Variation: July 22nd, 2024
31 days agowox11 WUSCHEL-related homeobox transcription factor 11:
 
GRMZM2G162481
Zm00001d047559
Zm00001eb395430
Wei Wei et al. 2025. Natural variation in regulatory code revealed through Bayesian analysis of plant pan-genomes and pan-transcriptomes bioRxiv preprint.     Reference: October 28th, 2025
Gene Product: August 25th, 2017
31 days agowox13a WUSCHEL-related homeobox-transcription factor 13a:
 
GRMZM2G069274
Zm00001d043076
Zm00001eb149680
Wei Wei et al. 2025. Natural variation in regulatory code revealed through Bayesian analysis of plant pan-genomes and pan-transcriptomes bioRxiv preprint.     Reference: October 28th, 2025
Gene Product: August 25th, 2017
31 days agolbd1 LBD-transcription factor 1:
 
GRMZM2G092483
Zm00001d027678
Zm00001eb003910
Tanya Singh et al. 2025. From Soil to Cell: Systemic Signalling and Regulatory Networks in Zea mays Under Phosphorus Deprivation. Plant Cell Environ. :doi: 10.1111/pce.70262.     Reference: October 28th, 2025
Variation: March 18th, 2021
31 days agonlp13 NLP-transcription factor 13:
 
GRMZM2G053298
Zm00001d021442
Zm00001eb320950
Wei Wei et al. 2025. Natural variation in regulatory code revealed through Bayesian analysis of plant pan-genomes and pan-transcriptomes bioRxiv preprint.     Reference: October 28th, 2025
Gene Product: December 3rd, 2019
31 days agozim36 ZIM-transcription factor 36:
 
GRMZM2G058479
Zm00001d014656
Zm00001eb226740
Wei Wei et al. 2025. Natural variation in regulatory code revealed through Bayesian analysis of plant pan-genomes and pan-transcriptomes bioRxiv preprint.     Reference: October 28th, 2025
Gene Product: February 24th, 2021
31 days agopho1 starch phosphorylase1:
1.10
GRMZM2G074158
Zm00001d034074
Zm00001eb057840
Tanya Singh et al. 2025. From Soil to Cell: Systemic Signalling and Regulatory Networks in Zea mays Under Phosphorus Deprivation. Plant Cell Environ. :doi: 10.1111/pce.70262.     Reference: October 28th, 2025
Gene Product: March 26th, 2015
31 days agophyB2 phytochromeB2:
9.05
GRMZM2G092174
Zm00001d047632
Zm00001eb396030
Haiyue Fang et al. 2025. Meta-QTL Analysis and Identification of Candidate Genes Associated with Stalk Lodging in Maize (Zea mays L.) Curr Issues Mol Biol. 47:792.     Reference: October 28th, 2025
Gene Product: October 24th, 2007
Variation: May 20th, 2020
31 days agofie1 fertilization independent endosperm1:
4.05
GRMZM2G118205
Zm00001d049608
Zm00001eb173090
Singh, M et al. 2025. Epigenetic control of seed development and dormancy in cereals. Plant Signal Behav. 20:2568929.     Reference: October 28th, 2025
Gene Product: September 1st, 2003
Variation: December 4th, 2012
31 days agofie2 fertilization independent endosperm2:
10.03
GRMZM2G148924
Zm00001d024698
Zm00001eb416950
Singh, M et al. 2025. Epigenetic control of seed development and dormancy in cereals. Plant Signal Behav. 20:2568929.     Reference: October 28th, 2025
Gene Product: September 1st, 2003
Variation: May 27th, 2014
31 days agoeif2 elongation initiation factor2:
7.04
GRMZM2G107654
Zm00001d021815
Zm00001eb324510
Haiyue Fang et al. 2025. Meta-QTL Analysis and Identification of Candidate Genes Associated with Stalk Lodging in Maize (Zea mays L.) Curr Issues Mol Biol. 47:792.     Reference: October 28th, 2025
Gene Product: September 1st, 2003
Variation: July 8th, 2017
31 days agotrh1 thioredoxin h homolog1:
6.06
GRMZM2G424053
Zm00001d038653
Zm00001eb292340
Haiyue Fang et al. 2025. Meta-QTL Analysis and Identification of Candidate Genes Associated with Stalk Lodging in Maize (Zea mays L.) Curr Issues Mol Biol. 47:792.     Reference: October 28th, 2025
Gene Product: September 1st, 2003
Variation: September 1st, 2003
31 days agouce10 ubiquitin conjugating enzyme10:
6.07
GRMZM2G381709
Zm00001d038972
Zm00001eb295490
Tanya Singh et al. 2025. From Soil to Cell: Systemic Signalling and Regulatory Networks in Zea mays Under Phosphorus Deprivation. Plant Cell Environ. :doi: 10.1111/pce.70262.   AT2G33770 (TAIR) Reference: October 28th, 2025
Gene Product: December 19th, 2019
Variation: July 29th, 2004
31 days agovpe1 vacuolar processing enzyme1:
5.05
GRMZM2G463291
Zm00001d017399
Zm00001eb248720
Tanya Singh et al. 2025. From Soil to Cell: Systemic Signalling and Regulatory Networks in Zea mays Under Phosphorus Deprivation. Plant Cell Environ. :doi: 10.1111/pce.70262.     Reference: October 28th, 2025
Gene Product: September 29th, 2022
Variation: June 25th, 2015
31 days agoLOC103652266  :
3.05
GRMZM2G167668
Zm00001d042078
Zm00001eb140810
Yang, SP et al. 2025. A pangenome of maize provides genetic insights into drought resistance Nature Genetics. :doi: 10.1038/s41588-025-02378-w.   AT3G54460 (TAIR) Reference: October 28th, 2025
Gene Product: September 9th, 2024
31 days agogpx1 glycerophosphodiester phosphodiesterase1:
5.04
GRMZM2G018820
Zm00001d016588
Zm00001eb241920
Tanya Singh et al. 2025. From Soil to Cell: Systemic Signalling and Regulatory Networks in Zea mays Under Phosphorus Deprivation. Plant Cell Environ. :doi: 10.1111/pce.70262.     Reference: October 28th, 2025
Gene Product: June 24th, 2020
Variation: March 7th, 2007
31 days agohdt103 histone deacetylase103:
6.07
GRMZM2G159032
Zm00001d038832
Zm00001eb294030
Singh, M et al. 2025. Epigenetic control of seed development and dormancy in cereals. Plant Signal Behav. 20:2568929.     Reference: October 28th, 2025
Gene Product: February 12th, 2020
Variation: January 4th, 2024
31 days agoago18b argonaute18b:
1.08
GRMZM2G457370
Zm00001d033206
Zm00001eb050240
Singh, M et al. 2025. Epigenetic control of seed development and dormancy in cereals. Plant Signal Behav. 20:2568929.     Reference: October 28th, 2025
Gene Product: August 12th, 2016
Variation: August 17th, 2019
31 days agogpx5 glycerophosphodiester phosphodiesterase5:
1.08
GRMZM2G058227
Zm00001d033187
Zm00001eb050070
Tanya Singh et al. 2025. From Soil to Cell: Systemic Signalling and Regulatory Networks in Zea mays Under Phosphorus Deprivation. Plant Cell Environ. :doi: 10.1111/pce.70262.     Reference: October 28th, 2025
Gene Product: June 24th, 2020
31 days agopht2 phosphate transporter protein2:
1.08
GRMZM2G154090
Zm00001d032850
Zm00001eb047070
Tanya Singh et al. 2025. From Soil to Cell: Systemic Signalling and Regulatory Networks in Zea mays Under Phosphorus Deprivation. Plant Cell Environ. :doi: 10.1111/pce.70262.     Reference: October 28th, 2025
Gene Product: June 16th, 2016
Variation: February 4th, 2011
31 days agopht4 phosphate transporter protein4:
10.04
GRMZM2G159075
Zm00001d025028
Zm00001eb419630
Zm00001eb419640
Tanya Singh et al. 2025. From Soil to Cell: Systemic Signalling and Regulatory Networks in Zea mays Under Phosphorus Deprivation. Plant Cell Environ. :doi: 10.1111/pce.70262.     Reference: October 28th, 2025
Gene Product: June 16th, 2016
Variation: July 14th, 2008
31 days agorgd2 ragged seedling2:
1.04
GRMZM5G852170
GRMZM5G892991
Zm00001d029573
Zm00001eb020470
Singh, M et al. 2025. Epigenetic control of seed development and dormancy in cereals. Plant Signal Behav. 20:2568929.     Reference: October 28th, 2025
Gene Product: August 12th, 2016
Variation: July 6th, 2010
31 days agopht6 phosphate transporter protein6:
 
GRMZM5G881088
Zm00001d011498
Zm00001eb359490
Tanya Singh et al. 2025. From Soil to Cell: Systemic Signalling and Regulatory Networks in Zea mays Under Phosphorus Deprivation. Plant Cell Environ. :doi: 10.1111/pce.70262.     Reference: October 28th, 2025
Gene Product: June 16th, 2016
Variation: June 17th, 2020
31 days agoyuc2 Yucca2:
 
GRMZM2G159393
Zm00001d025005
Zm00001eb419450
Haiyue Fang et al. 2025. Meta-QTL Analysis and Identification of Candidate Genes Associated with Stalk Lodging in Maize (Zea mays L.) Curr Issues Mol Biol. 47:792.     Reference: October 28th, 2025
Gene Product: June 18th, 2018
31 days agospx5 SPX domain-containing membrane protein5:
4.09
GRMZM2G171423
Zm00001d053626
Zm00001eb205600
Tanya Singh et al. 2025. From Soil to Cell: Systemic Signalling and Regulatory Networks in Zea mays Under Phosphorus Deprivation. Plant Cell Environ. :doi: 10.1111/pce.70262.     Reference: October 28th, 2025
Gene Product: October 9th, 2021
31 days agoago1b argonaute1b:
 
AC209206.3_FG011
Zm00001d026111
Zm00001eb428910
Singh, M et al. 2025. Epigenetic control of seed development and dormancy in cereals. Plant Signal Behav. 20:2568929.   AT1G48410 (TAIR) Reference: October 28th, 2025
Gene Product: August 12th, 2016
31 days agoago1c argonaute1c:
 
GRMZM2G039455
Zm00001d002650
Zm00001eb073810
Singh, M et al. 2025. Epigenetic control of seed development and dormancy in cereals. Plant Signal Behav. 20:2568929.   AT1G48410 (TAIR) Reference: October 28th, 2025
Gene Product: August 12th, 2016
31 days agoago1a argonaute1a:
 
GRMZM2G441583
Zm00001d035747
Zm00001eb267430
Singh, M et al. 2025. Epigenetic control of seed development and dormancy in cereals. Plant Signal Behav. 20:2568929.   AT1G48410 (TAIR) Reference: October 28th, 2025
Gene Product: August 12th, 2016
31 days agophos3 phosphate transporter3:
 
GRMZM5G801969
GRMZM5G815128
GRMZM5G851655
GRMZM5G872499
Zm00001d018445
Zm00001eb258520
Tanya Singh et al. 2025. From Soil to Cell: Systemic Signalling and Regulatory Networks in Zea mays Under Phosphorus Deprivation. Plant Cell Environ. :doi: 10.1111/pce.70262.   LOC_Os02g56510 (MSU/TIGR) Reference: October 28th, 2025
Gene Product: February 27th, 2016
Variation: September 13th, 2017
31 days agopht11 phosphate transporter protein11:
 
GRMZM2G139639
Zm00001d019480
Zm00001eb305820
Tanya Singh et al. 2025. From Soil to Cell: Systemic Signalling and Regulatory Networks in Zea mays Under Phosphorus Deprivation. Plant Cell Environ. :doi: 10.1111/pce.70262.     Reference: October 28th, 2025
Gene Product: June 16th, 2016
31 days agopht10 phosphate transporter protein10:
 
GRMZM2G075870
Zm00001d027549
Zm00001eb002860
Tanya Singh et al. 2025. From Soil to Cell: Systemic Signalling and Regulatory Networks in Zea mays Under Phosphorus Deprivation. Plant Cell Environ. :doi: 10.1111/pce.70262.     Reference: October 28th, 2025
Gene Product: June 16th, 2016
31 days agopht8 phosphate transporter protein8:
 
GRMZM2G009779
Zm00001d004306
Zm00001eb087730
Tanya Singh et al. 2025. From Soil to Cell: Systemic Signalling and Regulatory Networks in Zea mays Under Phosphorus Deprivation. Plant Cell Environ. :doi: 10.1111/pce.70262.     Reference: October 28th, 2025
Gene Product: June 16th, 2016
31 days agopht9 phosphate transporter protein9:
 
GRMZM2G070087
Zm00001d027700
Zm00001eb004100
Tanya Singh et al. 2025. From Soil to Cell: Systemic Signalling and Regulatory Networks in Zea mays Under Phosphorus Deprivation. Plant Cell Environ. :doi: 10.1111/pce.70262.     Reference: October 28th, 2025
Gene Product: June 16th, 2016
31 days agoago2b argonaute2b:
 
GRMZM2G354867
Zm00001d026300
Zm00001eb430920
Singh, M et al. 2025. Epigenetic control of seed development and dormancy in cereals. Plant Signal Behav. 20:2568929.     Reference: October 28th, 2025
Gene Product: August 12th, 2016
31 days agoago4a argonaute4a:
 
GRMZM2G589579
Zm00001d008249
Zm00001eb332830
Singh, M et al. 2025. Epigenetic control of seed development and dormancy in cereals. Plant Signal Behav. 20:2568929.     Reference: October 28th, 2025
Gene Product: August 12th, 2016
31 days agoms28 male sterile28:
 
GRMZM2G123063
Zm00001d013063
Zm00001eb212800
Singh, M et al. 2025. Epigenetic control of seed development and dormancy in cereals. Plant Signal Behav. 20:2568929.     Reference: October 28th, 2025
Gene Product: August 12th, 2016
Variation: March 3rd, 2021
31 days agoago10b argonaute10b:
 
GRMZM2G079080
Zm00001d036917
Zm00001eb276980
Singh, M et al. 2025. Epigenetic control of seed development and dormancy in cereals. Plant Signal Behav. 20:2568929.     Reference: October 28th, 2025
Gene Product: August 12th, 2016
31 days agorth6 roothairless6:
 
GRMZM2G436299
Zm00001d030121
Zm00001eb025100
Haiyue Fang et al. 2025. Meta-QTL Analysis and Identification of Candidate Genes Associated with Stalk Lodging in Maize (Zea mays L.) Curr Issues Mol Biol. 47:792.     Reference: October 28th, 2025
Gene Product: October 7th, 2016
Variation: October 7th, 2016
31 days agoplc1 phospholipase C1:
 
GRMZM5G889467
Zm00001d014903
Zm00001eb229070
Tanya Singh et al. 2025. From Soil to Cell: Systemic Signalling and Regulatory Networks in Zea mays Under Phosphorus Deprivation. Plant Cell Environ. :doi: 10.1111/pce.70262.     Reference: October 28th, 2025
Gene Product: January 12th, 2021
31 days agoros1 repressor of silencing1:
 
GRMZM2G131756
Zm00001d038302
Zm00001eb289030
Singh, M et al. 2025. Epigenetic control of seed development and dormancy in cereals. Plant Signal Behav. 20:2568929.     Reference: October 28th, 2025
Gene Product: March 10th, 2022
31 days agocsld1 cellulose synthase-like D1:
 
GRMZM2G015886
Zm00001d023810
Zm00001eb410030
Haiyue Fang et al. 2025. Meta-QTL Analysis and Identification of Candidate Genes Associated with Stalk Lodging in Maize (Zea mays L.) Curr Issues Mol Biol. 47:792.     Reference: October 28th, 2025
Gene Product: October 7th, 2016
Variation: January 13th, 2022
31 days agospx1 SPX domain-containing membrane protein1:
 
GRMZM2G166976
Zm00001d017597
Zm00001eb250590
Tanya Singh et al. 2025. From Soil to Cell: Systemic Signalling and Regulatory Networks in Zea mays Under Phosphorus Deprivation. Plant Cell Environ. :doi: 10.1111/pce.70262.     Reference: October 28th, 2025
Gene Product: October 9th, 2021
31 days agoarpg1 acid phosphatase-regulating gene1:
 
GRMZM2G041022
Zm00001d046743
Zm00001eb388200
Tanya Singh et al. 2025. From Soil to Cell: Systemic Signalling and Regulatory Networks in Zea mays Under Phosphorus Deprivation. Plant Cell Environ. :doi: 10.1111/pce.70262.     Reference: October 28th, 2025
Variation: December 10th, 2018
31 days agordph1 reducing plant height1:
 
GRMZM2G114190
Zm00001d028073
Zm00001eb007470
Haiyue Fang et al. 2025. Meta-QTL Analysis and Identification of Candidate Genes Associated with Stalk Lodging in Maize (Zea mays L.) Curr Issues Mol Biol. 47:792.     Reference: October 28th, 2025
Gene Product: November 7th, 2019
31 days agohdac7 histone deacetylase7:
 
GRMZM2G008425
Zm00001d046348
Zm00001eb385130
Singh, M et al. 2025. Epigenetic control of seed development and dormancy in cereals. Plant Signal Behav. 20:2568929.     Reference: October 28th, 2025
Gene Product: February 12th, 2020
31 days agospms1 spermine synthase1:
 
GRMZM2G047867
Zm00001d046112
Zm00001eb383120
Haiyue Fang et al. 2025. Meta-QTL Analysis and Identification of Candidate Genes Associated with Stalk Lodging in Maize (Zea mays L.) Curr Issues Mol Biol. 47:792.     Reference: October 28th, 2025
Gene Product: June 19th, 2020
31 days agoccd9 carotenoid cleavage dioxygenase9:
 
GRMZM2G164967
Zm00001d020069
Zm00001eb309770
Tanya Singh et al. 2025. From Soil to Cell: Systemic Signalling and Regulatory Networks in Zea mays Under Phosphorus Deprivation. Plant Cell Environ. :doi: 10.1111/pce.70262.     Reference: October 28th, 2025
Gene Product: September 20th, 2012
31 days agodng102 DNA glycosylase102:
 
GRMZM2G123587
Zm00001d016516
Zm00001eb241240
Singh, M et al. 2025. Epigenetic control of seed development and dormancy in cereals. Plant Signal Behav. 20:2568929.     Reference: October 28th, 2025
Gene Product: October 5th, 2021
Variation: October 5th, 2021
31 days agoznf10 zinc finger protein10:
 
GRMZM2G081782
Zm00001d021842
Zm00001eb324750
Wei Wei et al. 2025. Natural variation in regulatory code revealed through Bayesian analysis of plant pan-genomes and pan-transcriptomes bioRxiv preprint.     Reference: October 28th, 2025
Gene Product: November 14th, 2022
31 days agospx7 SPX domain-containing membrane protein7:
 
GRMZM5G828488
Zm00001d029460
Zm00001eb019570
Tanya Singh et al. 2025. From Soil to Cell: Systemic Signalling and Regulatory Networks in Zea mays Under Phosphorus Deprivation. Plant Cell Environ. :doi: 10.1111/pce.70262.     Reference: October 28th, 2025
Gene Product: October 9th, 2021
31 days agospx2 SPX domain-containing membrane protein2:
 
GRMZM2G024705
Zm00001d033047
Zm00001eb048730
Tanya Singh et al. 2025. From Soil to Cell: Systemic Signalling and Regulatory Networks in Zea mays Under Phosphorus Deprivation. Plant Cell Environ. :doi: 10.1111/pce.70262.     Reference: October 28th, 2025
Gene Product: October 9th, 2021
31 days agospx3 SPX domain-containing membrane protein3:
 
GRMZM2G122108
Zm00001d034718
Zm00001eb063280
Tanya Singh et al. 2025. From Soil to Cell: Systemic Signalling and Regulatory Networks in Zea mays Under Phosphorus Deprivation. Plant Cell Environ. :doi: 10.1111/pce.70262.     Reference: October 28th, 2025
Gene Product: October 9th, 2021
31 days agospx4 SPX domain-containing membrane protein4:
 
GRMZM5G805389
Zm00001d044541
Zm00001eb162710
Tanya Singh et al. 2025. From Soil to Cell: Systemic Signalling and Regulatory Networks in Zea mays Under Phosphorus Deprivation. Plant Cell Environ. :doi: 10.1111/pce.70262.     Reference: October 28th, 2025
Gene Product: October 9th, 2021
31 days agospx6 SPX domain-containing membrane protein6:
 
GRMZM2G035579
GRMZM2G083655
Zm00001d046500
Zm00001eb386270
Tanya Singh et al. 2025. From Soil to Cell: Systemic Signalling and Regulatory Networks in Zea mays Under Phosphorus Deprivation. Plant Cell Environ. :doi: 10.1111/pce.70262.     Reference: October 28th, 2025
Gene Product: October 9th, 2021
31 days agocesa17 cellulose synthase17:
 
GRMZM2G002523
Zm00001d005775
Zm00001eb099710
Haiyue Fang et al. 2025. Meta-QTL Analysis and Identification of Candidate Genes Associated with Stalk Lodging in Maize (Zea mays L.) Curr Issues Mol Biol. 47:792.     Reference: October 28th, 2025
Gene Product: October 7th, 2016
31 days agonrat7 nramp aluminum transporter7:
 
GRMZM2G366919
Zm00001d005479
Zm00001eb097120
Tanya Singh et al. 2025. From Soil to Cell: Systemic Signalling and Regulatory Networks in Zea mays Under Phosphorus Deprivation. Plant Cell Environ. :doi: 10.1111/pce.70262.     Reference: October 28th, 2025
Gene Product: August 17th, 2015
31 days agochn35 chitinase35:
 
AC193632.2_FG002
Zm00001d049727
Zm00001eb174340
Tanya Singh et al. 2025. From Soil to Cell: Systemic Signalling and Regulatory Networks in Zea mays Under Phosphorus Deprivation. Plant Cell Environ. :doi: 10.1111/pce.70262.     Reference: October 28th, 2025
Gene Product: May 31st, 2021
31 days agocka2 CK2 protein kinase alpha 2:
1.10
GRMZM2G047855
Zm00001d034125
Zm00001eb058230
Tanya Singh et al. 2025. From Soil to Cell: Systemic Signalling and Regulatory Networks in Zea mays Under Phosphorus Deprivation. Plant Cell Environ. :doi: 10.1111/pce.70262.     Reference: October 28th, 2025
Gene Product: December 3rd, 2013
Variation: November 16th, 2012
31 days agohin3 hairpin-induced3:
1.07
GRMZM2G136439
GRMZM2G469523
Zm00001d032346
Zm00001eb042670
Haiyue Fang et al. 2025. Meta-QTL Analysis and Identification of Candidate Genes Associated with Stalk Lodging in Maize (Zea mays L.) Curr Issues Mol Biol. 47:792.     Reference: October 28th, 2025
Gene Product: February 1st, 2021
32 days agogsl7 giberellic acid-stimulated like7:
 
GRMZM2G150688
Zm00001d033369
Zm00001eb051810
Zimmermann, R et al. 2010. The Gibberellic Acid Stimulated-Like gene family in maize and its role in lateral root development. Plant Physiol. 152:356-65.     Reference: October 27th, 2025
Gene Product: October 27th, 2025
32 days agochr23 chromatin remodeling factor23:
 
GRMZM2G313553
GRMZM2G439281
Zm00001d022046
Zm00001eb326710
Yan, HY et al. 2023. PlantCHRs: a comprehensive database of plant chromatin remodeling factors Comput Struct Biotechnol J. :doi: 10.1016/j.csbj.2023.10.005.     Reference: October 27th, 2025
Gene Product: September 9th, 2024
32 days agochr24 chromatin remodeling factor24:
 
GRMZM2G126774
Zm00001d022267
Zm00001eb328680
Yan, HY et al. 2023. PlantCHRs: a comprehensive database of plant chromatin remodeling factors Comput Struct Biotechnol J. :doi: 10.1016/j.csbj.2023.10.005.     Reference: October 27th, 2025
Gene Product: September 9th, 2024
32 days agochr4 chromatin remodeling factor4:
 
GRMZM2G117060
Zm00001d002656
Zm00001eb073870
Yan, HY et al. 2023. PlantCHRs: a comprehensive database of plant chromatin remodeling factors Comput Struct Biotechnol J. :doi: 10.1016/j.csbj.2023.10.005.     Reference: October 27th, 2025
Gene Product: September 9th, 2024
32 days agochr22 chromatin remodeling factor22:
 
GRMZM2G021233
Zm00001d021607
Zm00001eb322510
Yan, HY et al. 2023. PlantCHRs: a comprehensive database of plant chromatin remodeling factors Comput Struct Biotechnol J. :doi: 10.1016/j.csbj.2023.10.005.     Reference: October 27th, 2025
Gene Product: September 9th, 2024
32 days agochr8 chromatin remodeling factor8:
 
GRMZM2G070264
Zm00001d040203
Zm00001eb127010
Yan, HY et al. 2023. PlantCHRs: a comprehensive database of plant chromatin remodeling factors Comput Struct Biotechnol J. :doi: 10.1016/j.csbj.2023.10.005.     Reference: October 27th, 2025
Gene Product: September 9th, 2024
32 days agochr29 chromatin remodeling factor29:
 
GRMZM5G829297
Zm00001d012624
Zm00001eb369880
Yan, HY et al. 2023. PlantCHRs: a comprehensive database of plant chromatin remodeling factors Comput Struct Biotechnol J. :doi: 10.1016/j.csbj.2023.10.005.     Reference: October 27th, 2025
Gene Product: September 9th, 2024
32 days agochr16 chromatin remodeling factor16:
 
AC209332.3_FG011
GRMZM2G146041
Zm00001d013828
Zm00001eb220010
Yan, HY et al. 2023. PlantCHRs: a comprehensive database of plant chromatin remodeling factors Comput Struct Biotechnol J. :doi: 10.1016/j.csbj.2023.10.005.     Reference: October 27th, 2025
Gene Product: September 9th, 2024
32 days agochr26 chromatin remodeling factor26:
 
AC188716.3_FG005
GRMZM2G381386
GRMZM2G381400
GRMZM2G381402
Zm00001d022436
Zm00001eb330720
Yan, HY et al. 2023. PlantCHRs: a comprehensive database of plant chromatin remodeling factors Comput Struct Biotechnol J. :doi: 10.1016/j.csbj.2023.10.005.     Reference: October 27th, 2025
Gene Product: September 9th, 2024
32 days agochr15 chromatin remodeling factor15:
 
GRMZM2G081429
GRMZM2G178758
Zm00001d051507
Zm00001eb187690
Yan, HY et al. 2023. PlantCHRs: a comprehensive database of plant chromatin remodeling factors Comput Struct Biotechnol J. :doi: 10.1016/j.csbj.2023.10.005.     Reference: October 27th, 2025
Gene Product: September 9th, 2024
32 days agochr101 chromatin complex subunit A 101:
2.10
GRMZM2G177165
Zm00001d007978
Zm00001eb117870
Yan, HY et al. 2023. PlantCHRs: a comprehensive database of plant chromatin remodeling factors Comput Struct Biotechnol J. :doi: 10.1016/j.csbj.2023.10.005.     Reference: October 27th, 2025
Gene Product: September 9th, 2024
Variation: June 9th, 2018
32 days agochr35 chromatin remodeling factor35:
10.06
GRMZM2G324781
Zm00001d026366
Zm00001eb431470
Yan, HY et al. 2023. PlantCHRs: a comprehensive database of plant chromatin remodeling factors Comput Struct Biotechnol J. :doi: 10.1016/j.csbj.2023.10.005.     Reference: October 27th, 2025
Gene Product: September 9th, 2024
32 days agolrt1 lateral rootless1:
2.00 - 2.03
GRMZM2G110869
GRMZM2G348735
Zm00001d026691
Zm00001eb434410
Zimmermann, R et al. 2010. The Gibberellic Acid Stimulated-Like gene family in maize and its role in lateral root development. Plant Physiol. 152:356-65.     Reference: October 27th, 2025
Gene Product: November 26th, 2019
Variation: November 8th, 2022
32 days agormr1 required to maintain repression1:
6.07
GRMZM2G154946
Zm00001d038113
Zm00001eb287330
Yan, HY et al. 2023. PlantCHRs: a comprehensive database of plant chromatin remodeling factors Comput Struct Biotechnol J. :doi: 10.1016/j.csbj.2023.10.005.     Reference: October 27th, 2025
Gene Product: September 9th, 2024
Variation: May 10th, 2013
32 days agogsl10 giberellic acid-stimulated like10:
5.01
GRMZM2G077034
Zm00001d013222
Zm00001eb214350
Zimmermann, R et al. 2010. The Gibberellic Acid Stimulated-Like gene family in maize and its role in lateral root development. Plant Physiol. 152:356-65.     Reference: October 27th, 2025
Gene Product: October 27th, 2025
Variation: September 1st, 2003
32 days agogsl8 giberellic acid-stimulated like8:
5.03
Zm00001d014888
Zm00001eb228920
Zimmermann, R et al. 2010. The Gibberellic Acid Stimulated-Like gene family in maize and its role in lateral root development. Plant Physiol. 152:356-65.     Reference: October 27th, 2025
Gene Product: October 27th, 2025
Variation: June 26th, 2018
32 days agocko5 cytokinin oxidase 5:
8.03
GRMZM2G325612
Zm00001d008862
Zm00001eb337910
Zm00001eb337920
Christian Damian Lorenzo et al. 2025. Evaluation of Transgenerational Gene Editing Efficiency and Inheritance of Edits Using a Split Cas9/gRNA Crossing System in Zea mays. Plant Biotechnol J. :doi: 10.1111/pbi.70391.   LOC_Os01g10110 (MSU/TIGR)
Os01g0197700 (Gramene)
Reference: October 27th, 2025
Gene Product: July 19th, 2021
Variation: September 1st, 2003
32 days agosyd1 splayed ATPase1:
6.05
GRMZM2G387890
GRMZM2G467799
Zm00001d037346
Zm00001eb280740
Yan, HY et al. 2023. PlantCHRs: a comprehensive database of plant chromatin remodeling factors Comput Struct Biotechnol J. :doi: 10.1016/j.csbj.2023.10.005.     Reference: October 27th, 2025
Gene Product: September 9th, 2024
Variation: September 1st, 2003
32 days agogsl5 giberellic acid-stimulated like5:
8.03
GRMZM2G164090
Zm00001d010193
Zm00001eb348690
Zimmermann, R et al. 2010. The Gibberellic Acid Stimulated-Like gene family in maize and its role in lateral root development. Plant Physiol. 152:356-65.     Reference: October 27th, 2025
Gene Product: October 27th, 2025
Variation: July 12th, 2021
32 days agobrm1 brahma1:
 
GRMZM2G163849
Zm00001d014977
Zm00001eb229760
Yan, HY et al. 2023. PlantCHRs: a comprehensive database of plant chromatin remodeling factors Comput Struct Biotechnol J. :doi: 10.1016/j.csbj.2023.10.005.   AT2G46020 (TAIR)
LOC_Os02g02290 (MSU/TIGR)
Reference: October 27th, 2025
Gene Product: July 7th, 2015
Variation: July 6th, 2015
32 days agockx10 cytokinin oxidase10:
1.07
GRMZM2G348452
Zm00001d032046
Zm00001eb040280
Christian Damian Lorenzo et al. 2025. Evaluation of Transgenerational Gene Editing Efficiency and Inheritance of Edits Using a Split Cas9/gRNA Crossing System in Zea mays. Plant Biotechnol J. :doi: 10.1111/pbi.70391.     Reference: October 27th, 2025
Gene Product: April 4th, 2014
Variation: September 1st, 2003
32 days agogsl3 giberellic acid-stimulated like3:
9.03
GRMZM2G105364
Zm00001d045685
Zm00001eb380150
Zimmermann, R et al. 2010. The Gibberellic Acid Stimulated-Like gene family in maize and its role in lateral root development. Plant Physiol. 152:356-65.     Reference: October 27th, 2025
Gene Product: October 27th, 2025
Variation: September 1st, 2003
32 days agockx6 cytokinin oxidase6:
1.08
GRMZM2G404443
Zm00001d032664
Zm00001eb045490
Christian Damian Lorenzo et al. 2025. Evaluation of Transgenerational Gene Editing Efficiency and Inheritance of Edits Using a Split Cas9/gRNA Crossing System in Zea mays. Plant Biotechnol J. :doi: 10.1111/pbi.70391.     Reference: October 27th, 2025
Gene Product: July 19th, 2021
32 days agogsl6 giberellic acid-stimulated like6:
2.00 - 2.01
GRMZM2G068202
Zm00001d001852
Zm00001eb066440
Zimmermann, R et al. 2010. The Gibberellic Acid Stimulated-Like gene family in maize and its role in lateral root development. Plant Physiol. 152:356-65.     Reference: October 27th, 2025
Gene Product: October 27th, 2025
32 days agogsl2 giberellic acid-stimulated like2:
10.01
GRMZM2G172596
Zm00001d023290
Zm00001eb405550
Zimmermann, R et al. 2010. The Gibberellic Acid Stimulated-Like gene family in maize and its role in lateral root development. Plant Physiol. 152:356-65.     Reference: October 27th, 2025
Gene Product: September 1st, 2003
Variation: September 1st, 2003
32 days agorth3 roothair defective3:
1.03
GRMZM2G377215
Zm00001d028826
Zm00001eb014120
María Martín Roldán et al. 2025. Root hair-deficient mutant of maize promoted an increase in C and N in loamy soil after 5 years of monoculture Biol Fert Soils. :doi: 10.1007/s00374-025-01949-7.     Reference: October 27th, 2025
Gene Product: March 31st, 2021
Variation: June 30th, 2012
32 days agochr112a chromatin complex subunit A:
4.05
GRMZM2G030768
Zm00001d050061
Zm00001eb176980
Yan, HY et al. 2023. PlantCHRs: a comprehensive database of plant chromatin remodeling factors Comput Struct Biotechnol J. :doi: 10.1016/j.csbj.2023.10.005.     Reference: October 27th, 2025
Gene Product: September 9th, 2024
Variation: September 1st, 2003
32 days agochr118 chromatin complex subunit A:
6.07
GRMZM2G168096
Zm00001d039160
Zm00001eb297280
Yan, HY et al. 2023. PlantCHRs: a comprehensive database of plant chromatin remodeling factors Comput Struct Biotechnol J. :doi: 10.1016/j.csbj.2023.10.005.     Reference: October 27th, 2025
Gene Product: September 9th, 2024
Variation: September 1st, 2003
32 days agochr12 chromatin complex subunit A 12:
2.08
GRMZM2G102625
Zm00001d006798
Zm00001eb108690
Yan, HY et al. 2023. PlantCHRs: a comprehensive database of plant chromatin remodeling factors Comput Struct Biotechnol J. :doi: 10.1016/j.csbj.2023.10.005.     Reference: October 27th, 2025
Gene Product: September 9th, 2024
Variation: September 1st, 2003
32 days agochr124 chromatin complex subunit A:
1.08
GRMZM2G130739
GRMZM2G435541
Zm00001d032801
Zm00001eb046650
Yan, HY et al. 2023. PlantCHRs: a comprehensive database of plant chromatin remodeling factors Comput Struct Biotechnol J. :doi: 10.1016/j.csbj.2023.10.005.     Reference: October 27th, 2025
Gene Product: September 9th, 2024
Variation: September 1st, 2003
32 days agochr125a chromatin complex subunit A 125a:
9.04
GRMZM2G007922
Zm00001d047471
Zm00001eb394610
Yan, HY et al. 2023. PlantCHRs: a comprehensive database of plant chromatin remodeling factors Comput Struct Biotechnol J. :doi: 10.1016/j.csbj.2023.10.005.     Reference: October 27th, 2025
Gene Product: September 9th, 2024
Variation: September 1st, 2003
32 days agochr125b chromatin complex subunit A:
1.04
GRMZM2G469162
Zm00001d029180
Zm00001eb017000
Yan, HY et al. 2023. PlantCHRs: a comprehensive database of plant chromatin remodeling factors Comput Struct Biotechnol J. :doi: 10.1016/j.csbj.2023.10.005.     Reference: October 27th, 2025
Gene Product: September 9th, 2024
Variation: September 1st, 2003
32 days agochr126a chromatin complex subunit A 126a:
8.03
AC235535.1_FG001
Zm00001d009312
Zm00001eb341650
Yan, HY et al. 2023. PlantCHRs: a comprehensive database of plant chromatin remodeling factors Comput Struct Biotechnol J. :doi: 10.1016/j.csbj.2023.10.005.     Reference: October 27th, 2025
Gene Product: September 9th, 2024
Variation: September 1st, 2003
32 days agochr126b chromatin complex subunit A 126b:
3.04
GRMZM2G010085
GRMZM2G015277
Zm00001d040831
Zm00001eb131790
Yan, HY et al. 2023. PlantCHRs: a comprehensive database of plant chromatin remodeling factors Comput Struct Biotechnol J. :doi: 10.1016/j.csbj.2023.10.005.     Reference: October 27th, 2025
Gene Product: September 9th, 2024
Variation: September 1st, 2003
32 days agochr106 chromatin complex subunit A 106:
1.10
GRMZM2G071025
Zm00001d033827
Zm00001eb055640
Yan, HY et al. 2023. PlantCHRs: a comprehensive database of plant chromatin remodeling factors Comput Struct Biotechnol J. :doi: 10.1016/j.csbj.2023.10.005.     Reference: October 27th, 2025
Gene Product: September 9th, 2024
Variation: June 9th, 2018
32 days agogsl4 giberellic acid-stimulated like4:
2.04
GRMZM2G107003
Zm00001d003380
Zm00001eb080410
Zimmermann, R et al. 2010. The Gibberellic Acid Stimulated-Like gene family in maize and its role in lateral root development. Plant Physiol. 152:356-65.     Reference: October 27th, 2025
Gene Product: October 27th, 2025
32 days agogsl9 giberellic acid-stimulated like9:
2.08
GRMZM2G077845
Zm00001d006750
Zm00001eb108300
Zimmermann, R et al. 2010. The Gibberellic Acid Stimulated-Like gene family in maize and its role in lateral root development. Plant Physiol. 152:356-65.     Reference: October 27th, 2025
Gene Product: October 27th, 2025
32 days agorum1 rootless with undetectable meristems1:
 
GRMZM2G037368
Zm00001d043878
Zm00001eb156910
Zimmermann, R et al. 2010. The Gibberellic Acid Stimulated-Like gene family in maize and its role in lateral root development. Plant Physiol. 152:356-65.     Reference: October 27th, 2025
Gene Product: June 16th, 2014
Variation: June 16th, 2014
32 days agockx7 cytokinin oxidase7:
 
GRMZM2G114427
Christian Damian Lorenzo et al. 2025. Evaluation of Transgenerational Gene Editing Efficiency and Inheritance of Edits Using a Split Cas9/gRNA Crossing System in Zea mays. Plant Biotechnol J. :doi: 10.1111/pbi.70391.     Reference: October 27th, 2025
Gene Product: July 19th, 2021
32 days agockx9 cytokinin oxidase9:
 
GRMZM2G303707
Zm00001d046356
Zm00001eb385200
Christian Damian Lorenzo et al. 2025. Evaluation of Transgenerational Gene Editing Efficiency and Inheritance of Edits Using a Split Cas9/gRNA Crossing System in Zea mays. Plant Biotechnol J. :doi: 10.1111/pbi.70391.     Reference: October 27th, 2025
Gene Product: July 19th, 2021
32 days agockx11 cytokinin oxidase11:
 
GRMZM2G122340
Zm00001d025885
Zm00001eb426880
Zm00001eb426890
Christian Damian Lorenzo et al. 2025. Evaluation of Transgenerational Gene Editing Efficiency and Inheritance of Edits Using a Split Cas9/gRNA Crossing System in Zea mays. Plant Biotechnol J. :doi: 10.1111/pbi.70391.     Reference: October 27th, 2025
Gene Product: July 19th, 2021
32 days agockx8b cytokinin oxidase8b:
 
GRMZM2G162048
Zm00001d053579
Zm00001eb205180
Christian Damian Lorenzo et al. 2025. Evaluation of Transgenerational Gene Editing Efficiency and Inheritance of Edits Using a Split Cas9/gRNA Crossing System in Zea mays. Plant Biotechnol J. :doi: 10.1111/pbi.70391.     Reference: October 27th, 2025
Gene Product: July 19th, 2021
32 days agochr156 chromatin complex subunit A 156:
 
GRMZM2G393742
Zm00001d024677
Zm00001eb416780
Yan, HY et al. 2023. PlantCHRs: a comprehensive database of plant chromatin remodeling factors Comput Struct Biotechnol J. :doi: 10.1016/j.csbj.2023.10.005.     Reference: October 27th, 2025
Gene Product: September 9th, 2024
32 days agochr167 chromatin complex subunit A 167:
 
GRMZM2G178435
Zm00001d051324
Zm00001eb186260
Yan, HY et al. 2023. PlantCHRs: a comprehensive database of plant chromatin remodeling factors Comput Struct Biotechnol J. :doi: 10.1016/j.csbj.2023.10.005.     Reference: October 27th, 2025
Gene Product: September 9th, 2024
32 days agochr19 chromatin remodeling factor19:
 
GRMZM2G083138
Zm00001d018151
Zm00001eb255780
Yan, HY et al. 2023. PlantCHRs: a comprehensive database of plant chromatin remodeling factors Comput Struct Biotechnol J. :doi: 10.1016/j.csbj.2023.10.005.     Reference: October 27th, 2025
Gene Product: September 9th, 2024
32 days agochr166 chromatin complex subunit A 166:
 
GRMZM2G108166
Zm00001d022576
Zm00001eb331510
Yan, HY et al. 2023. PlantCHRs: a comprehensive database of plant chromatin remodeling factors Comput Struct Biotechnol J. :doi: 10.1016/j.csbj.2023.10.005.     Reference: October 27th, 2025
Gene Product: September 9th, 2024
32 days agochr127  :
4.05
GRMZM2G574858
Zm00001d049605
Zm00001eb173050
Yan, HY et al. 2023. PlantCHRs: a comprehensive database of plant chromatin remodeling factors Comput Struct Biotechnol J. :doi: 10.1016/j.csbj.2023.10.005.     Reference: October 27th, 2025
Gene Product: September 9th, 2024
Variation: September 25th, 2007
32 days agochr122 chromatin complex subunit A 122:
 
GRMZM2G097289
GRMZM2G303105
Zm00001d024816
Zm00001eb417900
Yan, HY et al. 2023. PlantCHRs: a comprehensive database of plant chromatin remodeling factors Comput Struct Biotechnol J. :doi: 10.1016/j.csbj.2023.10.005.     Reference: October 27th, 2025
Gene Product: September 9th, 2024
32 days agochr5 chromatin remodeling factor5:
 
GRMZM2G138125
Zm00001d002950
Zm00001eb076670
Yan, HY et al. 2023. PlantCHRs: a comprehensive database of plant chromatin remodeling factors Comput Struct Biotechnol J. :doi: 10.1016/j.csbj.2023.10.005.     Reference: October 27th, 2025
Gene Product: September 9th, 2024
32 days agochr18 chromatin remodeling factor18:
5.06
GRMZM2G428242
Zm00001d017660
Zm00001eb251100
Yan, HY et al. 2023. PlantCHRs: a comprehensive database of plant chromatin remodeling factors Comput Struct Biotechnol J. :doi: 10.1016/j.csbj.2023.10.005.     Reference: October 27th, 2025
Gene Product: September 9th, 2024
32 days agochr10 chromatin remodeling factor10:
4.04
GRMZM2G449355
Zm00001d049455
Zm00001eb171780
Yan, HY et al. 2023. PlantCHRs: a comprehensive database of plant chromatin remodeling factors Comput Struct Biotechnol J. :doi: 10.1016/j.csbj.2023.10.005.     Reference: October 27th, 2025
Gene Product: September 9th, 2024
Variation: March 31st, 2005
32 days agochr25 chromatin remodeling factor25:
7.05
GRMZM2G148249
Zm00001d022313
Zm00001eb329060
Yan, HY et al. 2023. PlantCHRs: a comprehensive database of plant chromatin remodeling factors Comput Struct Biotechnol J. :doi: 10.1016/j.csbj.2023.10.005.     Reference: October 27th, 2025
Gene Product: September 9th, 2024
Variation: March 31st, 2005
32 days agocko2 cytokinin oxidase 2:
3.05
GRMZM2G050997
Zm00001d042148
Zm00001eb141570
Christian Damian Lorenzo et al. 2025. Evaluation of Transgenerational Gene Editing Efficiency and Inheritance of Edits Using a Split Cas9/gRNA Crossing System in Zea mays. Plant Biotechnol J. :doi: 10.1111/pbi.70391.     Reference: October 27th, 2025
Gene Product: July 19th, 2021
Variation: February 26th, 2008
32 days agocko3 cytokinin oxidase 3:
8.06
GRMZM2G167220
Zm00001d011890
Zm00001eb363220
Christian Damian Lorenzo et al. 2025. Evaluation of Transgenerational Gene Editing Efficiency and Inheritance of Edits Using a Split Cas9/gRNA Crossing System in Zea mays. Plant Biotechnol J. :doi: 10.1111/pbi.70391.     Reference: October 27th, 2025
Gene Product: March 19th, 2014
Variation: February 27th, 2008
32 days agocko4 cytokinin oxidase 4:
 
GRMZM5G817173
Zm00001d043293
Zm00001eb151670
Christian Damian Lorenzo et al. 2025. Evaluation of Transgenerational Gene Editing Efficiency and Inheritance of Edits Using a Split Cas9/gRNA Crossing System in Zea mays. Plant Biotechnol J. :doi: 10.1111/pbi.70391.     Reference: October 27th, 2025
Gene Product: July 19th, 2021
32 days agogsl1 giberellic acid-stimulated like1:
6.05
GRMZM2G062527
Zm00001d038056
Zm00001eb286810
Zimmermann, R et al. 2010. The Gibberellic Acid Stimulated-Like gene family in maize and its role in lateral root development. Plant Physiol. 152:356-65.     Reference: October 27th, 2025
Gene Product: October 27th, 2025
33 days agolcd1 L-cysteine desulfhydrase1:
 
GRMZM2G077212
Zm00001d008187
Zm00001eb332260
Kalpita Singh et al. 2025. Specific redox regulation of carbohydrate, organic acid, amino acid and polyamine levels in maize seedlings Plant Stress. :doi: 10.1016/j.stress.2025.101100.     Reference: October 26th, 2025
Gene Product: November 24th, 2022
33 days agocyp46 cytochrome P450 46:
 
GRMZM2G140817
Zm00001d038555
Zm00001eb291460
Zhao, XQ et al. 2025. The effects of polyvinyl chloride microplastics and zinc oxide nanoparticles co-exposure on nutritional quality of purple waxy maize grains Food Chemistry. :doi: 10.1016/j.foodchem.2025.146759.     Reference: October 26th, 2025
Gene Product: December 30th, 2022
33 days agopfk16 phosphofructose kinase16:
 
GRMZM5G872800
Zm00001d044754
Zm00001eb371740
Zhao, XQ et al. 2025. The effects of polyvinyl chloride microplastics and zinc oxide nanoparticles co-exposure on nutritional quality of purple waxy maize grains Food Chemistry. :doi: 10.1016/j.foodchem.2025.146759.     Reference: October 26th, 2025
Gene Product: July 20th, 2025
33 days agoglu14 beta-glucosidase14:
 
GRMZM2G108133
Zm00001d021119
Zm00001eb318150
Zhao, XQ et al. 2025. The effects of polyvinyl chloride microplastics and zinc oxide nanoparticles co-exposure on nutritional quality of purple waxy maize grains Food Chemistry. :doi: 10.1016/j.foodchem.2025.146759.     Reference: October 26th, 2025
Gene Product: June 26th, 2019
33 days agobzip91 bZIP-transcription factor 91:
2.08
GRMZM2G060109
Zm00001d007042
Zm00001eb110370
Zhao, XQ et al. 2025. The effects of polyvinyl chloride microplastics and zinc oxide nanoparticles co-exposure on nutritional quality of purple waxy maize grains Food Chemistry. :doi: 10.1016/j.foodchem.2025.146759.     Reference: October 26th, 2025
Variation: September 25th, 2007
33 days agopmi2 phosphomannose isomerase2:
4.02
GRMZM2G456471
Zm00001d048907
Zm00001eb167360
Zhao, XQ et al. 2025. The effects of polyvinyl chloride microplastics and zinc oxide nanoparticles co-exposure on nutritional quality of purple waxy maize grains Food Chemistry. :doi: 10.1016/j.foodchem.2025.146759.     Reference: October 26th, 2025
Gene Product: October 21st, 2020
33 days agoa2 anthocyaninless2:
5.03
GRMZM2G345717
Zm00001d014914
Zm00001eb229190
Zhao, XQ et al. 2025. The effects of polyvinyl chloride microplastics and zinc oxide nanoparticles co-exposure on nutritional quality of purple waxy maize grains Food Chemistry. :doi: 10.1016/j.foodchem.2025.146759.     Reference: October 26th, 2025
Gene Product: June 7th, 2012
Variation: September 1st, 2003
33 days agoae1 amylose extender1:
5.04
GRMZM2G032628
Zm00001d016684
Zm00001eb242610
Zhao, XQ et al. 2025. The effects of polyvinyl chloride microplastics and zinc oxide nanoparticles co-exposure on nutritional quality of purple waxy maize grains Food Chemistry. :doi: 10.1016/j.foodchem.2025.146759.     Reference: October 26th, 2025
Gene Product: June 6th, 2011
Variation: July 25th, 2022
33 days agogot1 glutamate-oxaloacetate transaminase1:
3.02
GRMZM2G094712
Zm00001d043382
Zm00001eb152450
Zhao, XQ et al. 2025. The effects of polyvinyl chloride microplastics and zinc oxide nanoparticles co-exposure on nutritional quality of purple waxy maize grains Food Chemistry. :doi: 10.1016/j.foodchem.2025.146759.     Reference: October 26th, 2025
Gene Product: October 21st, 2021
Variation: September 1st, 2003
33 days agogot3 glutamate-oxaloacetic transaminase3:
5.03 - 5.04
GRMZM2G146677
Zm00001d016198
Zm00001eb238900
Zhao, XQ et al. 2025. The effects of polyvinyl chloride microplastics and zinc oxide nanoparticles co-exposure on nutritional quality of purple waxy maize grains Food Chemistry. :doi: 10.1016/j.foodchem.2025.146759.     Reference: October 26th, 2025
Gene Product: October 21st, 2021
Variation: September 1st, 2003
33 days agohex1 hexokinase1:
3.02 - 3.03
GRMZM2G104081
Zm00001d039512
Zm00001eb121400
Wang, ZW et al. 2025. Saline-alkaline stress alters the drought resistance of maize through the ABA-PYL-SnRK2s signaling axis Plant Physiol Biochem. :doi: 10.1016/j.plaphy.2025.110659.     Reference: October 26th, 2025
Gene Product: September 15th, 2013
Variation: February 15th, 2010
33 days agoirl1 isoflavone reductase-like1:
3.04
AC226235.2_FG001
Zm00001d040173
Zm00001eb126780
Zhao, XQ et al. 2025. The effects of polyvinyl chloride microplastics and zinc oxide nanoparticles co-exposure on nutritional quality of purple waxy maize grains Food Chemistry. :doi: 10.1016/j.foodchem.2025.146759.     Reference: October 26th, 2025
Gene Product: September 1st, 2003
Variation: July 14th, 2008
33 days agomdh1 malate dehydrogenase1:
8.03
Zm00001d009640
Zm00001eb344340
Zhao, XQ et al. 2025. The effects of polyvinyl chloride microplastics and zinc oxide nanoparticles co-exposure on nutritional quality of purple waxy maize grains Food Chemistry. :doi: 10.1016/j.foodchem.2025.146759.     Reference: October 26th, 2025
Gene Product: September 1st, 2003
Variation: September 1st, 2003
33 days agomdh2 malate dehydrogenase2:
6.07
GRMZM2G154595
Zm00001d039089
Zm00001eb296550
Zhao, XQ et al. 2025. The effects of polyvinyl chloride microplastics and zinc oxide nanoparticles co-exposure on nutritional quality of purple waxy maize grains Food Chemistry. :doi: 10.1016/j.foodchem.2025.146759.     Reference: October 26th, 2025
Gene Product: September 1st, 2003
Variation: September 1st, 2003
33 days agomdh3 malate dehydrogenase3:
3.08
GRMZM2G466833
Zm00001d044042
Zm00001eb158270
Zhao, XQ et al. 2025. The effects of polyvinyl chloride microplastics and zinc oxide nanoparticles co-exposure on nutritional quality of purple waxy maize grains Food Chemistry. :doi: 10.1016/j.foodchem.2025.146759.     Reference: October 26th, 2025
Gene Product: September 1st, 2003
Variation: September 1st, 2003
33 days agomdh4 malate dehydrogenase4:
1.08
GRMZM2G415359
Zm00001d032695
Zm00001eb045790
Zhao, XQ et al. 2025. The effects of polyvinyl chloride microplastics and zinc oxide nanoparticles co-exposure on nutritional quality of purple waxy maize grains Food Chemistry. :doi: 10.1016/j.foodchem.2025.146759.     Reference: October 26th, 2025
Gene Product: September 1st, 2003
Variation: May 22nd, 2020
33 days agoo11 opaque endosperm11:
 
GRMZM2G147685
Zm00001d003677
Zm00001eb082900
Zhao, XQ et al. 2025. The effects of polyvinyl chloride microplastics and zinc oxide nanoparticles co-exposure on nutritional quality of purple waxy maize grains Food Chemistry. :doi: 10.1016/j.foodchem.2025.146759.   AT1G49770 (TAIR) Reference: October 26th, 2025
Gene Product: September 14th, 2016
Variation: April 19th, 2025
33 days agophi1 phosphohexose isomerase1:
1.11 - 1.11
GRMZM2G065083
GRMZM6G477257
Zm00001d034256
Zm00001eb059230
Zhao, XQ et al. 2025. The effects of polyvinyl chloride microplastics and zinc oxide nanoparticles co-exposure on nutritional quality of purple waxy maize grains Food Chemistry. :doi: 10.1016/j.foodchem.2025.146759.     Reference: October 26th, 2025
Gene Product: September 1st, 2003
Variation: October 1st, 2014
33 days agotpi5 triose phosphate isomerase5:
8.07 - 8.08
GRMZM2G146206
Zm00001d012407
Zm00001eb367890
Zhao, XQ et al. 2025. The effects of polyvinyl chloride microplastics and zinc oxide nanoparticles co-exposure on nutritional quality of purple waxy maize grains Food Chemistry. :doi: 10.1016/j.foodchem.2025.146759.     Reference: October 26th, 2025
Gene Product: September 1st, 2003
33 days agoald2 aldolase2:
3.05
GRMZM2G066024
Zm00001d012103
Zm00001eb365200
Zhao, XQ et al. 2025. The effects of polyvinyl chloride microplastics and zinc oxide nanoparticles co-exposure on nutritional quality of purple waxy maize grains Food Chemistry. :doi: 10.1016/j.foodchem.2025.146759.     Reference: October 26th, 2025
Gene Product: November 1st, 2024
Variation: November 1st, 2024
33 days agomips1 myo-inositol phosphate synthase1:
1.02
GRMZM2G155242
Zm00001d028180
Zm00001eb008360
Kalpita Singh et al. 2025. Specific redox regulation of carbohydrate, organic acid, amino acid and polyamine levels in maize seedlings Plant Stress. :doi: 10.1016/j.stress.2025.101100.     Reference: October 26th, 2025
Gene Product: July 13th, 2019
Variation: April 30th, 2011
33 days agoadc1 arginine decarboxylase1:
9.03
GRMZM2G396553
Zm00001d045470
Zm00001eb378210
Kalpita Singh et al. 2025. Specific redox regulation of carbohydrate, organic acid, amino acid and polyamine levels in maize seedlings Plant Stress. :doi: 10.1016/j.stress.2025.101100.     Reference: October 26th, 2025
Gene Product: August 18th, 2020
Variation: September 1st, 2003
33 days agosam2 S-adenosyl methionine decarboxylase2:
2.04
GRMZM2G154397
Zm00001d003157
Zm00001eb078440
Kalpita Singh et al. 2025. Specific redox regulation of carbohydrate, organic acid, amino acid and polyamine levels in maize seedlings Plant Stress. :doi: 10.1016/j.stress.2025.101100.     Reference: October 26th, 2025
Gene Product: September 1st, 2003
Variation: July 13th, 2013
33 days agogrf1 general regulatory factor1:
2.04
GRMZM2G102499
Zm00001d003401
Zm00001eb080570
Xu, XJ et al. 2025. Maize 14-3-3 protein ZmGF14-6 interacts with sugarcane mosaic virus HC-Pro and inhibits virus infection Int J Biol Macromol. :148528.     Reference: October 26th, 2025
Gene Product: March 6th, 2023
Variation: December 13th, 2012
33 days agoabh5 abscisic acid 8'-hydroxylase5:
 
GRMZM2G002142
Zm00001d005889
Zm00001eb100780
Kalpita Singh et al. 2025. Specific redox regulation of carbohydrate, organic acid, amino acid and polyamine levels in maize seedlings Plant Stress. :doi: 10.1016/j.stress.2025.101100.     Reference: October 26th, 2025
Gene Product: February 15th, 2013
33 days agolpa2 low phytic acid2:
1.05
GRMZM2G456626
Zm00001d030083
Zm00001eb024800
Vinay Rojaria et al. 2025. Spatiotemporal expression of lpa1 and lpa2 genes showed low phytate accumulation in maize foliage and seeds during early developmental stages Plant Physiol Biochem. :110627.     Reference: October 26th, 2025
Gene Product: April 22nd, 2013
Variation: April 22nd, 2013
33 days agopao1 polyamine oxidase1:
10.03
GRMZM2G034152
Zm00001d024281
Zm00001eb413630
Kalpita Singh et al. 2025. Specific redox regulation of carbohydrate, organic acid, amino acid and polyamine levels in maize seedlings Plant Stress. :doi: 10.1016/j.stress.2025.101100.     Reference: October 26th, 2025
Gene Product: June 10th, 2020
Variation: October 7th, 2015
33 days agospp1 sucrose-phosphatase1:
8.04
GRMZM2G055489
Zm00001d010523
Zm00001eb351280
Zhao, XQ et al. 2025. The effects of polyvinyl chloride microplastics and zinc oxide nanoparticles co-exposure on nutritional quality of purple waxy maize grains Food Chemistry. :doi: 10.1016/j.foodchem.2025.146759.     Reference: October 26th, 2025
Gene Product: September 1st, 2003
Variation: August 2nd, 2013
33 days agogst19 glutathione transferase19:
6.04
GRMZM2G335618
Zm00001d036951
Zm00001eb277280
Zhao, XQ et al. 2025. The effects of polyvinyl chloride microplastics and zinc oxide nanoparticles co-exposure on nutritional quality of purple waxy maize grains Food Chemistry. :doi: 10.1016/j.foodchem.2025.146759.     Reference: October 26th, 2025
Gene Product: September 1st, 2003
Variation: August 18th, 2010
33 days agoalt4 L-alanine:2-oxoglutarate aminotransferase4:
5.03
GRMZM2G088064
Zm00001d014258
Zm00001eb223680
Zhao, XQ et al. 2025. The effects of polyvinyl chloride microplastics and zinc oxide nanoparticles co-exposure on nutritional quality of purple waxy maize grains Food Chemistry. :doi: 10.1016/j.foodchem.2025.146759.     Reference: October 26th, 2025
Gene Product: October 2nd, 2020
Variation: February 26th, 2010
33 days agokri2 ketol-acid reductoisomerase2:
8.03
Zm00001d009638
Zm00001eb344300
Zhao, XQ et al. 2025. The effects of polyvinyl chloride microplastics and zinc oxide nanoparticles co-exposure on nutritional quality of purple waxy maize grains Food Chemistry. :doi: 10.1016/j.foodchem.2025.146759.     Reference: October 26th, 2025
Gene Product: September 1st, 2003
33 days agogln3 glutamine synthetase3:
9.06
GRMZM2G046601
Zm00001d048050
Zm00001eb399860
Kalpita Singh et al. 2025. Specific redox regulation of carbohydrate, organic acid, amino acid and polyamine levels in maize seedlings Plant Stress. :doi: 10.1016/j.stress.2025.101100.     Reference: October 26th, 2025
Gene Product: September 1st, 2003
Variation: December 7th, 2012
33 days agougp1 UDP-glucose pyrophosphorylase1:
2.07
GRMZM6G729818
Zm00001d006309
Zm00001eb104400
Zhao, XQ et al. 2025. The effects of polyvinyl chloride microplastics and zinc oxide nanoparticles co-exposure on nutritional quality of purple waxy maize grains Food Chemistry. :doi: 10.1016/j.foodchem.2025.146759.     Reference: October 26th, 2025
Gene Product: September 1st, 2003
Variation: February 24th, 2015
33 days agoagpll1 ADP glucose pyrophosphorylase large subunit leaf1AGPL4:
1.10
GRMZM2G391936
Zm00001d033910
Zm00001eb056340
Zhao, XQ et al. 2025. The effects of polyvinyl chloride microplastics and zinc oxide nanoparticles co-exposure on nutritional quality of purple waxy maize grains Food Chemistry. :doi: 10.1016/j.foodchem.2025.146759.     Reference: October 26th, 2025
Gene Product: January 3rd, 2014
Variation: September 22nd, 2017
33 days agopfk17 phosphofructose kinase17:
9.02
   Wang, ZW et al. 2025. Saline-alkaline stress alters the drought resistance of maize through the ABA-PYL-SnRK2s signaling axis Plant Physiol Biochem. :doi: 10.1016/j.plaphy.2025.110659.     Reference: October 26th, 2025
Gene Product: July 20th, 2025
Variation: September 1st, 2003
33 days agoiaglu1 indol-3-ylacetyl glucosyl transferase1:
1.09
GRMZM2G024131
Zm00001d033580
Zm00001eb053690
Zhao, XQ et al. 2025. The effects of polyvinyl chloride microplastics and zinc oxide nanoparticles co-exposure on nutritional quality of purple waxy maize grains Food Chemistry. :doi: 10.1016/j.foodchem.2025.146759.     Reference: October 26th, 2025
Gene Product: September 1st, 2003
Variation: January 30th, 2015
33 days agomrpa4 multidrug resistance-associated protein 4:
1.01
GRMZM5G820122
Zm00001d027625
Zm00001eb003490
Vinay Rojaria et al. 2025. Spatiotemporal expression of lpa1 and lpa2 genes showed low phytate accumulation in maize foliage and seeds during early developmental stages Plant Physiol Biochem. :110627.     Reference: October 26th, 2025
Gene Product: July 11th, 2019
Variation: July 12th, 2019
33 days agoiso3 isoamylase-type starch debranching enzyme3:
 
GRMZM2G150796
Zm00001d020799
Zm00001eb315710
Zhao, XQ et al. 2025. The effects of polyvinyl chloride microplastics and zinc oxide nanoparticles co-exposure on nutritional quality of purple waxy maize grains Food Chemistry. :doi: 10.1016/j.foodchem.2025.146759.     Reference: October 26th, 2025
Gene Product: October 25th, 2011
Variation: April 7th, 2011
33 days agosat3 serine acetyltransferase3:
6.06
GRMZM5G816110
Zm00001d038737
Zm00001eb293180
Kalpita Singh et al. 2025. Specific redox regulation of carbohydrate, organic acid, amino acid and polyamine levels in maize seedlings Plant Stress. :doi: 10.1016/j.stress.2025.101100.     Reference: October 26th, 2025
Gene Product: December 31st, 2014
Variation: March 19th, 2021
33 days agoalt5 alanine aminotransferase5:
7.02
GRMZM2G117230
Zm00001d020590
Zm00001eb313780
Zhao, XQ et al. 2025. The effects of polyvinyl chloride microplastics and zinc oxide nanoparticles co-exposure on nutritional quality of purple waxy maize grains Food Chemistry. :doi: 10.1016/j.foodchem.2025.146759.     Reference: October 26th, 2025
Gene Product: October 2nd, 2020
Variation: July 6th, 2021
33 days agonced5 nine-cis-epoxycarotenoid dioxygenase5:
 
GRMZM2G417954
Zm00001d018819
Zm00001eb300240
Kalpita Singh et al. 2025. Specific redox regulation of carbohydrate, organic acid, amino acid and polyamine levels in maize seedlings Plant Stress. :doi: 10.1016/j.stress.2025.101100.     Reference: October 26th, 2025
Gene Product: September 20th, 2012
Variation: September 1st, 2011
33 days agoabh1 abscisic acid 8'-hydroxylase1:
 
GRMZM2G179147
Zm00001d017762
Zm00001eb251960
Kalpita Singh et al. 2025. Specific redox regulation of carbohydrate, organic acid, amino acid and polyamine levels in maize seedlings Plant Stress. :doi: 10.1016/j.stress.2025.101100.     Reference: October 26th, 2025
Gene Product: February 15th, 2013
Variation: September 1st, 2011
33 days agoimd2 isopropylmalate dehydrogenase2:
 
GRMZM5G803490
Zm00001d002880
Zm00001eb076030
Zhao, XQ et al. 2025. The effects of polyvinyl chloride microplastics and zinc oxide nanoparticles co-exposure on nutritional quality of purple waxy maize grains Food Chemistry. :doi: 10.1016/j.foodchem.2025.146759.     Reference: October 26th, 2025
Gene Product: September 1st, 2003
Variation: July 22nd, 2014
33 days agoimd3 isopropylmalate dehydrogenase3:
 
GRMZM2G104613
Zm00001d026675
Zm00001eb434270
Zhao, XQ et al. 2025. The effects of polyvinyl chloride microplastics and zinc oxide nanoparticles co-exposure on nutritional quality of purple waxy maize grains Food Chemistry. :doi: 10.1016/j.foodchem.2025.146759.     Reference: October 26th, 2025
Gene Product: September 1st, 2003
Variation: July 22nd, 2014
33 days agoalt10 alanine aminotransferase10:
 
GRMZM2G124963
Zm00001d006875
Zm00001eb109370
Zhao, XQ et al. 2025. The effects of polyvinyl chloride microplastics and zinc oxide nanoparticles co-exposure on nutritional quality of purple waxy maize grains Food Chemistry. :doi: 10.1016/j.foodchem.2025.146759.     Reference: October 26th, 2025
Gene Product: October 2nd, 2020
Variation: February 20th, 2019
33 days agonrt4 nitrate transport4:
 
GRMZM2G163494
Zm00001d003287
Zm00001eb079530
Wang, ZW et al. 2025. Saline-alkaline stress alters the drought resistance of maize through the ABA-PYL-SnRK2s signaling axis Plant Physiol Biochem. :doi: 10.1016/j.plaphy.2025.110659.     Reference: October 26th, 2025
Gene Product: October 16th, 2025
33 days agonced9 nine-cis-epoxycarotenoid dioxygenase9:
 
GRMZM5G838285
Zm00001d013689
Zm00001eb218680
Kalpita Singh et al. 2025. Specific redox regulation of carbohydrate, organic acid, amino acid and polyamine levels in maize seedlings Plant Stress. :doi: 10.1016/j.stress.2025.101100.     Reference: October 26th, 2025
Gene Product: September 20th, 2012
33 days agosnrkII10 SnRK2 serine threonine kinase10:
 
GRMZM2G066867
Zm00001d013736
Zm00001eb219160
Wang, ZW et al. 2025. Saline-alkaline stress alters the drought resistance of maize through the ABA-PYL-SnRK2s signaling axis Plant Physiol Biochem. :doi: 10.1016/j.plaphy.2025.110659.     Reference: October 26th, 2025
Gene Product: April 14th, 2018
33 days agougp2 UDP-glucose pyrophosphorylase2:
 
GRMZM2G032003
Zm00001d021421
Zm00001eb320800
Zhao, XQ et al. 2025. The effects of polyvinyl chloride microplastics and zinc oxide nanoparticles co-exposure on nutritional quality of purple waxy maize grains Food Chemistry. :doi: 10.1016/j.foodchem.2025.146759.     Reference: October 26th, 2025
Gene Product: September 1st, 2003
33 days agoacco31 1-aminocyclopropane-1-carboxylate oxidase31:
 
GRMZM2G072529
Zm00001d024843
Zm00001eb418090
Kalpita Singh et al. 2025. Specific redox regulation of carbohydrate, organic acid, amino acid and polyamine levels in maize seedlings Plant Stress. :doi: 10.1016/j.stress.2025.101100.     Reference: October 26th, 2025
Gene Product: May 16th, 2016
33 days agopfk2 phosphofructose kinase2:
 
GRMZM2G450163
Zm00001d032386
Zm00001eb043000
Zhao, XQ et al. 2025. The effects of polyvinyl chloride microplastics and zinc oxide nanoparticles co-exposure on nutritional quality of purple waxy maize grains Food Chemistry. :doi: 10.1016/j.foodchem.2025.146759.   LOC_Os08g25720 (MSU/TIGR) Reference: October 26th, 2025
Gene Product: July 20th, 2025
33 days agoprh3 protein phosphatase homolog3:
 
GRMZM2G059453
Zm00001d042886
Zm00001eb148130
Wang, ZW et al. 2025. Saline-alkaline stress alters the drought resistance of maize through the ABA-PYL-SnRK2s signaling axis Plant Physiol Biochem. :doi: 10.1016/j.plaphy.2025.110659.     Reference: October 26th, 2025
Gene Product: October 25th, 2021
33 days agoprh4 protein phosphatase homolog4:
 
GRMZM2G166297
Zm00001d012401
Zm00001eb367840
Wang, ZW et al. 2025. Saline-alkaline stress alters the drought resistance of maize through the ABA-PYL-SnRK2s signaling axis Plant Physiol Biochem. :doi: 10.1016/j.plaphy.2025.110659.     Reference: October 26th, 2025
Gene Product: October 25th, 2021
33 days agoprh13 protein phosphatase homolog13:
 
GRMZM2G134628
Zm00001d044301
Zm00001eb160470
Wang, ZW et al. 2025. Saline-alkaline stress alters the drought resistance of maize through the ABA-PYL-SnRK2s signaling axis Plant Physiol Biochem. :doi: 10.1016/j.plaphy.2025.110659.     Reference: October 26th, 2025
Gene Product: October 25th, 2021
33 days agopyl9 pyrabactin resistance-like protein9:
 
GRMZM2G133631
Zm00001d037719
Zm00001eb283810
Wang, ZW et al. 2025. Saline-alkaline stress alters the drought resistance of maize through the ABA-PYL-SnRK2s signaling axis Plant Physiol Biochem. :doi: 10.1016/j.plaphy.2025.110659.     Reference: October 26th, 2025
Gene Product: January 31st, 2021
33 days agoftfh1 flavonoid 3',5'-hydroxylase1:
 
Zm00001d047424
Zm00001eb394210
Zhao, XQ et al. 2025. The effects of polyvinyl chloride microplastics and zinc oxide nanoparticles co-exposure on nutritional quality of purple waxy maize grains Food Chemistry. :doi: 10.1016/j.foodchem.2025.146759.     Reference: October 26th, 2025
Gene Product: June 20th, 2018
33 days agoarodh2 arogenate dehydrogenase2:
 
GRMZM2G085117
Zm00001d014737
Zm00001eb227560
Kalpita Singh et al. 2025. Specific redox regulation of carbohydrate, organic acid, amino acid and polyamine levels in maize seedlings Plant Stress. :doi: 10.1016/j.stress.2025.101100.     Reference: October 26th, 2025
Gene Product: July 7th, 2018
33 days agokgdh1 alpha-ketoglutarate dehydrogenase:
 
GRMZM2G079538
Zm00001d025258
Zm00001eb421290
Zhao, XQ et al. 2025. The effects of polyvinyl chloride microplastics and zinc oxide nanoparticles co-exposure on nutritional quality of purple waxy maize grains Food Chemistry. :doi: 10.1016/j.foodchem.2025.146759.     Reference: October 26th, 2025
Gene Product: March 25th, 2020
33 days agopao3 polyamine oxidase3:
 
GRMZM2G396856
Zm00001d026334
Zm00001eb431200
Kalpita Singh et al. 2025. Specific redox regulation of carbohydrate, organic acid, amino acid and polyamine levels in maize seedlings Plant Stress. :doi: 10.1016/j.stress.2025.101100.     Reference: October 26th, 2025
Gene Product: June 10th, 2020
33 days agoalt12 alanine aminotransferase12:
 
GRMZM5G828630
Zm00001d030557
Zm00001eb028030
Zhao, XQ et al. 2025. The effects of polyvinyl chloride microplastics and zinc oxide nanoparticles co-exposure on nutritional quality of purple waxy maize grains Food Chemistry. :doi: 10.1016/j.foodchem.2025.146759.     Reference: October 26th, 2025
Gene Product: October 2nd, 2020
33 days agospds3 spermidine synthase3:
 
GRMZM2G120578
Zm00001d015026
Zm00001eb230230
Kalpita Singh et al. 2025. Specific redox regulation of carbohydrate, organic acid, amino acid and polyamine levels in maize seedlings Plant Stress. :doi: 10.1016/j.stress.2025.101100.     Reference: October 26th, 2025
Gene Product: June 19th, 2020
33 days agopao7 polyamine oxidase7:
 
Zm00001d038952
Zm00001eb295270
Kalpita Singh et al. 2025. Specific redox regulation of carbohydrate, organic acid, amino acid and polyamine levels in maize seedlings Plant Stress. :doi: 10.1016/j.stress.2025.101100.     Reference: October 26th, 2025
Gene Product: June 10th, 2020
33 days agophi3 phosphohexose isomerase3:
 
GRMZM2G140614
Zm00001d020771
Zm00001eb315420
Wang, ZW et al. 2025. Saline-alkaline stress alters the drought resistance of maize through the ABA-PYL-SnRK2s signaling axis Plant Physiol Biochem. :doi: 10.1016/j.plaphy.2025.110659.     Reference: October 26th, 2025
Gene Product: September 1st, 2003
33 days agoglu13 beta-glucosidase13:
 
GRMZM2G376416
Zm00001d046210
Zm00001eb384110
Zhao, XQ et al. 2025. The effects of polyvinyl chloride microplastics and zinc oxide nanoparticles co-exposure on nutritional quality of purple waxy maize grains Food Chemistry. :doi: 10.1016/j.foodchem.2025.146759.     Reference: October 26th, 2025
Gene Product: June 26th, 2019
33 days agofbp1 fructose bisphosphatase1:
 
GRMZM2G322953
Zm00001d010172
Zm00001eb348530
Zhao, XQ et al. 2025. The effects of polyvinyl chloride microplastics and zinc oxide nanoparticles co-exposure on nutritional quality of purple waxy maize grains Food Chemistry. :doi: 10.1016/j.foodchem.2025.146759.     Reference: October 26th, 2025
Gene Product: June 9th, 2021
33 days agodhad1 dihydroxy-acid dehydratase1:
 
AC234528.1_FG005
Zm00001d031929
Zm00001eb039310
Zhao, XQ et al. 2025. The effects of polyvinyl chloride microplastics and zinc oxide nanoparticles co-exposure on nutritional quality of purple waxy maize grains Food Chemistry. :doi: 10.1016/j.foodchem.2025.146759.     Reference: October 26th, 2025
Gene Product: August 29th, 2021
33 days agopip2i plasma membrane intrinsic protein, PIP2i:
 
GRMZM2G018649
Zm00001d005410
Zm00001eb096620
Wang, ZW et al. 2025. Saline-alkaline stress alters the drought resistance of maize through the ABA-PYL-SnRK2s signaling axis Plant Physiol Biochem. :doi: 10.1016/j.plaphy.2025.110659.     Reference: October 26th, 2025
Gene Product: January 27th, 2022
33 days agoald3 aldolase3:
8.02
GRMZM2G069195
Zm00001d008491
Zm00001eb334740
Wang, ZW et al. 2025. Saline-alkaline stress alters the drought resistance of maize through the ABA-PYL-SnRK2s signaling axis Plant Physiol Biochem. :doi: 10.1016/j.plaphy.2025.110659.     Reference: October 26th, 2025
Gene Product: November 1st, 2024
33 days agoacs2 1-aminocyclopropane-1-carboxylate synthase2:
2.02
GRMZM2G164405
Zm00001d002592
Zm00001eb073290
Kalpita Singh et al. 2025. Specific redox regulation of carbohydrate, organic acid, amino acid and polyamine levels in maize seedlings Plant Stress. :doi: 10.1016/j.stress.2025.101100.     Reference: October 26th, 2025
Gene Product: May 16th, 2016
Variation: May 3rd, 2007
33 days agogpdh5 glucose-6-phosphate dehydrogenase5:
5.05
GRMZM2G031107
Zm00001d017119
Zm00001eb246350
Wang, ZW et al. 2025. Saline-alkaline stress alters the drought resistance of maize through the ABA-PYL-SnRK2s signaling axis Plant Physiol Biochem. :doi: 10.1016/j.plaphy.2025.110659.     Reference: October 26th, 2025
Gene Product: September 1st, 2003
33 days agosps2 sucrose phosphate synthase2:
3.05
GRMZM2G140107
Zm00001d042353
Zm00001eb143360
Zhao, XQ et al. 2025. The effects of polyvinyl chloride microplastics and zinc oxide nanoparticles co-exposure on nutritional quality of purple waxy maize grains Food Chemistry. :doi: 10.1016/j.foodchem.2025.146759.     Reference: October 26th, 2025
Gene Product: September 1st, 2003
Variation: January 22nd, 2021
33 days agovp14 viviparous14:
1.08
GRMZM2G014392
Zm00001d033222
Zm00001eb050380
Kalpita Singh et al. 2025. Specific redox regulation of carbohydrate, organic acid, amino acid and polyamine levels in maize seedlings Plant Stress. :doi: 10.1016/j.stress.2025.101100.     Reference: October 26th, 2025
Gene Product: September 20th, 2012
Variation: June 25th, 2007
33 days agoagp1 ADP glucose pyrophosphorylase small subunit embryo 1:
2.06
GRMZM2G106213
Zm00001d005546
Zm00001eb097730
Zhao, XQ et al. 2025. The effects of polyvinyl chloride microplastics and zinc oxide nanoparticles co-exposure on nutritional quality of purple waxy maize grains Food Chemistry. :doi: 10.1016/j.foodchem.2025.146759.     Reference: October 26th, 2025
Gene Product: January 3rd, 2014
Variation: November 4th, 2014
34 days agoNM_001366967  :
 
GRMZM2G036708
Zm00001d004413
Zm00001eb088500
Mi-Xue Tu et al. 2025. Salicylic acid-triggered hydrogen sulfide improves maize seed germination under drought stress by bolstering osmoregulatory system. Plant Cell Rep. 44:246.     Reference: October 25th, 2025
Gene Product: November 24th, 2022
34 days agonced11 nine-cis-epoxycarotenoid dioxygenase11:
 
GRMZM2G011863
Zm00001d033377
Zm00001eb051890
Zhao, YL et al. 2025. Chloroplast CASEIN KINASE 2 enhances maize thermotolerance via sHSP26 phosphorylation and retrograde HSFA3 regulation. Plant Physiol. :doi: 10.1093/plphys/kiaf540.     Reference: October 25th, 2025
Gene Product: September 20th, 2012
34 days agocka5 CK2 protein kinase alpha5:
 
   Zhao, YL et al. 2025. Chloroplast CASEIN KINASE 2 enhances maize thermotolerance via sHSP26 phosphorylation and retrograde HSFA3 regulation. Plant Physiol. :doi: 10.1093/plphys/kiaf540.     Reference: October 25th, 2025
Gene Product: December 3rd, 2013
34 days agocka4 CK2 protein kinase alpha 4:
 
   Zhao, YL et al. 2025. Chloroplast CASEIN KINASE 2 enhances maize thermotolerance via sHSP26 phosphorylation and retrograde HSFA3 regulation. Plant Physiol. :doi: 10.1093/plphys/kiaf540.     Reference: October 25th, 2025
Gene Product: December 3rd, 2013
34 days agocka3 CK2 protein kinase alpha 3:
7.00
GRMZM5G845755
Zm00001d018669
Zm00001eb298700
Zhao, YL et al. 2025. Chloroplast CASEIN KINASE 2 enhances maize thermotolerance via sHSP26 phosphorylation and retrograde HSFA3 regulation. Plant Physiol. :doi: 10.1093/plphys/kiaf540.     Reference: October 25th, 2025
Gene Product: December 3rd, 2013
Variation: January 10th, 2014
34 days agohsftf16 HSF-transcription factor 16:
 
AC205471.4_FG003
Zm00001d010812
Zm00001eb353710
Zhao, YL et al. 2025. Chloroplast CASEIN KINASE 2 enhances maize thermotolerance via sHSP26 phosphorylation and retrograde HSFA3 regulation. Plant Physiol. :doi: 10.1093/plphys/kiaf540.     Reference: October 25th, 2025
Gene Product: May 15th, 2020
34 days agosus1 sucrose synthase1:
9.04
GRMZM2G152908
Zm00001d047253
Zm00001eb392880
Mi-Xue Tu et al. 2025. Salicylic acid-triggered hydrogen sulfide improves maize seed germination under drought stress by bolstering osmoregulatory system. Plant Cell Rep. 44:246.     Reference: October 25th, 2025
Gene Product: October 25th, 2006
Variation: February 1st, 2020
34 days agolhcb9 light harvesting chlorophyll binding protein9:
1.08
GRMZM2G018627
Zm00001d033136
Zm00001eb049640
Zhao, YL et al. 2025. Chloroplast CASEIN KINASE 2 enhances maize thermotolerance via sHSP26 phosphorylation and retrograde HSFA3 regulation. Plant Physiol. :doi: 10.1093/plphys/kiaf540.     Reference: October 25th, 2025
Gene Product: January 8th, 2005
Variation: October 27th, 2016
34 days agooec17 oxygen evolving complex, 17kDa homolog:
7.03
GRMZM2G058070
Zm00001d021703
Zm00001eb323460
Zhao, YL et al. 2025. Chloroplast CASEIN KINASE 2 enhances maize thermotolerance via sHSP26 phosphorylation and retrograde HSFA3 regulation. Plant Physiol. :doi: 10.1093/plphys/kiaf540.     Reference: October 25th, 2025
Gene Product: September 1st, 2003
Variation: July 18th, 2012
34 days agotre1 trehalase1:
 
GRMZM2G162690
Zm00001d029654
Zm00001eb021270
Mi-Xue Tu et al. 2025. Salicylic acid-triggered hydrogen sulfide improves maize seed germination under drought stress by bolstering osmoregulatory system. Plant Cell Rep. 44:246.     Reference: October 25th, 2025
Gene Product: September 15th, 2013
34 days agoaldh26 aldehyde dehydrogenase26:
 
GRMZM2G135470
Zm00001d025626
Zm00001eb424410
Mi-Xue Tu et al. 2025. Salicylic acid-triggered hydrogen sulfide improves maize seed germination under drought stress by bolstering osmoregulatory system. Plant Cell Rep. 44:246.     Reference: October 25th, 2025
Gene Product: January 5th, 2024
34 days agohsftf31 HSF-transcription factor 31:
 
GRMZM2G051448
Zm00001d043536
Zm00001eb154070
Zhao, YL et al. 2025. Chloroplast CASEIN KINASE 2 enhances maize thermotolerance via sHSP26 phosphorylation and retrograde HSFA3 regulation. Plant Physiol. :doi: 10.1093/plphys/kiaf540.     Reference: October 25th, 2025
Gene Product: May 15th, 2020
34 days agohsp27 heat shock protein27:
 
GRMZM2G335242
Zm00001d044728
Zm00001eb371530
Zhao, YL et al. 2025. Chloroplast CASEIN KINASE 2 enhances maize thermotolerance via sHSP26 phosphorylation and retrograde HSFA3 regulation. Plant Physiol. :doi: 10.1093/plphys/kiaf540.     Reference: October 25th, 2025
Gene Product: January 15th, 2019
34 days agopsb28 photosystem II subunit28:
 
GRMZM2G005433
Zm00001d011901
Zm00001eb363330
Zhao, YL et al. 2025. Chloroplast CASEIN KINASE 2 enhances maize thermotolerance via sHSP26 phosphorylation and retrograde HSFA3 regulation. Plant Physiol. :doi: 10.1093/plphys/kiaf540.     Reference: October 25th, 2025
Variation: June 18th, 2021
34 days agopcs1 pyrroline-5-carboxylate synthase1:
 
AC203754.4_FG008
GRMZM2G061777
Zm00001d038358
Zm00001eb289500
Mi-Xue Tu et al. 2025. Salicylic acid-triggered hydrogen sulfide improves maize seed germination under drought stress by bolstering osmoregulatory system. Plant Cell Rep. 44:246.     Reference: October 25th, 2025
Gene Product: May 9th, 2025
34 days agobzip60 bZIP transcription factor60:
9.03
GRMZM2G025812
Zm00001d046718
Zm00001eb388050
Zhao, YL et al. 2025. Chloroplast CASEIN KINASE 2 enhances maize thermotolerance via sHSP26 phosphorylation and retrograde HSFA3 regulation. Plant Physiol. :doi: 10.1093/plphys/kiaf540.     Reference: October 25th, 2025
Gene Product: August 21st, 2018
Variation: November 4th, 2022
34 days agocka1 CK2 protein kinase alpha 1:
1.10
GRMZM2G143602
Zm00001d007951
Zm00001eb118100
Zhao, YL et al. 2025. Chloroplast CASEIN KINASE 2 enhances maize thermotolerance via sHSP26 phosphorylation and retrograde HSFA3 regulation. Plant Physiol. :doi: 10.1093/plphys/kiaf540.     Reference: October 25th, 2025
Gene Product: December 3rd, 2013
Variation: February 15th, 2006
34 days agonactf23 NAC-transcription factor 23:
8.08
GRMZM2G068973
Zm00001d012527
Zm00001eb369060
Zhao, YL et al. 2025. Chloroplast CASEIN KINASE 2 enhances maize thermotolerance via sHSP26 phosphorylation and retrograde HSFA3 regulation. Plant Physiol. :doi: 10.1093/plphys/kiaf540.     Reference: October 25th, 2025
Variation: March 31st, 2005
34 days agoao1 aldehyde oxidase1:
1.11
GRMZM2G141535
Zm00001d034387
Zm00001eb060250
Zhao, YL et al. 2025. Chloroplast CASEIN KINASE 2 enhances maize thermotolerance via sHSP26 phosphorylation and retrograde HSFA3 regulation. Plant Physiol. :doi: 10.1093/plphys/kiaf540.     Reference: October 25th, 2025
Gene Product: May 2nd, 2012
Variation: May 30th, 2012
35 days agoP02859  :
 
GRMZM2G353268
Zm00001d048852
Zm00001eb166960
Chen, X-M et al. 2025. Metabolic compartmentation of maize endosperm for efficient synthesis and storage of carbon and nitrogen assimilates. New Phytol. :doi: 10.1111/nph.70670.     Reference: October 24th, 2025
Gene Product: September 1st, 2003
35 days agoP06679  :
 
GRMZM2G044152
Zm00001d048813
Zm00001eb166620
Chen, X-M et al. 2025. Metabolic compartmentation of maize endosperm for efficient synthesis and storage of carbon and nitrogen assimilates. New Phytol. :doi: 10.1111/nph.70670.     Reference: October 24th, 2025
Gene Product: September 1st, 2003
35 days agoP06674  :
 
GRMZM2G008341
Zm00001d049472
Zm00001eb171930
Chen, X-M et al. 2025. Metabolic compartmentation of maize endosperm for efficient synthesis and storage of carbon and nitrogen assimilates. New Phytol. :doi: 10.1111/nph.70670.     Reference: October 24th, 2025
Gene Product: September 1st, 2003
35 days agoLOC103652768  :
 
   Chen, X-M et al. 2025. Metabolic compartmentation of maize endosperm for efficient synthesis and storage of carbon and nitrogen assimilates. New Phytol. :doi: 10.1111/nph.70670.     Reference: October 24th, 2025
Gene Product: September 1st, 2003
35 days agoLOC103652767  :
 
   Chen, X-M et al. 2025. Metabolic compartmentation of maize endosperm for efficient synthesis and storage of carbon and nitrogen assimilates. New Phytol. :doi: 10.1111/nph.70670.     Reference: October 24th, 2025
Gene Product: September 1st, 2003
35 days agoLOC103655051  :
 
   Chen, X-M et al. 2025. Metabolic compartmentation of maize endosperm for efficient synthesis and storage of carbon and nitrogen assimilates. New Phytol. :doi: 10.1111/nph.70670.     Reference: October 24th, 2025
Gene Product: September 1st, 2003
35 days agoLOC103652766  :
 
   Chen, X-M et al. 2025. Metabolic compartmentation of maize endosperm for efficient synthesis and storage of carbon and nitrogen assimilates. New Phytol. :doi: 10.1111/nph.70670.     Reference: October 24th, 2025
Gene Product: September 1st, 2003
35 days agozp1 zein alpha protein1:
4.04
GRMZM2G008913
Zm00001d049473
Zm00001eb171940
Chen, X-M et al. 2025. Metabolic compartmentation of maize endosperm for efficient synthesis and storage of carbon and nitrogen assimilates. New Phytol. :doi: 10.1111/nph.70670.     Reference: October 24th, 2025
Gene Product: September 1st, 2003
Variation: May 19th, 2015
35 days agomads68 MADS-transcription factor 68:
1.02
GRMZM2G059102
Zm00001d027957
Zm00001eb006480
Chen, X-M et al. 2025. Metabolic compartmentation of maize endosperm for efficient synthesis and storage of carbon and nitrogen assimilates. New Phytol. :doi: 10.1111/nph.70670.   LOC_Os03g08754 (MSU/TIGR) Reference: October 24th, 2025
Variation: April 15th, 2016
35 days agofl1 floury endosperm1:
2.04
GRMZM2G094532
Zm00001d003398
Zm00001eb080540
Chen, X-M et al. 2025. Metabolic compartmentation of maize endosperm for efficient synthesis and storage of carbon and nitrogen assimilates. New Phytol. :doi: 10.1111/nph.70670.   AT1G18265 (TAIR) Reference: October 24th, 2025
Gene Product: July 8th, 2013
Variation: September 16th, 2010
35 days agomc1 mucronate1:
2.06
GRMZM2G060429
Zm00001d005793
Zm00001eb099950
Chen, X-M et al. 2025. Metabolic compartmentation of maize endosperm for efficient synthesis and storage of carbon and nitrogen assimilates. New Phytol. :doi: 10.1111/nph.70670.     Reference: October 24th, 2025
Gene Product: September 17th, 2010
Variation: September 16th, 2010
35 days agozpl2a zein polypeptidesL2a:
4.08
GRMZM2G404459
Zm00001d048847
Zm00001eb166940
Chen, X-M et al. 2025. Metabolic compartmentation of maize endosperm for efficient synthesis and storage of carbon and nitrogen assimilates. New Phytol. :doi: 10.1111/nph.70670.     Reference: October 24th, 2025
Gene Product: September 1st, 2003
Variation: January 14th, 2015
35 days agocta1 chitinase A1:
2.04
GRMZM2G051943
Zm00001d003190
Zm00001eb078730
Tata Ninidze et al. 2025. Development of PCR Methods for Detecting Wheat and Maize Allergens in Food BioTech. 14:78.     Reference: October 24th, 2025
Gene Product: May 31st, 2021
Variation: September 1st, 2003
35 days agopip2f plasma membrane intrinsic protein2:
7.02
GRMZM2G047368
Zm00001d019565
Zm00001eb306400
He, R et al. 2023. Coronatine promotes maize water uptake by directly binding to the aquaporin ZmPIP2;5 and enhancing its activity. J Integr Plant Biol. 65:703-720.     Reference: October 24th, 2025
Gene Product: September 1st, 2003
Variation: March 26th, 2013
35 days agopip2g plasma membrane intrinsic protein2:
 
Zm00001d022608
Zm00001eb331830
He, R et al. 2023. Coronatine promotes maize water uptake by directly binding to the aquaporin ZmPIP2;5 and enhancing its activity. J Integr Plant Biol. 65:703-720.     Reference: October 24th, 2025
Gene Product: September 1st, 2003
Variation: September 1st, 2003
35 days agocdrk5 calcium-dependent protein kinase-related kinase5:
2.08
GRMZM2G056612
Zm00001d006885
Zm00001eb109500
Aifang Ma et al. 2025. ZmCRK5A kinase enhances drought tolerance in maize via phosphorylation-dependent inhibition of ZmSMH4. J Integr Plant Biol. :doi: 10.1111/jipb.70054.     Reference: October 24th, 2025
Gene Product: September 2nd, 2024
Variation: September 1st, 2003
35 days agodzs18 delta zein structural18:
6.04
GRMZM2G100018
Zm00001d037436
Zm00001eb281380
Chen, X-M et al. 2025. Metabolic compartmentation of maize endosperm for efficient synthesis and storage of carbon and nitrogen assimilates. New Phytol. :doi: 10.1111/nph.70670.     Reference: October 24th, 2025
Gene Product: September 1st, 2003
Variation: February 16th, 2014
35 days agosmh4 single myb histone4:
3.07
GRMZM2G108424
Zm00001d043696
Zm00001eb155280
Aifang Ma et al. 2025. ZmCRK5A kinase enhances drought tolerance in maize via phosphorylation-dependent inhibition of ZmSMH4. J Integr Plant Biol. :doi: 10.1111/jipb.70054.     Reference: October 24th, 2025
Variation: October 16th, 2014
35 days agoaz22z3 22kD alpha zein3:
4.01
GRMZM2G044625
Zm00001d048809
Zm00001eb166600
Chen, X-M et al. 2025. Metabolic compartmentation of maize endosperm for efficient synthesis and storage of carbon and nitrogen assimilates. New Phytol. :doi: 10.1111/nph.70670.     Reference: October 24th, 2025
Gene Product: September 1st, 2003
Variation: May 31st, 2010
35 days agoaz22z4 22kD alpha zein4:
4.01
GRMZM2G346897
Zm00001d048812
Zm00001eb166610
Chen, X-M et al. 2025. Metabolic compartmentation of maize endosperm for efficient synthesis and storage of carbon and nitrogen assimilates. New Phytol. :doi: 10.1111/nph.70670.     Reference: October 24th, 2025
Gene Product: September 1st, 2003
Variation: May 31st, 2010
35 days agofl4 floury4:
 
GRMZM2G353272
Zm00001d048851
Zm00001eb166950
Chen, X-M et al. 2025. Metabolic compartmentation of maize endosperm for efficient synthesis and storage of carbon and nitrogen assimilates. New Phytol. :doi: 10.1111/nph.70670.     Reference: October 24th, 2025
Gene Product: April 9th, 2014
Variation: April 8th, 2014
35 days agozp3 zein protein3:
 
GRMZM2G160739
Zm00001d048817
Zm00001eb166660
Zm00001eb166670
Chen, X-M et al. 2025. Metabolic compartmentation of maize endosperm for efficient synthesis and storage of carbon and nitrogen assimilates. New Phytol. :doi: 10.1111/nph.70670.     Reference: October 24th, 2025
Gene Product: September 1st, 2003
35 days agocdpk25 calcium dependent protein kinase25:
 
GRMZM2G109843
Zm00001d022166
Zm00001eb327690
Aifang Ma et al. 2025. ZmCRK5A kinase enhances drought tolerance in maize via phosphorylation-dependent inhibition of ZmSMH4. J Integr Plant Biol. :doi: 10.1111/jipb.70054.     Reference: October 24th, 2025
Gene Product: December 3rd, 2013
35 days agoz1A-3 alpha zein 19kDa A-3:
 
GRMZM2G059620
Zm00001d048848
Zm00001eb166950
Chen, X-M et al. 2025. Metabolic compartmentation of maize endosperm for efficient synthesis and storage of carbon and nitrogen assimilates. New Phytol. :doi: 10.1111/nph.70670.     Reference: October 24th, 2025
Gene Product: September 1st, 2003
35 days agoz1C1 alpha zein 19kDa C1:
 
GRMZM2G088273
Zm00001eb166580
Chen, X-M et al. 2025. Metabolic compartmentation of maize endosperm for efficient synthesis and storage of carbon and nitrogen assimilates. New Phytol. :doi: 10.1111/nph.70670.     Reference: October 24th, 2025
Gene Product: September 1st, 2003
35 days agokch1 potassium channel 1:
3.08
GRMZM2G022915
Zm00001d044056
Zm00001eb158420
Aifang Ma et al. 2025. ZmCRK5A kinase enhances drought tolerance in maize via phosphorylation-dependent inhibition of ZmSMH4. J Integr Plant Biol. :doi: 10.1111/jipb.70054.     Reference: October 24th, 2025
Gene Product: November 27th, 2023
Variation: July 22nd, 2014
36 days agoropgef3 rho of plants guanine-nucleotide exchange factor3:
 
GRMZM2G158679
Zm00001d006269
Zm00001eb104060
Mercy Fakude et al. 2025. Dissecting the genetic variation of haploid frailty in maize for enhanced doubled haploid breeding Frontiers in Plant Science. 16:1646128.     Reference: October 23rd, 2025
Gene Product: August 26th, 2024
36 days agodnaJ67 DnaJ/Hsp40 67:
 
GRMZM2G039886
Zm00001d039000
Zm00001eb295770
Zhao, C (2025) TOR kinase involved in regulating the development of maize radicle through starch metabolism.Plant Cell Physiol. :doi: 10.1093/pcp/pcaf136.     Reference: October 23rd, 2025
Gene Product: September 1st, 2003
36 days agorp7 resistance to Puccinia sorghi7:
 
   Quade, A et al. 2021. Phytopathology pp.doi: 10.1094/PHYTO-11-20-0524-R     Reference: February 24th, 2021
Variation: October 23rd, 2025
36 days agopfk18 phosphofructose kinase18:
 
   Zhao, C (2025) TOR kinase involved in regulating the development of maize radicle through starch metabolism.Plant Cell Physiol. :doi: 10.1093/pcp/pcaf136.     Reference: October 23rd, 2025
Gene Product: July 20th, 2025
36 days agomybr96 MYB-related-transcription factor 96:
5.03
GRMZM2G145041
Zm00001d014863
Zm00001eb228670
Zhao, C (2025) TOR kinase involved in regulating the development of maize radicle through starch metabolism.Plant Cell Physiol. :doi: 10.1093/pcp/pcaf136.     Reference: October 23rd, 2025
Variation: September 25th, 2007
36 days agoam1 ameiotic1:
5.02
GRMZM5G883855
Zm00001d013659
Zm00001eb218470
Shuyi Hu et al. 2025. Harnessing apomixis: natural mechanisms and synthetic innovations for advancing crop and forage breeding. Hortic Res. 12:uhaf186.     Reference: October 23rd, 2025
Variation: August 11th, 2011
36 days agodu1 dull endosperm1:
10.03
GRMZM2G141399
Zm00001d000002
Zm00001eb413290
Zhao, C (2025) TOR kinase involved in regulating the development of maize radicle through starch metabolism.Plant Cell Physiol. :doi: 10.1093/pcp/pcaf136.     Reference: October 23rd, 2025
Gene Product: October 14th, 2016
Variation: June 29th, 2015
36 days agogdh2 glutamic dehydrogenase2:
10.02 - 10.04
GRMZM2G427097
Zm00001d025984
Zm00001eb427810
Zhao, C (2025) TOR kinase involved in regulating the development of maize radicle through starch metabolism.Plant Cell Physiol. :doi: 10.1093/pcp/pcaf136.     Reference: October 23rd, 2025
Gene Product: September 1st, 2003
Variation: July 11th, 2023
36 days agorp3 resistance to Puccinia sorghi3:
3.04
AC230011.2_FG002
Zm00001d041362
Zm00001eb135110
Thatcher, SR et al. 2023. The NLRomes of Zea mays NAM founder lines and Zea luxurians display presence-absence variation, integrated domain diversity, and mobility. Mol Plant Pathol. :doi: 10.1111/mpp.13319..     Reference: October 15th, 2024
Gene Product: December 3rd, 2012
Variation: October 23rd, 2025
36 days agorp4 resistance to Puccinia sorghi4:
4.01 - 4.02
   Wang, D et al. 2010. Plant J 63:939-951     Reference: January 18th, 2023
Variation: October 23rd, 2025
36 days agorp5 resistance to Puccinia sorghi5:
10.01 - 10.01
   Wang, D et al. 2010. Plant J 63:939-951     Reference: January 18th, 2023
Variation: October 23rd, 2025
36 days agosu2 sugary2:
6.04 - 6.05
GRMZM2G348551
Zm00001d037234
Zm00001eb279740
Zhao, C (2025) TOR kinase involved in regulating the development of maize radicle through starch metabolism.Plant Cell Physiol. :doi: 10.1093/pcp/pcaf136.     Reference: October 23rd, 2025
Gene Product: October 14th, 2016
Variation: October 7th, 2010
36 days agoereb53 AP2-EREBP-transcription factor 53:
 
GRMZM2G141638
Zm00001d042492
Zm00001eb144510
Shuyi Hu et al. 2025. Harnessing apomixis: natural mechanisms and synthetic innovations for advancing crop and forage breeding. Hortic Res. 12:uhaf186.   LOC_Os1g67410 (MSU/TIGR) Reference: October 23rd, 2025
Gene Product: July 5th, 2019
36 days agohsftf4 HSF-transcription factor 4:
 
GRMZM2G125969
Zm00001d018941
Zm00001eb301280
Zhao, C (2025) TOR kinase involved in regulating the development of maize radicle through starch metabolism.Plant Cell Physiol. :doi: 10.1093/pcp/pcaf136.     Reference: October 23rd, 2025
Gene Product: May 15th, 2020
Variation: April 4th, 2024
36 days agomads26 MADS-transcription factor 26:
 
GRMZM2G044408
Zm00001d017932
Zm00001eb253580
Zhao, C (2025) TOR kinase involved in regulating the development of maize radicle through starch metabolism.Plant Cell Physiol. :doi: 10.1093/pcp/pcaf136.     Reference: October 23rd, 2025
Variation: March 7th, 2022
36 days agomyb157 MYB-transcription factor 157:
 
GRMZM2G073836
Zm00001d016000
Zm00001eb237460
Mercy Fakude et al. 2025. Dissecting the genetic variation of haploid frailty in maize for enhanced doubled haploid breeding Frontiers in Plant Science. 16:1646128.     Reference: October 23rd, 2025
Variation: June 23rd, 2021
36 days agosrs4 SHI/STY (SRS)-transcription factor 4:
 
GRMZM2G097683
Zm00001d014762
Zm00001eb227800
Mercy Fakude et al. 2025. Dissecting the genetic variation of haploid frailty in maize for enhanced doubled haploid breeding Frontiers in Plant Science. 16:1646128.     Reference: October 23rd, 2025
Gene Product: April 27th, 2015
36 days agosbe1 starch branching enzyme1:
5.03
GRMZM2G088753
Zm00001d014844
Zm00001eb228530
Zhao, C (2025) TOR kinase involved in regulating the development of maize radicle through starch metabolism.Plant Cell Physiol. :doi: 10.1093/pcp/pcaf136.     Reference: October 23rd, 2025
Gene Product: September 1st, 2003
Variation: January 5th, 2018
36 days agotor1 target of rapamycin1:
6.05
GRMZM2G049342
GRMZM2G349554
Zm00001d037950
Zm00001eb285840
Zhao, C (2025) TOR kinase involved in regulating the development of maize radicle through starch metabolism.Plant Cell Physiol. :doi: 10.1093/pcp/pcaf136.     Reference: October 23rd, 2025
Gene Product: November 21st, 2017
36 days agoamya3 alpha amylase3:
2.07
GRMZM2G138468
Zm00001d005890
Zm00001eb100790
Zhao, C (2025) TOR kinase involved in regulating the development of maize radicle through starch metabolism.Plant Cell Physiol. :doi: 10.1093/pcp/pcaf136.     Reference: October 23rd, 2025
Gene Product: September 1st, 2003
Variation: September 1st, 2003
36 days agocyc14 cyclin14:
1.07
GRMZM2G133413
Zm00001d031837
Zm00001eb038430
Zhao, C (2025) TOR kinase involved in regulating the development of maize radicle through starch metabolism.Plant Cell Physiol. :doi: 10.1093/pcp/pcaf136.     Reference: October 23rd, 2025
Gene Product: February 17th, 2025
Variation: January 19th, 2017
36 days agoasn1 asparagine synthetase1:
1.03
GRMZM2G074589
Zm00001d045675
Zm00001eb380080
Zhao, C (2025) TOR kinase involved in regulating the development of maize radicle through starch metabolism.Plant Cell Physiol. :doi: 10.1093/pcp/pcaf136.     Reference: October 23rd, 2025
Gene Product: February 1st, 2021
Variation: May 9th, 2009
36 days agoipt2 isopentenyl transferase2:
 
GRMZM2G084462
Zm00001d003869
Zm00001eb084710
Xiong, Q et al. 2025. C13MP, a method using C13 isotope labeling to measure plant photosynthetic rate precisely. Mol Breed. 45:82.     Reference: October 23rd, 2025
Gene Product: April 4th, 2025
Variation: July 11th, 2013
36 days agotrpp8 trehalose-6-phosphate phosphatase8:
 
GRMZM2G174396
Zm00001d020272
Zm00001eb311230
Zhao, C (2025) TOR kinase involved in regulating the development of maize radicle through starch metabolism.Plant Cell Physiol. :doi: 10.1093/pcp/pcaf136.     Reference: October 23rd, 2025
Gene Product: October 3rd, 2020
36 days agosweet12a sugars will eventually be exported transporter12a:
 
GRMZM2G133322
Zm00001d029135
Zm00001eb016690
Zhao, C (2025) TOR kinase involved in regulating the development of maize radicle through starch metabolism.Plant Cell Physiol. :doi: 10.1093/pcp/pcaf136.     Reference: October 23rd, 2025
Gene Product: November 4th, 2015
36 days agopld3 phospholipase D3:
 
GRMZM2G438378
Zm00001d037643
Zm00001eb283150
Shuyi Hu et al. 2025. Harnessing apomixis: natural mechanisms and synthetic innovations for advancing crop and forage breeding. Hortic Res. 12:uhaf186.     Reference: October 23rd, 2025
Gene Product: August 9th, 2016
Variation: December 9th, 2021
36 days agocyc11 cyclin11:
 
GRMZM2G161382
Zm00001d005293
Zm00001eb095620
Zhao, C (2025) TOR kinase involved in regulating the development of maize radicle through starch metabolism.Plant Cell Physiol. :doi: 10.1093/pcp/pcaf136.     Reference: October 23rd, 2025
Gene Product: February 17th, 2025
Variation: May 2nd, 2021
36 days agohggt3 homogentisate geranylgeranyltransferase3:
 
GRMZM5G848876
Zm00001d039491
Zm00001eb121230
Mercy Fakude et al. 2025. Dissecting the genetic variation of haploid frailty in maize for enhanced doubled haploid breeding Frontiers in Plant Science. 16:1646128.     Reference: October 23rd, 2025
Gene Product: January 8th, 2018
36 days agodmp1 DUF679 domain membrane protein1:
 
GRMZM2G465053
Zm00001d044822
Zm00001eb372320
Shuyi Hu et al. 2025. Harnessing apomixis: natural mechanisms and synthetic innovations for advancing crop and forage breeding. Hortic Res. 12:uhaf186.   AT5G39650 (TAIR) Reference: October 23rd, 2025
Gene Product: March 5th, 2025
Variation: June 10th, 2019
36 days agogex1 gamete expressed1:
 
GRMZM2G388045
Zm00001d020638
Zm00001eb314230
Shuyi Hu et al. 2025. Harnessing apomixis: natural mechanisms and synthetic innovations for advancing crop and forage breeding. Hortic Res. 12:uhaf186.   AT5G55490 (TAIR) Reference: October 23rd, 2025
Gene Product: February 25th, 2020
Variation: April 9th, 2025
36 days agohsp70-6 heat shock protein70-6:
 
GRMZM2G428391
Zm00001d028630
Zm00001eb012470
Zhao, C (2025) TOR kinase involved in regulating the development of maize radicle through starch metabolism.Plant Cell Physiol. :doi: 10.1093/pcp/pcaf136.     Reference: October 23rd, 2025
Gene Product: September 1st, 2003
36 days agosaur13 small auxin up RNA13:
 
GRMZM5G899865
Zm00001d033729
Zm00001eb054870
Mercy Fakude et al. 2025. Dissecting the genetic variation of haploid frailty in maize for enhanced doubled haploid breeding Frontiers in Plant Science. 16:1646128.     Reference: October 23rd, 2025
Gene Product: November 26th, 2021
36 days agoglk1 G2-like1:
9.00
GRMZM2G026833
Zm00001d044785
Zm00001eb371980
Xiong, Q et al. 2025. C13MP, a method using C13 isotope labeling to measure plant photosynthetic rate precisely. Mol Breed. 45:82.     Reference: October 23rd, 2025
Gene Product: July 11th, 2019
Variation: May 9th, 2009
37 days agopac1 pale aleurone color1:
5.06
GRMZM2G058432
Zm00001d017617
Zm00001eb250750
Xiao, Z-D et al. 2025. Spatiotemporal sucrose accumulation drives tissue-specific anthocyanin biosynthesis under low phosphorus in maiz J Integr Agric. :doi: 10.1016/j.jia.2025.10.007.   AT5G24520 (TAIR) Reference: October 22nd, 2025
Variation: June 21st, 2025
38 days agolw1 lemon white1:
1.10
GRMZM2G027059
Zm00001d033896
Zm00001eb056240
Jie Zou et al. 2025. Identification and functional analysis of terpene synthase 23 (ZMexTPS23) associated with the response to corn borer herbivory in teosinte (Zea mays ssp. Mexicana). Int J Biol Macromol. :148368.     Reference: October 21st, 2025
Gene Product: June 20th, 2012
Variation: March 10th, 2016
38 days agolw2 lemon white2:
5.05
GRMZM2G137409
Zm00001d017139
Zm00001eb246530
Jie Zou et al. 2025. Identification and functional analysis of terpene synthase 23 (ZMexTPS23) associated with the response to corn borer herbivory in teosinte (Zea mays ssp. Mexicana). Int J Biol Macromol. :148368.     Reference: October 21st, 2025
Gene Product: February 8th, 2019
Variation: October 22nd, 2020
38 days agofps3 farnesyl diphosphate synthase3:
3.07
GRMZM2G098569
Zm00001d043727
Zm00001eb155590
Jie Zou et al. 2025. Identification and functional analysis of terpene synthase 23 (ZMexTPS23) associated with the response to corn borer herbivory in teosinte (Zea mays ssp. Mexicana). Int J Biol Macromol. :148368.     Reference: October 21st, 2025
Gene Product: August 18th, 2015
Variation: August 12th, 2022
38 days agomecs1 methyl erythritol cyclodiphosphate synthase1:
 
GRMZM5G835542
Zm00001d051458
Zm00001eb187250
Jie Zou et al. 2025. Identification and functional analysis of terpene synthase 23 (ZMexTPS23) associated with the response to corn borer herbivory in teosinte (Zea mays ssp. Mexicana). Int J Biol Macromol. :148368.     Reference: October 21st, 2025
Gene Product: October 4th, 2014
38 days agodxs2 deoxy xylulose synthase 2:
9.03
GRMZM2G493395
Zm00001d019060
Zm00001eb302370
Jie Zou et al. 2025. Identification and functional analysis of terpene synthase 23 (ZMexTPS23) associated with the response to corn borer herbivory in teosinte (Zea mays ssp. Mexicana). Int J Biol Macromol. :148368.     Reference: October 21st, 2025
Gene Product: August 17th, 2004
Variation: October 22nd, 2020
39 days agonc3 Na+ content3:
 
Zm00001d002378
Zm00001eb071370
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: November 15th, 2017
39 days agogst55 glutathione S-transferase55:
 
GRMZM2G052571
Zm00001d042099
Zm00001eb141040
Mustafa Yıldız et al. 2025. Physio-biochemical and transcriptomic analysis reveals underlying mechanism of Cys˗induced amelioration of Cd toxicity in maize Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01648-5.     Reference: October 20th, 2025
Gene Product: September 1st, 2003
39 days agoshki3 shikimate kinase3:
 
GRMZM2G070218
Zm00001d018061
Zm00001eb254940
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.   AT2G21940 (TAIR) Reference: October 20th, 2025
Gene Product: January 2nd, 2023
39 days agovps23 vacuolar protein sorting23:
 
GRMZM2G147579
Zm00001d018567
Zm00001eb259630
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.   AT3G12400 (TAIR) Reference: October 20th, 2025
Gene Product: March 3rd, 2023
39 days agovpsl23 vacuolar protein sorting-like23:
 
GRMZM2G109582
Zm00001d023803
Zm00001eb409970
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: March 3rd, 2023
Variation: March 3rd, 2023
39 days agomcca1 3-methylcrotonoyl-CoA carboxylase-α-subunit1:
 
GRMZM2G019926
Zm00001d031013
Zm00001eb031330
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Variation: April 1st, 2023
39 days agomate29 multidrug and toxic compound extrusion29:
 
GRMZM2G481440
Zm00001d053234
Zm00001eb202870
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: August 17th, 2015
39 days agofigl1 fidgetin-like1:
 
GRMZM5G874082
Zm00001d041083
Zm00001eb133210
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Variation: June 9th, 2023
39 days agoLOC103641763  :
 
GRMZM2G129058
Zm00001d031377
Zm00001eb034410
Mustafa Yıldız et al. 2025. Physio-biochemical and transcriptomic analysis reveals underlying mechanism of Cys˗induced amelioration of Cd toxicity in maize Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01648-5.     Reference: October 20th, 2025
Gene Product: January 27th, 2025
39 days agodek58 defective kernel58:
 
GRMZM2G120575
Zm00001d018634
Zm00001eb298370
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: December 7th, 2023
Variation: December 7th, 2023
39 days agowakl3 wall-associated receptor kinase-like3:
 
GRMZM2G137861
Zm00001d031351
Zm00001eb034290
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: December 7th, 2023
39 days agowakl1 wall associated kinase like1:
 
GRMZM2G038893
Zm00001d030941
Zm00001d030942
Zm00001eb030730
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: December 7th, 2023
39 days agoccl18 coumarate-CoA ligase18:
 
GRMZM2G092813
Zm00001d027499
Zm00001eb002380
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: April 30th, 2025
39 days agomha2 plasma-membrane H+ATPase2:
2.02
GRMZM2G019404
Zm00001d002006
Zm00001eb067750
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: August 15th, 2024
Variation: May 13th, 2009
39 days agozmm7 Zea mays MADS7:
7.03
GRMZM2G097059
Zm00001d021057
Zm00001eb317770
Zhi Zhong Zhou et al. 2025. Identification, characterization, and expression profiling of rice MADS-box transcription factor genes associated with fluroxypyr-meptyl and oxyfluorfen metabolism Genetica. 153:32.     Reference: October 20th, 2025
Gene Product: September 10th, 2021
Variation: August 8th, 2008
39 days agoms45 male sterile45:
9.06
GRMZM2G307906
Zm00001d047858
Zm00001eb398090
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: September 29th, 2023
Variation: June 27th, 2014
39 days agozmm6 Zea mays MADS6:
1.06
GRMZM2G159397
Zm00001d031620
Zm00001eb036590
Zhi Zhong Zhou et al. 2025. Identification, characterization, and expression profiling of rice MADS-box transcription factor genes associated with fluroxypyr-meptyl and oxyfluorfen metabolism Genetica. 153:32.     Reference: October 20th, 2025
Gene Product: September 10th, 2021
Variation: August 8th, 2008
39 days agozmm4 Zea mays MADS4:
1.10
GRMZM2G032339
Zm00001d034045
Zm00001eb057540
Zhi Zhong Zhou et al. 2025. Identification, characterization, and expression profiling of rice MADS-box transcription factor genes associated with fluroxypyr-meptyl and oxyfluorfen metabolism Genetica. 153:32.     Reference: October 20th, 2025
Gene Product: September 10th, 2021
39 days agoms33 male sterile33:
2.09
GRMZM2G070304
Zm00001d007714
Zm00001eb115970
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.   LOC_Os11g45400 (MSU/TIGR) Reference: October 20th, 2025
Gene Product: March 25th, 2019
Variation: December 4th, 2018
39 days agoms25 male sterile25:
9.04 - 9.06
GRMZM2G120987
Zm00001d048337
Zm00001eb402470
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: December 1st, 2017
Variation: April 2nd, 2021
39 days agoms20 male sterile20:
1.00 - 1.05
GRMZM2G434500
Zm00001d029683
Zm00001eb021500
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.   AT1G12570 (TAIR) Reference: October 20th, 2025
Gene Product: June 27th, 2025
Variation: March 20th, 2019
39 days agochao1 chlorophyllide a oxygenase1:
 
   Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: February 12th, 2021
39 days agoiaa19 Aux/IAA-transcription factor 19:
5.01
GRMZM2G152796
Zm00001d013071
Zm00001eb212890
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Variation: September 25th, 2007
39 days agopza02467  :
1.06
GRMZM2G477872
Zm00001d031724
Zm00001eb037470
Mustafa Yıldız et al. 2025. Physio-biochemical and transcriptomic analysis reveals underlying mechanism of Cys˗induced amelioration of Cd toxicity in maize Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01648-5.     Reference: October 20th, 2025
Variation: August 9th, 2021
39 days agozmm8 Zea mays MADS8:
9.06
GRMZM2G102161
Zm00001d048082
Zm00001eb400120
Zhi Zhong Zhou et al. 2025. Identification, characterization, and expression profiling of rice MADS-box transcription factor genes associated with fluroxypyr-meptyl and oxyfluorfen metabolism Genetica. 153:32.     Reference: October 20th, 2025
Gene Product: September 10th, 2021
Variation: September 10th, 2021
39 days agorf8 restorer of fertility8:
2.05 - 2.10
   Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Variation: September 1st, 2003
39 days agoms26 male sterile26:
1.02 - 1.02
GRMZM2G091822
Zm00001d027837
Zm00001eb005300
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: September 30th, 2013
Variation: July 8th, 2020
39 days agoplt40 phospholipid transfer protein40:
2.04
GRMZM2G151021
Zm00001d003600
Zm00001eb082140
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: September 1st, 2003
Variation: September 1st, 2003
39 days agopprsmr1 pentatricopeptide repeat smr1:
2.02
GRMZM2G345667
Zm00001d002345
Zm00001eb071030
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.   AT1G79490 (TAIR) Reference: October 20th, 2025
Gene Product: December 27th, 2016
Variation: July 1st, 2019
39 days agomyb84 MYB-transcription factor 84:
10.04
GRMZM2G173633
Zm00001d025664
Zm00001eb424660
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Variation: August 19th, 2022
39 days agoaaap28 amino acid/auxin permease28:
4.04
GRMZM2G046743
Zm00001d049640
Zm00001eb173390
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: March 31st, 2021
39 days agogsk4 glycogen synthase kinase4:
4.09
GRMZM2G121790
Zm00001d053548
Zm00001eb204920
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: February 22nd, 2022
39 days agoabp1 auxin binding protein1:
3.05 - 3.05
GRMZM2G116204
Zm00001d041711
Zm00001eb137840
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: September 1st, 2003
Variation: August 23rd, 2017
39 days agoprp3 pathogenesis-related protein3:
4.02
GRMZM2G117989
Zm00001d048947
Zm00001eb167690
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: December 12th, 2022
39 days agopebp1 phosphatidylethanolamine-binding protein1:
 
GRMZM2G092008
Zm00001d044705
Zm00001eb164120
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: March 19th, 2024
Variation: November 17th, 2010
39 days agopebp2 phosphatidylethanolamine-binding protein2:
 
GRMZM2G156079
Zm00001d050649
Zm00001eb181410
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: March 19th, 2024
Variation: December 15th, 2010
39 days agopebp4 phosphatidylethanolamine-binding protein4:
 
GRMZM2G075081
Zm00001d003804
Zm00001eb084030
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: March 19th, 2024
Variation: December 15th, 2010
39 days agopebp5 phosphatidylethanolamine-binding protein:
 
AC217051.3_FG006
Zm00001d025346
Zm00001eb421900
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: March 19th, 2024
Variation: January 31st, 2011
39 days agopebp8 phosphatidylethanolamine-binding protein8:
 
GRMZM2G179264
Zm00001d010752
Zm00001eb353250
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: March 19th, 2024
Variation: June 19th, 2015
39 days agopebp20 phosphatidylethanolamine-binding protein20:
 
AC214791.2_FG002
Zm00001d024023
Zm00001eb411580
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: March 19th, 2024
Variation: December 13th, 2010
39 days agopebp26 phosphatidylethanolamine-binding protein26:
 
GRMZM2G400167
Zm00001d046300
Zm00001eb384770
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: March 19th, 2024
Variation: December 14th, 2010
39 days agogi2 gigantea2:
3.03
GRMZM5G844173
Zm00001d039589
Zm00001eb122110
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: September 19th, 2012
Variation: April 10th, 2023
39 days agoct2 compact plant2:
1.01 - 1.02
GRMZM2G064732
Zm00001d027886
Zm00001eb005840
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: September 16th, 2013
Variation: July 6th, 2025
39 days agodek10 defective kernel10:
4.06 - 4.11
GRMZM2G087226
Zm00001d053802
Zm00001eb207310
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: December 27th, 2016
Variation: February 20th, 2017
39 days agodek2 defective kernel2:
1.06 - 1.12
GRMZM2G110851
Zm00001d034882
Zm00001eb064820
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: December 27th, 2016
Variation: November 7th, 2016
39 days agoga1 gametophyte factor1:
4.02 - 4.03
   Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Variation: June 22nd, 2005
39 days agoga2 gametophyte factor2:
5.04
   Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Variation: September 29th, 2016
39 days agowhy1 WHIRLY-transcription factor 1:
6.01
GRMZM2G155662
Zm00001d036148
Zm00001eb270470
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.   AT1G14410 (TAIR)
LOC_Os06g05350 (MSU/TIGR)
Os06g0145800 (Gramene)
Reference: October 20th, 2025
Gene Product: November 18th, 2021
Variation: July 1st, 2013
39 days agoms1 male sterile1:
6.02
GRMZM2G180319
Zm00001d036435
Zm00001eb272570
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: July 28th, 2023
Variation: May 19th, 2006
39 days agoms10 male sterile10:
10.04 - 10.05
GRMZM5G830329
Zm00001d024712
Zm00001eb417050
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.   AT1G01280 (TAIR)
LOC_Os08g03682 (MSU/TIGR)
Reference: October 20th, 2025
Gene Product: January 20th, 2017
Variation: January 19th, 2017
39 days agoms13 male sterile13:
5.00 - 5.01
GRMZM2G177314
Zm00001d013960
Zm00001eb221130
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: December 28th, 2015
Variation: January 16th, 2025
39 days agoms2 male sterile2:
9.03
GRMZM2G076526
Zm00001d046537
Zm00001eb386540
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: December 28th, 2015
Variation: April 23rd, 2021
39 days agoms22 male sterile22:
7.02
GRMZM2G442791
Zm00001d018802
Zm00001eb300050
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: January 21st, 2021
Variation: February 12th, 2013
39 days agoms23 male sterile23:
8.01 - 8.02
GRMZM2G021276
Zm00001d008174
Zm00001eb332170
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: September 14th, 2016
Variation: September 6th, 2019
39 days agoms44 male sterile44:
4.08
AC225127.3_FG003
Zm00001d052736
Zm00001eb198610
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: September 1st, 2003
Variation: January 6th, 2017
39 days agoms5 male sterile5:
5.04 - 5.05
GRMZM2G166330
Zm00001d015960
Zm00001eb237060
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: January 25th, 2019
Variation: September 16th, 2020
39 days agoms7 male sterile7:
7.02
GRMZM5G890224
Zm00001d020680
Zm00001eb314550
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.   AT5G22260 (TAIR)
LOC_Os09g27620 (MSU/TIGR)
Os09g0449000 (Gramene)
Reference: October 20th, 2025
Gene Product: July 8th, 2017
Variation: September 9th, 2020
39 days agoms9 male sterile9:
1.03
GRMZM2G308034
Zm00001d028777
Zm00001eb013670
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: September 1st, 2003
Variation: July 18th, 2015
39 days agoo2 opaque endosperm2:
7.01
GRMZM2G015534
Zm00001d018971
Zm00001eb301570
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: September 1st, 2003
Variation: June 6th, 2016
39 days agodhn1 dehydrin1:
6.05
GRMZM2G079440
Zm00001d037894
Zm00001eb285360
Mustafa Yıldız et al. 2025. Physio-biochemical and transcriptomic analysis reveals underlying mechanism of Cys˗induced amelioration of Cd toxicity in maize Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01648-5.     Reference: October 20th, 2025
Gene Product: September 1st, 2003
Variation: November 20th, 2012
39 days agorf1 restorer of fertility1:
3.04
   Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Variation: September 1st, 2003
39 days agorf2 restorer of fertility2:
9.03
GRMZM2G058675
Zm00001d045706
Zm00001eb380260
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: September 1st, 2003
Variation: December 18th, 2006
39 days agorf3 restorer of fertility3:
2.09
Zm00031ab118480
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: December 27th, 2016
Variation: September 1st, 2003
39 days agorp1 resistance to Puccinia sorghi1:
10.01
AC152495.1_FG002
GRMZM2G069382
Zm00001d023317
Zm00001eb405860
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: January 17th, 2022
Variation: April 1st, 2015
39 days agorpp9 resistance to Puccinia polysora and Puccinia sorghi9:
10.01
   Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: January 17th, 2022
Variation: January 17th, 2022
39 days agotd1 thick tassel dwarf1:
5.03
GRMZM2G300133
Zm00001d014793
Zm00001eb228140
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: October 22nd, 2012
Variation: October 23rd, 2012
39 days agots5 tassel seed5:
4.03 - 4.05
GRMZM2G177668
Zm00001d049201
Zm00001eb169710
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: December 30th, 2022
Variation: March 25th, 2019
39 days agotu1 tunicate1:
4.08 - 4.08
GRMZM2G370777
Zm00001d052180
Zm00001eb193790
Zhi Zhong Zhou et al. 2025. Identification, characterization, and expression profiling of rice MADS-box transcription factor genes associated with fluroxypyr-meptyl and oxyfluorfen metabolism Genetica. 153:32.     Reference: October 20th, 2025
Gene Product: June 12th, 2012
Variation: November 12th, 2024
39 days agopbf1 prolamin-box binding factor1:
2.06
GRMZM2G146283
Zm00001d005100
Zm00001eb094330
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: September 1st, 2003
Variation: April 20th, 2005
39 days agoacsn2 acyl-CoA synthetase2:
2.04
GRMZM2G014651
Zm00001d003702
Zm00001eb083110
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: December 20th, 2011
39 days agoapx1 ascorbate peroxidase homolog:
9.04
GRMZM2G054300
Zm00001d047757
Zm00001eb397180
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: January 20th, 2025
Variation: August 10th, 2012
39 days agobzip7 bZIP-transcription factor 7:
7.03
GRMZM2G006578
Zm00001d020938
Zm00001eb316720
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Variation: September 8th, 2018
39 days agobnlg1712  :
10.03
GRMZM2G093858
Zm00001d024678
Zm00001eb416790
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Variation: September 1st, 2003
39 days agodek605 defective kernel605:
5.05
GRMZM2G114241
Zm00001d016798
Zm00001eb243540
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: December 27th, 2016
Variation: August 21st, 2020
39 days agoms30 male sterile30:
4.08
GRMZM2G174782
Zm00001d052403
Zm00001eb195900
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: January 25th, 2019
Variation: January 25th, 2019
39 days agorboh4 respiratory burst oxidase4:
4.08
GRMZM2G441541
Zm00001d052653
Zm00001eb197890
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: February 18th, 2023
Variation: September 1st, 2003
39 days agorpd3 RPD3 histone deacetylase homolog:
4.09
GRMZM2G172883
Zm00001d053595
Zm00001eb205290
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: February 12th, 2020
Variation: November 11th, 2014
39 days agoereb117 AP2-EREBP-transcription factor 117:
8.05
GRMZM2G113078
Zm00001d011134
Zm00001eb356440
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Variation: September 1st, 2003
39 days agodin7 drought-induced protein 19 homolog7:
6.07
GRMZM2G038284
Zm00001d038999
Zm00001eb295750
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: July 4th, 2022
Variation: September 1st, 2003
39 days agoohp1 opaque2 heterodimerizing protein1:
1.11
GRMZM2G016150
Zm00001d034457
Zm00001eb060910
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: September 1st, 2003
Variation: February 2nd, 2015
39 days agoals2 acetolactate synthase2:
5.04
GRMZM2G143008
Zm00001d016572
Zm00001eb241810
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: September 1st, 2003
Variation: October 7th, 2020
39 days agoals1 acetolactate synthase1:
4.05
GRMZM2G143357
Zm00001d050567
Zm00001eb180890
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: September 1st, 2003
Variation: October 7th, 2020
39 days agopropep1 precursor elicitor peptide1:
 
GRMZM5G899080
Zm00001d002137
Zm00001eb069090
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: October 16th, 2020
Variation: March 4th, 2011
39 days agocrr1 cytokinin response regulator1:
2.01 - 2.01
GRMZM2G040736
Zm00001d001865
Zm00001eb066570
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: June 30th, 2017
Variation: August 5th, 2021
39 days agozmm14 Zea mays MADS14:
1.02
GRMZM2G099522
Zm00001d028217
Zm00001eb008690
Zhi Zhong Zhou et al. 2025. Identification, characterization, and expression profiling of rice MADS-box transcription factor genes associated with fluroxypyr-meptyl and oxyfluorfen metabolism Genetica. 153:32.     Reference: October 20th, 2025
Variation: August 28th, 2013
39 days agohp2 histidine-containing phosphotransfer protein2:
2.06
GRMZM2G014154
Zm00001d005344
Zm00001eb096040
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: September 1st, 2003
Variation: June 26th, 2014
39 days agotsh4 tassel sheath4:
7.03
GRMZM2G307588
Zm00001d020941
Zm00001eb316740
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: July 5th, 2019
Variation: October 8th, 2011
39 days agoscmv1 resistance to sugarcane mosaic virus1:
6.00 - 6.01
GRMZM2G014055
Zm00001d035390
Zm00001eb262910
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: September 1st, 2003
Variation: June 29th, 2005
39 days agoccamk1 calcium/calmodulin dependent protein kinase1:
 
GRMZM2G062772
Zm00001d052944
Zm00001eb200350
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: December 3rd, 2013
Variation: July 7th, 2017
39 days agoabi19 ABI3-VP1-transcription factor 19:
 
GRMZM2G035701
Zm00001d011712
Zm00001eb361390
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: January 29th, 2022
Variation: November 27th, 2020
39 days agocol3 C2C2-CO-like-transcription factor 3:
 
GRMZM2G021777
Zm00001d017176
Zm00001eb246780
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: June 18th, 2018
39 days agoca2p14 CCAAT-HAP2-transcription factor 214:
 
GRMZM2G096016
Zm00001d007882
Zm00001eb117450
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: August 9th, 2016
39 days agoca5p5 CCAAT-HAP5-transcription factor 55:
 
GRMZM2G311316
Zm00001d024230
Zm00001eb413100
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: August 9th, 2016
39 days agohsftf21 HSF-transcription factor 21:
 
GRMZM2G139535
Zm00001d020714
Zm00001eb314890
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: May 15th, 2020
Variation: August 3rd, 2024
39 days agomads41 MADS-transcription factor 41:
 
GRMZM2G018589
Zm00001d042591
Zm00001eb145460
Zhi Zhong Zhou et al. 2025. Identification, characterization, and expression profiling of rice MADS-box transcription factor genes associated with fluroxypyr-meptyl and oxyfluorfen metabolism Genetica. 153:32.     Reference: October 20th, 2025
Variation: August 4th, 2025
39 days agomads69 MADS-transcription factor 69:
 
GRMZM2G171650
Zm00001d042315
Zm00001eb143080
Zhi Zhong Zhou et al. 2025. Identification, characterization, and expression profiling of rice MADS-box transcription factor genes associated with fluroxypyr-meptyl and oxyfluorfen metabolism Genetica. 153:32.     Reference: October 20th, 2025
Variation: October 5th, 2018
39 days agonactf130 NAC-transcription factor 130:
 
GRMZM2G154182
Zm00001d008403
Zm00001eb334180
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: July 8th, 2019
39 days agonlp4 NLP-transcription factor 4:
 
GRMZM2G375675
Zm00001d009017
Zm00001eb339390
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: December 3rd, 2019
39 days agonlp6 NLP-transcription factor 6:
 
GRMZM2G475305
Zm00001d039266
Zm00001eb118950
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: December 3rd, 2019
39 days agonlp8 NLP-transcription factor 8:
 
GRMZM2G176655
Zm00001d037786
Zm00001eb284410
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: December 3rd, 2019
39 days agophd11 PHD-transcription factor 11:
 
GRMZM2G408897
Zm00001d013416
Zm00001eb216130
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Variation: December 23rd, 2024
39 days agosbp13 SBP-transcription factor 13:
 
GRMZM2G113779
Zm00001d006451
Zm00001eb105640
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: July 5th, 2019
Variation: June 5th, 2023
39 days agoub2 unbranched2:
 
GRMZM2G160917
Zm00001d031451
Zm00001eb035030
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: July 5th, 2019
Variation: December 17th, 2014
39 days agobhlh122 bHLH-transcription factor 122:
 
AC233960.1_FG005
Zm00001d017724
Zm00001eb251650
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.   LOC_Os04g51070 (MSU/TIGR) Reference: October 20th, 2025
Variation: January 10th, 2022
39 days agobhlh130 bHLH-transcription factor 130:
 
GRMZM2G033356
Zm00001d049294
Zm00001eb170530
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.   AT3G26744 (TAIR) Reference: October 20th, 2025
Gene Product: September 14th, 2016
Variation: March 19th, 2025
39 days agobhlh175 bHLH-transcription factor 175:
 
GRMZM2G173534
Zm00001d042263
Zm00001eb142500
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.   AT3G26744 (TAIR) Reference: October 20th, 2025
Gene Product: September 14th, 2016
Variation: August 20th, 2025
39 days agobhlh51 bHLH-transcription factor 51:
 
GRMZM2G139372
Zm00001d053895
Zm00001eb208200
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: September 14th, 2016
Variation: January 10th, 2022
39 days agobzip113 bZIP-transcription factor 113:
 
GRMZM2G445575
Zm00001d026398
Zm00001eb431760
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Variation: April 25th, 2023
39 days agobzip22 bZIP-transcription factor 22:
 
GRMZM2G043600
Zm00001d021191
Zm00001eb318740
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.   AT1G43700 (TAIR) Reference: October 20th, 2025
Gene Product: August 21st, 2018
Variation: September 24th, 2018
39 days agofea4 fasciated ear4:
 
GRMZM2G133331
Zm00001d037317
Zm00001eb280500
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: August 21st, 2018
Variation: July 7th, 2017
39 days agopropep2 precursor elicitor peptide2:
 
Zm00001d026404
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: October 16th, 2020
39 days agohggt1 homogentisate geranylgeranyl transferase1:
 
GRMZM2G173358
Zm00001d046558
Zm00001eb386720
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: January 8th, 2018
39 days agomha4 proton-exporting ATPase4:
10.07
GRMZM2G006894
Zm00001d026490
Zm00001eb432500
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: August 15th, 2024
Variation: December 14th, 2017
39 days agotcb1 teosinte crossing barrier1:
4.04
   Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: September 10th, 2018
Variation: May 24th, 2019
39 days agoohp2 opaque2 heterodimerizing protein2:
5.01
GRMZM2G007063
Zm00001d013074
Zm00001eb212940
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: September 1st, 2003
Variation: April 25th, 2015
39 days agoms32 male sterile32:
2.00 - 2.10
GRMZM2G163233
Zm00001d006564
Zm00001eb106620
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: September 2nd, 2013
Variation: December 4th, 2016
39 days agofea2 fasciated ear2:
4.05
GRMZM2G104925
Zm00001d051012
Zm00001eb184050
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: February 1st, 2023
Variation: November 13th, 2020
39 days agofea3 fasciated ear3:
 
GRMZM2G166524
Zm00001d040130
Zm00001eb126430
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.   At3g25670 (TAIR)
LOC_Os01g02060 (MSU/TIGR)
Reference: October 20th, 2025
Gene Product: February 1st, 2023
Variation: May 18th, 2016
39 days agozmm15 Zea mays MADS-box 15:
5.01
GRMZM2G553379
Zm00001d013259
Zm00001eb214750
Zhi Zhong Zhou et al. 2025. Identification, characterization, and expression profiling of rice MADS-box transcription factor genes associated with fluroxypyr-meptyl and oxyfluorfen metabolism Genetica. 153:32.     Reference: October 20th, 2025
Variation: June 15th, 2018
39 days agocesa1 cellulose synthase1:
8.03
GRMZM2G112336
Zm00001d009795
Zm00001eb345740
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: October 7th, 2016
Variation: June 29th, 2005
39 days agocesa5 cellulose synthase5:
1.11
GRMZM2G111642
Zm00001d034553
Zm00001eb061800
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: October 7th, 2016
Variation: September 1st, 2003
39 days agoocl4 outer cell layer4:
1.05 - 1.06
GRMZM2G123140
Zm00001d030069
Zm00001eb024680
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: September 1st, 2003
Variation: December 6th, 2019
39 days agolkrsdh1 lysine-ketoglutarate reductase/saccharopine dehydrogenase1:
4.07
GRMZM2G181362
Zm00001d052079
Zm00001eb192910
Xingyi Li et al. 2025. Quantitative trait loci mapping of heterosis for leaf morphological traits and candidate gene identification in maize SSRN.     Reference: October 20th, 2025
Gene Product: September 1st, 2003
Variation: April 18th, 2008
39 days agozmm16 Zea mays MADS16:
3.06
GRMZM2G110153
Zm00001d042618
Zm00001eb145660
Zhi Zhong Zhou et al. 2025. Identification, characterization, and expression profiling of rice MADS-box transcription factor genes associated with fluroxypyr-meptyl and oxyfluorfen metabolism Genetica. 153:32.   AT5G20240 (TAIR) Reference: October 20th, 2025
Gene Product: September 10th, 2021
Variation: November 2nd, 2015
39 days agozmm18 Zea mays MADS18:
8.03
GRMZM5G805387
Zm00001d010233
Zm00001eb349070
Zhi Zhong Zhou et al. 2025. Identification, characterization, and expression profiling of rice MADS-box transcription factor genes associated with fluroxypyr-meptyl and oxyfluorfen metabolism Genetica. 153:32.     Reference: October 20th, 2025
Gene Product: September 1st, 2003
Variation: August 27th, 2013
39 days agozmm29 Zea mays MADS29:
8.03
GRMZM2G152862
Zm00001d010232
Zm00001eb349060
Zhi Zhong Zhou et al. 2025. Identification, characterization, and expression profiling of rice MADS-box transcription factor genes associated with fluroxypyr-meptyl and oxyfluorfen metabolism Genetica. 153:32.     Reference: October 20th, 2025
Gene Product: September 1st, 2003
Variation: August 27th, 2013
39 days agopal3 phenylalanine ammonia lyase3:
4.05
GRMZM2G160541
Zm00001d051161
Zm00001eb185240
Mustafa Yıldız et al. 2025. Physio-biochemical and transcriptomic analysis reveals underlying mechanism of Cys˗induced amelioration of Cd toxicity in maize Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01648-5.     Reference: October 20th, 2025
Gene Product: September 1st, 2003
Variation: September 25th, 2014
39 days agocts3 citrate synthase3:
4.09
GRMZM2G063909
Zm00001d053684
Zm00001eb206090
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: July 5th, 2019
Variation: September 1st, 2003
39 days agozap1 zea apetala homolog1:
2.10
GRMZM2G148693
Zm00001d007949
Zm00001eb118120
Zhi Zhong Zhou et al. 2025. Identification, characterization, and expression profiling of rice MADS-box transcription factor genes associated with fluroxypyr-meptyl and oxyfluorfen metabolism Genetica. 153:32.     Reference: October 20th, 2025
Variation: February 2nd, 2011
39 days agobde1 bearded-ear1:
5.06
GRMZM2G160565
Zm00001d017614
Zm00001eb250710
Zhi Zhong Zhou et al. 2025. Identification, characterization, and expression profiling of rice MADS-box transcription factor genes associated with fluroxypyr-meptyl and oxyfluorfen metabolism Genetica. 153:32.   AT2G45650 (TAIR) Reference: October 20th, 2025
Gene Product: April 1st, 2011
Variation: October 5th, 2009
39 days agozmm2 Zea mays MADS2:
8.03
GRMZM2G359952
Zm00001d008882
Zm00001eb338060
Zhi Zhong Zhou et al. 2025. Identification, characterization, and expression profiling of rice MADS-box transcription factor genes associated with fluroxypyr-meptyl and oxyfluorfen metabolism Genetica. 153:32.     Reference: October 20th, 2025
Gene Product: September 1st, 2003
Variation: July 31st, 2017
39 days agozag5 zea agamous5:
4.06 - 4.06
GRMZM2G003514
Zm00001d051465
Zm00001eb187330
Zhi Zhong Zhou et al. 2025. Identification, characterization, and expression profiling of rice MADS-box transcription factor genes associated with fluroxypyr-meptyl and oxyfluorfen metabolism Genetica. 153:32.   AT2G45650 (TAIR) Reference: October 20th, 2025
Gene Product: September 10th, 2021
Variation: October 7th, 2009
39 days agozmm1 Zea mays MADS1:
10.03
GRMZM2G010669
Zm00001d023955
Zm00001eb411130
Zhi Zhong Zhou et al. 2025. Identification, characterization, and expression profiling of rice MADS-box transcription factor genes associated with fluroxypyr-meptyl and oxyfluorfen metabolism Genetica. 153:32.     Reference: October 20th, 2025
Gene Product: September 1st, 2003
Variation: September 1st, 2003
39 days agomek1 mitogen-activated; ERK-activating protein kinase (MEK) homolog1:
3.07
GRMZM2G167856
Zm00001d043609
Zm00001eb154530
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: June 11th, 2024
Variation: January 11th, 2013
39 days agozag1 Zea AGAMOUS homolog1:
6.05
GRMZM2G052890
Zm00001d037737
Zm00001eb284010
Zhi Zhong Zhou et al. 2025. Identification, characterization, and expression profiling of rice MADS-box transcription factor genes associated with fluroxypyr-meptyl and oxyfluorfen metabolism Genetica. 153:32.     Reference: October 20th, 2025
Gene Product: September 1st, 2003
Variation: January 2nd, 2015
39 days agozag2 Zea AGAMOUS homolog2:
3.05 - 3.05
GRMZM2G160687
Zm00001d041781
Zm00001eb138380
Zhi Zhong Zhou et al. 2025. Identification, characterization, and expression profiling of rice MADS-box transcription factor genes associated with fluroxypyr-meptyl and oxyfluorfen metabolism Genetica. 153:32.     Reference: October 20th, 2025
Gene Product: September 10th, 2021
Variation: October 22nd, 2014
39 days agodlf1 delayed flowering1:
 
GRMZM2G067921
Zm00001d022613
Zm00001eb331880
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: August 21st, 2018
Variation: June 25th, 2020
39 days agosxd1 sucrose export defective1:
5.04
GRMZM2G009785
Zm00001d015985
Zm00001eb237270
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: December 1st, 2012
Variation: August 7th, 2012
39 days agocbl10 calcineurin B-like10:
3.09
GRMZM2G116584
Zm00001d044285
Zm00001eb160330
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: October 19th, 2016
39 days agosi1 silky1:
6.01
GRMZM2G139073
Zm00001d036425
Zm00001eb272490
Zhi Zhong Zhou et al. 2025. Identification, characterization, and expression profiling of rice MADS-box transcription factor genes associated with fluroxypyr-meptyl and oxyfluorfen metabolism Genetica. 153:32.     Reference: October 20th, 2025
Variation: November 2nd, 2015
39 days agourf13(mtT)  :
 
   Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: September 1st, 2003
Variation: September 1st, 2003
39 days agorpl10 ribosomal protein L10 homolog:
3.09
GRMZM2G467086
Zm00001d044615
Zm00001eb163260
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: October 13th, 2021
Variation: May 29th, 2013
39 days agonac1 NaCl stress protein1:
10.04
GRMZM2G015605
Zm00001d024778
Zm00001eb417550
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.   AT3G05880 (TAIR) Reference: October 20th, 2025
Gene Product: September 1st, 2003
Variation: September 1st, 2003
39 days agodfr2 dihydroflavonol-4-reductase2:
1.06
GRMZM2G168893
Zm00001d031488
Zm00001eb035390
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.   AT4G35420 (TAIR) Reference: October 20th, 2025
Gene Product: October 4th, 2023
39 days agosbp12 SBP-transcription factor 12:
5.04
GRMZM2G126827
Zm00001d015410
Zm00001eb233320
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: July 5th, 2019
39 days agohsftf11 HSF-transcription factor 11:
1.11
GRMZM2G132971
Zm00001d034433
Zm00001eb060670
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.   AT2G26150 (TAIR) Reference: October 20th, 2025
Gene Product: May 15th, 2020
Variation: March 17th, 2021
39 days agoufg25  :
5.01
GRMZM2G094900
Zm00001d013603
Zm00001eb217930
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: January 16th, 2016
Variation: October 15th, 2019
39 days agoms42 male sterile42:
6.07
GRMZM2G360681
Zm00001d038806
Zm00001eb293780
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: September 1st, 2003
Variation: December 22nd, 2012
39 days agoemb12 embryo specific12:
1.00 - 1.04
   Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Variation: March 8th, 2013
39 days agorph1 RNase PH homolog:
8.03
GRMZM2G345039
Zm00001d009522
Zm00001eb343390
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.   AT3G61620 (TAIR) Reference: October 20th, 2025
Gene Product: September 1st, 2003
Variation: September 1st, 2003
39 days agolec1 LEC1 transcription factor1:
5.06
GRMZM2G011789
Zm00001d017898
Zm00001eb253260
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: August 9th, 2016
39 days agomac1 multiple archesporial cells1:
10.03
GRMZM2G027522
Zm00001d023681
Zm00001eb408950
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: August 2nd, 2012
Variation: August 10th, 2012
39 days agogbp2 GTP binding protein2:
1.09
GRMZM2G045314
Zm00001d033422
Zm00001eb052290
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.   AT4G34460 (TAIR) Reference: October 20th, 2025
Gene Product: May 1st, 2018
Variation: December 19th, 2019
39 days agocdpk35 calcium-dependent protein kinase35:
2.09
GRMZM2G012326
Zm00001d007912
Zm00001eb117300
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: December 3rd, 2013
Variation: September 25th, 2007
39 days agopyl8 pyrabactin resistance-like protein8:
8.04
GRMZM2G165567
Zm00001d010445
Zm00001eb350630
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: January 31st, 2021
39 days agochb101a chromatin remodeling complex subunit B (Swi3):
5.01
GRMZM5G878347
Zm00001d013391
Zm00001eb215910
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Variation: September 1st, 2003
39 days agoprp7 pathogenesis-related protein7:
1.03
GRMZM2G112524
Zm00001d028815
Zm00001eb014000
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: December 12th, 2022
39 days agozmm24 Zea mays MADS24:
1.10
GRMZM2G087095
Zm00001d034047
Zm00001eb057560
Zhi Zhong Zhou et al. 2025. Identification, characterization, and expression profiling of rice MADS-box transcription factor genes associated with fluroxypyr-meptyl and oxyfluorfen metabolism Genetica. 153:32.     Reference: October 20th, 2025
Variation: February 2nd, 2011
39 days agoring152 RING-type E3 ligase152:
2.07
GRMZM2G097089
Zm00001d006373
Zm00001eb105020
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: May 22nd, 2025
39 days agosmk10 small kernel10:
2.01
GRMZM2G051917
Zm00001d001803
Zm00001eb065890
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: September 25th, 2021
Variation: September 25th, 2021
39 days agoppr199 pentatricopeptide repeat protein199:
3.07
GRMZM2G158645
Zm00001d043556
Zm00001eb153890
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: December 27th, 2016
39 days agocoi1 coronatine insensitive1:
3.06
GRMZM2G125411
Zm00001d042833
Zm00001eb147720
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: November 2nd, 2018
39 days agostk2 serine-threonine kinase2:
2.04
GRMZM2G179268
Zm00001d003377
Zm00001eb080360
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: May 13th, 2014
39 days agolrs1 liguleless related sequence1:
8.07
AC232238.2_FG004
Zm00001d012294
Zm00001eb366880
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: August 21st, 2018
Variation: August 22nd, 2014
39 days agomads3 MADS3:
7.00
GRMZM2G072582
Zm00001d018667
Zm00001eb298680
Zhi Zhong Zhou et al. 2025. Identification, characterization, and expression profiling of rice MADS-box transcription factor genes associated with fluroxypyr-meptyl and oxyfluorfen metabolism Genetica. 153:32.     Reference: October 20th, 2025
Variation: July 31st, 2015
39 days agolox5 lipoxygenase5:
5.02
GRMZM2G102760
Zm00001d013493
Zm00001eb216870
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: January 3rd, 2018
Variation: March 25th, 2024
39 days agozag6 agamous-like6:
 
GRMZM2G026223
Zm00001d027425
Zm00001eb001670
Zhi Zhong Zhou et al. 2025. Identification, characterization, and expression profiling of rice MADS-box transcription factor genes associated with fluroxypyr-meptyl and oxyfluorfen metabolism Genetica. 153:32.     Reference: October 20th, 2025
Variation: June 9th, 2014
39 days agopht7 phosphate transporter protein7:
 
GRMZM2G112377
Zm00001d031875
Zm00001eb038730
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: June 16th, 2016
Variation: February 4th, 2011
39 days agonrp1 no-apical-meristem-related protein1:
 
GRMZM2G062650
Zm00001d040189
Zm00001eb126890
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: July 8th, 2019
Variation: March 31st, 2011
39 days agohyd3 hydroxylase3:
 
GRMZM2G152135
Zm00001d026056
Zm00001eb428470
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: December 13th, 2011
Variation: October 22nd, 2020
39 days agohyd4 hydroxylase4:
 
GRMZM2G164318
Zm00001d002589
Zm00001eb073250
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: December 13th, 2011
Variation: September 3rd, 2011
39 days agodbp4 DRE-binding protein4:
 
GRMZM2G380377
Zm00001d036003
Zm00001eb269420
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: April 10th, 2013
Variation: April 10th, 2013
39 days agoemp5 empty pericarp5:
 
GRMZM2G060536
Zm00001d042039
Zm00001eb140440
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: December 27th, 2016
Variation: March 12th, 2013
39 days agoemb14 embryo defective 14:
 
GRMZM2G384293
Zm00001d054079
Zm00001eb209870
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.   AT3G47450 (TAIR)
LOC_Os02g01440 (MSU/TIGR)
Reference: October 20th, 2025
Gene Product: July 5th, 2013
Variation: October 13th, 2015
39 days agosmk1 small kernel1:
 
GRMZM2G030148
Zm00001d007100
Zm00001eb110890
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: June 14th, 2014
Variation: June 14th, 2014
39 days agorad51c recombination protein51 gene c:
 
GRMZM2G123089
Zm00001d044278
Zm00001eb160270
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: August 12th, 2016
Variation: November 5th, 2019
39 days agotms5 thermosensitive male-sterile5:
4.01
GRMZM2G147727
Zm00001d053351
Zm00001eb203810
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.   LOC_Os02g12290 (MSU/TIGR)
Os02g0214300 (Gramene)
Reference: October 20th, 2025
Variation: February 24th, 2017
39 days agonanmt1 nicotinate N-methyltransferase1:
4.06
GRMZM2G082007
Zm00001d051870
Zm00001eb190920
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: March 10th, 2021
39 days agoko1 kaurene oxidase1:
 
GRMZM2G059308
Zm00001d046344
Zm00001eb385100
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: October 27th, 2014
39 days agozar8 Zea mays ARGOS8:
 
GRMZM2G354338
Zm00001d038075
Zm00001eb287000
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: August 3rd, 2015
39 days agofnsi2 flavone synthase typeI2:
 
GRMZM2G475380
Zm00001d027423
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.   AT5G24530 (TAIR) Reference: October 20th, 2025
Gene Product: August 15th, 2015
39 days agocyp18 cytochrome P-450 18:
 
GRMZM2G470442
Zm00001d029526
Zm00001eb020100
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.   LOC_Os03g30420 (MSU/TIGR) Reference: October 20th, 2025
Gene Product: August 18th, 2015
Variation: March 25th, 2023
39 days agoemp7 empty pericarp7:
 
GRMZM2G041231
Zm00001d008298
Zm00001eb333280
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: August 26th, 2015
Variation: August 26th, 2015
39 days agoreas1 ribosome export associated1:
 
GRMZM2G092001
Zm00001d038475
Zm00001eb290580
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.   AT1G67120 (TAIR) Reference: October 20th, 2025
Gene Product: December 12th, 2015
Variation: December 12th, 2015
39 days agoemp16 empty pericarp16:
 
GRMZM2G060516
Zm00001d011559
Zm00001eb359970
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: December 27th, 2016
Variation: January 16th, 2016
39 days agophos4 phosphate transporter4:
 
GRMZM2G064657
Zm00001d037468
Zm00001eb281630
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.   AT1G68740 (TAIR) Reference: October 20th, 2025
Gene Product: February 27th, 2016
39 days agougt1 UDP-glucosyl transferase1:
 
GRMZM2G162755
Zm00001d037383
Zm00001eb280930
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: September 24th, 2018
39 days agofcp1 fon2-like cle protein1:
 
GRMZM2G165836
Zm00001d003320
Zm00001eb079890
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.   LOC_Os04g39770 (MSU/TIGR)
Os04g0473800 (Gramene)
Reference: October 20th, 2025
Gene Product: May 21st, 2016
Variation: April 15th, 2019
39 days agoyuc4 Yucca4:
 
GRMZM2G141383
Zm00001d004467
Zm00001eb088950
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: June 18th, 2018
39 days agonfyc2 nuclear transcription factor y subunit c2:
 
GRMZM2G110210
Zm00001d029537
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: August 9th, 2016
39 days agodek35 defective kernel35:
 
GRMZM2G066749
Zm00001d033749
Zm00001eb055010
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: December 27th, 2016
Variation: September 7th, 2016
39 days agocle7 clavata3/esr-related7:
 
GRMZM2G372364
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: February 22nd, 2021
Variation: March 6th, 2020
39 days agolac9 laccase9:
 
GRMZM2G132169
Zm00001d043019
Zm00001eb149240
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: March 31st, 2018
39 days agocbl1 calcineurin B-like1:
 
GRMZM2G107575
Zm00001d029976
Zm00001eb023890
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: October 19th, 2016
39 days agocbl8 calcineurin B-like8:
 
GRMZM2G110080
Zm00001d053293
Zm00001eb203330
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: October 19th, 2016
39 days agoemp9 empty pericarp9:
 
   Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Variation: November 21st, 2016
39 days agoemp8 empty pericarp8:
 
   Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Variation: November 21st, 2016
39 days agoemp17 empty pericarp17:
 
AC212684.3_FG012
Zm00001d022480
Zm00001eb330270
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: December 27th, 2016
Variation: March 28th, 2017
39 days agodek36 defective kernel36:
 
GRMZM5G892151
Zm00001d013136
Zm00001eb213580
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.   At4g21300 (TAIR) Reference: October 20th, 2025
Gene Product: December 27th, 2016
Variation: March 13th, 2017
39 days agodek37 defective kernel37:
 
GRMZM2G021319
Zm00001d003543
Zm00001eb081680
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: December 27th, 2016
Variation: January 6th, 2018
39 days agoppr13 pentatricopeptide repeat13:
 
GRMZM2G099604
Zm00001d013081
Zm00001eb213020
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.   At2g02980 (TAIR)
LOC_Os03g58100 (MSU/TIGR)
Reference: October 20th, 2025
Gene Product: December 27th, 2016
Variation: May 1st, 2021
39 days agokch7 potassium channel7:
 
GRMZM2G178356
Zm00001d016160
Zm00001eb238620
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: November 27th, 2023
Variation: September 12th, 2017
39 days agompk17 MAP kinase17:
 
GRMZM2G374088
Zm00001d053997
Zm00001eb209160
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: July 12th, 2013
Variation: March 18th, 2021
39 days agodek39 defective kernel39:
 
GRMZM2G345128
Zm00001d047013
Zm00001eb390310
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: December 27th, 2016
Variation: October 6th, 2017
39 days agoemp11 empty pericarp11:
 
GRMZM2G353301
Zm00001d052450
Zm00001eb196310
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: December 27th, 2016
Variation: October 6th, 2017
39 days agonc1 Na+ content1:
 
GRMZM2G047616
Zm00001d040627
Zm00001eb130310
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: November 15th, 2017
Variation: November 15th, 2017
39 days agonc2 Na+ content2:
 
GRMZM2G135674
Zm00001d014680
Zm00001eb227000
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: November 15th, 2017
39 days agocct2 CO CO-LIKE TIMING OF CAB1 protein domain2:
 
GRMZM2G004483
Zm00001d000176
Zm00001eb391230
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: June 18th, 2018
Variation: December 27th, 2017
39 days agocdpk19 calcium dependent protein kinase19:
 
GRMZM2G028086
Zm00001d021835
Zm00001eb324690
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: December 3rd, 2013
39 days agocct43 CO CO-LIKE TIMING OF CAB1 protein domain43:
 
GRMZM2G005732
Zm00001d022590
Zm00001eb331630
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: January 11th, 2018
39 days agomsp1 multiple sporocyte1:
 
GRMZM2G447447
Zm00001d042362
Zm00001eb143420
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.   AT5G07280 (TAIR)
LOC_Os01g68870 (MSU/TIGR)
Reference: October 20th, 2025
Gene Product: July 10th, 2019
39 days agourb2 unhealthy ribosome biogenesis2:
 
GRMZM2G457178
Zm00001d028096
Zm00001eb007680
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Variation: February 26th, 2018
39 days agolac3 laccase3:
 
GRMZM2G169033
Zm00001d052243
Zm00001eb194370
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: March 31st, 2018
39 days agolac5 laccase5:
 
GRMZM2G367668
Zm00001d042901
Zm00001eb148240
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: March 31st, 2018
39 days agolac1 laccase1:
 
GRMZM5G842071
Zm00001d042848
Zm00001eb147850
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: March 31st, 2018
39 days agopyl12 pyrabactin resistance-like protein12:
 
GRMZM2G405064
Zm00001d002533
Zm00001eb072730
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: January 31st, 2021
39 days agocrn1 coryne1:
 
GRMZM2G032132
Zm00001d042268
Zm00001eb142560
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.   AT5G13290 (TAIR) Reference: October 20th, 2025
Gene Product: July 10th, 2019
39 days agosro6 similar to RCD one6:
 
GRMZM2G177878
Zm00001d047993
Zm00001eb399340
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: September 7th, 2018
39 days agonhx7 Na+/H+ antiporter 7:
 
GRMZM2G098494
Zm00001d031232
Zm00001eb033240
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.   AT1G14660 (TAIR) Reference: October 20th, 2025
Gene Product: April 26th, 2021
Variation: October 24th, 2024
39 days agoemp18 empty pericarp18:
 
GRMZM2G471348
Zm00001d034253
Zm00001eb059190
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: December 27th, 2016
Variation: September 1st, 2018
39 days agoZm00001d048936  :
 
GRMZM2G119698
Zm00001d048936
Zm00001eb167600
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: September 10th, 2018
39 days agoauxrp1 auxin-regulated protein1:
 
GRMZM2G063298
Zm00001d033572
Zm00001eb053610
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Variation: July 15th, 2025
39 days agocoi2 coronatine insensitive2:
 
GRMZM2G151536
Zm00001d010082
Zm00001eb347860
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: November 2nd, 2018
39 days agocoi4 coronatine insensitive4:
 
GRMZM2G079112
Zm00001d028543
Zm00001eb011780
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: November 2nd, 2018
Variation: February 15th, 2022
39 days agoemp12 empty pericarp12:
 
GRMZM2G023071
Zm00001d002098
Zm00001eb068720
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: December 27th, 2016
Variation: December 8th, 2018
39 days agohak5 potassium high-affinity transporter5:
 
GRMZM2G084779
Zm00001d042244
Zm00001eb142370
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: March 12th, 2020
Variation: December 15th, 2018
39 days agoppr27 pentatricopeptide repeat protein27:
 
GRMZM2G353195
Zm00001d029061
Zm00001eb016080
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: December 27th, 2016
39 days agodek41 defective kernel41:
 
GRMZM2G127015
Zm00001d021053
Zm00001eb317730
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: December 27th, 2016
Variation: May 24th, 2019
39 days agoamt7 ammonium transporter7:
 
GRMZM2G335218
Zm00001d012261
Zm00001eb366590
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: July 8th, 2013
39 days agodek44 defective kernel44:
 
GRMZM5G866627
Zm00001d052865
Zm00001eb199670
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: June 11th, 2019
Variation: June 11th, 2019
39 days agodek40 defective kernel40:
 
GRMZM2G019538
Zm00001d011478
Zm00001eb359370
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: June 13th, 2019
Variation: June 13th, 2019
39 days agosmk6 small kernel6:
 
GRMZM2G010046
GRMZM2G307262
Zm00001d025446
Zm00001eb422800
Zm00001eb422810
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: December 27th, 2016
Variation: June 14th, 2019
39 days agomcsf1 mitochondrial CAF-like splicing factor1:
 
GRMZM2G087395
Zm00001d024429
Zm00001eb414780
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: July 23rd, 2009
Variation: July 1st, 2019
39 days agosmk4 small kernel4:
 
GRMZM2G459532
Zm00001d049196
Zm00001eb169670
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: December 27th, 2016
Variation: July 24th, 2019
39 days agoemp21 empty pericarp21:
 
GRMZM5G849971
Zm00001d033495
Zm00001eb052880
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: December 27th, 2016
Variation: August 3rd, 2019
39 days agofbl41 F-box protein41:
 
GRMZM2G109140
Zm00001d052200
Zm00001eb193970
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: April 27th, 2022
Variation: September 30th, 2019
39 days agoppr20 pentatricopeptide repeat 20:
 
GRMZM5G818978
Zm00001d039548
Zm00001eb121820
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: December 27th, 2016
Variation: November 2nd, 2019
39 days agohak4 high-affinity potassium transporter4:
 
GRMZM2G425999
Zm00001d049987
Zm00001eb176380
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: March 12th, 2020
39 days agocdpk31 calcium dependent protein kinase31:
 
GRMZM2G463464
Zm00001d041871
Zm00001eb139060
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: December 3rd, 2013
39 days agompk13 MAP kinase13:
 
GRMZM2G163861
Zm00001d039141
Zm00001eb297110
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.   AT2G42880 (TAIR) Reference: October 20th, 2025
Gene Product: July 12th, 2013
Variation: September 19th, 2023
39 days agompkl1 MAP kinase-like1:
 
GRMZM2G108829
Zm00001d017729
Zm00001eb251700
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: May 13th, 2014
Variation: December 21st, 2019
39 days agopme8 pectin methylesterase8:
 
GRMZM2G128549
Zm00001d026422
Zm00001eb431890
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: September 10th, 2018
39 days agonsa1 Na+ content under saline-alkaline conditions1:
 
GRMZM2G000397
Zm00001d002428
Zm00001eb071820
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: January 10th, 2020
Variation: January 10th, 2020
39 days agoknr6 kernel number per row6:
 
GRMZM2G119714
Zm00001d036602
Zm00001eb273900
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: May 13th, 2014
Variation: February 20th, 2020
39 days agoptox1 plastid terminal oxidase1:
 
GRMZM2G102349
Zm00001d001909
Zm00001eb066920
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.   AT4G22260 (TAIR)
LOC_Os04g57320 (MSU/TIGR)
Reference: October 20th, 2025
Gene Product: June 15th, 2023
Variation: May 31st, 2024
39 days agovte4 vitamin E synthesis4:
5.06
GRMZM2G035213
Zm00001d017746
Zm00001eb251860
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: June 26th, 2013
39 days agorh48 RNA helicase48:
 
GRMZM2G171801
Zm00001d018516
Zm00001eb259260
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: December 13th, 2022
Variation: August 18th, 2023
39 days agodek55 defective kernel55:
 
AC201815.4_FG001
Zm00001d014471
Zm00001eb225250
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: December 27th, 2016
Variation: July 4th, 2024
39 days agoppr101 pentatricopeptide repeat potein101:
 
GRMZM2G023999
Zm00001d010942
Zm00001eb354830
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: December 27th, 2016
Variation: June 3rd, 2020
39 days agoppr231 pentatricopeptide repeat potein231:
 
GRMZM2G018757
Zm00001d018219
Zm00001eb256370
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: December 27th, 2016
Variation: June 3rd, 2020
39 days agoppr14 pentatricopeptide repeat protein14:
 
GRMZM2G106384
Zm00001d002157
Zm00001eb069300
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: December 27th, 2016
Variation: June 12th, 2020
39 days agoemp32 empty pericarp32:
 
GRMZM2G089959
Zm00001d040363
Zm00001eb128320
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.   At5g57250 (TAIR) Reference: October 20th, 2025
Gene Product: December 27th, 2016
Variation: September 17th, 2020
39 days agoppr237 pentatricopeptide repeat protein237:
 
GRMZM2G110483
Zm00001d051576
Zm00001eb188450
Zm00014a038761
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: December 27th, 2016
Variation: November 13th, 2023
39 days agodek46 defective kernel46:
 
GRMZM2G456114
Zm00001d043107
Zm00001eb149920
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: December 27th, 2016
Variation: June 22nd, 2020
39 days agopx15 peroxidase15:
 
GRMZM2G108123
Zm00001d002901
Zm00001eb076200
Mustafa Yıldız et al. 2025. Physio-biochemical and transcriptomic analysis reveals underlying mechanism of Cys˗induced amelioration of Cd toxicity in maize Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01648-5.     Reference: October 20th, 2025
Gene Product: January 20th, 2025
39 days agorfwd3 ring finger and WD40 repeat3:
 
GRMZM2G085691
Zm00001d027312
Zm00001eb000650
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: January 9th, 2020
Variation: July 23rd, 2020
39 days agoppr170 pentatricopeptide repeat protein170:
 
GRMZM2G480380
Zm00001d041326
Zm00001eb134810
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: December 27th, 2016
Variation: July 27th, 2020
39 days agochls1 chalcone synthase1:
 
GRMZM2G108894
Zm00001d019478
Zm00001eb305800
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: September 1st, 2003
Variation: August 17th, 2022
39 days agosi3 silky3:
 
AC209624.2_FG001
Zm00001d004130
Zm00001eb086630
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: October 2nd, 2020
Variation: October 2nd, 2020
39 days agomca1 metacaspase1:
 
GRMZM2G155422
Zm00001d029980
Zm00001eb023930
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: October 27th, 2020
39 days agomca2 metacaspase2:
 
GRMZM2G035928
Zm00001d047078
Zm00001eb390830
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: October 27th, 2020
39 days agocdpk36 calcium dependent protein kinase36:
 
GRMZM2G032852
Zm00001d027480
Zm00001eb002180
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: December 3rd, 2013
39 days agocdpk9 calcium dependent protein kinase9:
 
GRMZM2G076634
Zm00001d013527
Zm00001eb217170
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: December 3rd, 2013
39 days agocdpk41 calcium dependent protein kinase41:
 
GRMZM2G472311
Zm00001d052438
Zm00001eb196210
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: December 3rd, 2013
39 days agoemp25 empty pericarp25:
 
GRMZM2G312954
Zm00001d022184
Zm00001eb327830
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: December 27th, 2016
Variation: January 11th, 2021
39 days agoplt56 phospholipid transfer protein56:
 
GRMZM2G166484
Zm00001d025467
Zm00001eb423010
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: September 1st, 2003
39 days agocoi6 coronatine insensitive6:
 
Zm00001d047848
Zm00001eb397990
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: November 2nd, 2018
Variation: February 15th, 2022
39 days agoprrtf1 pseudo-response regulator transcription factor1:
 
GRMZM2G095727
Zm00001d047761
Zm00001eb397240
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.   AT5G02810 (TAIR) Reference: October 20th, 2025
Gene Product: June 18th, 2018
39 days agocold1 cold rsponsive1:
 
GRMZM2G129169
Zm00001d026239
Zm00001eb430290
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: April 15th, 2021
Variation: November 4th, 2024
39 days agobsk1 brassinosteroid-signaling kinase1:
 
GRMZM2G127050
Zm00001d048345
Zm00001eb402560
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: May 13th, 2014
39 days agoGRMZM2G071119  :
 
GRMZM2G071119
Zm00001d002091
Zm00001eb068640
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: November 30th, 2021
39 days agoemp603 empty pericarp603:
 
GRMZM2G069078
Zm00001d012528
Zm00001eb369070
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: December 27th, 2016
Variation: July 19th, 2021
39 days agoppr435 pentatricopeptide repeat435:
 
GRMZM2G017821
Zm00001d009743
Zm00001eb345230
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: December 27th, 2016
39 days agoprh94 protein phosphatase homolog94:
 
GRMZM5G829894
Zm00001d015279
Zm00001eb232360
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: October 25th, 2021
39 days agoyige1 yige1:
 
GRMZM2G008490
Zm00001d028915
Zm00001eb014970
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.   AT3G15095 (TAIR) Reference: October 20th, 2025
Gene Product: May 28th, 2024
Variation: November 29th, 2021
39 days agomads81 MADS-transcription factor 81:
 
Zm00001d018767
Zm00001eb299640
Zhi Zhong Zhou et al. 2025. Identification, characterization, and expression profiling of rice MADS-box transcription factor genes associated with fluroxypyr-meptyl and oxyfluorfen metabolism Genetica. 153:32.     Reference: October 20th, 2025
Gene Product: September 10th, 2021
39 days agomads85 MADS-transcription factor 85:
 
Zm00001d024777
Zm00001eb417540
Zhi Zhong Zhou et al. 2025. Identification, characterization, and expression profiling of rice MADS-box transcription factor genes associated with fluroxypyr-meptyl and oxyfluorfen metabolism Genetica. 153:32.     Reference: October 20th, 2025
Gene Product: September 10th, 2021
39 days agomads93 MADS-transcription factor 93:
 
AC195587.4_FG001
Zm00001d036279
Zm00001eb271400
Zhi Zhong Zhou et al. 2025. Identification, characterization, and expression profiling of rice MADS-box transcription factor genes associated with fluroxypyr-meptyl and oxyfluorfen metabolism Genetica. 153:32.     Reference: October 20th, 2025
Gene Product: September 10th, 2021
39 days agofad2 fatty acid desaturase2:
 
GRMZM2G056252
Zm00001d017840
Zm00001eb252720
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: November 27th, 2020
39 days agodek504 defective kernel504:
 
GRMZM2G326263
Zm00001d022394
Zm00001eb329770
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: December 27th, 2016
Variation: February 24th, 2022
39 days agoemp80 empty pericarp80:
 
GRMZM5G851564
Zm00001d009677
Zm00001eb344620
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: December 27th, 2016
Variation: March 4th, 2022
39 days agonuwa1 nuwa ortholog1:
 
GRMZM2G074599
Zm00001d044388
Zm00001eb161270
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.   AT3G49240 (TAIR) Reference: October 20th, 2025
Gene Product: December 27th, 2016
39 days agodyw1 dyw domain-type ppr protein1:
 
GRMZM2G073551
Zm00001d039179
Zm00001eb297450
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.   AT2G15690 (TAIR) Reference: October 20th, 2025
Gene Product: December 27th, 2016
39 days agobrca2 breast cancer susceptibility2 homolog:
 
GRMZM2G134694
GRMZM5G857087
Zm00001d024953
Zm00001eb419130
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Variation: June 9th, 2023
39 days agoead1 ear apical degeneration1 :
 
GRMZM2G329229
Zm00001d017570
Zm00001eb250340
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Variation: March 16th, 2022
39 days agonad1(mtNB) NADH dehydrogenase subunit 1:
 
   Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: March 22nd, 2022
39 days agoacoz1 abnormal chromosome organization in zygotene1:
 
GRMZM2G135481
Zm00001d039352
Zm00001eb119810
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: April 27th, 2022
Variation: March 24th, 2022
39 days agoZm00001d016245  :
 
GRMZM2G071511
Zm00001d016245
Zm00001eb239230
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: September 10th, 2018
39 days agoTRINITY_DN1207_c0_g1 (PG2)  :
 
GRMZM2G410783
Zm00001d016244
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: September 10th, 2018
39 days agohug1 heat up-regulated gene1:
 
GRMZM2G103179
Zm00001d045336
Zm00001eb376850
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: June 17th, 2022
Variation: June 17th, 2022
39 days agodro1 deeper rooting1:
 
GRMZM2G700200
Zm00001d020620
Zm00001eb314060
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.   LOC_Os09g26840 (MSU/TIGR)
Os09g0439800 (Gramene)
Reference: October 20th, 2025
Variation: August 25th, 2025
39 days agoppr429 pentatricopeptide repeat protein429:
 
GRMZM2G122344
Zm00001d009387
Zm00001eb342190
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: December 27th, 2016
Variation: August 17th, 2022
39 days agompk14 MAP kinase14:
5.03
GRMZM2G062914
Zm00001d015269
Zm00001eb232260
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: July 12th, 2013
39 days agompk5 MAP kinase5:
5.03
GRMZM2G048455
Zm00001d014658
Zm00001eb226770
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: July 12th, 2013
Variation: January 31st, 2025
39 days agoppr365 pentatricopeptide repeat protein365:
6.06
AC218148.2_FG008
Zm00001d038733
Zm00001eb293160
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: December 27th, 2016
39 days agocbl4 calcineurin B-like2:
6.06
GRMZM2G001221
Zm00001d038730
Zm00001eb293130
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: October 19th, 2016
39 days agoprh12 protein phosphatase homolog12:
6.07
GRMZM2G177386
Zm00001d038846
Zm00001eb294200
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: October 25th, 2021
Variation: October 18th, 2016
39 days agoacco2 1-aminocyclopropane-1-carboxylate oxidase2:
7.02
GRMZM2G007249
Zm00001d020686
Zm00001eb314610
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: May 16th, 2016
Variation: October 5th, 2021
39 days agosbp29 SBP-transcription factor 29:
7.03
GRMZM2G067624
Zm00001d021573
Zm00001eb322280
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: July 5th, 2019
Variation: July 7th, 2021
39 days agocipk23 calcineurin B-like-interacting protein kinase23:
7.01
GRMZM2G013236
Zm00001d018799
Zm00001eb300010
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: August 25th, 2018
39 days agodek47 defective kernel47:
7.03
GRMZM2G114748
Zm00001d021372
Zm00001eb320310
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: August 2nd, 2021
Variation: August 2nd, 2021
39 days agodrp1 desiccation-related protein1:
 
GRMZM2G327051
Zm00001d035791
Zm00001eb267820
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: August 4th, 2022
Variation: August 4th, 2022
39 days agogif1 growth-regulating-factor-interacting factor1:
1.10
GRMZM2G180246
Zm00001d033905
Zm00001eb056300
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.   AT5G28640 (TAIR)
LOC_Os03g52320 (MSU/TIGR)
Reference: October 20th, 2025
Gene Product: July 6th, 2015
Variation: February 6th, 2018
39 days agoblk1 bik1-like kinase1:
1.11
GRMZM2G068117
Zm00001d034662
Zm00001eb062730
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: July 10th, 2019
Variation: September 25th, 2007
39 days agotsah1 tryptophan synthase A homolog1:
1.11
GRMZM2G046163
Zm00001d034461
Zm00001eb060890
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: October 14th, 2011
Variation: April 25th, 2023
39 days agodfr1 dihydroflavonoid reductase1:
7.03 - 7.02
GRMZM2G004683
Zm00001d020970
Zm00001eb317040
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.   AT4G35420 (TAIR) Reference: October 20th, 2025
Gene Product: October 4th, 2023
Variation: November 21st, 2012
39 days agonlp15 NLP-transcription factor 15:
5.03
GRMZM2G042278
Zm00001d015201
Zm00001eb231720
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: December 3rd, 2019
Variation: December 3rd, 2019
39 days agoIDP1466  :
7.06
GRMZM2G133819
Zm00001d022619
Zm00001eb331950
Xingyi Li et al. 2025. Quantitative trait loci mapping of heterosis for leaf morphological traits and candidate gene identification in maize SSRN.     Reference: October 20th, 2025
Variation: March 31st, 2005
39 days agokch4 potassium channel4:
3.02
GRMZM2G093313
Zm00001d039386
Zm00001eb120190
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: November 27th, 2023
Variation: February 20th, 2008
39 days agozmm27 Zea mays MADS27:
2.07
GRMZM2G129034
Zm00001d006094
Zm00001eb102450
Zhi Zhong Zhou et al. 2025. Identification, characterization, and expression profiling of rice MADS-box transcription factor genes associated with fluroxypyr-meptyl and oxyfluorfen metabolism Genetica. 153:32.     Reference: October 20th, 2025
Variation: February 2nd, 2011
39 days agocesa10 cellulose synthase10:
1.08
GRMZM2G445905
Zm00001d032776
Zm00001eb046440
Mustafa Yıldız et al. 2025. Physio-biochemical and transcriptomic analysis reveals underlying mechanism of Cys˗induced amelioration of Cd toxicity in maize Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01648-5.     Reference: October 20th, 2025
Gene Product: October 7th, 2016
Variation: March 5th, 2024
39 days agozmm17 zea mays MADS17:
5.03 - 5.04
GRMZM2G130382
Zm00001d015381
Zm00001eb233110
Zhi Zhong Zhou et al. 2025. Identification, characterization, and expression profiling of rice MADS-box transcription factor genes associated with fluroxypyr-meptyl and oxyfluorfen metabolism Genetica. 153:32.     Reference: October 20th, 2025
Variation: February 1st, 2011
39 days agostk1 serine threonine kinase1:
9.02
GRMZM2G165433
Zm00001d045056
Zm00001eb374240
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: May 13th, 2014
Variation: October 10th, 2018
39 days agosnrk1a1 SNF1-related kinase alpha1-like1:
6.06
GRMZM2G077278
GRMZM2G105401
Zm00001d038745
Zm00001eb293240
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: December 4th, 2020
39 days agorboh2 respiratory burst oxidase2:
3.07
GRMZM2G138152
Zm00001d043543
Zm00001eb154010
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: February 18th, 2023
39 days agonrg7 nitrate regulatory gene7:
3.09
GRMZM2G142913
Zm00001d044312
Zm00001eb160590
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: March 13th, 2024
39 days agocdpk32 calcium dependent protein kinase32:
2.08
GRMZM2G099425
Zm00001d006621
Zm00001eb107190
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: December 3rd, 2013
Variation: September 9th, 2021
39 days agoamt1 ammonium transporter1:
10.04
GRMZM2G175140
Zm00001d025831
Zm00001eb426350
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: July 8th, 2013
Variation: September 25th, 2007
39 days agogdi1 guanosine nucleotide diphosphate dissociation inhibitor1:
8.03
Zm00001d010255
Zm00001eb349250
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: January 24th, 2020
Variation: February 18th, 2022
39 days agodcl102 dicer-like 102:
1.07
GRMZM2G413853
Zm00001d032655
Zm00001eb045380
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: September 5th, 2006
Variation: June 9th, 2020
39 days agobzip127 bZIP-transcription factor 127:
1.06
GRMZM2G175280
Zm00001d031723
Zm00001eb037460
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Variation: September 6th, 2017
39 days agoatp6(mt) ATP synthase subunit 6:
 
GRMZM5G836952
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Variation: March 11th, 2022
39 days agonad2(mtNB) NADH dehydrogenase subunit 2:
 
GRMZM5G804671
GRMZM5G840559
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: March 22nd, 2022
39 days agonad4(mtNB) NADH dehydrogenase subunit 4:
 
GRMZM5G804358
Li, Q et al. 2025. Decades' progress and prospects on maize functional genomics and molecular breeding. Sci China Life Sci. :doi: 10.1007/s11427-025-3022-6.     Reference: October 20th, 2025
Gene Product: September 1st, 2003
42 days agopx27 peroxidase27:
 
GRMZM2G022740
Zm00001d024745
Zm00001eb417330
Muhammad Rehman et al. 2025. Nickel Stress Modulates Growth Dynamics, Disrupts Redox Homeostasis, and Induces Ultrastructural Damage in Maize Crop Des. :100122.     Reference: October 17th, 2025
Gene Product: January 20th, 2025
42 days agosod14 superoxide dismutase14:
1.07
GRMZM2G106928
Zm00001d031908
Zm00001eb039000
Muhammad Rehman et al. 2025. Nickel Stress Modulates Growth Dynamics, Disrupts Redox Homeostasis, and Induces Ultrastructural Damage in Maize Crop Des. :100122.     Reference: October 17th, 2025
Gene Product: October 4th, 2021
43 days agoopt1 oligopeptide transporter1:
 
GRMZM5G825515
Zm00001d045519
Zm00001eb378720
Rabby, MG et al. 2024. Comprehensive analysis of the oligopeptide transporter gene family in maize: Genome-wide identification, structural characterization, and stress-responsive expression S Afr J Bot. 175:560-573.     Reference: November 4th, 2024
Gene Product: October 16th, 2025
43 days agoLOC103630353  :
 
GRMZM2G042154
GRMZM2G122712
Zm00001d038179
Zm00001d038180
Zm00001eb287950
Zm00001eb287970
Xu, Q et al. 2024. Genome-wide identification of nitrate transporter 1/peptide transporter family (NPF) induced by arbuscular mycorrhiza in the maize genome Physiol Mol Biol Plants. :doi: 10.1007/s12298-024-01464-3.     Reference: June 2nd, 2024
Gene Product: October 16th, 2025
43 days agonpf57 nitrate transporter/peptide transporter family57:
 
GRMZM2G470454
Zm00001d042680
Zm00001eb146350
Xu, Q et al. 2024. Genome-wide identification of nitrate transporter 1/peptide transporter family (NPF) induced by arbuscular mycorrhiza in the maize genome Physiol Mol Biol Plants. :doi: 10.1007/s12298-024-01464-3.     Reference: June 2nd, 2024
Gene Product: October 16th, 2025
43 days agonpf53 nitrate transporter/peptide transporter family53:
 
GRMZM2G167138
Zm00001d028355
Zm00001eb009990
Xu, Q et al. 2024. Genome-wide identification of nitrate transporter 1/peptide transporter family (NPF) induced by arbuscular mycorrhiza in the maize genome Physiol Mol Biol Plants. :doi: 10.1007/s12298-024-01464-3.     Reference: June 2nd, 2024
Gene Product: October 16th, 2025
43 days agonpf58 nitrate transporter/peptide transporter family58:
 
GRMZM2G095389
Zm00001d031122
Zm00001eb032240
Lihua Jia et al. 2023. Genome-Wide Identification and Functional Analysis of Nitrate Transporter Genes (NPF, NRT2 and NRT3) in Maize Int J Mol Sci. 24:12941.     Reference: August 23rd, 2023
Gene Product: October 16th, 2025
43 days agonpf54 nitrate transporter/peptide transporter family54:
 
GRMZM2G012434
Zm00001d030159
Zm00001eb025410
Xu, Q et al. 2024. Genome-wide identification of nitrate transporter 1/peptide transporter family (NPF) induced by arbuscular mycorrhiza in the maize genome Physiol Mol Biol Plants. :doi: 10.1007/s12298-024-01464-3.     Reference: June 2nd, 2024
Gene Product: October 16th, 2025
43 days agonpf55 nitrate transporter/peptide transporter family55:
 
GRMZM2G012434
Zm00001d030159
Zm00001eb025420
Xu, Q et al. 2024. Genome-wide identification of nitrate transporter 1/peptide transporter family (NPF) induced by arbuscular mycorrhiza in the maize genome Physiol Mol Biol Plants. :doi: 10.1007/s12298-024-01464-3.     Reference: June 2nd, 2024
Gene Product: October 16th, 2025
43 days agonrt19 nitrate transport19:
 
Zm00001d045236
Zm00001eb375870
Lihua Jia et al. 2023. Genome-Wide Identification and Functional Analysis of Nitrate Transporter Genes (NPF, NRT2 and NRT3) in Maize Int J Mol Sci. 24:12941.     Reference: August 23rd, 2023
Gene Product: October 16th, 2025
43 days agonpf52 nitrate transporter/peptide transporter family52:
 
GRMZM2G354349
Zm00001d018051
Xu, Q et al. 2024. Genome-wide identification of nitrate transporter 1/peptide transporter family (NPF) induced by arbuscular mycorrhiza in the maize genome Physiol Mol Biol Plants. :doi: 10.1007/s12298-024-01464-3.     Reference: June 2nd, 2024
Gene Product: October 16th, 2025
43 days agonpf51 nitrate transporter/peptide transporter family51:
 
Zm00001d012192
Zm00001eb365920
Xu, Q et al. 2024. Genome-wide identification of nitrate transporter 1/peptide transporter family (NPF) induced by arbuscular mycorrhiza in the maize genome Physiol Mol Biol Plants. :doi: 10.1007/s12298-024-01464-3.     Reference: June 2nd, 2024
Gene Product: October 16th, 2025
43 days agoccl22 coumarate-CoA ligase22:
 
GRMZM2G019746
Zm00001d018660
Zm00001eb298620
Yi Dou et al. 2025. Integrated Transcriptome–Metabolome Analysis Reveals the Flavonoids Metabolism Mechanism of Maize Radicle in Response to Low Temperature Plants. 14:2988.     Reference: October 16th, 2025
Gene Product: April 30th, 2025
43 days agoopt4 oligopeptide transporter4:
 
   Rabby, MG et al. 2024. Comprehensive analysis of the oligopeptide transporter gene family in maize: Genome-wide identification, structural characterization, and stress-responsive expression S Afr J Bot. 175:560-573.     Reference: November 4th, 2024
Gene Product: October 16th, 2025
43 days agoopt2 oligopeptide transporter2:
 
   Rabby, MG et al. 2024. Comprehensive analysis of the oligopeptide transporter gene family in maize: Genome-wide identification, structural characterization, and stress-responsive expression S Afr J Bot. 175:560-573.     Reference: November 4th, 2024
Gene Product: October 16th, 2025
43 days agoopt3 oligopeptide transporter3:
 
   Rabby, MG et al. 2024. Comprehensive analysis of the oligopeptide transporter gene family in maize: Genome-wide identification, structural characterization, and stress-responsive expression S Afr J Bot. 175:560-573.     Reference: November 4th, 2024
Gene Product: October 16th, 2025
43 days agoopt5 oligopeptide transporter5:
 
   Rabby, MG et al. 2024. Comprehensive analysis of the oligopeptide transporter gene family in maize: Genome-wide identification, structural characterization, and stress-responsive expression S Afr J Bot. 175:560-573.     Reference: November 4th, 2024
Gene Product: October 16th, 2025
43 days agoopt6 oligopeptide transporter6:
 
   Rabby, MG et al. 2024. Comprehensive analysis of the oligopeptide transporter gene family in maize: Genome-wide identification, structural characterization, and stress-responsive expression S Afr J Bot. 175:560-573.     Reference: November 4th, 2024
Gene Product: October 16th, 2025
43 days agoopt7 oligopeptide transporter7:
 
   Rabby, MG et al. 2024. Comprehensive analysis of the oligopeptide transporter gene family in maize: Genome-wide identification, structural characterization, and stress-responsive expression S Afr J Bot. 175:560-573.     Reference: November 4th, 2024
Gene Product: October 16th, 2025
43 days agopal18 phenylalanine ammonia lyase18:
 
   Yi Dou et al. 2025. Integrated Transcriptome–Metabolome Analysis Reveals the Flavonoids Metabolism Mechanism of Maize Radicle in Response to Low Temperature Plants. 14:2988.     Reference: October 16th, 2025
Gene Product: August 13th, 2022
43 days agonpf59 nitrate transporter/peptide transporter family59:
 
   Xiaofan Xie et al. 2025. Bioinoculant substitution enhances rhizosphere soil quality and maize growth by modulating microbial communities and host gene expression in alkaline soils Microbiol Res. :doi: 10.1016/j.micres.2025.128194.     Reference: April 28th, 2025
Gene Product: October 16th, 2025
43 days agoLOC103631520  :
 
       Gene Product: October 16th, 2025
43 days agoIDP6900  :
6.03
       Gene Product: October 16th, 2025
43 days agocg1 corngrass1:
3.02
GRMZM2G022489
GRMZM5G838324
zma-MIR156b
Shunichiro Tomura et al. 2025. Ensemble AnalySis with Interpretable Genomic Prediction (EasiGP): Computational tool for interpreting ensembles of genomic prediction models. Plant Genome. 18:e70138.     Reference: October 16th, 2025
Gene Product: June 17th, 2016
Variation: August 25th, 2011
43 days agochn1 chitinase chem1:
3.08
GRMZM2G453805
Zm00001d043988
Zm00001eb157820
Shuo Wang et al. 2025. Pratylenchus coffeae Effector PcENG2 Targets the Maize Chitinase ZmCHI5 to Promote Parasitism. J Agric Food Chem. :doi: 10.1021/acs.jafc.5c06425.     Reference: October 16th, 2025
Gene Product: May 31st, 2021
Variation: November 30th, 2007
43 days agoccp3 cysteine protease3:
10.07
GRMZM2G073465
Zm00001d026458
Zm00001eb432170
Shuo Wang et al. 2025. Pratylenchus coffeae Effector PcENG2 Targets the Maize Chitinase ZmCHI5 to Promote Parasitism. J Agric Food Chem. :doi: 10.1021/acs.jafc.5c06425.     Reference: October 16th, 2025
Gene Product: October 11th, 2021
Variation: September 1st, 2003
43 days agoptr1 peptide transporter1:
 
GRMZM5G867390
Zm00001d033800
Zm00001eb055470
Xu, Q et al. 2024. Genome-wide identification of nitrate transporter 1/peptide transporter family (NPF) induced by arbuscular mycorrhiza in the maize genome Physiol Mol Biol Plants. :doi: 10.1007/s12298-024-01464-3.     Reference: June 2nd, 2024
Gene Product: October 16th, 2025
43 days agophyB1 phytochromeB1:
1.03
GRMZM2G124532
Zm00001d028905
Zm00001eb014850
Shunichiro Tomura et al. 2025. Ensemble AnalySis with Interpretable Genomic Prediction (EasiGP): Computational tool for interpreting ensembles of genomic prediction models. Plant Genome. 18:e70138.     Reference: October 16th, 2025
Gene Product: October 24th, 2007
Variation: April 16th, 2025
43 days agozfl1 zea floricaula/leafy1:
10.06
GRMZM2G098813
Zm00001d026231
Zm00001eb430240
Shunichiro Tomura et al. 2025. Ensemble AnalySis with Interpretable Genomic Prediction (EasiGP): Computational tool for interpreting ensembles of genomic prediction models. Plant Genome. 18:e70138.     Reference: October 16th, 2025
Variation: February 20th, 2007
43 days agozfl2 Zea floricaula leafy2:
2.02
GRMZM2G180190
Zm00001d002449
Zm00001eb071990
Shunichiro Tomura et al. 2025. Ensemble AnalySis with Interpretable Genomic Prediction (EasiGP): Computational tool for interpreting ensembles of genomic prediction models. Plant Genome. 18:e70138.     Reference: October 16th, 2025
Variation: October 9th, 2014
43 days agoxt11 beta-1,2-xylosyltransferase11:
3.04
GRMZM2G130800
Zm00001d040059
Zm00001eb125880
José Alberto Narváez-Zapata et al. 2025. Unveiling the molecular arsenal: genome sequencing and in silico secretome analysis of Fusarium verticillioides provide insights into maize root rot pathogenesis. Frontiers in Plant Science. 16:1672761.     Reference: October 16th, 2025
Gene Product: February 10th, 2020
Variation: February 24th, 2025
43 days agonpf56 nitrate transporter/peptide transporter family56:
 
AC198700.2_FG004
Zm00001d007310
Zm00001eb112670
Xu, Q et al. 2024. Genome-wide identification of nitrate transporter 1/peptide transporter family (NPF) induced by arbuscular mycorrhiza in the maize genome Physiol Mol Biol Plants. :doi: 10.1007/s12298-024-01464-3.     Reference: June 2nd, 2024
Gene Product: October 16th, 2025
44 days agoBE640649  :
2.02
GRMZM2G305007
Zm00001d002129
Zm00001eb069010
Elsinraju Devadasu et al. 2025. Dynamic changes to the plastoglobule lipidome and proteome in maize during heat stress and recovery. J Exp Bot. :doi: 10.1093/jxb/eraf452.     Reference: October 15th, 2025
Variation: September 25th, 2007
44 days agowox9c WUSCHEL related homeobox 9c:
 
GRMZM2G409881
Zm00001d039017
Zm00001eb295920
Lin, GF et al. 2025. Understanding Callus Types in Maize by Genetic Mapping and Transcriptional Profiling Plants. 14:3168.     Reference: October 15th, 2025
Gene Product: August 25th, 2017
Variation: September 6th, 2007
44 days agowox9b WUSCHEL related homeobox 9b:
 
GRMZM2G031882
Zm00001d043937
Zm00001eb157360
Lin, GF et al. 2025. Understanding Callus Types in Maize by Genetic Mapping and Transcriptional Profiling Plants. 14:3168.     Reference: October 15th, 2025
Gene Product: August 25th, 2017
Variation: September 6th, 2007
44 days agofba1 fructose 1,6-bisphosphate aldolase1:
10.02
GRMZM2G046284
Zm00001d023559
Zm00001eb408010
Elsinraju Devadasu et al. 2025. Dynamic changes to the plastoglobule lipidome and proteome in maize during heat stress and recovery. J Exp Bot. :doi: 10.1093/jxb/eraf452.     Reference: October 15th, 2025
Gene Product: November 1st, 2024
Variation: December 31st, 2017
44 days agogl14 glossy14:
2.05 - 2.05
GRMZM5G806387
Zm00001d004198
Zm00001eb087050
Lin, GF et al. 2025. Understanding Callus Types in Maize by Genetic Mapping and Transcriptional Profiling Plants. 14:3168.     Reference: October 15th, 2025
Gene Product: October 31st, 2018
Variation: October 31st, 2018
44 days agogl6 glossy6:
3.05 - 3.05
GRMZM2G139786
Zm00001d041578
Zm00001eb136750
Lin, GF et al. 2025. Understanding Callus Types in Maize by Genetic Mapping and Transcriptional Profiling Plants. 14:3168.     Reference: October 15th, 2025
Gene Product: March 28th, 2019
Variation: July 28th, 2018
44 days agogl8 glossy8:
5.05
AC205703.4_FG006
Zm00001d017111
Zm00001eb246270
Lin, GF et al. 2025. Understanding Callus Types in Maize by Genetic Mapping and Transcriptional Profiling Plants. 14:3168.     Reference: October 15th, 2025
Gene Product: September 1st, 2003
Variation: November 17th, 2023
44 days agofbn1 fibrillin1:
1.05
GRMZM2G003318
Zm00001d030074
Zm00001eb024700
Elsinraju Devadasu et al. 2025. Dynamic changes to the plastoglobule lipidome and proteome in maize during heat stress and recovery. J Exp Bot. :doi: 10.1093/jxb/eraf452.     Reference: October 15th, 2025
Gene Product: September 1st, 2003
Variation: September 1st, 2003
44 days agohrbp1 harpin binding protein1:
2.04
GRMZM2G015285
Zm00001d007581
Zm00001eb114860
Elsinraju Devadasu et al. 2025. Dynamic changes to the plastoglobule lipidome and proteome in maize during heat stress and recovery. J Exp Bot. :doi: 10.1093/jxb/eraf452.     Reference: October 15th, 2025
Variation: September 9th, 2014
44 days agowrky27 WRKY-transcription factor 27:
3.02
GRMZM2G475984
Zm00001d039531
Zm00001eb121600
Lin, GF et al. 2025. Understanding Callus Types in Maize by Genetic Mapping and Transcriptional Profiling Plants. 14:3168.     Reference: October 15th, 2025
Variation: September 1st, 2003
44 days agomyb8 myb transcription factor8:
 
GRMZM2G041415
Zm00001d041853
Zm00001eb138920
Lin, GF et al. 2025. Understanding Callus Types in Maize by Genetic Mapping and Transcriptional Profiling Plants. 14:3168.     Reference: October 15th, 2025
Gene Product: February 16th, 2011
Variation: February 16th, 2011
44 days agofer1 ferritin1:
4.08
GRMZM2G325575
Zm00001d052316
Zm00001eb195010
Sahil Singh Mandyal et al. 2025. Physiological and molecular responses of individual and combined drought and heat stress on early anthesis of maize (Zea mays L.) Sci. Rep.. 15:35774.     Reference: October 15th, 2025
Gene Product: July 28th, 2021
Variation: December 4th, 2012
44 days agogl13 glossy13:
 
GRMZM2G118243
Zm00001d039631
Zm00001eb122470
Lin, GF et al. 2025. Understanding Callus Types in Maize by Genetic Mapping and Transcriptional Profiling Plants. 14:3168.     Reference: October 15th, 2025
Gene Product: December 28th, 2015
Variation: December 19th, 2013
44 days agohb122 Homeobox-transcription factor 122:
 
GRMZM2G028622
Zm00001d026537
Zm00001eb433010
Elena К Potokina et al. 2025. Genetic mapping of loci affecting embryogenic callus formation and in vitro regeneration in cereals and leguminous crops. Vavilovskii Zhurnal Genet Selektsii. 29:508-516.     Reference: October 15th, 2025
Gene Product: August 25th, 2017
44 days agowox2a WUSCHEL-related homeobox 2a`:
 
GRMZM2G108933
Zm00001d042920
Zm00001eb148390
Elena К Potokina et al. 2025. Genetic mapping of loci affecting embryogenic callus formation and in vitro regeneration in cereals and leguminous crops. Vavilovskii Zhurnal Genet Selektsii. 29:508-516.     Reference: October 15th, 2025
Gene Product: August 25th, 2017
Variation: December 11th, 2024
44 days agobhlh36 bHLH-transcription factor 36:
 
GRMZM2G008691
Zm00001d052192
Zm00001eb193920
Lin, GF et al. 2025. Understanding Callus Types in Maize by Genetic Mapping and Transcriptional Profiling Plants. 14:3168.     Reference: October 15th, 2025
Variation: August 9th, 2018
44 days agonactf48 NAC-transcription factor 48:
1.06
GRMZM2G054252
Zm00001d031655
Zm00001eb036920
Lin, GF et al. 2025. Understanding Callus Types in Maize by Genetic Mapping and Transcriptional Profiling Plants. 14:3168.     Reference: October 15th, 2025
Variation: January 27th, 2017
44 days agogst18 glutathione transferase18:
3.05
GRMZM2G019090
Zm00001d041772
Zm00001eb138300
Liu, J et al. 2025. Multi-omics analysis of the maize ear diameter mutant3 (zmed3) provides insights into female inflorescence development BMC Plant Biology. 25:1372.     Reference: October 15th, 2025
Gene Product: September 1st, 2003
Variation: August 17th, 2010
44 days agoend1 early nodulin homolog1:
6.01
GRMZM2G014705
Zm00001d036125
Zm00001eb270310
Lin, GF et al. 2025. Understanding Callus Types in Maize by Genetic Mapping and Transcriptional Profiling Plants. 14:3168.     Reference: October 15th, 2025
Gene Product: September 1st, 2003
Variation: September 1st, 2003
44 days agoabc1 ABC(yeast) homolog1:
4.07
GRMZM2G157369
Zm00001d051915
Zm00001eb191420
Elsinraju Devadasu et al. 2025. Dynamic changes to the plastoglobule lipidome and proteome in maize during heat stress and recovery. J Exp Bot. :doi: 10.1093/jxb/eraf452.     Reference: October 15th, 2025
Gene Product: September 1st, 2003
Variation: November 18th, 2011
44 days agofba2 fructose 1,6-bisphosphate aldolase2:
4.09
GRMZM2G155253
Zm00001d053015
Zm00001eb200910
Elsinraju Devadasu et al. 2025. Dynamic changes to the plastoglobule lipidome and proteome in maize during heat stress and recovery. J Exp Bot. :doi: 10.1093/jxb/eraf452.     Reference: October 15th, 2025
Gene Product: November 1st, 2024
Variation: July 29th, 2004
44 days agoAY110297  :
3.04
GRMZM2G031568
Zm00001d040818
Zm00001eb131690
Elsinraju Devadasu et al. 2025. Dynamic changes to the plastoglobule lipidome and proteome in maize during heat stress and recovery. J Exp Bot. :doi: 10.1093/jxb/eraf452.     Reference: October 15th, 2025
Variation: September 25th, 2007
44 days agoca5p9 CCAAT-HAP5-transcription factor 59:
4.08
GRMZM2G091433
Zm00001d052621
Zm00001eb197620
Sahil Singh Mandyal et al. 2025. Physiological and molecular responses of individual and combined drought and heat stress on early anthesis of maize (Zea mays L.) Sci. Rep.. 15:35774.     Reference: October 15th, 2025
Gene Product: August 9th, 2016
44 days agohex6 hexokinase6:
 
GRMZM2G171373
Zm00001d043607
Zm00001eb154520
Liu, J et al. 2025. Multi-omics analysis of the maize ear diameter mutant3 (zmed3) provides insights into female inflorescence development BMC Plant Biology. 25:1372.     Reference: October 15th, 2025
Gene Product: September 15th, 2013
44 days agonced6 nine-cis-epoxycarotenoid dioxygenase6:
 
GRMZM2G110192
Zm00001d051556
Zm00001eb188280
Elsinraju Devadasu et al. 2025. Dynamic changes to the plastoglobule lipidome and proteome in maize during heat stress and recovery. J Exp Bot. :doi: 10.1093/jxb/eraf452.     Reference: October 15th, 2025
Gene Product: September 20th, 2012
44 days agonced8 nine-cis-epoxycarotenoid dioxygenase8:
 
GRMZM2G150363
Zm00001d017766
Zm00001eb251990
Elsinraju Devadasu et al. 2025. Dynamic changes to the plastoglobule lipidome and proteome in maize during heat stress and recovery. J Exp Bot. :doi: 10.1093/jxb/eraf452.     Reference: October 15th, 2025
Gene Product: September 20th, 2012
44 days agomab17 math-btb17:
 
GRMZM2G166049
Zm00001d013094
Zm00001eb213160
Sahil Singh Mandyal et al. 2025. Physiological and molecular responses of individual and combined drought and heat stress on early anthesis of maize (Zea mays L.) Sci. Rep.. 15:35774.     Reference: October 15th, 2025
Gene Product: June 6th, 2014
Variation: May 17th, 2017
44 days agoflz30 FCS-like zinc finger30:
 
GRMZM2G009080
Zm00001d036409
Zm00001eb272350
Lin, GF et al. 2025. Understanding Callus Types in Maize by Genetic Mapping and Transcriptional Profiling Plants. 14:3168.     Reference: October 15th, 2025
Gene Product: March 29th, 2021
44 days agoxrn3 exoribonuclease3:
 
GRMZM2G099630
Zm00001d013083
Zm00001eb213060
Sahil Singh Mandyal et al. 2025. Physiological and molecular responses of individual and combined drought and heat stress on early anthesis of maize (Zea mays L.) Sci. Rep.. 15:35774.     Reference: October 15th, 2025
Gene Product: November 29th, 2021
44 days agoplap2 plastid-lipid-associated protein2:
 
GRMZM5G870446
Zm00001d025574
Zm00001eb423920
Elsinraju Devadasu et al. 2025. Dynamic changes to the plastoglobule lipidome and proteome in maize during heat stress and recovery. J Exp Bot. :doi: 10.1093/jxb/eraf452.     Reference: October 15th, 2025
Gene Product: February 3rd, 2022
44 days agoplap1 plastid-lipid-associated protein1:
 
GRMZM2G124466
Zm00001d026543
Zm00001eb433050
Elsinraju Devadasu et al. 2025. Dynamic changes to the plastoglobule lipidome and proteome in maize during heat stress and recovery. J Exp Bot. :doi: 10.1093/jxb/eraf452.     Reference: October 15th, 2025
Gene Product: February 3rd, 2022
44 days agoaldr7 aldose reductase7:
2.10
GRMZM2G016236
Zm00001d007858
Zm00001eb117640
Elsinraju Devadasu et al. 2025. Dynamic changes to the plastoglobule lipidome and proteome in maize during heat stress and recovery. J Exp Bot. :doi: 10.1093/jxb/eraf452.     Reference: October 15th, 2025
Gene Product: June 23rd, 2025
44 days agopco140096  :
3.03
GRMZM2G054387
Zm00001d039667
Zm00001eb122820
Elsinraju Devadasu et al. 2025. Dynamic changes to the plastoglobule lipidome and proteome in maize during heat stress and recovery. J Exp Bot. :doi: 10.1093/jxb/eraf452.     Reference: October 15th, 2025
Variation: September 25th, 2007
45 days agopsy2 phytoene synthase2:
8.07
GRMZM2G149317
Zm00001d012394
Zm00001eb367770
Arkhestova, D Kh et al. 2025. Expression Level of Carotenoid Biosynthesis Genes in Leaves Is Associated with Cold Tolerance of Zea mays L. Plants Dokl Biochem Biophys. :doi: 10.1134/S1607672925600502.     Reference: October 14th, 2025
Gene Product: December 14th, 2011
Variation: May 12th, 2013
46 days agomdh10 malate dehydrogenase10:
 
GRMZM2G141289
Zm00001d022229
Zm00001eb328310
Tengfei Zhang et al. 2025. ZmTH1 Is Vital for Healthy Plant Growth and Promotes Cold/Drought Tolerance by Regulating Thiamin Diphosphate-Dependent Metabolisms in Maize. Plant Biotechnol J. :doi: 10.1111/pbi.70400.     Reference: October 13th, 2025
Gene Product: September 23rd, 2014
46 days agoZm00001eb404340  :
 
GRMZM2G055899
Zm00001d048539
Zm00001eb404340
Tengfei Zhang et al. 2025. ZmTH1 Is Vital for Healthy Plant Growth and Promotes Cold/Drought Tolerance by Regulating Thiamin Diphosphate-Dependent Metabolisms in Maize. Plant Biotechnol J. :doi: 10.1111/pbi.70400.   AT5G65780 (TAIR)
LOC_Os03g01600 (MSU/TIGR)
Reference: October 13th, 2025
Gene Product: August 31st, 2023
46 days agoshbp1 sedoheptulose bisphosphatase1:
3.06
GRMZM6G741210
Zm00001d042840
Zm00001eb147750
Tengfei Zhang et al. 2025. ZmTH1 Is Vital for Healthy Plant Growth and Promotes Cold/Drought Tolerance by Regulating Thiamin Diphosphate-Dependent Metabolisms in Maize. Plant Biotechnol J. :doi: 10.1111/pbi.70400.     Reference: October 13th, 2025
Gene Product: September 1st, 2003
Variation: September 1st, 2003
46 days agopdk2 pyruvate, orthophosphate dikinase2:
8.04
GRMZM2G097457
Zm00001d010321
Zm00001eb349810
Tengfei Zhang et al. 2025. ZmTH1 Is Vital for Healthy Plant Growth and Promotes Cold/Drought Tolerance by Regulating Thiamin Diphosphate-Dependent Metabolisms in Maize. Plant Biotechnol J. :doi: 10.1111/pbi.70400.     Reference: October 13th, 2025
Gene Product: July 28th, 2014
Variation: December 19th, 2017
46 days agossu1 ribulose bisphosphate carboxylase small subunit1:
4.08
GRMZM2G098520
Zm00001d052595
Zm00001eb197410
Tengfei Zhang et al. 2025. ZmTH1 Is Vital for Healthy Plant Growth and Promotes Cold/Drought Tolerance by Regulating Thiamin Diphosphate-Dependent Metabolisms in Maize. Plant Biotechnol J. :doi: 10.1111/pbi.70400.     Reference: October 13th, 2025
Gene Product: September 1st, 2003
Variation: September 1st, 2003
46 days agossu2 ribulose bisphosphate carboxylase small subunit2:
2.05
GRMZM2G113033
Zm00001d004894
Zm00001eb092540
Tengfei Zhang et al. 2025. ZmTH1 Is Vital for Healthy Plant Growth and Promotes Cold/Drought Tolerance by Regulating Thiamin Diphosphate-Dependent Metabolisms in Maize. Plant Biotechnol J. :doi: 10.1111/pbi.70400.     Reference: October 13th, 2025
Gene Product: September 1st, 2003
Variation: October 14th, 2014
46 days agogpc4 glyceraldehyde-3-phosphate dehydrogenase4:
5.05
GRMZM2G176307
Zm00001d017121
Zm00001eb246370
Tengfei Zhang et al. 2025. ZmTH1 Is Vital for Healthy Plant Growth and Promotes Cold/Drought Tolerance by Regulating Thiamin Diphosphate-Dependent Metabolisms in Maize. Plant Biotechnol J. :doi: 10.1111/pbi.70400.     Reference: October 13th, 2025
Gene Product: September 1st, 2003
Variation: December 13th, 2012
46 days agopgk1 phosphoglycerate kinase1:
6.06
GRMZM2G089136
Zm00001d038579
Zm00001eb291670
Tengfei Zhang et al. 2025. ZmTH1 Is Vital for Healthy Plant Growth and Promotes Cold/Drought Tolerance by Regulating Thiamin Diphosphate-Dependent Metabolisms in Maize. Plant Biotechnol J. :doi: 10.1111/pbi.70400.     Reference: October 13th, 2025
Gene Product: November 24th, 2020
46 days agorpe1 Ribulose-phosphate 3-epimerase1:
1.02
GRMZM2G026807
Zm00001d027841
Zm00001eb005330
Tengfei Zhang et al. 2025. ZmTH1 Is Vital for Healthy Plant Growth and Promotes Cold/Drought Tolerance by Regulating Thiamin Diphosphate-Dependent Metabolisms in Maize. Plant Biotechnol J. :doi: 10.1111/pbi.70400.     Reference: October 13th, 2025
Variation: August 4th, 2017
46 days agopgk2 phosphoglycerate kinase2:
8.05
GRMZM2G083016
Zm00001d010672
Zm00001eb352550
Tengfei Zhang et al. 2025. ZmTH1 Is Vital for Healthy Plant Growth and Promotes Cold/Drought Tolerance by Regulating Thiamin Diphosphate-Dependent Metabolisms in Maize. Plant Biotechnol J. :doi: 10.1111/pbi.70400.     Reference: October 13th, 2025
Gene Product: November 24th, 2020
46 days agome3 NADP malic enzyme3:
3.02
GRMZM2G085019
Zm00001d000316
Zm00001eb121470
Tengfei Zhang et al. 2025. ZmTH1 Is Vital for Healthy Plant Growth and Promotes Cold/Drought Tolerance by Regulating Thiamin Diphosphate-Dependent Metabolisms in Maize. Plant Biotechnol J. :doi: 10.1111/pbi.70400.     Reference: October 13th, 2025
Gene Product: June 27th, 2019
Variation: September 1st, 2003
46 days agoexpb2 beta expansin2:
1.05
GRMZM2G021621
Zm00001d029899
Zm00001eb023360
Geilfus, CM et al. 2015. Down-regulation of ZmEXPB6 (Zea mays β-expansin 6) protein is correlated with salt-mediated growth reduction in the leaves of Z. mays L. J Biol Chem. 290:11235-11245.     Reference: October 13th, 2025
Gene Product: March 12th, 2008
Variation: December 28th, 2016
46 days agoexpb8 beta expansin8:
9.04
GRMZM2G013002
Zm00001d047087
Zm00001eb391320
Geilfus, CM et al. 2015. Down-regulation of ZmEXPB6 (Zea mays β-expansin 6) protein is correlated with salt-mediated growth reduction in the leaves of Z. mays L. J Biol Chem. 290:11235-11245.     Reference: October 13th, 2025
Gene Product: March 12th, 2008
46 days agopep2 phosphoenolpyruvate carboxylase2:
5.04
GRMZM2G069542
Zm00001d016166
Zm00001eb238670
Tengfei Zhang et al. 2025. ZmTH1 Is Vital for Healthy Plant Growth and Promotes Cold/Drought Tolerance by Regulating Thiamin Diphosphate-Dependent Metabolisms in Maize. Plant Biotechnol J. :doi: 10.1111/pbi.70400.     Reference: October 13th, 2025
Gene Product: September 1st, 2003
Variation: October 1st, 2014
46 days agothi1 thiamine biosynthesis1:
8.05
GRMZM2G018375
Zm00001d011183
Zm00001eb356910
Tengfei Zhang et al. 2025. ZmTH1 Is Vital for Healthy Plant Growth and Promotes Cold/Drought Tolerance by Regulating Thiamin Diphosphate-Dependent Metabolisms in Maize. Plant Biotechnol J. :doi: 10.1111/pbi.70400.     Reference: October 13th, 2025
Gene Product: February 1st, 2013
Variation: January 15th, 2015
46 days agoPCO109372  :
4.10
GRMZM2G010044
Zm00001d053960
Zm00001eb208760
Tengfei Zhang et al. 2025. ZmTH1 Is Vital for Healthy Plant Growth and Promotes Cold/Drought Tolerance by Regulating Thiamin Diphosphate-Dependent Metabolisms in Maize. Plant Biotechnol J. :doi: 10.1111/pbi.70400.     Reference: October 13th, 2025
Variation: May 27th, 2021
46 days agoacx3 acyl-coenzyme A oxidase3:
4.02
GRMZM2G099666
Zm00001d048890
Zm00001eb167230
Tengfei Zhang et al. 2025. ZmTH1 Is Vital for Healthy Plant Growth and Promotes Cold/Drought Tolerance by Regulating Thiamin Diphosphate-Dependent Metabolisms in Maize. Plant Biotechnol J. :doi: 10.1111/pbi.70400.     Reference: October 13th, 2025
Gene Product: September 17th, 2022
46 days agoexpb4 beta expansin4:
7.02
GRMZM2G154178
Zm00001d019560
Zm00001eb306350
Geilfus, CM et al. 2015. Down-regulation of ZmEXPB6 (Zea mays β-expansin 6) protein is correlated with salt-mediated growth reduction in the leaves of Z. mays L. J Biol Chem. 290:11235-11245.     Reference: October 13th, 2025
Variation: May 31st, 2010
46 days agothi3 thiamine synthesis3:
 
GRMZM2G401934
Zm00001d041829
Zm00001eb138710
Tengfei Zhang et al. 2025. ZmTH1 Is Vital for Healthy Plant Growth and Promotes Cold/Drought Tolerance by Regulating Thiamin Diphosphate-Dependent Metabolisms in Maize. Plant Biotechnol J. :doi: 10.1111/pbi.70400.   AT1G22940 (TAIR) Reference: October 13th, 2025
Gene Product: August 20th, 2014
Variation: October 13th, 2025
46 days agotdpk1 thiamin diphosphokinase1:
 
GRMZM2G055458
Zm00001d040798
Zm00001eb131550
Tengfei Zhang et al. 2025. ZmTH1 Is Vital for Healthy Plant Growth and Promotes Cold/Drought Tolerance by Regulating Thiamin Diphosphate-Dependent Metabolisms in Maize. Plant Biotechnol J. :doi: 10.1111/pbi.70400.     Reference: October 13th, 2025
Gene Product: August 20th, 2014
46 days agotdpk2 thiamin diphosphokinase2:
 
GRMZM5G864815
Zm00001d037916
Zm00001eb285500
Tengfei Zhang et al. 2025. ZmTH1 Is Vital for Healthy Plant Growth and Promotes Cold/Drought Tolerance by Regulating Thiamin Diphosphate-Dependent Metabolisms in Maize. Plant Biotechnol J. :doi: 10.1111/pbi.70400.     Reference: October 13th, 2025
Gene Product: August 20th, 2014
46 days agotena1 thiaminase1:
 
GRMZM2G078283
Zm00001d049888
Zm00001eb175630
Tengfei Zhang et al. 2025. ZmTH1 Is Vital for Healthy Plant Growth and Promotes Cold/Drought Tolerance by Regulating Thiamin Diphosphate-Dependent Metabolisms in Maize. Plant Biotechnol J. :doi: 10.1111/pbi.70400.     Reference: October 13th, 2025
Gene Product: August 20th, 2014
46 days agogpat5 glycerol-3-phosphate acyltransferase5:
 
GRMZM2G072298
Zm00001d040265
Zm00001eb127520
Tengfei Zhang et al. 2025. ZmTH1 Is Vital for Healthy Plant Growth and Promotes Cold/Drought Tolerance by Regulating Thiamin Diphosphate-Dependent Metabolisms in Maize. Plant Biotechnol J. :doi: 10.1111/pbi.70400.     Reference: October 13th, 2025
Gene Product: March 25th, 2019
46 days agotpi1 triose phosphate isomerase1:
 
GRMZM5G852968
Zm00001d021310
Zm00001eb319770
Tengfei Zhang et al. 2025. ZmTH1 Is Vital for Healthy Plant Growth and Promotes Cold/Drought Tolerance by Regulating Thiamin Diphosphate-Dependent Metabolisms in Maize. Plant Biotechnol J. :doi: 10.1111/pbi.70400.     Reference: October 13th, 2025
Gene Product: March 6th, 2023
46 days agofbp2 fructose bisphosphatase2:
 
GRMZM2G306732
Zm00001d028562
Zm00001eb011940
Tengfei Zhang et al. 2025. ZmTH1 Is Vital for Healthy Plant Growth and Promotes Cold/Drought Tolerance by Regulating Thiamin Diphosphate-Dependent Metabolisms in Maize. Plant Biotechnol J. :doi: 10.1111/pbi.70400.     Reference: October 13th, 2025
Gene Product: June 9th, 2021
46 days agodhad2 dihydroxy-acid dehydratase2:
 
GRMZM2G014069
Zm00001d049929
Zm00001eb175970
Tengfei Zhang et al. 2025. ZmTH1 Is Vital for Healthy Plant Growth and Promotes Cold/Drought Tolerance by Regulating Thiamin Diphosphate-Dependent Metabolisms in Maize. Plant Biotechnol J. :doi: 10.1111/pbi.70400.     Reference: October 13th, 2025
Gene Product: August 29th, 2021
46 days agoaldh17 aldehyde dehydrogenase17:
5.05
GRMZM2G169458
Zm00001d017418
Zm00001eb248870
Tengfei Zhang et al. 2025. ZmTH1 Is Vital for Healthy Plant Growth and Promotes Cold/Drought Tolerance by Regulating Thiamin Diphosphate-Dependent Metabolisms in Maize. Plant Biotechnol J. :doi: 10.1111/pbi.70400.     Reference: October 13th, 2025
Gene Product: January 5th, 2024
Variation: May 26th, 2023
46 days agoaldh21 aldehyde dehydrogenase21:
7.02
GRMZM2G001898
GRMZM2G108076
Zm00001d019054
Zm00001eb302330
Tengfei Zhang et al. 2025. ZmTH1 Is Vital for Healthy Plant Growth and Promotes Cold/Drought Tolerance by Regulating Thiamin Diphosphate-Dependent Metabolisms in Maize. Plant Biotechnol J. :doi: 10.1111/pbi.70400.     Reference: October 13th, 2025
Gene Product: January 5th, 2024
46 days agoabh4 abscisic acid 8'-hydroxylase4:
7.02
GRMZM2G065928
Zm00001d020717
Zm00001eb314900
Twohey, RJ, III et al. 2025. A spontaneous mutation in a key C4 pathway gene significantly alters leaf δ13C, uncoupling its relationship with WUE and photosynthetic performance in Zea mays. J Exp Bot. :doi: 10.1093/jxb/eraf436.     Reference: October 13th, 2025
Gene Product: February 15th, 2013
Variation: March 31st, 2005
47 days agometp3 metal tolerance protein3:
 
GRMZM2G477741
Zm00001d010954
Zm00001eb354910
Minow, MAA et al. 2025. Hybrids reveal accessible chromatin trans genetic associations bioRxiv preprint.     Reference: October 12th, 2025
Gene Product: May 23rd, 2024
47 days agopum6 pumilio6:
 
GRMZM2G360907
Zm00001d004339
Zm00001eb087930
Song Song et al. 2025. bHLH Transcription Factors in Cereal Crops: Diverse Functions in Regulating Growth, Development and Stress Responses Int J Mol Sci. 26:9915.     Reference: October 12th, 2025
Gene Product: September 13th, 2023
47 days agowc1 white cap1:
9.07
GRMZM2G057243
Zm00001d048373
Zm00001eb402840
Minow, MAA et al. 2025. Hybrids reveal accessible chromatin trans genetic associations bioRxiv preprint.     Reference: October 12th, 2025
Gene Product: September 20th, 2012
Variation: October 5th, 2012
47 days agoippi1 isopentenyl pyrophosphate isomerase1:
7.03
GRMZM2G108285
Zm00001d021709
Zm00001eb323510
Minow, MAA et al. 2025. Hybrids reveal accessible chromatin trans genetic associations bioRxiv preprint.     Reference: October 12th, 2025
Gene Product: December 10th, 2011
Variation: September 1st, 2003
47 days agoereb147 AP2-EREBP-transcription factor 147:
 
GRMZM2G310368
Zm00001d043205
Zm00001eb150840
Song Song et al. 2025. bHLH Transcription Factors in Cereal Crops: Diverse Functions in Regulating Growth, Development and Stress Responses Int J Mol Sci. 26:9915.     Reference: October 12th, 2025
Variation: June 20th, 2022
47 days agobzr5 BZR-transcription factor 5:
 
GRMZM2G069486
Zm00001d053975
Zm00001eb208910
Song Song et al. 2025. bHLH Transcription Factors in Cereal Crops: Diverse Functions in Regulating Growth, Development and Stress Responses Int J Mol Sci. 26:9915.   AT5G45300 (TAIR) Reference: October 12th, 2025
Gene Product: May 4th, 2022
47 days agozim13 ZIM-transcription factor 13:
 
GRMZM2G005954
Zm00001d005813
Zm00001eb100130
Minow, MAA et al. 2025. Hybrids reveal accessible chromatin trans genetic associations bioRxiv preprint.     Reference: October 12th, 2025
Gene Product: February 24th, 2021
47 days agobhlh65 bHLH-transcription factor 65:
 
GRMZM2G387528
Zm00001d008205
Zm00001eb332400
Song Song et al. 2025. bHLH Transcription Factors in Cereal Crops: Diverse Functions in Regulating Growth, Development and Stress Responses Int J Mol Sci. 26:9915.   AT1G09530 (TAIR)
LOC_Os05g04740 (MSU/TIGR)
Reference: October 12th, 2025
Gene Product: September 14th, 2016
Variation: August 5th, 2022
47 days agofdx3 ferredoxin3:
1.11
GRMZM2G053458
Zm00001d034760
Zm00001eb063710
Minow, MAA et al. 2025. Hybrids reveal accessible chromatin trans genetic associations bioRxiv preprint.     Reference: October 12th, 2025
Gene Product: September 1st, 2003
Variation: January 29th, 2015
47 days agodxs3 deoxy xylulose synthase3:
 
GRMZM2G173641
Zm00001d045383
Zm00001eb377300
Minow, MAA et al. 2025. Hybrids reveal accessible chromatin trans genetic associations bioRxiv preprint.     Reference: October 12th, 2025
Gene Product: August 17th, 2004
Variation: February 15th, 2012
47 days agoggps2 geranylgeranyl pyrophosphate synthase2:
 
GRMZM2G102550
Zm00001d021929
Zm00001eb325560
Minow, MAA et al. 2025. Hybrids reveal accessible chromatin trans genetic associations bioRxiv preprint.     Reference: October 12th, 2025
Gene Product: April 8th, 2013
47 days agoippi3 isopentenyl pyrophosphate isomerase3:
 
GRMZM2G133082
Zm00001d038193
Zm00001eb288110
Minow, MAA et al. 2025. Hybrids reveal accessible chromatin trans genetic associations bioRxiv preprint.     Reference: October 12th, 2025
Gene Product: December 10th, 2011
47 days agobhlh187 bHLH-transcription factor 187:
4.02
GRMZM2G133675
Zm00001d048901
Zm00001eb167310
Song Song et al. 2025. bHLH Transcription Factors in Cereal Crops: Diverse Functions in Regulating Growth, Development and Stress Responses Int J Mol Sci. 26:9915.     Reference: October 12th, 2025
Gene Product: September 14th, 2016
47 days agopti3 pto-interacting3:
 
GRMZM2G029530
Zm00001d021136
Zm00001eb318300
Song Song et al. 2025. bHLH Transcription Factors in Cereal Crops: Diverse Functions in Regulating Growth, Development and Stress Responses Int J Mol Sci. 26:9915.     Reference: October 12th, 2025
Gene Product: May 13th, 2014
Variation: July 11th, 2025
47 days agodxs1 deoxy xylulose synthase 1:
6.05
GRMZM2G137151
Zm00001d038170
Zm00001eb287860
Minow, MAA et al. 2025. Hybrids reveal accessible chromatin trans genetic associations bioRxiv preprint.     Reference: October 12th, 2025
Gene Product: August 17th, 2004
Variation: June 20th, 2012
48 days agoZm00001eb236160  :
 
   Ren, RC et al. 2025. Maize Chlorotic Leaf Spot1 encodes a fumarylacetoacetate hydrolase essential for carbohydrate partitioning J Genet Genomics. :doi: 10.1016/j.jgg.2025.10.002.     Reference: October 11th, 2025
Gene Product: October 10th, 2025
48 days agobx4 benzoxazinone synthesis4:
4.01
GRMZM2G172491
Zm00001d048703
Zm00001eb165560
Sonia Torabi et al. 2025. Harnessing Brassinolide Signaling to Fortify Maize Against Nickel Toxicity: An Integrative Perspective on Stress Alleviation and Adaptive Responses Plant Stress. :doi: 10.1016/j.stress.2025.101080.     Reference: October 11th, 2025
Gene Product: October 24th, 2011
Variation: October 27th, 2011
48 days agoss6 starch synthase6:
5.03
GRMZM2G126988
Zm00001d014150
Zm00001eb222830
Ren, RC et al. 2025. Maize Chlorotic Leaf Spot1 encodes a fumarylacetoacetate hydrolase essential for carbohydrate partitioning J Genet Genomics. :doi: 10.1016/j.jgg.2025.10.002.     Reference: October 11th, 2025
Gene Product: October 14th, 2016
48 days agomrpa1 multidrug resistance protein associated1:
2.09
GRMZM2G113203
Zm00001d046226
Sonia Torabi et al. 2025. Harnessing Brassinolide Signaling to Fortify Maize Against Nickel Toxicity: An Integrative Perspective on Stress Alleviation and Adaptive Responses Plant Stress. :doi: 10.1016/j.stress.2025.101080.     Reference: October 11th, 2025
Gene Product: July 11th, 2019
Variation: July 30th, 2013
48 days agogsht1 glutathione transporter1:
 
GRMZM2G421491
Zm00001d034035
Zm00001eb057440
Sonia Torabi et al. 2025. Harnessing Brassinolide Signaling to Fortify Maize Against Nickel Toxicity: An Integrative Perspective on Stress Alleviation and Adaptive Responses Plant Stress. :doi: 10.1016/j.stress.2025.101080.     Reference: October 11th, 2025
Gene Product: April 23rd, 2013
48 days agosbe3 starch branching enzyme3:
8.06
GRMZM2G005298
Zm00001d011301
Zm00001eb357830
Ren, RC et al. 2025. Maize Chlorotic Leaf Spot1 encodes a fumarylacetoacetate hydrolase essential for carbohydrate partitioning J Genet Genomics. :doi: 10.1016/j.jgg.2025.10.002.     Reference: October 11th, 2025
Gene Product: June 6th, 2011
Variation: June 1st, 2011
48 days agogst17 glutathione transferase17:
5.05
GRMZM2G064255
Zm00001d016860
Zm00001eb244170
Ren, RC et al. 2025. Maize Chlorotic Leaf Spot1 encodes a fumarylacetoacetate hydrolase essential for carbohydrate partitioning J Genet Genomics. :doi: 10.1016/j.jgg.2025.10.002.     Reference: October 11th, 2025
Gene Product: September 1st, 2003
Variation: August 17th, 2010
48 days agogst27 glutathione transferase27:
8.05
GRMZM2G077206
Zm00001d011154
Zm00001eb356600
Sonia Torabi et al. 2025. Harnessing Brassinolide Signaling to Fortify Maize Against Nickel Toxicity: An Integrative Perspective on Stress Alleviation and Adaptive Responses Plant Stress. :doi: 10.1016/j.stress.2025.101080.     Reference: October 11th, 2025
Gene Product: September 1st, 2003
Variation: August 20th, 2010
48 days agoben1 bentazon resistance1:
5.01
GRMZM2G090432
Zm00001d013230
Zm00001eb214410
Sonia Torabi et al. 2025. Harnessing Brassinolide Signaling to Fortify Maize Against Nickel Toxicity: An Integrative Perspective on Stress Alleviation and Adaptive Responses Plant Stress. :doi: 10.1016/j.stress.2025.101080.     Reference: October 11th, 2025
Gene Product: December 30th, 2022
Variation: July 11th, 2024
48 days agocls1 chlorotic leaf spot1:
4.09
GRMZM2G029566
Zm00001d053663
Zm00001eb205930
Ren, RC et al. 2025. Maize Chlorotic Leaf Spot1 encodes a fumarylacetoacetate hydrolase essential for carbohydrate partitioning J Genet Genomics. :doi: 10.1016/j.jgg.2025.10.002.     Reference: October 11th, 2025
Gene Product: October 10th, 2025
Variation: October 10th, 2025
48 days agomrpa2 multidrug resistance associated protein2:
7.02
GRMZM5G832772
Zm00001d020666
Zm00001eb314450
Zm00001eb314470
Sonia Torabi et al. 2025. Harnessing Brassinolide Signaling to Fortify Maize Against Nickel Toxicity: An Integrative Perspective on Stress Alleviation and Adaptive Responses Plant Stress. :doi: 10.1016/j.stress.2025.101080.     Reference: October 11th, 2025
Gene Product: July 11th, 2019
Variation: January 12th, 2016
48 days agomrpa3 multidrug resistance-associated protein3:
9.02
GRMZM2G111903
Zm00001d045269
Zm00001eb376160
Sonia Torabi et al. 2025. Harnessing Brassinolide Signaling to Fortify Maize Against Nickel Toxicity: An Integrative Perspective on Stress Alleviation and Adaptive Responses Plant Stress. :doi: 10.1016/j.stress.2025.101080.     Reference: October 11th, 2025
Gene Product: July 11th, 2019
Variation: November 11th, 2009
48 days agotat1 tyrosine aminotransferase homolog1:
 
GRMZM2G139813
Zm00001d007462
Zm00001eb113920
Ren, RC et al. 2025. Maize Chlorotic Leaf Spot1 encodes a fumarylacetoacetate hydrolase essential for carbohydrate partitioning J Genet Genomics. :doi: 10.1016/j.jgg.2025.10.002.     Reference: October 11th, 2025
Gene Product: January 18th, 2022
Variation: January 26th, 2015
48 days agoss2 starch synthase3:
 
GRMZM5G897776
Zm00001d002256
Zm00001eb070230
Ren, RC et al. 2025. Maize Chlorotic Leaf Spot1 encodes a fumarylacetoacetate hydrolase essential for carbohydrate partitioning J Genet Genomics. :doi: 10.1016/j.jgg.2025.10.002.     Reference: October 11th, 2025
Gene Product: October 14th, 2016
48 days agonaat2 nicotianamine aminotransferase2:
 
GRMZM2G006480
Zm00001d048736
Zm00001eb165890
Ren, RC et al. 2025. Maize Chlorotic Leaf Spot1 encodes a fumarylacetoacetate hydrolase essential for carbohydrate partitioning J Genet Genomics. :doi: 10.1016/j.jgg.2025.10.002.     Reference: October 11th, 2025
Gene Product: January 18th, 2022
48 days agoIDP248  :
9.03
GRMZM2G154093
Zm00001d045610
Zm00001eb379510
Ren, RC et al. 2025. Maize Chlorotic Leaf Spot1 encodes a fumarylacetoacetate hydrolase essential for carbohydrate partitioning J Genet Genomics. :doi: 10.1016/j.jgg.2025.10.002.     Reference: October 11th, 2025
Variation: March 31st, 2005
48 days agocyp11 cytochrome P450 11:
3.09
GRMZM2G129860
Zm00001d044159
Zm00001eb159310
Zm00001eb159320
Sonia Torabi et al. 2025. Harnessing Brassinolide Signaling to Fortify Maize Against Nickel Toxicity: An Integrative Perspective on Stress Alleviation and Adaptive Responses Plant Stress. :doi: 10.1016/j.stress.2025.101080.     Reference: October 11th, 2025
Gene Product: September 26th, 2016
Variation: January 22nd, 2010
49 days agoamya5 alpha amylase5:
 
GRMZM2G074781
Zm00001d020351
Zm00001eb311730
Joseph N Amoah et al. 2025. Supplemental nitrogen induces robust physiological and molecular adaptations by enhancing carbon metabolism in maize. Protoplasma. :doi: 10.1007/s00709-025-02116-3.     Reference: October 10th, 2025
Gene Product: September 1st, 2003
49 days agosut1 sucrose transporter1:
1.02
GRMZM2G034302
Zm00001d027854
Zm00001eb005460
Joseph N Amoah et al. 2025. Supplemental nitrogen induces robust physiological and molecular adaptations by enhancing carbon metabolism in maize. Protoplasma. :doi: 10.1007/s00709-025-02116-3.     Reference: October 10th, 2025
Gene Product: September 14th, 2013
Variation: April 16th, 2013
49 days agosut4 sucrose transporter4:
5.09
GRMZM2G145107
Zm00001d018527
Zm00001eb259340
Joseph N Amoah et al. 2025. Supplemental nitrogen induces robust physiological and molecular adaptations by enhancing carbon metabolism in maize. Protoplasma. :doi: 10.1007/s00709-025-02116-3.     Reference: October 10th, 2025
Gene Product: September 14th, 2013
Variation: February 17th, 2017
49 days agostp20 sugar transport protein20:
 
GRMZM2G046700
Zm00001d032906
Zm00001eb047630
Joseph N Amoah et al. 2025. Supplemental nitrogen induces robust physiological and molecular adaptations by enhancing carbon metabolism in maize. Protoplasma. :doi: 10.1007/s00709-025-02116-3.     Reference: October 10th, 2025
Gene Product: January 2nd, 2023
49 days agosweet13a sugars will eventually be exported transporter13a:
10.03
GRMZM2G173669
Zm00001d023677
Zm00001eb408920
Joseph N Amoah et al. 2025. Supplemental nitrogen induces robust physiological and molecular adaptations by enhancing carbon metabolism in maize. Protoplasma. :doi: 10.1007/s00709-025-02116-3.     Reference: October 10th, 2025
Gene Product: November 4th, 2015
Variation: February 17th, 2018
49 days agoivr2 invertase2:
5.03
GRMZM2G089836
Zm00001d014947
Zm00001eb229460
Joseph N Amoah et al. 2025. Ammonium Supply Enhances Growth and Optimizes Carbon–Nitrogen Coordination by Modulating Carbohydrate Metabolism in Maize J Plant Physiol. :doi: 10.1016/j.jplph.2025.154607.     Reference: October 10th, 2025
Gene Product: June 12th, 2018
Variation: May 18th, 2012
50 days agocdj5 chaperone DNA J5:
 
GRMZM2G343149
Zm00001d026606
Zm00001eb433640
Dong, AY et al. 2025. ZmbZIP38 interacts with ZmDnaJ to regulate maize seedling drought tolerance through modulating ABA signaling, stomatal closure and root growth under stress. Plant Cell Rep. 44:234.     Reference: October 9th, 2025
Gene Product: September 1st, 2003
50 days agoprx121 peroxidase121:
 
Zm00001d021965
Zm00001eb325930
Dong, AY et al. 2025. ZmbZIP38 interacts with ZmDnaJ to regulate maize seedling drought tolerance through modulating ABA signaling, stomatal closure and root growth under stress. Plant Cell Rep. 44:234.     Reference: October 9th, 2025
Gene Product: January 20th, 2025
50 days agoprx27 peroxidase27:
 
GRMZM2G136042
Zm00001d005279
Zm00001eb095550
Liu, ST et al. 2025. Identification of candidate genes and proteins for tasseling stage drought tolerance through integrated transcriptomic and proteomic analysis approach in maize BMC Plant Biology. 25:1344.     Reference: October 9th, 2025
Gene Product: January 20th, 2025
50 days agoprx77 peroxidase77:
 
GRMZM2G042347
Zm00001d022453
Zm00001eb330580
Liu, ST et al. 2025. Identification of candidate genes and proteins for tasseling stage drought tolerance through integrated transcriptomic and proteomic analysis approach in maize BMC Plant Biology. 25:1344.     Reference: October 9th, 2025
Gene Product: January 20th, 2025
50 days agoccl28 coumarate-CoA ligase28:
 
   Qianhan Wei et al. 2025. Transactivation of Dek601 by the Opaque2–OHP2–EREB58–EREB177 module regulates kernel development in maize Plant Physiol. :doi: 10.1093/plphys/kiaf502.     Reference: October 9th, 2025
Gene Product: April 30th, 2025
50 days agogst2 glutathione S-transferase2:
10.03
GRMZM2G132093
Zm00001d024839
Zm00001eb418060
Su, WC et al. 2025. Multifaceted Mechanisms of Cyprosulfamide in Mitigating Mesosulfuron-Methyl Phytotoxicity in Maize Seedlings: GST Activation, Oxidative Stress Alleviation, and Target-Site Competition. :doi: 10.1021/acs.jafc.5c07590.     Reference: October 9th, 2025
Gene Product: September 1st, 2003
Variation: July 7th, 2010
50 days agocsu384  :
8.06
   Liu, ST et al. 2025. Identification of candidate genes and proteins for tasseling stage drought tolerance through integrated transcriptomic and proteomic analysis approach in maize BMC Plant Biology. 25:1344.     Reference: October 9th, 2025
Variation: September 1st, 2003
50 days agoprh47 protein phosphatase homolog47:
2.02
GRMZM2G111232
Zm00001d002369
Zm00001eb071240
Dong, AY et al. 2025. ZmbZIP38 interacts with ZmDnaJ to regulate maize seedling drought tolerance through modulating ABA signaling, stomatal closure and root growth under stress. Plant Cell Rep. 44:234.     Reference: October 9th, 2025
Gene Product: October 25th, 2021
50 days agopebp14 phosphatidylethanolamine-binding protein:
 
GRMZM2G373928
Zm00001d008939
Zm00001eb338650
Dong, AY et al. 2025. ZmbZIP38 interacts with ZmDnaJ to regulate maize seedling drought tolerance through modulating ABA signaling, stomatal closure and root growth under stress. Plant Cell Rep. 44:234.     Reference: October 9th, 2025
Gene Product: March 19th, 2024
Variation: December 15th, 2010
50 days agopebp15 phosphatidylethanolamine-binding protein15:
 
GRMZM2G051338
Zm00001d036242
Zm00001eb271180
Dong, AY et al. 2025. ZmbZIP38 interacts with ZmDnaJ to regulate maize seedling drought tolerance through modulating ABA signaling, stomatal closure and root growth under stress. Plant Cell Rep. 44:234.     Reference: October 9th, 2025
Gene Product: March 19th, 2024
Variation: December 15th, 2010
50 days agosaf1 safener induced1:
1.03
GRMZM2G042639
Zm00001d028693
Zm00001eb012930
Su, WC et al. 2025. Multifaceted Mechanisms of Cyprosulfamide in Mitigating Mesosulfuron-Methyl Phytotoxicity in Maize Seedlings: GST Activation, Oxidative Stress Alleviation, and Target-Site Competition. :doi: 10.1021/acs.jafc.5c07590.     Reference: October 9th, 2025
Gene Product: September 1st, 2003
Variation: September 1st, 2003
50 days agopx3 peroxidase3:
7.05 - 7.06
GRMZM2G427815
Zm00001d022457
Zm00001eb330540
Li, J et al. 2025. A CBL-interacting protein kinase ZmCIPK12 confers salt tolerance in maize. New Phytol. :doi: 10.1111/nph.70602.     Reference: October 9th, 2025
Gene Product: January 20th, 2025
Variation: August 11th, 2015
50 days agokin1 knotted1 induced1:
7.06
GRMZM2G158394
Zm00001d022630
Zm00001eb332050
Liu, ST et al. 2025. Identification of candidate genes and proteins for tasseling stage drought tolerance through integrated transcriptomic and proteomic analysis approach in maize BMC Plant Biology. 25:1344.     Reference: October 9th, 2025
Variation: August 1st, 2011
50 days agogst6 glutathione transferase6:
7.01
GRMZM2G129357
Zm00001d018809
Zm00001eb300120
Su, WC et al. 2025. Multifaceted Mechanisms of Cyprosulfamide in Mitigating Mesosulfuron-Methyl Phytotoxicity in Maize Seedlings: GST Activation, Oxidative Stress Alleviation, and Target-Site Competition. :doi: 10.1021/acs.jafc.5c07590.     Reference: October 9th, 2025
Gene Product: September 1st, 2003
Variation: July 22nd, 2010
50 days agogst7 glutathione transferase7:
3.05
GRMZM2G028556
Zm00001d042104
Zm00001eb141080
Su, WC et al. 2025. Multifaceted Mechanisms of Cyprosulfamide in Mitigating Mesosulfuron-Methyl Phytotoxicity in Maize Seedlings: GST Activation, Oxidative Stress Alleviation, and Target-Site Competition. :doi: 10.1021/acs.jafc.5c07590.     Reference: October 9th, 2025
Gene Product: September 1st, 2003
Variation: August 9th, 2010
50 days agoiaa38 Aux/IAA-transcription factor 38:
8.04
GRMZM2G035465
Zm00001d010411
Zm00001eb350370
Dong, AY et al. 2025. ZmbZIP38 interacts with ZmDnaJ to regulate maize seedling drought tolerance through modulating ABA signaling, stomatal closure and root growth under stress. Plant Cell Rep. 44:234.     Reference: October 9th, 2025
Variation: March 12th, 2022
50 days agosip1 stress-induced protein1:
7.04
GRMZM2G374971
Zm00001d021901
Zm00001eb325340
Liu, ST et al. 2025. Identification of candidate genes and proteins for tasseling stage drought tolerance through integrated transcriptomic and proteomic analysis approach in maize BMC Plant Biology. 25:1344.     Reference: October 9th, 2025
Gene Product: September 1st, 2003
Variation: August 18th, 2015
50 days agoe2f7 E2F-DP-transcription factor 27:
 
GRMZM2G378665
Zm00001d017986
Zm00001eb254070
Dowd, PF et al. 2019. Enhanced insect and fungal resistance of maize callus transgenically expressing a maize E2F regulatory gene Agri Gene. 12:100086.     Reference: October 9th, 2025
Gene Product: May 13th, 2024
50 days agobzip160 bZIP-transcription factor 160:
 
GRMZM2G444748
Zm00001d015153
Zm00001eb231360
Liu, ST et al. 2025. Identification of candidate genes and proteins for tasseling stage drought tolerance through integrated transcriptomic and proteomic analysis approach in maize BMC Plant Biology. 25:1344.   AT1G75390 (TAIR)
LOC_Os02g03960 (MSU/TIGR)
Reference: October 9th, 2025
Gene Product: August 21st, 2018
Variation: June 23rd, 2021
50 days agogst8 glutathione transferase8:
 
GRMZM2G156877
Zm00001d043344
Zm00001eb152160
Su, WC et al. 2025. Multifaceted Mechanisms of Cyprosulfamide in Mitigating Mesosulfuron-Methyl Phytotoxicity in Maize Seedlings: GST Activation, Oxidative Stress Alleviation, and Target-Site Competition. :doi: 10.1021/acs.jafc.5c07590.     Reference: October 9th, 2025
Gene Product: September 1st, 2003
50 days agogst21 glutathione transferase21:
3.05
GRMZM2G428168
Zm00001d042096
Zm00001eb141010
Su, WC et al. 2025. Multifaceted Mechanisms of Cyprosulfamide in Mitigating Mesosulfuron-Methyl Phytotoxicity in Maize Seedlings: GST Activation, Oxidative Stress Alleviation, and Target-Site Competition. :doi: 10.1021/acs.jafc.5c07590.     Reference: October 9th, 2025
Gene Product: September 1st, 2003
Variation: August 18th, 2010
50 days agogst22 glutathione transferase22:
10.04
GRMZM2G330635
Zm00001d024963
Zm00001eb419190
Su, WC et al. 2025. Multifaceted Mechanisms of Cyprosulfamide in Mitigating Mesosulfuron-Methyl Phytotoxicity in Maize Seedlings: GST Activation, Oxidative Stress Alleviation, and Target-Site Competition. :doi: 10.1021/acs.jafc.5c07590.     Reference: October 9th, 2025
Gene Product: September 1st, 2003
Variation: August 18th, 2010
50 days agogst25 glutathione transferase25:
9.08
GRMZM2G161905
Zm00001d048558
Zm00001eb404560
Su, WC et al. 2025. Multifaceted Mechanisms of Cyprosulfamide in Mitigating Mesosulfuron-Methyl Phytotoxicity in Maize Seedlings: GST Activation, Oxidative Stress Alleviation, and Target-Site Competition. :doi: 10.1021/acs.jafc.5c07590.     Reference: October 9th, 2025
Gene Product: September 1st, 2003
50 days agogst30 glutathione transferase30:
1.04
GRMZM2G044383
Zm00001d029708
Zm00001eb021720
Su, WC et al. 2025. Multifaceted Mechanisms of Cyprosulfamide in Mitigating Mesosulfuron-Methyl Phytotoxicity in Maize Seedlings: GST Activation, Oxidative Stress Alleviation, and Target-Site Competition. :doi: 10.1021/acs.jafc.5c07590.     Reference: October 9th, 2025
Gene Product: September 1st, 2003
Variation: August 21st, 2010
50 days agogst31 glutathione transferase31:
1.01
GRMZM2G475059
Zm00001d027557
Zm00001eb002950
Su, WC et al. 2025. Multifaceted Mechanisms of Cyprosulfamide in Mitigating Mesosulfuron-Methyl Phytotoxicity in Maize Seedlings: GST Activation, Oxidative Stress Alleviation, and Target-Site Competition. :doi: 10.1021/acs.jafc.5c07590.     Reference: October 9th, 2025
Gene Product: September 1st, 2003
Variation: August 21st, 2010
50 days agogst37 glutathione transferase37:
7.04
GRMZM2G178079
Zm00001d029704
Zm00001eb021650
Su, WC et al. 2025. Multifaceted Mechanisms of Cyprosulfamide in Mitigating Mesosulfuron-Methyl Phytotoxicity in Maize Seedlings: GST Activation, Oxidative Stress Alleviation, and Target-Site Competition. :doi: 10.1021/acs.jafc.5c07590.     Reference: October 9th, 2025
Gene Product: September 1st, 2003
50 days agogst39 glutathione transferase39:
1.05
GRMZM2G028821
Zm00001d029706
Zm00001eb021690
Su, WC et al. 2025. Multifaceted Mechanisms of Cyprosulfamide in Mitigating Mesosulfuron-Methyl Phytotoxicity in Maize Seedlings: GST Activation, Oxidative Stress Alleviation, and Target-Site Competition. :doi: 10.1021/acs.jafc.5c07590.     Reference: October 9th, 2025
Gene Product: September 1st, 2003
50 days agopsaB (cp) psaB:
 
   Liu, ST et al. 2025. Identification of candidate genes and proteins for tasseling stage drought tolerance through integrated transcriptomic and proteomic analysis approach in maize BMC Plant Biology. 25:1344.     Reference: October 9th, 2025
Gene Product: September 1st, 2003
50 days agokrp16 kinesin-related protein16:
8.09
GRMZM2G124883
Zm00001d012763
Zm00001eb371130
Dowd, PF et al. 2019. Enhanced insect and fungal resistance of maize callus transgenically expressing a maize E2F regulatory gene Agri Gene. 12:100086.     Reference: October 9th, 2025
Gene Product: September 18th, 2023
Variation: January 4th, 2013
50 days agopsbA (cp)  :
 
   Liu, ST et al. 2025. Identification of candidate genes and proteins for tasseling stage drought tolerance through integrated transcriptomic and proteomic analysis approach in maize BMC Plant Biology. 25:1344.     Reference: October 9th, 2025
Gene Product: September 1st, 2003
50 days agosmk2 small kernel2:
4.10
GRMZM2G023528
Zm00001d053981
Zm00001eb208970
Qianhan Wei et al. 2025. Transactivation of Dek601 by the Opaque2–OHP2–EREB58–EREB177 module regulates kernel development in maize Plant Physiol. :doi: 10.1093/plphys/kiaf502.     Reference: October 9th, 2025
Gene Product: April 14th, 2017
Variation: April 14th, 2017
50 days agoAY104386  :
2.05
GRMZM2G050131
Zm00001d004344
Zm00001eb087980
Liu, ST et al. 2025. Identification of candidate genes and proteins for tasseling stage drought tolerance through integrated transcriptomic and proteomic analysis approach in maize BMC Plant Biology. 25:1344.     Reference: October 9th, 2025
Variation: June 18th, 2021
50 days agomkkk7 MAP kinase kinase kinase7:
2.10
GRMZM2G378479
Zm00001d007965
Zm00001eb117980
Liu, ST et al. 2025. Identification of candidate genes and proteins for tasseling stage drought tolerance through integrated transcriptomic and proteomic analysis approach in maize BMC Plant Biology. 25:1344.     Reference: October 9th, 2025
Gene Product: March 14th, 2022
50 days agodow1 disorganized wall 1:
3.03
GRMZM2G314898
Zm00001d039535
Zm00001eb121650
Qianhan Wei et al. 2025. Transactivation of Dek601 by the Opaque2–OHP2–EREB58–EREB177 module regulates kernel development in maize Plant Physiol. :doi: 10.1093/plphys/kiaf502.     Reference: October 9th, 2025
Gene Product: February 28th, 2020
Variation: October 9th, 2025
50 days agode18 defective18:
10.03
GRMZM2G091819
Zm00001d023718
Zm00001eb409250
Qianhan Wei et al. 2025. Transactivation of Dek601 by the Opaque2–OHP2–EREB58–EREB177 module regulates kernel development in maize Plant Physiol. :doi: 10.1093/plphys/kiaf502.     Reference: October 9th, 2025
Gene Product: June 18th, 2018
Variation: January 21st, 2016
50 days agotrpp1 trehalose-6-phosphate phosphatase1:
 
GRMZM2G347280
Zm00001d032298
Zm00001eb042260
Liu, ST et al. 2025. Identification of candidate genes and proteins for tasseling stage drought tolerance through integrated transcriptomic and proteomic analysis approach in maize BMC Plant Biology. 25:1344.     Reference: October 9th, 2025
Gene Product: October 3rd, 2020
50 days agofns1 flavone synthase1:
 
GRMZM2G167336
Zm00001d047452
Zm00001eb394430
Li, J et al. 2025. A CBL-interacting protein kinase ZmCIPK12 confers salt tolerance in maize. New Phytol. :doi: 10.1111/nph.70602.     Reference: October 9th, 2025
Gene Product: September 20th, 2017
50 days agocyc9 cyclin9:
 
GRMZM2G017081
Zm00001d014756
Zm00001eb227730
Dowd, PF et al. 2019. Enhanced insect and fungal resistance of maize callus transgenically expressing a maize E2F regulatory gene Agri Gene. 12:100086.     Reference: October 9th, 2025
Gene Product: February 17th, 2025
Variation: June 6th, 2016
50 days agohsp22 heat shock protein22:
4.07
GRMZM2G007729
Zm00001d052194
Zm00001eb193940
Liu, ST et al. 2025. Identification of candidate genes and proteins for tasseling stage drought tolerance through integrated transcriptomic and proteomic analysis approach in maize BMC Plant Biology. 25:1344.     Reference: October 9th, 2025
Gene Product: January 15th, 2019
50 days agodef3 defensin-like protein3:
 
GRMZM2G149869
Zm00001d018254
Zm00001eb256640
Dowd, PF et al. 2019. Enhanced insect and fungal resistance of maize callus transgenically expressing a maize E2F regulatory gene Agri Gene. 12:100086.     Reference: October 9th, 2025
Gene Product: December 12th, 2022
Variation: July 25th, 2018
50 days agopme41 pectin methylesterase41:
 
GRMZM2G037411
Zm00001d022104
Zm00001eb327190
Li, J et al. 2025. A CBL-interacting protein kinase ZmCIPK12 confers salt tolerance in maize. New Phytol. :doi: 10.1111/nph.70602.     Reference: October 9th, 2025
Gene Product: September 10th, 2018
50 days agoprp8 pathogenesis-related protein8:
 
GRMZM2G456997
Zm00001d018734
Zm00001eb299340
Liu, ST et al. 2025. Identification of candidate genes and proteins for tasseling stage drought tolerance through integrated transcriptomic and proteomic analysis approach in maize BMC Plant Biology. 25:1344.     Reference: October 9th, 2025
Gene Product: December 12th, 2022
50 days agoskus2 skewed root growth similar2:
 
GRMZM2G068682
Zm00001d012524
Zm00001eb369040
Liu, ST et al. 2025. Identification of candidate genes and proteins for tasseling stage drought tolerance through integrated transcriptomic and proteomic analysis approach in maize BMC Plant Biology. 25:1344.     Reference: October 9th, 2025
Gene Product: October 9th, 2020
50 days agocipk42 calcineurin B-like-interacting protein kinase42:
 
GRMZM2G011919
Zm00001d052544
Zm00001eb197050
Li, J et al. 2025. A CBL-interacting protein kinase ZmCIPK12 confers salt tolerance in maize. New Phytol. :doi: 10.1111/nph.70602.     Reference: October 9th, 2025
Gene Product: August 25th, 2018
Variation: October 17th, 2020
50 days agocipk12 calcineurin B-like-interacting protein kinase12:
 
GRMZM2G176519
Zm00001d038690
Zm00001eb292760
Li, J et al. 2025. A CBL-interacting protein kinase ZmCIPK12 confers salt tolerance in maize. New Phytol. :doi: 10.1111/nph.70602.     Reference: October 9th, 2025
Gene Product: August 25th, 2018
50 days agofomt4 flavonoid O-methyltransferase 4:
 
GRMZM2G423331
Zm00001d048087
Zm00001eb400190
Li, J et al. 2025. A CBL-interacting protein kinase ZmCIPK12 confers salt tolerance in maize. New Phytol. :doi: 10.1111/nph.70602.     Reference: October 9th, 2025
Gene Product: February 16th, 2011
50 days agogst61 glutathione S-transferase61:
 
GRMZM2G162486
Zm00001d047765
Zm00001eb397280
Su, WC et al. 2025. Multifaceted Mechanisms of Cyprosulfamide in Mitigating Mesosulfuron-Methyl Phytotoxicity in Maize Seedlings: GST Activation, Oxidative Stress Alleviation, and Target-Site Competition. :doi: 10.1021/acs.jafc.5c07590.     Reference: October 9th, 2025
Gene Product: September 1st, 2003
50 days agoZm00001d016471  :
 
GRMZM2G028677
Zm00001d016471
Zm00001eb240910
Li, J et al. 2025. A CBL-interacting protein kinase ZmCIPK12 confers salt tolerance in maize. New Phytol. :doi: 10.1111/nph.70602.   AT2G30490 (TAIR) Reference: October 9th, 2025
Gene Product: December 29th, 2022
50 days agoIDP111  :
9.01
GRMZM2G480850
Zm00001d044925
Zm00001eb373150
Liu, ST et al. 2025. Identification of candidate genes and proteins for tasseling stage drought tolerance through integrated transcriptomic and proteomic analysis approach in maize BMC Plant Biology. 25:1344.     Reference: October 9th, 2025
Variation: March 31st, 2005
50 days agoprx24 peroxidase24:
4.09
GRMZM2G117706
Zm00001d053554
Zm00001eb204960
Liu, ST et al. 2025. Identification of candidate genes and proteins for tasseling stage drought tolerance through integrated transcriptomic and proteomic analysis approach in maize BMC Plant Biology. 25:1344.     Reference: October 9th, 2025
Gene Product: January 20th, 2025
50 days agopsei9 cystatin9:
4.03
AC196110.4_FG004
Zm00001d049111
Zm00001eb168980
Liu, ST et al. 2025. Identification of candidate genes and proteins for tasseling stage drought tolerance through integrated transcriptomic and proteomic analysis approach in maize BMC Plant Biology. 25:1344.     Reference: October 9th, 2025
Gene Product: April 21st, 2008
Variation: April 21st, 2008
50 days agoprx51 peroxidase51:
5.03
GRMZM2G080183
Zm00001d014608
Zm00001eb226380
Liu, ST et al. 2025. Identification of candidate genes and proteins for tasseling stage drought tolerance through integrated transcriptomic and proteomic analysis approach in maize BMC Plant Biology. 25:1344.     Reference: October 9th, 2025
Gene Product: January 20th, 2025
51 days agosbt35 subtilisin35:
 
GRMZM2G145589
Zm00001d037651
Zm00001eb283230
Zeng, HX et al. 2025. The ZmFKF1b-ZmDi19-5 Regulatory Module Coordinates Drought Tolerance and Flowering Time in Maize. Plant Biotechnol J.     Reference: October 8th, 2025
Gene Product: November 11th, 2016
51 days agoLOC100382858  :
 
   Zeng, HX et al. 2025. The ZmFKF1b-ZmDi19-5 Regulatory Module Coordinates Drought Tolerance and Flowering Time in Maize. Plant Biotechnol J.     Reference: October 8th, 2025
Gene Product: September 1st, 2003
51 days agoZm00001d037397  :
 
   Zeng, HX et al. 2025. The ZmFKF1b-ZmDi19-5 Regulatory Module Coordinates Drought Tolerance and Flowering Time in Maize. Plant Biotechnol J.     Reference: October 8th, 2025
Gene Product: January 27th, 2025
51 days agopba1 PBA1 homolog1:
1.01
GRMZM2G177508
Zm00001d027456
Zm00001eb001950
Zeng, HX et al. 2025. The ZmFKF1b-ZmDi19-5 Regulatory Module Coordinates Drought Tolerance and Flowering Time in Maize. Plant Biotechnol J.     Reference: October 8th, 2025
Variation: September 25th, 2007
51 days agobr1 brachytic1:
1.07
GRMZM2G428555
Zm00001d032194
Zm00001eb041450
Char, SN et al. 2025. CRISPR-Cas9 Toolkit for Maize: Vector Design, Construction, and Analysis of Edited Plants. Cold Spring Harb Protoc. :doi: 10.1101/pdb.prot108659.     Reference: October 8th, 2025
Gene Product: July 25th, 2017
Variation: September 22nd, 2023
51 days agohsp70-17 heat shock protein70-17:
5.01
GRMZM2G111475
Zm00001d013507
Zm00001eb217010
Zeng, HX et al. 2025. The ZmFKF1b-ZmDi19-5 Regulatory Module Coordinates Drought Tolerance and Flowering Time in Maize. Plant Biotechnol J.     Reference: October 8th, 2025
Gene Product: September 1st, 2003
51 days agotom7 transporter of mugineic acid7:
2.05
GRMZM2G115658
Zm00001d005002
Zm00001eb093440
Erstelle A Pasion-Uy et al. 2025. Sustained cereal bowl amidst global warming. Trends Plant Sci. :doi: 10.1016/j.tplants.2025.08.021..     Reference: October 8th, 2025
Gene Product: September 23rd, 2016
Variation: September 1st, 2003
51 days agompk2 MAP kinase2:
9.02
GRMZM2G020216
Zm00001d045310
Zm00001eb376640
Zeng, HX et al. 2025. The ZmFKF1b-ZmDi19-5 Regulatory Module Coordinates Drought Tolerance and Flowering Time in Maize. Plant Biotechnol J.     Reference: October 8th, 2025
Gene Product: July 12th, 2013
Variation: January 18th, 2013
51 days agosalt1 SalT homolog1:
10.02
GRMZM2G142891
Zm00001d023516
Zm00001eb407630
Zeng, HX et al. 2025. The ZmFKF1b-ZmDi19-5 Regulatory Module Coordinates Drought Tolerance and Flowering Time in Maize. Plant Biotechnol J.     Reference: October 8th, 2025
Gene Product: September 1st, 2003
Variation: January 9th, 2018
51 days agoubi1 ubiquitin1:
 
GRMZM2G409726
Zm00001d015327
Yang, B et al. 2025. CRISPR-Cas-Directed Genome Editing in Maize. Cold Spring Harb Protoc. :doi: 10.1101/pdb.top108448.     Reference: October 8th, 2025
Gene Product: September 1st, 2003
Variation: November 20th, 2014
51 days agohsftf1 HSF-transcription factor 1:
 
GRMZM2G002131
Zm00001d005888
Zm00001eb100770
Zeng, HX et al. 2025. The ZmFKF1b-ZmDi19-5 Regulatory Module Coordinates Drought Tolerance and Flowering Time in Maize. Plant Biotechnol J.     Reference: October 8th, 2025
Gene Product: May 15th, 2020
51 days agobhlh68 bHLH-transcription factor 68:
 
GRMZM2G115960
Zm00001d040536
Zm00001eb129520
Erstelle A Pasion-Uy et al. 2025. Sustained cereal bowl amidst global warming. Trends Plant Sci. :doi: 10.1016/j.tplants.2025.08.021..     Reference: October 8th, 2025
Variation: August 5th, 2022
51 days agoglp1 germin-like protein1:
6.05
GRMZM2G064096
Zm00001d037513
Zm00001eb282040
Zeng, HX et al. 2025. The ZmFKF1b-ZmDi19-5 Regulatory Module Coordinates Drought Tolerance and Flowering Time in Maize. Plant Biotechnol J.     Reference: October 8th, 2025
Gene Product: December 24th, 2015
Variation: August 25th, 2018
51 days agolhcb4 light harvesting complex a/b protein4:
5.07
GRMZM2G103101
Zm00001d018157
Zm00001eb255850
Zeng, HX et al. 2025. The ZmFKF1b-ZmDi19-5 Regulatory Module Coordinates Drought Tolerance and Flowering Time in Maize. Plant Biotechnol J.     Reference: October 8th, 2025
Gene Product: January 8th, 2005
Variation: September 1st, 2003
51 days agoadc2 arginine decarboxylase2:
4.06
GRMZM2G374302
Zm00001d051194
Zm00001eb185400
Zeng, HX et al. 2025. The ZmFKF1b-ZmDi19-5 Regulatory Module Coordinates Drought Tolerance and Flowering Time in Maize. Plant Biotechnol J.     Reference: October 8th, 2025
Gene Product: August 18th, 2020
Variation: January 22nd, 2021
51 days agolhy1 late hypocotyl elongation protein ortholog1:
10.03
GRMZM2G474769
Zm00001d024546
Zm00001eb415760
Zm00001eb415770
Muhammad Mujahid et al. 2025. Integration of Light and Circadian Signaling in Plant Gene Regulatory Networks: Implications for Photomorphogenesis and Stress Adaptation Biology. 14:1375.     Reference: October 8th, 2025
Gene Product: July 31st, 2016
Variation: December 28th, 2016
51 days agocca1 circadian clock associated1:
 
GRMZM2G014902
Zm00001d049543
Zm00001eb172450
Muhammad Mujahid et al. 2025. Integration of Light and Circadian Signaling in Plant Gene Regulatory Networks: Implications for Photomorphogenesis and Stress Adaptation Biology. 14:1375.     Reference: October 8th, 2025
Gene Product: July 31st, 2016
Variation: March 18th, 2011
51 days agoatp4 ATP synthase4:
 
GRMZM2G128665
Zm00001d028221
Zm00001eb008730
Zeng, HX et al. 2025. The ZmFKF1b-ZmDi19-5 Regulatory Module Coordinates Drought Tolerance and Flowering Time in Maize. Plant Biotechnol J.     Reference: October 8th, 2025
Gene Product: December 30th, 2015
Variation: June 15th, 2013
51 days agosweet13b sugars will eventually be exported transporter13b:
 
GRMZM2G021706
Zm00001d023673
Zm00001eb408900
Char, SN et al. 2025. CRISPR-Cas9 Toolkit for Maize: Vector Design, Construction, and Analysis of Edited Plants. Cold Spring Harb Protoc. :doi: 10.1101/pdb.prot108659.     Reference: October 8th, 2025
Gene Product: November 4th, 2015
Variation: February 17th, 2018
51 days agosweet13c sugars will eventually be exported transporter13c:
 
GRMZM2G179349
Zm00001d041067
Zm00001eb133100
Char, SN et al. 2025. CRISPR-Cas9 Toolkit for Maize: Vector Design, Construction, and Analysis of Edited Plants. Cold Spring Harb Protoc. :doi: 10.1101/pdb.prot108659.     Reference: October 8th, 2025
Gene Product: November 4th, 2015
Variation: February 17th, 2018
51 days agofkf2 flavin-binding kelch repeat f-box2:
 
GRMZM2G106363
Zm00001d053091
Zm00001eb201580
Zeng, HX et al. 2025. The ZmFKF1b-ZmDi19-5 Regulatory Module Coordinates Drought Tolerance and Flowering Time in Maize. Plant Biotechnol J.   AT1G68050 (TAIR) Reference: October 8th, 2025
Gene Product: April 27th, 2022
Variation: March 19th, 2024
51 days agogpx10 glycerophosphodiester phosphodiesterase10:
 
GRMZM2G018416
Zm00001d050917
Zm00001eb183390
Zeng, HX et al. 2025. The ZmFKF1b-ZmDi19-5 Regulatory Module Coordinates Drought Tolerance and Flowering Time in Maize. Plant Biotechnol J.     Reference: October 8th, 2025
Gene Product: June 24th, 2020
51 days agodin5 drought-induced protein 19 homolog5:
 
GRMZM2G160273
Zm00001d016442
Zm00001eb240660
Zeng, HX et al. 2025. The ZmFKF1b-ZmDi19-5 Regulatory Module Coordinates Drought Tolerance and Flowering Time in Maize. Plant Biotechnol J.     Reference: October 8th, 2025
Gene Product: July 4th, 2022
51 days agooxmt1 oxo-glutarate/malate transporter1:
 
GRMZM2G383088
Zm00001d023929
Zm00001eb410930
Zeng, HX et al. 2025. The ZmFKF1b-ZmDi19-5 Regulatory Module Coordinates Drought Tolerance and Flowering Time in Maize. Plant Biotechnol J.     Reference: October 8th, 2025
Gene Product: August 18th, 2014
52 days agocry9 cryptochrome9:
 
GRMZM2G043955
Zm00001d047501
Zm00001eb394950
Runyi Chen et al. 2025. Genome-Wide Characterization of Zmcry Genes: Unveiling Stress Response Mechanisms and the Role of Zmcryphr2 in Salinity Tolerance. BMC Plant Biology 25: 1329     Reference: October 7th, 2025
Gene Product: January 29th, 2025
52 days agocry8 cryptochrome8:
 
GRMZM2G103897
Zm00001d046935
Zm00001eb389640
Runyi Chen et al. 2025. Genome-Wide Characterization of Zmcry Genes: Unveiling Stress Response Mechanisms and the Role of Zmcryphr2 in Salinity Tolerance. BMC Plant Biology 25: 1329     Reference: October 7th, 2025
Gene Product: January 29th, 2025
52 days agoprx9 peroxidase9:
 
GRMZM2G116902
Zm00001d028349
Zm00001eb009950
Che, XY et al. 2025. Lipoxygenase ZmLOX3 Enhances Salt Tolerance of Maize Under the Regulation of ZmNAC032. J Agric Food Chem. :doi: 10.1021/acs.jafc.5c02349.     Reference: October 7th, 2025
Gene Product: January 20th, 2025
52 days agocry6 cryptochrome6:
 
   Runyi Chen et al. 2025. Genome-Wide Characterization of Zmcry Genes: Unveiling Stress Response Mechanisms and the Role of Zmcryphr2 in Salinity Tolerance. BMC Plant Biology 25: 1329     Reference: October 7th, 2025
Gene Product: January 29th, 2025
52 days agocry5 cryptochrome5:
 
   Runyi Chen et al. 2025. Genome-Wide Characterization of Zmcry Genes: Unveiling Stress Response Mechanisms and the Role of Zmcryphr2 in Salinity Tolerance. BMC Plant Biology 25: 1329     Reference: October 7th, 2025
Gene Product: January 29th, 2025
52 days agocry3 cryptochrome3:
9.03
GRMZM2G172152
Zm00001d045944
Zm00001eb382070
Runyi Chen et al. 2025. Genome-Wide Characterization of Zmcry Genes: Unveiling Stress Response Mechanisms and the Role of Zmcryphr2 in Salinity Tolerance. BMC Plant Biology 25: 1329     Reference: October 7th, 2025
Gene Product: January 29th, 2025
Variation: September 25th, 2007
52 days agocry2 cryptochrome2:
2.04
GRMZM2G049549
Zm00001d003477
Zm00001eb081200
Runyi Chen et al. 2025. Genome-Wide Characterization of Zmcry Genes: Unveiling Stress Response Mechanisms and the Role of Zmcryphr2 in Salinity Tolerance. BMC Plant Biology 25: 1329     Reference: October 7th, 2025
Gene Product: January 29th, 2025
Variation: November 6th, 2023
52 days agotrm1 thioredoxin M1:
10.03
GRMZM2G181258
Zm00001d023707
Zm00001eb409190
Che, XY et al. 2025. Lipoxygenase ZmLOX3 Enhances Salt Tolerance of Maize Under the Regulation of ZmNAC032. J Agric Food Chem. :doi: 10.1021/acs.jafc.5c02349.     Reference: October 7th, 2025
Gene Product: September 1st, 2003
Variation: October 15th, 2015
52 days agolox3 lipoxygenase3:
3.06
GRMZM2G109130
Zm00001d033623
Zm00001eb054040
Che, XY et al. 2025. Lipoxygenase ZmLOX3 Enhances Salt Tolerance of Maize Under the Regulation of ZmNAC032. J Agric Food Chem. :doi: 10.1021/acs.jafc.5c02349.     Reference: October 7th, 2025
Gene Product: January 3rd, 2018
Variation: November 16th, 2020
52 days agocry4 cryptochrome4:
4.05
GRMZM2G104262
Zm00001d050850
Zm00001eb182820
Runyi Chen et al. 2025. Genome-Wide Characterization of Zmcry Genes: Unveiling Stress Response Mechanisms and the Role of Zmcryphr2 in Salinity Tolerance. BMC Plant Biology 25: 1329     Reference: October 7th, 2025
Gene Product: January 29th, 2025
52 days agoubp2 ubiquitin-specific protease2:
1.02
GRMZM2G376074
Zm00001eb008340
Tao Dai et al. 2025. A multi-parent population approach to reveal the genetic basis of plant height in maize BMC Plant Biology. 25:1321.     Reference: October 7th, 2025
Gene Product: May 16th, 2024
52 days agoaoc2 allene oxide cyclase 2:
9.04
GRMZM2G415793
Zm00001d047340
Zm00001eb393530
Che, XY et al. 2025. Lipoxygenase ZmLOX3 Enhances Salt Tolerance of Maize Under the Regulation of ZmNAC032. J Agric Food Chem. :doi: 10.1021/acs.jafc.5c02349.     Reference: October 7th, 2025
Gene Product: November 29th, 2005
Variation: May 10th, 2025
52 days agocat3 catalase3:
4.11
GRMZM2G079348
Zm00001d054044
Zm00001eb209570
Che, XY et al. 2025. Lipoxygenase ZmLOX3 Enhances Salt Tolerance of Maize Under the Regulation of ZmNAC032. J Agric Food Chem. :doi: 10.1021/acs.jafc.5c02349.     Reference: October 7th, 2025
Gene Product: September 1st, 2003
Variation: March 2nd, 2007
52 days agoclt1 clumped tassel1:
8.06 - 8.06
GRMZM2G017305
Zm00001d011611
Zm00001eb360490
Stephanie E Martinez et al. 2025. KATANIN promotes cell elongation and division to generate proper cell numbers in maize organs bioRxiv preprint.     Reference: October 7th, 2025
Gene Product: October 15th, 2019
Variation: October 16th, 2019
52 days agots1 tassel seed1:
2.04 - 2.05
GRMZM2G104843
Zm00001d003533
Zm00001eb081610
Che, XY et al. 2025. Lipoxygenase ZmLOX3 Enhances Salt Tolerance of Maize Under the Regulation of ZmNAC032. J Agric Food Chem. :doi: 10.1021/acs.jafc.5c02349.     Reference: October 7th, 2025
Gene Product: January 3rd, 2018
Variation: September 5th, 2019
52 days agoubi2 ubiquitin2:
4.09
GRMZM2G419891
Zm00001d053838
Runyi Chen et al. 2025. Genome-Wide Characterization of Zmcry Genes: Unveiling Stress Response Mechanisms and the Role of Zmcryphr2 in Salinity Tolerance. BMC Plant Biology 25: 1329     Reference: October 7th, 2025
Gene Product: September 1st, 2003
Variation: November 18th, 2014
52 days agohdac9 histone deacetylase9:
 
GRMZM2G057044
Zm00001d042433
Zm00001eb143960
Che, XY et al. 2025. Lipoxygenase ZmLOX3 Enhances Salt Tolerance of Maize Under the Regulation of ZmNAC032. J Agric Food Chem. :doi: 10.1021/acs.jafc.5c02349.     Reference: October 7th, 2025
Gene Product: February 12th, 2020
Variation: September 1st, 2003
52 days agogrftf3 GRF-transcription factor 3:
 
GRMZM2G096709
Zm00001d021362
Zm00001eb320200
Tao Dai et al. 2025. A multi-parent population approach to reveal the genetic basis of plant height in maize BMC Plant Biology. 25:1321.     Reference: October 7th, 2025
Variation: September 10th, 2024
52 days agozim16 ZIM-transcription factor 16:
 
GRMZM2G445634
Zm00001d027901
Zm00001eb006000
Che, XY et al. 2025. Lipoxygenase ZmLOX3 Enhances Salt Tolerance of Maize Under the Regulation of ZmNAC032. J Agric Food Chem. :doi: 10.1021/acs.jafc.5c02349.     Reference: October 7th, 2025
Gene Product: February 24th, 2021
52 days agozim27 ZIM-transcription factor 27:
 
GRMZM5G838098
Zm00001d027900
Zm00001eb005990
Che, XY et al. 2025. Lipoxygenase ZmLOX3 Enhances Salt Tolerance of Maize Under the Regulation of ZmNAC032. J Agric Food Chem. :doi: 10.1021/acs.jafc.5c02349.     Reference: October 7th, 2025
Gene Product: February 24th, 2021
52 days agoumc1734  :
1.05
GRMZM2G114667
Zm00001d029918
Zm00001eb023500
Tao Dai et al. 2025. A multi-parent population approach to reveal the genetic basis of plant height in maize BMC Plant Biology. 25:1321.     Reference: October 7th, 2025
Variation: September 1st, 2003
52 days agocax1 calcium exchanger1:
4.08
GRMZM5G809587
Zm00001d009763
Zm00001eb345450
Che, XY et al. 2025. Lipoxygenase ZmLOX3 Enhances Salt Tolerance of Maize Under the Regulation of ZmNAC032. J Agric Food Chem. :doi: 10.1021/acs.jafc.5c02349.     Reference: October 7th, 2025
Variation: September 21st, 2012
52 days agoprx66 peroxidase66:
6.06
GRMZM2G089895
Zm00001d038599
Zm00001eb291860
Che, XY et al. 2025. Lipoxygenase ZmLOX3 Enhances Salt Tolerance of Maize Under the Regulation of ZmNAC032. J Agric Food Chem. :doi: 10.1021/acs.jafc.5c02349.     Reference: October 7th, 2025
Gene Product: January 20th, 2025
52 days agoech1 enoyl-CoA hydratase1:
8.03
GRMZM2G132903
Zm00001d009182
Zm00001eb340720
Che, XY et al. 2025. Lipoxygenase ZmLOX3 Enhances Salt Tolerance of Maize Under the Regulation of ZmNAC032. J Agric Food Chem. :doi: 10.1021/acs.jafc.5c02349.     Reference: October 7th, 2025
Gene Product: September 1st, 2003
Variation: February 15th, 2014
52 days agocipk10 calcineurin B-like-interacting protein kinase10:
1.04
GRMZM2G044038
Zm00001d029075
Zm00001eb016180
Che, XY et al. 2025. Lipoxygenase ZmLOX3 Enhances Salt Tolerance of Maize Under the Regulation of ZmNAC032. J Agric Food Chem. :doi: 10.1021/acs.jafc.5c02349.     Reference: October 7th, 2025
Gene Product: August 25th, 2018
52 days agohak8 potassium high-affinity transporter8:
1.04
GRMZM2G173387
Zm00001d029072
Zm00001eb016160
Che, XY et al. 2025. Lipoxygenase ZmLOX3 Enhances Salt Tolerance of Maize Under the Regulation of ZmNAC032. J Agric Food Chem. :doi: 10.1021/acs.jafc.5c02349.     Reference: October 7th, 2025
Gene Product: March 12th, 2020
52 days agocax3 calcium exchanger3:
3.09
GRMZM2G011592
Zm00001d044533
Zm00001eb162620
Che, XY et al. 2025. Lipoxygenase ZmLOX3 Enhances Salt Tolerance of Maize Under the Regulation of ZmNAC032. J Agric Food Chem. :doi: 10.1021/acs.jafc.5c02349.     Reference: October 7th, 2025
Variation: July 7th, 2017
52 days agoopr5 12-oxo-phytodienoic acid reductase5:
2.04
GRMZM2G087192
Zm00001d003584
Zm00001eb082050
Che, XY et al. 2025. Lipoxygenase ZmLOX3 Enhances Salt Tolerance of Maize Under the Regulation of ZmNAC032. J Agric Food Chem. :doi: 10.1021/acs.jafc.5c02349.     Reference: October 7th, 2025
Gene Product: September 3rd, 2010
Variation: July 21st, 2008
52 days agoopr6 12-oxo-phytodienoic acid reductase6:
3.04
GRMZM2G068947
Zm00001d040842
Zm00001eb131870
Che, XY et al. 2025. Lipoxygenase ZmLOX3 Enhances Salt Tolerance of Maize Under the Regulation of ZmNAC032. J Agric Food Chem. :doi: 10.1021/acs.jafc.5c02349.     Reference: October 7th, 2025
Gene Product: September 3rd, 2010
Variation: November 5th, 2010
52 days agoopr7 12-oxo-phytodienoic acid reductase7:
 
GRMZM2G148281
Zm00001d032049
Zm00001eb040310
Che, XY et al. 2025. Lipoxygenase ZmLOX3 Enhances Salt Tolerance of Maize Under the Regulation of ZmNAC032. J Agric Food Chem. :doi: 10.1021/acs.jafc.5c02349.     Reference: October 7th, 2025
Gene Product: September 3rd, 2010
Variation: December 16th, 2019
52 days agolox4 lipoxygenase4:
1.09
GRMZM2G109056
Zm00001d033624
Zm00001eb054050
Che, XY et al. 2025. Lipoxygenase ZmLOX3 Enhances Salt Tolerance of Maize Under the Regulation of ZmNAC032. J Agric Food Chem. :doi: 10.1021/acs.jafc.5c02349.     Reference: October 7th, 2025
Gene Product: January 3rd, 2018
Variation: February 25th, 2021
52 days agolox7 lipoxygenase7:
10.04
GRMZM2G070092
Zm00001d025524
Zm00001eb423430
Che, XY et al. 2025. Lipoxygenase ZmLOX3 Enhances Salt Tolerance of Maize Under the Regulation of ZmNAC032. J Agric Food Chem. :doi: 10.1021/acs.jafc.5c02349.     Reference: October 7th, 2025
Gene Product: January 3rd, 2018
Variation: April 23rd, 2009
52 days agoapx3 ascorbate peroxidase homolog3:
 
GRMZM2G137839
Zm00001d028709
Zm00001eb013080
Runyi Chen et al. 2025. Genome-Wide Characterization of Zmcry Genes: Unveiling Stress Response Mechanisms and the Role of Zmcryphr2 in Salinity Tolerance. BMC Plant Biology 25: 1329     Reference: October 7th, 2025
Gene Product: January 20th, 2025
Variation: August 11th, 2012
52 days agoaos2 allene oxide synthesis2:
 
GRMZM2G002178
Zm00001d028282
Zm00001eb009340
Che, XY et al. 2025. Lipoxygenase ZmLOX3 Enhances Salt Tolerance of Maize Under the Regulation of ZmNAC032. J Agric Food Chem. :doi: 10.1021/acs.jafc.5c02349.     Reference: October 7th, 2025
Gene Product: September 1st, 2003
52 days agoga2ox3 gibberellin 2-oxidase3:
 
GRMZM2G022679
Zm00001d043411
Zm00001eb152710
Tao Dai et al. 2025. A multi-parent population approach to reveal the genetic basis of plant height in maize BMC Plant Biology. 25:1321.     Reference: October 7th, 2025
Gene Product: October 27th, 2014
52 days agoaos4 allene oxide synthesis4:
 
GRMZM2G072653
Zm00001d034184
Zm00001eb058640
Che, XY et al. 2025. Lipoxygenase ZmLOX3 Enhances Salt Tolerance of Maize Under the Regulation of ZmNAC032. J Agric Food Chem. :doi: 10.1021/acs.jafc.5c02349.     Reference: October 7th, 2025
Gene Product: September 1st, 2003
52 days agoaos3 allene oxide synthesis3:
 
GRMZM2G376661
Zm00001d034186
Zm00001eb058670
Che, XY et al. 2025. Lipoxygenase ZmLOX3 Enhances Salt Tolerance of Maize Under the Regulation of ZmNAC032. J Agric Food Chem. :doi: 10.1021/acs.jafc.5c02349.     Reference: October 7th, 2025
Gene Product: September 1st, 2003
52 days agoktn2 katanin2:
 
GRMZM2G054715
Zm00001d043841
Zm00001eb156560
Stephanie E Martinez et al. 2025. KATANIN promotes cell elongation and division to generate proper cell numbers in maize organs bioRxiv preprint.     Reference: October 7th, 2025
Gene Product: October 15th, 2019
Variation: October 15th, 2019
52 days agoprh9 protein phosphatase homolog9:
 
GRMZM5G818101
Zm00001d009626
Zm00001eb344210
Runyi Chen et al. 2025. Genome-Wide Characterization of Zmcry Genes: Unveiling Stress Response Mechanisms and the Role of Zmcryphr2 in Salinity Tolerance. BMC Plant Biology 25: 1329     Reference: October 7th, 2025
Gene Product: October 25th, 2021
52 days agoprh14 protein phosphatase homolog14:
 
GRMZM2G102255
Zm00001d039163
Zm00001eb297300
Che, XY et al. 2025. Lipoxygenase ZmLOX3 Enhances Salt Tolerance of Maize Under the Regulation of ZmNAC032. J Agric Food Chem. :doi: 10.1021/acs.jafc.5c02349.     Reference: October 7th, 2025
Gene Product: October 25th, 2021
52 days agolox13 lipoxygenase13:
 
GRMZM5G822593
Zm00001d031449
Zm00001eb035010
Che, XY et al. 2025. Lipoxygenase ZmLOX3 Enhances Salt Tolerance of Maize Under the Regulation of ZmNAC032. J Agric Food Chem. :doi: 10.1021/acs.jafc.5c02349.     Reference: October 7th, 2025
Gene Product: January 3rd, 2018
52 days agoring224 RING-type E3 ligase224:
4.01
   Che, XY et al. 2025. Lipoxygenase ZmLOX3 Enhances Salt Tolerance of Maize Under the Regulation of ZmNAC032. J Agric Food Chem. :doi: 10.1021/acs.jafc.5c02349.     Reference: October 7th, 2025
Gene Product: May 22nd, 2025
52 days agocipk16 calcineurin B-like-interacting protein kinase16:
 
GRMZM2G330049
Zm00001d005748
Zm00001eb099440
Che, XY et al. 2025. Lipoxygenase ZmLOX3 Enhances Salt Tolerance of Maize Under the Regulation of ZmNAC032. J Agric Food Chem. :doi: 10.1021/acs.jafc.5c02349.   AT5G10930 (TAIR) Reference: October 7th, 2025
Gene Product: May 13th, 2014
52 days agohak7 potassium high-affinity transporter7:
 
GRMZM2G020766
Zm00001d022485
Zm00001eb330230
Che, XY et al. 2025. Lipoxygenase ZmLOX3 Enhances Salt Tolerance of Maize Under the Regulation of ZmNAC032. J Agric Food Chem. :doi: 10.1021/acs.jafc.5c02349.     Reference: October 7th, 2025
Gene Product: March 12th, 2020
52 days agohak10 potassium high-affinity transporter10:
 
GRMZM2G443728
Zm00001d046679
Zm00001eb387750
Che, XY et al. 2025. Lipoxygenase ZmLOX3 Enhances Salt Tolerance of Maize Under the Regulation of ZmNAC032. J Agric Food Chem. :doi: 10.1021/acs.jafc.5c02349.     Reference: October 7th, 2025
Gene Product: March 12th, 2020
52 days agohak11 potassium high-affinity transporter11:
 
GRMZM2G005040
Zm00001d002333
Zm00001eb070910
Che, XY et al. 2025. Lipoxygenase ZmLOX3 Enhances Salt Tolerance of Maize Under the Regulation of ZmNAC032. J Agric Food Chem. :doi: 10.1021/acs.jafc.5c02349.     Reference: October 7th, 2025
Gene Product: March 12th, 2020
52 days agohak12 potassium high-affinity transporter12:
 
GRMZM2G009353
Zm00001d024300
Zm00001eb413730
Che, XY et al. 2025. Lipoxygenase ZmLOX3 Enhances Salt Tolerance of Maize Under the Regulation of ZmNAC032. J Agric Food Chem. :doi: 10.1021/acs.jafc.5c02349.     Reference: October 7th, 2025
Gene Product: March 12th, 2020
52 days agohak16 potassium high-affinity transporter16:
 
GRMZM2G084486
Zm00001d033068
Zm00001eb048950
Che, XY et al. 2025. Lipoxygenase ZmLOX3 Enhances Salt Tolerance of Maize Under the Regulation of ZmNAC032. J Agric Food Chem. :doi: 10.1021/acs.jafc.5c02349.     Reference: October 7th, 2025
Gene Product: March 12th, 2020
52 days agohak22 potassium high-affinity transporter22:
 
GRMZM2G409771
Zm00001eb118350
Che, XY et al. 2025. Lipoxygenase ZmLOX3 Enhances Salt Tolerance of Maize Under the Regulation of ZmNAC032. J Agric Food Chem. :doi: 10.1021/acs.jafc.5c02349.     Reference: October 7th, 2025
Gene Product: March 12th, 2020
52 days agohak27 potassium high-affinity transporter27:
 
GRMZM2G455817
Zm00001d033066
Zm00001eb048930
Che, XY et al. 2025. Lipoxygenase ZmLOX3 Enhances Salt Tolerance of Maize Under the Regulation of ZmNAC032. J Agric Food Chem. :doi: 10.1021/acs.jafc.5c02349.     Reference: October 7th, 2025
Gene Product: March 12th, 2020
52 days agonhx9 Na+/H+ antiporter 9:
 
GRMZM2G171507
Zm00001d000407
Zm00001eb386410
Che, XY et al. 2025. Lipoxygenase ZmLOX3 Enhances Salt Tolerance of Maize Under the Regulation of ZmNAC032. J Agric Food Chem. :doi: 10.1021/acs.jafc.5c02349.     Reference: October 7th, 2025
Gene Product: April 26th, 2021
52 days agocry1 cryptochrome1:
5.05
GRMZM2G024739
Zm00001d016915
Zm00001eb244770
Runyi Chen et al. 2025. Genome-Wide Characterization of Zmcry Genes: Unveiling Stress Response Mechanisms and the Role of Zmcryphr2 in Salinity Tolerance. BMC Plant Biology 25: 1329     Reference: October 7th, 2025
Gene Product: January 29th, 2025
52 days agocipk6 calcineurin B-like-interacting protein kinase6:
 
GRMZM2G429940
Zm00001d032155
Zm00001eb041140
Che, XY et al. 2025. Lipoxygenase ZmLOX3 Enhances Salt Tolerance of Maize Under the Regulation of ZmNAC032. J Agric Food Chem. :doi: 10.1021/acs.jafc.5c02349.     Reference: October 7th, 2025
Gene Product: August 25th, 2018
52 days agocipk9 calcineurin B-like-interacting protein kinase9:
 
GRMZM2G055575
Zm00001d027455
Zm00001eb001940
Che, XY et al. 2025. Lipoxygenase ZmLOX3 Enhances Salt Tolerance of Maize Under the Regulation of ZmNAC032. J Agric Food Chem. :doi: 10.1021/acs.jafc.5c02349.     Reference: October 7th, 2025
Gene Product: August 25th, 2018
52 days agocipk21 calcineurin B-like-interacting protein kinase21:
 
GRMZM2G075002
Zm00001d006944
Zm00001eb110020
Che, XY et al. 2025. Lipoxygenase ZmLOX3 Enhances Salt Tolerance of Maize Under the Regulation of ZmNAC032. J Agric Food Chem. :doi: 10.1021/acs.jafc.5c02349.     Reference: October 7th, 2025
Gene Product: August 25th, 2018
52 days agoprx108 peroxidase108:
 
GRMZM2G471357
Zm00001d046184
Zm00001eb383830
Che, XY et al. 2025. Lipoxygenase ZmLOX3 Enhances Salt Tolerance of Maize Under the Regulation of ZmNAC032. J Agric Food Chem. :doi: 10.1021/acs.jafc.5c02349.     Reference: October 7th, 2025
Gene Product: January 20th, 2025
52 days agocry7 cryptochrome7:
 
GRMZM2G052821
Zm00001d015723
Zm00001d015724
Zm00001eb235370
Runyi Chen et al. 2025. Genome-Wide Characterization of Zmcry Genes: Unveiling Stress Response Mechanisms and the Role of Zmcryphr2 in Salinity Tolerance. BMC Plant Biology 25: 1329     Reference: October 7th, 2025
Gene Product: January 29th, 2025
52 days agoapx12 ascorbate peroxidase12:
5.05
GRMZM2G006791
Zm00001d016802
Zm00001eb243590
Che, XY et al. 2025. Lipoxygenase ZmLOX3 Enhances Salt Tolerance of Maize Under the Regulation of ZmNAC032. J Agric Food Chem. :doi: 10.1021/acs.jafc.5c02349.     Reference: October 7th, 2025
Gene Product: January 20th, 2025
Variation: March 21st, 2017
52 days agonhx5 Na+/H+ antiporter 5:
7.05
GRMZM2G027851
Zm00001d022504
Zm00001eb330030
Che, XY et al. 2025. Lipoxygenase ZmLOX3 Enhances Salt Tolerance of Maize Under the Regulation of ZmNAC032. J Agric Food Chem. :doi: 10.1021/acs.jafc.5c02349.     Reference: October 7th, 2025
Gene Product: April 26th, 2021
Variation: April 26th, 2021
52 days agoprdx2 peroxiredoxin2:
9.03
GRMZM2G036921
Zm00001d046682
Zm00001eb387780
Che, XY et al. 2025. Lipoxygenase ZmLOX3 Enhances Salt Tolerance of Maize Under the Regulation of ZmNAC032. J Agric Food Chem. :doi: 10.1021/acs.jafc.5c02349.     Reference: October 7th, 2025
Gene Product: February 4th, 2021
52 days agoprdx3 peroxiredoxin3:
5.04
GRMZM5G864335
Zm00001d016736
Zm00001eb243010
Che, XY et al. 2025. Lipoxygenase ZmLOX3 Enhances Salt Tolerance of Maize Under the Regulation of ZmNAC032. J Agric Food Chem. :doi: 10.1021/acs.jafc.5c02349.     Reference: October 7th, 2025
Gene Product: February 4th, 2021
Variation: March 7th, 2007
52 days agonhx2 Na+/H+ antiporter 2:
 
GRMZM2G063492
Zm00001d024832
Zm00001eb418020
Che, XY et al. 2025. Lipoxygenase ZmLOX3 Enhances Salt Tolerance of Maize Under the Regulation of ZmNAC032. J Agric Food Chem. :doi: 10.1021/acs.jafc.5c02349.     Reference: October 7th, 2025
Gene Product: April 26th, 2021
53 days agora2 ramosa2:
3.03 - 3.03
AC233943.1_FG002
Zm00001d039694
Zm00001eb123060
Pei, L et al. 2025. ZmmiR1432-ZmCML21-ZmPMA2 Module Affects Maize Low Phosphate Tolerance via Regulating Organic Acid Secretion. Plant Biotechnol J. :doi: 10.1111/pbi.70385.   AT5G63090 (TAIR)
LOC_Os01g07480 (MSU/TIGR)
Os01g0169400 (Gramene)
Reference: October 6th, 2025
Gene Product: July 27th, 2009
Variation: September 19th, 2009
53 days agoumc1267  :
9.03 - 9.04
GRMZM2G010884
Zm00001d046786
Zm00001eb388510
Yongyan Cao et al. 2025. ZmHSFA2d positively regulates maize seedling heat and drought tolerance by modulating photosystem protein synthesis. Theor Appl Genet. 138:266.     Reference: October 6th, 2025
Variation: September 1st, 2003
53 days agolhcb7 light harvesting complex mesophyll7:
6.07
GRMZM2G402936
Zm00001d039040
Zm00001eb296090
Yongyan Cao et al. 2025. ZmHSFA2d positively regulates maize seedling heat and drought tolerance by modulating photosystem protein synthesis. Theor Appl Genet. 138:266.     Reference: October 6th, 2025
Gene Product: January 8th, 2005
Variation: January 5th, 2013
53 days agoxat4 xylan α-1,3-arabinofuranosyl-transferase4:
5.03
GRMZM2G098793
Zm00001d014722
Zm00001eb227380
Pei, L et al. 2025. ZmmiR1432-ZmCML21-ZmPMA2 Module Affects Maize Low Phosphate Tolerance via Regulating Organic Acid Secretion. Plant Biotechnol J. :doi: 10.1111/pbi.70385.     Reference: October 6th, 2025
Gene Product: July 3rd, 2020
Variation: September 1st, 2003
53 days agonbcs1 nucleobase:cation symporter1:
1.05
GRMZM2G041050
Zm00001d030868
Zm00001eb030300
Pei, L et al. 2025. ZmmiR1432-ZmCML21-ZmPMA2 Module Affects Maize Low Phosphate Tolerance via Regulating Organic Acid Secretion. Plant Biotechnol J. :doi: 10.1111/pbi.70385.     Reference: October 6th, 2025
Gene Product: July 14th, 2018
53 days agohsp70-4 heat shock protein70-4:
3.05
GRMZM2G340251
Zm00001d041550
Zm00001eb136490
Pei, L et al. 2025. ZmmiR1432-ZmCML21-ZmPMA2 Module Affects Maize Low Phosphate Tolerance via Regulating Organic Acid Secretion. Plant Biotechnol J. :doi: 10.1111/pbi.70385.     Reference: October 6th, 2025
Gene Product: September 1st, 2003
Variation: January 2nd, 2013
53 days agondhn1 NADH dehydrogenase I subunit N1:
3.06
GRMZM2G110277
Zm00001d042620
Zm00001eb145680
Yongyan Cao et al. 2025. ZmHSFA2d positively regulates maize seedling heat and drought tolerance by modulating photosystem protein synthesis. Theor Appl Genet. 138:266.     Reference: October 6th, 2025
Gene Product: March 22nd, 2022
Variation: September 3rd, 2021
53 days agothx44 Trihelix-transcription factor 44:
 
GRMZM2G122277
Zm00001d049510
Zm00001eb172230
Pei, L et al. 2025. ZmmiR1432-ZmCML21-ZmPMA2 Module Affects Maize Low Phosphate Tolerance via Regulating Organic Acid Secretion. Plant Biotechnol J. :doi: 10.1111/pbi.70385.     Reference: October 6th, 2025
Gene Product: November 9th, 2021
53 days agopet9 photosynthetic electron transport9:
 
GRMZM2G016066
Zm00001d005446
Zm00001eb096870
Pei, L et al. 2025. ZmmiR1432-ZmCML21-ZmPMA2 Module Affects Maize Low Phosphate Tolerance via Regulating Organic Acid Secretion. Plant Biotechnol J. :doi: 10.1111/pbi.70385.     Reference: October 6th, 2025
Gene Product: May 11th, 2021
53 days agondho1 NADH-plastoquinone oxidoreductase1:
8.06
GRMZM2G133844
Zm00001d011826
Zm00001eb362560
Yongyan Cao et al. 2025. ZmHSFA2d positively regulates maize seedling heat and drought tolerance by modulating photosystem protein synthesis. Theor Appl Genet. 138:266.     Reference: October 6th, 2025
Gene Product: September 1st, 2003
Variation: September 6th, 2021
55 days agogln6 glutamine synthetase6:
1.02 - 1.03
GRMZM2G050514
Zm00001d028260
Zm00001eb009090
Jiuzhou Li et al. 2025. Physiological mechanisms underlying nitrogen remobilization in the vegetative organs of maize in response to sink strength Eur J Agron. 172:127863.     Reference: October 4th, 2025
Gene Product: September 1st, 2003
Variation: December 7th, 2012
55 days agomgs1 male-gametophyte specific1:
10.04
GRMZM2G317406
Zm00001d025287
Zm00001eb421470
Li, X et al. 2025. Genetic Architecture and Meta-QTL Identification of Yield Traits in Maize (Zea mays L.) Plants. 14:3067.     Reference: October 4th, 2025
Gene Product: September 1st, 2003
Variation: September 25th, 2007
55 days agogln5 glutamine synthetase5:
4.06
GRMZM2G036464
Zm00001d051804
Zm00001eb190340
Jiuzhou Li et al. 2025. Physiological mechanisms underlying nitrogen remobilization in the vegetative organs of maize in response to sink strength Eur J Agron. 172:127863.     Reference: October 4th, 2025
Gene Product: September 1st, 2003
Variation: May 30th, 2014
55 days agobrc1 brassinosteroid catabolism1:
 
GRMZM2G107322
Zm00001d053617
Zm00001eb205510
Li, X et al. 2025. Genetic Architecture and Meta-QTL Identification of Yield Traits in Maize (Zea mays L.) Plants. 14:3067.   AT2G26710 (TAIR)
LOC_Os02g11020 (MSU/TIGR)
Reference: October 4th, 2025
Gene Product: July 6th, 2017
56 days agoacx1 acyl-coenzyme A oxidase1:
 
GRMZM5G864319
Zm00001d045251
Zm00001eb376020
Letizia Ottaviani et al. 2025. Overexpression of the maize 9-lipoxygenase gene ZmLOX4 confers resistance to Fusarium verticillioides via the oxylipin and jasmonic acid-mediated pathways. J Exp Bot. :doi: 10.1093/jxb/eraf437.     Reference: October 3rd, 2025
Gene Product: September 17th, 2022
56 days agohsp31 heat shock protein31:
 
GRMZM2G135960
Zm00001d044874
Zm00001eb372830
Letizia Ottaviani et al. 2025. Overexpression of the maize 9-lipoxygenase gene ZmLOX4 confers resistance to Fusarium verticillioides via the oxylipin and jasmonic acid-mediated pathways. J Exp Bot. :doi: 10.1093/jxb/eraf437.     Reference: October 3rd, 2025
Gene Product: January 15th, 2019
56 days agoglp7 germin-like protein7:
 
GRMZM2G093606
Zm00001d049421
Zm00001eb171530
Letizia Ottaviani et al. 2025. Overexpression of the maize 9-lipoxygenase gene ZmLOX4 confers resistance to Fusarium verticillioides via the oxylipin and jasmonic acid-mediated pathways. J Exp Bot. :doi: 10.1093/jxb/eraf437.     Reference: October 3rd, 2025
Gene Product: December 24th, 2015
56 days agoubp11 ubiquitin-specific protease11:
 
GRMZM2G451357
Zm00001d004659
Zm00001eb090590
Dong, HX et al. 2025. Deubiquitinase ZmUBP5 is essential for maize kernel development. Plant J. 124:e70482.     Reference: October 3rd, 2025
Gene Product: May 16th, 2024
Variation: October 3rd, 2025
56 days agoZm00001eb260720  :
 
   Dong, HX et al. 2025. Deubiquitinase ZmUBP5 is essential for maize kernel development. Plant J. 124:e70482.     Reference: October 3rd, 2025
Variation: October 3rd, 2025
56 days agohb67 Homeobox-transcription factor 67:
2.01
GRMZM2G047448
Zm00001d001948
Zm00001eb067310
Sohyun Bang et al. 2025. WUSCHEL-dependent chromatin regulation in maize inflorescence development at single-cell resolution Genome Biology. 26:329.     Reference: October 3rd, 2025
Gene Product: August 25th, 2017
56 days agohex2 hexokinase2:
6.04 - 6.05
GRMZM2G432801
Zm00001d038792
Zm00001eb293670
Mayang Liu et al. 2025. High Temperature Disrupts Maize Silk Function Through Metabolic and Oxidative Dysregulation. Plant Cell Environ. :doi: 10.1111/pce.70201.     Reference: October 3rd, 2025
Gene Product: September 15th, 2013
Variation: February 15th, 2010
56 days agora1 ramosa1:
7.02
GRMZM2G003927
Zm00001d020430
Zm00001eb312340
Sohyun Bang et al. 2025. WUSCHEL-dependent chromatin regulation in maize inflorescence development at single-cell resolution Genome Biology. 26:329.     Reference: October 3rd, 2025
Gene Product: April 11th, 2007
Variation: October 12th, 2024
56 days agosod3 superoxide dismutase3:
6.05
GRMZM2G059991
Zm00001d037859
Zm00001eb285090
Mayang Liu et al. 2025. High Temperature Disrupts Maize Silk Function Through Metabolic and Oxidative Dysregulation. Plant Cell Environ. :doi: 10.1111/pce.70201.     Reference: October 3rd, 2025
Gene Product: October 4th, 2021
Variation: July 10th, 2015
56 days agosod4 superoxide dismutase4:
1.04
GRMZM2G169890
Zm00001d029170
Zm00001eb016940
Mayang Liu et al. 2025. High Temperature Disrupts Maize Silk Function Through Metabolic and Oxidative Dysregulation. Plant Cell Environ. :doi: 10.1111/pce.70201.     Reference: October 3rd, 2025
Gene Product: October 4th, 2021
Variation: April 20th, 2005
56 days agohb102 Homeobox-transcription factor 102:
1.02
GRMZM2G139963
Zm00001d027852
Zm00001eb005440
Sohyun Bang et al. 2025. WUSCHEL-dependent chromatin regulation in maize inflorescence development at single-cell resolution Genome Biology. 26:329.     Reference: October 3rd, 2025
Variation: September 1st, 2003
56 days agoumc1327  :
8.01
GRMZM2G095114
Zm00001eb333500
Dong, HX et al. 2025. Deubiquitinase ZmUBP5 is essential for maize kernel development. Plant J. 124:e70482.     Reference: October 3rd, 2025
Variation: September 1st, 2003
56 days agoglk8 G2-like-transcription factor 8:
 
GRMZM2G171468
Zm00001d013202
Zm00001eb214190
Mayang Liu et al. 2025. High Temperature Disrupts Maize Silk Function Through Metabolic and Oxidative Dysregulation. Plant Cell Environ. :doi: 10.1111/pce.70201.     Reference: October 3rd, 2025
Variation: March 17th, 2021
56 days agohb6 Homeobox-transcription factor 6:
 
GRMZM2G458728
Zm00001d053151
Zm00001eb202140
Sohyun Bang et al. 2025. WUSCHEL-dependent chromatin regulation in maize inflorescence development at single-cell resolution Genome Biology. 26:329.     Reference: October 3rd, 2025
Gene Product: February 21st, 2025
56 days agobhlh136 bHLH-transcription factor 136:
 
GRMZM2G144275
Zm00001d021019
Zm00001eb317460
Wang, ZW et al. 2025. Alkalinity Inhibits Maize Low-Temperature Resistance Through Nitrogen and ROS Metabolism. Physiol Plant. 177:e70557.     Reference: October 3rd, 2025
Variation: March 17th, 2021
56 days agoincw4 invertase cell wall4:
2.01
GRMZM2G119941
Zm00001d001941
Zm00001eb067230
Mayang Liu et al. 2025. High Temperature Disrupts Maize Silk Function Through Metabolic and Oxidative Dysregulation. Plant Cell Environ. :doi: 10.1111/pce.70201.     Reference: October 3rd, 2025
Gene Product: June 12th, 2018
Variation: May 23rd, 2005
56 days agosod9 superoxide dismutase9:
9.04
GRMZM2G058522
Zm00001d047479
Zm00001eb394700
Wang, ZW et al. 2025. Alkalinity Inhibits Maize Low-Temperature Resistance Through Nitrogen and ROS Metabolism. Physiol Plant. 177:e70557.     Reference: October 3rd, 2025
Gene Product: October 4th, 2021
Variation: January 21st, 2015
56 days agoumc2308  :
5.09
GRMZM5G848768
Zm00001d018487
Zm00001eb258950
Letizia Ottaviani et al. 2025. Overexpression of the maize 9-lipoxygenase gene ZmLOX4 confers resistance to Fusarium verticillioides via the oxylipin and jasmonic acid-mediated pathways. J Exp Bot. :doi: 10.1093/jxb/eraf437.     Reference: October 3rd, 2025
Variation: June 25th, 2021
56 days agoAY110400  :
6.07
GRMZM5G872417
Zm00001d038914
Zm00001eb294900
Dong, HX et al. 2025. Deubiquitinase ZmUBP5 is essential for maize kernel development. Plant J. 124:e70482.     Reference: October 3rd, 2025
Variation: July 29th, 2004
56 days agoaldh5 aldehyde dehydrogenase5:
3.09
GRMZM2G097706
Zm00001d044340
Zm00001eb160830
Mayang Liu et al. 2025. High Temperature Disrupts Maize Silk Function Through Metabolic and Oxidative Dysregulation. Plant Cell Environ. :doi: 10.1111/pce.70201.   AT3G24503 (TAIR) Reference: October 3rd, 2025
Gene Product: June 28th, 2005
Variation: June 20th, 2012
56 days agoasn3 asparagine synthetase3:
1.03
GRMZM2G053669
Zm00001d028750
Zm00001eb013430
Wang, ZW et al. 2025. Alkalinity Inhibits Maize Low-Temperature Resistance Through Nitrogen and ROS Metabolism. Physiol Plant. 177:e70557.     Reference: October 3rd, 2025
Gene Product: February 1st, 2021
Variation: May 9th, 2009
56 days agohex5 hexokinase5:
 
GRMZM5G856653
Zm00001d043511
Zm00001eb153620
Mayang Liu et al. 2025. High Temperature Disrupts Maize Silk Function Through Metabolic and Oxidative Dysregulation. Plant Cell Environ. :doi: 10.1111/pce.70201.     Reference: October 3rd, 2025
Gene Product: September 15th, 2013
56 days agoGRMZM2G059392  :
 
GRMZM2G059392
Zm00001d044327
Zm00001eb160700
Sohyun Bang et al. 2025. WUSCHEL-dependent chromatin regulation in maize inflorescence development at single-cell resolution Genome Biology. 26:329.   AT3G53450 (TAIR) Reference: October 3rd, 2025
Gene Product: November 21st, 2019
Variation: August 23rd, 2024
56 days agolac23 laccase23:
 
GRMZM2G094375
Zm00001d023617
Zm00001eb408530
Letizia Ottaviani et al. 2025. Overexpression of the maize 9-lipoxygenase gene ZmLOX4 confers resistance to Fusarium verticillioides via the oxylipin and jasmonic acid-mediated pathways. J Exp Bot. :doi: 10.1093/jxb/eraf437.     Reference: October 3rd, 2025
Gene Product: March 31st, 2018
56 days agosod10 superoxide dismutase10:
 
GRMZM2G124455
Zm00001d009990
Zm00001eb347200
Letizia Ottaviani et al. 2025. Overexpression of the maize 9-lipoxygenase gene ZmLOX4 confers resistance to Fusarium verticillioides via the oxylipin and jasmonic acid-mediated pathways. J Exp Bot. :doi: 10.1093/jxb/eraf437.     Reference: October 3rd, 2025
Gene Product: October 4th, 2021
56 days agotrxr1 thioredoxin reductase1:
 
GRMZM5G841142
Zm00001d037429
Zm00001eb281340
Letizia Ottaviani et al. 2025. Overexpression of the maize 9-lipoxygenase gene ZmLOX4 confers resistance to Fusarium verticillioides via the oxylipin and jasmonic acid-mediated pathways. J Exp Bot. :doi: 10.1093/jxb/eraf437.     Reference: October 3rd, 2025
Gene Product: August 31st, 2020
56 days agotrxr2 thioredoxin reductase2:
 
GRMZM5G889769
Zm00001d053118
Zm00001eb201870
Letizia Ottaviani et al. 2025. Overexpression of the maize 9-lipoxygenase gene ZmLOX4 confers resistance to Fusarium verticillioides via the oxylipin and jasmonic acid-mediated pathways. J Exp Bot. :doi: 10.1093/jxb/eraf437.     Reference: October 3rd, 2025
Gene Product: August 31st, 2020
56 days agoapx10 ascorbate peroxidase10:
 
GRMZM2G120517
Zm00001d003643
Zm00001eb082560
Wang, ZW et al. 2025. Alkalinity Inhibits Maize Low-Temperature Resistance Through Nitrogen and ROS Metabolism. Physiol Plant. 177:e70557.     Reference: October 3rd, 2025
Gene Product: January 20th, 2025
56 days agosod13 superoxide dismutase13:
2.03
GRMZM2G175728
Zm00001d002611
Zm00001eb073490
Letizia Ottaviani et al. 2025. Overexpression of the maize 9-lipoxygenase gene ZmLOX4 confers resistance to Fusarium verticillioides via the oxylipin and jasmonic acid-mediated pathways. J Exp Bot. :doi: 10.1093/jxb/eraf437.     Reference: October 3rd, 2025
Gene Product: October 4th, 2021
Variation: March 31st, 2005
56 days agodbf3 DRE-binding protein3:
2.07
GRMZM2G124037
Zm00001d006169
Zm00001eb103100
Wang, ZW et al. 2025. Alkalinity Inhibits Maize Low-Temperature Resistance Through Nitrogen and ROS Metabolism. Physiol Plant. 177:e70557.     Reference: October 3rd, 2025
Gene Product: April 10th, 2013
Variation: October 23rd, 2019
56 days agoaldh3 aldehyde dehydrogenase3:
3.09
GRMZM2G071021
Zm00001d044339
Zm00001eb160820
Mayang Liu et al. 2025. High Temperature Disrupts Maize Silk Function Through Metabolic and Oxidative Dysregulation. Plant Cell Environ. :doi: 10.1111/pce.70201.     Reference: October 3rd, 2025
Gene Product: June 28th, 2005
Variation: May 20th, 2009
56 days agoincw8 invertase cell wall8:
3.05
GRMZM2G174249
Zm00001d041991
Zm00001eb140050
Mayang Liu et al. 2025. High Temperature Disrupts Maize Silk Function Through Metabolic and Oxidative Dysregulation. Plant Cell Environ. :doi: 10.1111/pce.70201.     Reference: October 3rd, 2025
Gene Product: June 12th, 2018
Variation: September 25th, 2007
56 days agompk8 MAP kinase8:
8.06
GRMZM2G131334
Zm00001d011426
Zm00001eb358890
Wang, ZW et al. 2025. Alkalinity Inhibits Maize Low-Temperature Resistance Through Nitrogen and ROS Metabolism. Physiol Plant. 177:e70557.     Reference: October 3rd, 2025
Gene Product: July 12th, 2013
57 days agowakl54 wall associated kinase like54:
 
GRMZM2G576752
Zm00001d045190
Zm00001eb375460
Xiangnan Li et al. 2025. Roles of maize WAK gene family in responses to abiotic and biotic stresses, and hormonal treatments Frontiers in Plant Science. 16:1652811.     Reference: October 2nd, 2025
Gene Product: December 7th, 2023
57 days agorlk13 receptor-like protein kinase13:
 
GRMZM2G176225
Zm00001d002446
Zm00001eb071970
Xiangnan Li et al. 2025. Roles of maize WAK gene family in responses to abiotic and biotic stresses, and hormonal treatments Frontiers in Plant Science. 16:1652811.     Reference: October 2nd, 2025
Gene Product: July 10th, 2019
57 days agowakl30 wall associated kinase like30:
 
GRMZM2G014560
Zm00001d017264
Zm00001eb247540
Xiangnan Li et al. 2025. Roles of maize WAK gene family in responses to abiotic and biotic stresses, and hormonal treatments Frontiers in Plant Science. 16:1652811.     Reference: October 2nd, 2025
Gene Product: December 7th, 2023
57 days agowakl4 wall associated kinase like4:
 
GRMZM2G050536
Zm00001d031366
Zm00001eb034290
Xiangnan Li et al. 2025. Roles of maize WAK gene family in responses to abiotic and biotic stresses, and hormonal treatments Frontiers in Plant Science. 16:1652811.     Reference: October 2nd, 2025
Gene Product: December 7th, 2023
57 days agowakl6 wall associated kinase like6:
 
GRMZM2G362303
Zm00001d031395
Zm00001eb034520
Xiangnan Li et al. 2025. Roles of maize WAK gene family in responses to abiotic and biotic stresses, and hormonal treatments Frontiers in Plant Science. 16:1652811.     Reference: October 2nd, 2025
Gene Product: December 7th, 2023
57 days agowakl8 wall associated kinase like8:
 
GRMZM2G042622
Zm00001d031466
Zm00001eb035220
Xiangnan Li et al. 2025. Roles of maize WAK gene family in responses to abiotic and biotic stresses, and hormonal treatments Frontiers in Plant Science. 16:1652811.     Reference: October 2nd, 2025
Gene Product: December 7th, 2023
57 days agowakl9 wall associated kinase like9:
 
GRMZM2G355233
Zm00001d032356
Zm00001eb042720
Xiangnan Li et al. 2025. Roles of maize WAK gene family in responses to abiotic and biotic stresses, and hormonal treatments Frontiers in Plant Science. 16:1652811.     Reference: October 2nd, 2025
Gene Product: December 7th, 2023
57 days agowakl10 wall associated kinase like10:
 
GRMZM2G095209
Zm00001d002039
Zm00001eb068170
Xiangnan Li et al. 2025. Roles of maize WAK gene family in responses to abiotic and biotic stresses, and hormonal treatments Frontiers in Plant Science. 16:1652811.     Reference: October 2nd, 2025
Gene Product: December 7th, 2023
57 days agowakl13 wall associated kinase like13:
 
GRMZM2G433076
Zm00001d002979
Zm00001eb076940
Xiangnan Li et al. 2025. Roles of maize WAK gene family in responses to abiotic and biotic stresses, and hormonal treatments Frontiers in Plant Science. 16:1652811.     Reference: October 2nd, 2025
Gene Product: December 7th, 2023
57 days agowakl15 wall associated kinase like15:
 
GRMZM2G145075
Zm00001d003021
Zm00001eb077310
Xiangnan Li et al. 2025. Roles of maize WAK gene family in responses to abiotic and biotic stresses, and hormonal treatments Frontiers in Plant Science. 16:1652811.     Reference: October 2nd, 2025
Gene Product: December 7th, 2023
57 days agowakl17 wall associated kinase like17:
 
GRMZM2G049608
Zm00001d003069
Zm00001eb077740
Xiangnan Li et al. 2025. Roles of maize WAK gene family in responses to abiotic and biotic stresses, and hormonal treatments Frontiers in Plant Science. 16:1652811.     Reference: October 2nd, 2025
Gene Product: December 7th, 2023
57 days agowakl20 wall associated kinase like20:
 
GRMZM2G467671
Zm00001d039920
Zm00001eb124840
Xiangnan Li et al. 2025. Roles of maize WAK gene family in responses to abiotic and biotic stresses, and hormonal treatments Frontiers in Plant Science. 16:1652811.     Reference: October 2nd, 2025
Gene Product: December 7th, 2023
57 days agowakl21 wall associated kinase like21:
 
GRMZM5G832149
Zm00001d039926
Zm00001eb124900
Xiangnan Li et al. 2025. Roles of maize WAK gene family in responses to abiotic and biotic stresses, and hormonal treatments Frontiers in Plant Science. 16:1652811.     Reference: October 2nd, 2025
Gene Product: December 7th, 2023
57 days agowakl23 wall associated kinase like23:
 
GRMZM2G426917
Zm00001d040094
Zm00001eb126150
Xiangnan Li et al. 2025. Roles of maize WAK gene family in responses to abiotic and biotic stresses, and hormonal treatments Frontiers in Plant Science. 16:1652811.     Reference: October 2nd, 2025
Gene Product: December 7th, 2023
57 days agowakl26 wall associated kinase like26:
 
GRMZM2G107308
Zm00001d048631
Zm00001eb164810
Xiangnan Li et al. 2025. Roles of maize WAK gene family in responses to abiotic and biotic stresses, and hormonal treatments Frontiers in Plant Science. 16:1652811.     Reference: October 2nd, 2025
Gene Product: December 7th, 2023
57 days agowakl27 wall associated kinase like27:
 
GRMZM2G359986
Zm00001d050164
Zm00001eb177830
Xiangnan Li et al. 2025. Roles of maize WAK gene family in responses to abiotic and biotic stresses, and hormonal treatments Frontiers in Plant Science. 16:1652811.     Reference: October 2nd, 2025
Gene Product: December 7th, 2023
57 days agowakl28 wall associated kinase like28:
 
GRMZM2G313181
GRMZM2G313199
Zm00001d053079
Zm00001eb201430
Xiangnan Li et al. 2025. Roles of maize WAK gene family in responses to abiotic and biotic stresses, and hormonal treatments Frontiers in Plant Science. 16:1652811.     Reference: October 2nd, 2025
Gene Product: December 7th, 2023
57 days agowakl29 wall associated kinase like29:
 
GRMZM2G010091
Zm00001d054062
Zm00001eb209700
Xiangnan Li et al. 2025. Roles of maize WAK gene family in responses to abiotic and biotic stresses, and hormonal treatments Frontiers in Plant Science. 16:1652811.     Reference: October 2nd, 2025
Gene Product: December 7th, 2023
57 days agowakl31 wall associated kinase like31:
 
GRMZM2G080247
Zm00001d018431
Zm00001eb258370
Xiangnan Li et al. 2025. Roles of maize WAK gene family in responses to abiotic and biotic stresses, and hormonal treatments Frontiers in Plant Science. 16:1652811.     Reference: October 2nd, 2025
Gene Product: December 7th, 2023
57 days agowakl32 wall associated kinase like32:
 
GRMZM2G075286
Zm00001d035479
Zm00001eb265310
Xiangnan Li et al. 2025. Roles of maize WAK gene family in responses to abiotic and biotic stresses, and hormonal treatments Frontiers in Plant Science. 16:1652811.     Reference: October 2nd, 2025
Gene Product: December 7th, 2023
57 days agowakl33 wall associated kinase like33:
 
AC210596.3_FG003
AC210596.3_FG004
Zm00001d036261
Zm00001eb271310
Xiangnan Li et al. 2025. Roles of maize WAK gene family in responses to abiotic and biotic stresses, and hormonal treatments Frontiers in Plant Science. 16:1652811.     Reference: October 2nd, 2025
Gene Product: December 7th, 2023
57 days agowakl36 wall associated kinase like36:
 
GRMZM2G002473
Zm00001d037635
Zm00001eb283100
Xiangnan Li et al. 2025. Roles of maize WAK gene family in responses to abiotic and biotic stresses, and hormonal treatments Frontiers in Plant Science. 16:1652811.     Reference: October 2nd, 2025
Gene Product: December 7th, 2023
57 days agowakl38 wall associated kinase like38:
 
GRMZM2G077655
Zm00001d020955
Zm00001eb316880
Xiangnan Li et al. 2025. Roles of maize WAK gene family in responses to abiotic and biotic stresses, and hormonal treatments Frontiers in Plant Science. 16:1652811.     Reference: October 2nd, 2025
Gene Product: December 7th, 2023
57 days agowakl43 wall associated kinase like43:
 
GRMZM2G333022
GRMZM2G502350
Zm00001d008468
Zm00001eb334670
Xiangnan Li et al. 2025. Roles of maize WAK gene family in responses to abiotic and biotic stresses, and hormonal treatments Frontiers in Plant Science. 16:1652811.     Reference: October 2nd, 2025
Gene Product: December 7th, 2023
57 days agowakl48 wall associated kinase like48:
 
GRMZM2G171807
Zm00001d008581
Zm00001eb335470
Xiangnan Li et al. 2025. Roles of maize WAK gene family in responses to abiotic and biotic stresses, and hormonal treatments Frontiers in Plant Science. 16:1652811.     Reference: October 2nd, 2025
Gene Product: December 7th, 2023
57 days agowakl51 wall associated kinase like51:
 
GRMZM2G061718
GRMZM2G360794
Zm00001d010442
Zm00001eb350600
Xiangnan Li et al. 2025. Roles of maize WAK gene family in responses to abiotic and biotic stresses, and hormonal treatments Frontiers in Plant Science. 16:1652811.     Reference: October 2nd, 2025
Gene Product: December 7th, 2023
57 days agowakl56 wall associated kinase like56:
 
GRMZM2G436448
Zm00001d024961
Zm00001eb419170
Xiangnan Li et al. 2025. Roles of maize WAK gene family in responses to abiotic and biotic stresses, and hormonal treatments Frontiers in Plant Science. 16:1652811.     Reference: October 2nd, 2025
Gene Product: December 7th, 2023
57 days agowakl57 wall associated kinase like57:
 
GRMZM2G436455
GRMZM5G897005
Zm00001d024962
Zm00001eb419180
Xiangnan Li et al. 2025. Roles of maize WAK gene family in responses to abiotic and biotic stresses, and hormonal treatments Frontiers in Plant Science. 16:1652811.     Reference: October 2nd, 2025
Gene Product: December 7th, 2023
57 days agowak51 wall-associated receptor kinase51:
 
GRMZM2G335709
GRMZM5G865595
Zm00001d045184
Zm00001d045185
Zm00001eb375440
Xiangnan Li et al. 2025. Roles of maize WAK gene family in responses to abiotic and biotic stresses, and hormonal treatments Frontiers in Plant Science. 16:1652811.     Reference: October 2nd, 2025
Gene Product: December 7th, 2023
57 days agowak42 wall-associated receptor kinase42:
 
GRMZM5G825193
Zm00001d008478
Zm00001d008479
Zm00001eb334680
Xiangnan Li et al. 2025. Roles of maize WAK gene family in responses to abiotic and biotic stresses, and hormonal treatments Frontiers in Plant Science. 16:1652811.     Reference: October 2nd, 2025
Gene Product: December 7th, 2023
57 days agowak40 wall-associated receptor kinase40:
 
   Xiangnan Li et al. 2025. Roles of maize WAK gene family in responses to abiotic and biotic stresses, and hormonal treatments Frontiers in Plant Science. 16:1652811.     Reference: October 2nd, 2025
Gene Product: December 7th, 2023
57 days agowak56 wall-associated receptor kinase56:
 
   Xiangnan Li et al. 2025. Roles of maize WAK gene family in responses to abiotic and biotic stresses, and hormonal treatments Frontiers in Plant Science. 16:1652811.     Reference: October 2nd, 2025
Gene Product: December 7th, 2023
57 days agowak17 wall-associated receptor kinase17:
 
   Xiangnan Li et al. 2025. Roles of maize WAK gene family in responses to abiotic and biotic stresses, and hormonal treatments Frontiers in Plant Science. 16:1652811.     Reference: October 2nd, 2025
Gene Product: December 7th, 2023
57 days agowak28 wall-associated receptor kinase28:
 
   Xiangnan Li et al. 2025. Roles of maize WAK gene family in responses to abiotic and biotic stresses, and hormonal treatments Frontiers in Plant Science. 16:1652811.     Reference: October 2nd, 2025
Gene Product: December 7th, 2023
57 days agowak55 wall-associated receptor kinase55:
 
   Xiangnan Li et al. 2025. Roles of maize WAK gene family in responses to abiotic and biotic stresses, and hormonal treatments Frontiers in Plant Science. 16:1652811.     Reference: October 2nd, 2025
Gene Product: December 7th, 2023
57 days agosrk1 S-receptor kinase1:
2.09
AC217293.3_FG007
Zm00001d007745
Zm00001eb116160
Xiangnan Li et al. 2025. Roles of maize WAK gene family in responses to abiotic and biotic stresses, and hormonal treatments Frontiers in Plant Science. 16:1652811.     Reference: October 2nd, 2025
Gene Product: July 10th, 2019
Variation: September 1st, 2003
57 days agowakl37 wall associated kinase like37:
6.07
GRMZM2G017157
Zm00001d038915
Zm00001eb294910
Xiangnan Li et al. 2025. Roles of maize WAK gene family in responses to abiotic and biotic stresses, and hormonal treatments Frontiers in Plant Science. 16:1652811.     Reference: October 2nd, 2025
Gene Product: December 7th, 2023
57 days agowakl14 wall associated kinase like14:
2.04
GRMZM2G145045
Zm00001d003019
Zm00001eb077270
Xiangnan Li et al. 2025. Roles of maize WAK gene family in responses to abiotic and biotic stresses, and hormonal treatments Frontiers in Plant Science. 16:1652811.     Reference: October 2nd, 2025
Gene Product: December 7th, 2023
57 days agowakl50 wall associated kinase like50:
8.02
GRMZM2G172368
Zm00001d008586
Zm00001eb335540
Xiangnan Li et al. 2025. Roles of maize WAK gene family in responses to abiotic and biotic stresses, and hormonal treatments Frontiers in Plant Science. 16:1652811.     Reference: October 2nd, 2025
Gene Product: December 7th, 2023
57 days agowakl39 wall associated kinase like39:
8.01
GRMZM2G079219
Zm00001d008457
Zm00001eb334620
Xiangnan Li et al. 2025. Roles of maize WAK gene family in responses to abiotic and biotic stresses, and hormonal treatments Frontiers in Plant Science. 16:1652811.     Reference: October 2nd, 2025
Gene Product: December 7th, 2023
57 days agowakl22 wall associated kinase like22:
3.04
GRMZM2G013790
Zm00001d039929
Zm00001d039930
Zm00001d039931
Zm00001eb124920
Xiangnan Li et al. 2025. Roles of maize WAK gene family in responses to abiotic and biotic stresses, and hormonal treatments Frontiers in Plant Science. 16:1652811.     Reference: October 2nd, 2025
Gene Product: December 7th, 2023
57 days agopebp12 phosphatidylethanolamine-binding protein12:
 
GRMZM2G103666
Zm00001d043461
Zm00001eb153190
Maddy Creach et al. 2025. Predicting complex phenotypes using multi-omics data in maize bioRxiv preprint.     Reference: October 2nd, 2025
Gene Product: March 19th, 2024
Variation: December 10th, 2010
57 days agolrk1 Ser/Thr receptor-like kinase1:
8.02
GRMZM2G064750
Zm00001d008489
Zm00001eb334730
Xiangnan Li et al. 2025. Roles of maize WAK gene family in responses to abiotic and biotic stresses, and hormonal treatments Frontiers in Plant Science. 16:1652811.     Reference: October 2nd, 2025
Gene Product: December 7th, 2023
Variation: January 8th, 2013
57 days agoaco6 aconitase6:
 
GRMZM2G364988
Zm00001d015497
Zm00001eb234010
Zm00001eb234020
Maddy Creach et al. 2025. Predicting complex phenotypes using multi-omics data in maize bioRxiv preprint.     Reference: October 2nd, 2025
Gene Product: September 1st, 2003
57 days agowak26 wall-associated receptor kinase26:
 
GRMZM2G072350
Zm00001d049584
Zm00001eb172910
Xiangnan Li et al. 2025. Roles of maize WAK gene family in responses to abiotic and biotic stresses, and hormonal treatments Frontiers in Plant Science. 16:1652811.     Reference: October 2nd, 2025
Gene Product: December 7th, 2023
57 days agowakl25 wall associated kinase like25:
 
GRMZM2G028568
Zm00001d043800
Zm00001eb156250
Xiangnan Li et al. 2025. Roles of maize WAK gene family in responses to abiotic and biotic stresses, and hormonal treatments Frontiers in Plant Science. 16:1652811.     Reference: October 2nd, 2025
Gene Product: December 7th, 2023
57 days agowak24 wall-associated receptor kinase24:
 
GRMZM2G497710
Zm00001d043799
Zm00001eb156250
Xiangnan Li et al. 2025. Roles of maize WAK gene family in responses to abiotic and biotic stresses, and hormonal treatments Frontiers in Plant Science. 16:1652811.     Reference: October 2nd, 2025
Gene Product: December 7th, 2023
57 days agorlk8 receptor-like protein kinase8:
 
GRMZM2G144028
Zm00001d011625
Zm00001eb360620
Xiangnan Li et al. 2025. Roles of maize WAK gene family in responses to abiotic and biotic stresses, and hormonal treatments Frontiers in Plant Science. 16:1652811.     Reference: October 2nd, 2025
Gene Product: July 10th, 2019
57 days agorlk9 receptor-like protein kinase9:
 
GRMZM2G456487
Zm00001d009473
Zm00001eb342890
Xiangnan Li et al. 2025. Roles of maize WAK gene family in responses to abiotic and biotic stresses, and hormonal treatments Frontiers in Plant Science. 16:1652811.     Reference: October 2nd, 2025
Gene Product: July 10th, 2019
57 days agowakl24 wall associated kinase like24:
 
GRMZM2G041544
Zm00001d041873
Zm00001eb139070
Xiangnan Li et al. 2025. Roles of maize WAK gene family in responses to abiotic and biotic stresses, and hormonal treatments Frontiers in Plant Science. 16:1652811.     Reference: October 2nd, 2025
Gene Product: December 7th, 2023
57 days agowakl16 wall associated kinase like16:
 
GRMZM2G145109
Zm00001d003023
Zm00001eb077330
Xiangnan Li et al. 2025. Roles of maize WAK gene family in responses to abiotic and biotic stresses, and hormonal treatments Frontiers in Plant Science. 16:1652811.     Reference: October 2nd, 2025
Gene Product: December 7th, 2023
57 days agowak31 wall-associated receptor kinase31:
 
GRMZM2G496370
Zm00001d016656
Zm00001eb242370
Xiangnan Li et al. 2025. Roles of maize WAK gene family in responses to abiotic and biotic stresses, and hormonal treatments Frontiers in Plant Science. 16:1652811.     Reference: October 2nd, 2025
Gene Product: December 7th, 2023
57 days agowakl7 wall associated kinase like7:
 
GRMZM2G059012
Zm00001d031407
Zm00001eb034610
Xiangnan Li et al. 2025. Roles of maize WAK gene family in responses to abiotic and biotic stresses, and hormonal treatments Frontiers in Plant Science. 16:1652811.     Reference: October 2nd, 2025
Gene Product: December 7th, 2023
57 days agowak18 wall-associated receptor kinase18:
 
GRMZM2G112756
GRMZM2G412760
Zm00001d039923
Zm00001d039924
Zm00001eb124880
Xiangnan Li et al. 2025. Roles of maize WAK gene family in responses to abiotic and biotic stresses, and hormonal treatments Frontiers in Plant Science. 16:1652811.     Reference: October 2nd, 2025
Gene Product: December 7th, 2023
57 days agowak23 wall-associated receptor kinase23:
 
GRMZM2G448672
GRMZM2G448710
Zm00001d043798
Zm00001eb156230
Xiangnan Li et al. 2025. Roles of maize WAK gene family in responses to abiotic and biotic stresses, and hormonal treatments Frontiers in Plant Science. 16:1652811.     Reference: October 2nd, 2025
Gene Product: December 7th, 2023
57 days agowakl5 wall-associated receptor kinase-like5:
1.06
GRMZM2G134205
Zm00001d031372
Zm00001eb034370
Xiangnan Li et al. 2025. Roles of maize WAK gene family in responses to abiotic and biotic stresses, and hormonal treatments Frontiers in Plant Science. 16:1652811.     Reference: October 2nd, 2025
Gene Product: December 7th, 2023
58 days agoknl2 kinetochore-null homolog2:
 
GRMZM2G100107
Zm00001d020129
Zm00001eb310180
Li, Y et al. 2025. The cenH3 assembly factor ZmKNL2 boosts haploid induction in maize Plant Biotechnol J. :doi: 10.1111/pbi.70203.   At5g02520 (TAIR) Reference: October 1st, 2025
Variation: July 17th, 2025
58 days agosnrkII8 SnRK2 serine threonine protein kinase8:
 
GRMZM2G138861
Zm00001d034161
Zm00001eb058470
Aifang Ma et al. 2025. ZmSnRK2.10-mediated phosphorylation of ZmDNL1 attenuates ZmYAB15 activity to enhance drought resilience in maize. J Integr Plant Biol. :doi: 10.1111/jipb.70036.     Reference: October 1st, 2025
Gene Product: April 14th, 2018
Variation: August 31st, 2018
58 days agosnrkII1 SnRK2 serine threonine protein kinase1:
 
GRMZM2G035809
Zm00001d047220
Zm00001eb392580
Aifang Ma et al. 2025. ZmSnRK2.10-mediated phosphorylation of ZmDNL1 attenuates ZmYAB15 activity to enhance drought resilience in maize. J Integr Plant Biol. :doi: 10.1111/jipb.70036.     Reference: October 1st, 2025
Gene Product: April 14th, 2018
59 days agonced13 nine-cis-epoxycarotenoid dioxygenase13:
 
GRMZM2G362993
Zm00001d035724
Zm00001eb267300
Zhipeng Yuan et al. 2025. Transcriptomic Analysis Reveals the Role of Silver Nanoparticles in Promoting Maize Germination Plants. 14:3022.     Reference: September 30th, 2025
Gene Product: September 20th, 2012
59 days agoacx2 acyl-coenzyme A oxidase2:
 
   Zhipeng Yuan et al. 2025. Transcriptomic Analysis Reveals the Role of Silver Nanoparticles in Promoting Maize Germination Plants. 14:3022.     Reference: September 30th, 2025
Gene Product: September 17th, 2022
59 days agome5 malic enzyme5:
6.05
GRMZM5G886257
Zm00001d037693
Zm00001eb283570
Zhipeng Yuan et al. 2025. Transcriptomic Analysis Reveals the Role of Silver Nanoparticles in Promoting Maize Germination Plants. 14:3022.     Reference: September 30th, 2025
Gene Product: June 27th, 2019
Variation: August 16th, 2011
59 days agobsk8 brassinosteroid-signaling kinase8:
1.11
GRMZM2G177445
Zm00001d034689
Zm00001eb063040
Zhang, C et al. 2025. Brassinosteroid-signaling kinase 4 activates mitogen-activated protein kinase 4 to enhance cold stress tolerance in maize. Plant Cell. :doi: 10.1093/plcell/koaf234.     Reference: September 30th, 2025
Gene Product: May 13th, 2014
60 days agocdc48 cell division cycle protein48:
 
   Yahaya, BS et al. 2025. ZmLBD1 confers multi-abiotic stress tolerance in Arabidopsis by enhancing root growth Plant Stress. :101054.     Reference: September 29th, 2025
Variation: September 29th, 2025
61 days agopub31 plant U-box type E3 ubiquitin ligase31:
 
GRMZM2G002227
GRMZM2G079284
Zm00001d045230
Zm00001eb375820
Jun-Jie Zhuang et al. 2025. Evolutionary dynamics and genetic diversity of transposable elements revealed by resequencing data in maize population. Plant J. 123:e70500.     Reference: September 28th, 2025
Gene Product: February 1st, 2024
61 days agoppr287 pentatricopeptide repeat protein287:
 
   Jun-Jie Zhuang et al. 2025. Evolutionary dynamics and genetic diversity of transposable elements revealed by resequencing data in maize population. Plant J. 123:e70500.     Reference: September 28th, 2025
Gene Product: December 27th, 2016
61 days agoppr195 pentatricopeptide repeat protein195:
 
   Jun-Jie Zhuang et al. 2025. Evolutionary dynamics and genetic diversity of transposable elements revealed by resequencing data in maize population. Plant J. 123:e70500.     Reference: September 28th, 2025
Gene Product: December 27th, 2016
61 days agoAY104775  :
6.03
GRMZM2G106427
Zm00001d036888
Zm00001eb276680
Jun-Jie Zhuang et al. 2025. Evolutionary dynamics and genetic diversity of transposable elements revealed by resequencing data in maize population. Plant J. 123:e70500.     Reference: September 28th, 2025
Variation: September 25th, 2007
61 days agohxa102 histone acetyltransferase complex component102:
 
GRMZM2G177974
Zm00001d034033
Zm00001eb057410
Jun-Jie Zhuang et al. 2025. Evolutionary dynamics and genetic diversity of transposable elements revealed by resequencing data in maize population. Plant J. 123:e70500.     Reference: September 28th, 2025
Gene Product: August 28th, 2017
Variation: August 28th, 2017
61 days agopat7 protein S-acyltransferase7:
2.02
GRMZM2G010011
Zm00001d002534
Zm00001eb072740
Jun-Jie Zhuang et al. 2025. Evolutionary dynamics and genetic diversity of transposable elements revealed by resequencing data in maize population. Plant J. 123:e70500.     Reference: September 28th, 2025
Gene Product: February 26th, 2022
61 days agopat17 protein S-acyltransferase17:
3.06
GRMZM2G064853
Zm00001d042899
Zm00001eb148220
Jun-Jie Zhuang et al. 2025. Evolutionary dynamics and genetic diversity of transposable elements revealed by resequencing data in maize population. Plant J. 123:e70500.     Reference: September 28th, 2025
Gene Product: February 26th, 2022
61 days agoinp1 inaperturate pollen1:
 
GRMZM2G112914
Zm00001d017503
Zm00001eb249700
Jun-Jie Zhuang et al. 2025. Evolutionary dynamics and genetic diversity of transposable elements revealed by resequencing data in maize population. Plant J. 123:e70500.     Reference: September 28th, 2025
Gene Product: June 29th, 2021
Variation: December 1st, 2017
61 days agoadcl3 aminodeoxychorismate lyase3:
 
GRMZM2G069596
Zm00001d016006
Zm00001eb237500
Jun-Jie Zhuang et al. 2025. Evolutionary dynamics and genetic diversity of transposable elements revealed by resequencing data in maize population. Plant J. 123:e70500.     Reference: September 28th, 2025
Gene Product: January 14th, 2021
61 days agochn19 chitinase19:
 
GRMZM2G090441
Zm00001d025199
Zm00001eb420850
Jun-Jie Zhuang et al. 2025. Evolutionary dynamics and genetic diversity of transposable elements revealed by resequencing data in maize population. Plant J. 123:e70500.     Reference: September 28th, 2025
Gene Product: May 31st, 2021
61 days agoxrn2 exoribonuclease2:
 
GRMZM2G121404
Zm00001d040311
Zm00001eb127930
Jun-Jie Zhuang et al. 2025. Evolutionary dynamics and genetic diversity of transposable elements revealed by resequencing data in maize population. Plant J. 123:e70500.     Reference: September 28th, 2025
Gene Product: November 29th, 2021
61 days agosmc6 structural maintenance of chromosomes6:
7.02
GRMZM2G025340
Zm00001d020001
Zm00001eb309160
Jun-Jie Zhuang et al. 2025. Evolutionary dynamics and genetic diversity of transposable elements revealed by resequencing data in maize population. Plant J. 123:e70500.     Reference: September 28th, 2025
Gene Product: December 10th, 2019
61 days agocdrk3 calcium-dependent protein kinase-related kinase3:
9.04
GRMZM2G117796
Zm00001d047428
Zm00001eb394250
Jun-Jie Zhuang et al. 2025. Evolutionary dynamics and genetic diversity of transposable elements revealed by resequencing data in maize population. Plant J. 123:e70500.     Reference: September 28th, 2025
Gene Product: September 2nd, 2024
61 days agoring295 RING-type E3 ligase295:
5.01
GRMZM2G129150
Zm00001d013549
Zm00001eb217370
Jun-Jie Zhuang et al. 2025. Evolutionary dynamics and genetic diversity of transposable elements revealed by resequencing data in maize population. Plant J. 123:e70500.     Reference: September 28th, 2025
Gene Product: May 22nd, 2025
61 days agoring100 RING-type E3 ligase100:
2.02
GRMZM2G081060
Zm00001d002624
Zm00001eb073620
Jun-Jie Zhuang et al. 2025. Evolutionary dynamics and genetic diversity of transposable elements revealed by resequencing data in maize population. Plant J. 123:e70500.     Reference: September 28th, 2025
Gene Product: May 22nd, 2025
62 days agoplt32 phospholipid transfer protein32:
 
GRMZM2G063375
Zm00001d024959
Zm00001eb419150
Yirui Sun et al. 2025. TE-like DNA methylation of highly expressed endosperm genes in maize bioRxiv preprint.     Reference: September 27th, 2025
Gene Product: September 1st, 2003
62 days agons2 narrow sheath2:
4.08
Zm00001d052598
Zm00001eb197430
Trisha McAllister et al. 2025. Unlocking grass leaf development: foundations for tunable cereal design New Phytol. :doi: 10.1111/nph.70477.     Reference: September 27th, 2025
Gene Product: August 25th, 2017
Variation: June 29th, 2005
62 days agobap2 basal layer antifungal protein2:
4.05
GRMZM2G152655
Zm00001d049576
Zm00001eb172830
Yirui Sun et al. 2025. TE-like DNA methylation of highly expressed endosperm genes in maize bioRxiv preprint.     Reference: September 27th, 2025
Gene Product: September 1st, 2003
Variation: September 1st, 2003
62 days agoubp5 ubiquitin-specific protease5:
 
GRMZM2G012156
Zm00001d030960
Zm00001eb030950
Xiaojia Hao et al. 2025. Identification of Candidate Genes for Low Phosphorus Tolerance in Maize Seedling Stage Based on GWAS and Transcriptome. Plants. 14:2836.     Reference: September 27th, 2025
Gene Product: May 16th, 2024
62 days agoprx122 peroxidase122:
 
   Feixue Zhang et al. 2025. Maize Peroxidase ZmPrx25 Modulates Apoplastic ROS Homeostasis and Promotes Seed Germination and Growth Under Osmotic and Drought Stresses. Antioxidants. 14:1067.     Reference: September 27th, 2025
Gene Product: January 20th, 2025
62 days agoccp2 cysteine protease2:
7.02
GRMZM2G038636
Zm00001d020636
Zm00001eb314220
Xiaojia Hao et al. 2025. Identification of Candidate Genes for Low Phosphorus Tolerance in Maize Seedling Stage Based on GWAS and Transcriptome. Plants. 14:2836.     Reference: September 27th, 2025
Gene Product: October 11th, 2021
Variation: July 30th, 2011
62 days agolgn1 liguleless narrow1:
 
GRMZM2G134382
Zm00001d045945
Zm00001eb382080
Trisha McAllister et al. 2025. Unlocking grass leaf development: foundations for tunable cereal design New Phytol. :doi: 10.1111/nph.70477.     Reference: September 27th, 2025
Gene Product: July 10th, 2019
Variation: January 15th, 2016
62 days agohsf1 hairy sheath frayed1:
5.06 - 5.07
GRMZM2G151223
Zm00001d017977
Zm00001eb253970
Trisha McAllister et al. 2025. Unlocking grass leaf development: foundations for tunable cereal design New Phytol. :doi: 10.1111/nph.70477.     Reference: September 27th, 2025
Gene Product: May 20th, 2016
Variation: August 23rd, 2019
62 days agoal9 aleurone9:
8.08
GRMZM2G091054
Zm00001d012572
Zm00001eb369440
Yirui Sun et al. 2025. TE-like DNA methylation of highly expressed endosperm genes in maize bioRxiv preprint.     Reference: September 27th, 2025
Variation: October 14th, 2009
62 days agors2 rough sheath2:
1.05
GRMZM2G403620
Zm00001d030737
Zm00001eb029300
Trisha McAllister et al. 2025. Unlocking grass leaf development: foundations for tunable cereal design New Phytol. :doi: 10.1111/nph.70477.     Reference: September 27th, 2025
Gene Product: September 1st, 2003
Variation: May 9th, 2009
62 days agoufo1 unstable factor for orange1:
10.03
GRMZM2G053177
Zm00001d000009
Zm00001eb413240
Yirui Sun et al. 2025. TE-like DNA methylation of highly expressed endosperm genes in maize bioRxiv preprint.     Reference: September 27th, 2025
Variation: November 26th, 2024
62 days agovp8 viviparous8:
1.11
GRMZM2G010353
Zm00001d034383
Zm00001eb060200
Trisha McAllister et al. 2025. Unlocking grass leaf development: foundations for tunable cereal design New Phytol. :doi: 10.1111/nph.70477.   AT3G54720 (TAIR) Reference: September 27th, 2025
Gene Product: November 29th, 2012
Variation: July 6th, 2022
62 days agozhd21 ZF-HD-transcription factor 21:
3.05
GRMZM5G821755
Zm00001d041780
Zm00001eb138370
Trisha McAllister et al. 2025. Unlocking grass leaf development: foundations for tunable cereal design New Phytol. :doi: 10.1111/nph.70477.     Reference: September 27th, 2025
Gene Product: August 24th, 2022
Variation: April 11th, 2024
62 days agowox3a WUSCHEL homeobox 3A:
6.01
GRMZM2G122537
Zm00001d035535
Zm00001eb265710
Trisha McAllister et al. 2025. Unlocking grass leaf development: foundations for tunable cereal design New Phytol. :doi: 10.1111/nph.70477.     Reference: September 27th, 2025
Gene Product: August 25th, 2017
Variation: June 26th, 2024
62 days agowab1 Wavy auricles in blades1:
2.06 - 2.07
GRMZM2G110242
Zm00001d005737
Zm00001eb099370
Trisha McAllister et al. 2025. Unlocking grass leaf development: foundations for tunable cereal design New Phytol. :doi: 10.1111/nph.70477.   LOC_Os09g24480 (MSU/TIGR)
Os09g0410500 (Gramene)
Reference: September 27th, 2025
Gene Product: September 14th, 2016
Variation: November 2nd, 2014
62 days agoesr2 embryo surrounding region2:
1.02
GRMZM2G315601
Zm00001d027819
Zm00001eb005200
Yirui Sun et al. 2025. TE-like DNA methylation of highly expressed endosperm genes in maize bioRxiv preprint.     Reference: September 27th, 2025
Gene Product: September 1st, 2003
Variation: June 12th, 2012
62 days agoarftf25 ARF-transcription factor 25:
8.06
GRMZM2G116557
Zm00001d011953
Zm00001eb363810
Trisha McAllister et al. 2025. Unlocking grass leaf development: foundations for tunable cereal design New Phytol. :doi: 10.1111/nph.70477.     Reference: September 27th, 2025
Gene Product: January 29th, 2022
Variation: August 22nd, 2017
62 days agobige1 big embryo1:
5.00
GRMZM2G148937
Zm00001d012883
Zm00001eb211050
Trisha McAllister et al. 2025. Unlocking grass leaf development: foundations for tunable cereal design New Phytol. :doi: 10.1111/nph.70477.   At1g71870 (TAIR)
LOC_Os03g62270 (MSU/TIGR)
Reference: September 27th, 2025
Gene Product: August 17th, 2015
Variation: August 27th, 2015
62 days agoarftf10 ARF-transcription factor 10:
 
GRMZM2G338259
Zm00001d042267
Zm00001eb142540
Trisha McAllister et al. 2025. Unlocking grass leaf development: foundations for tunable cereal design New Phytol. :doi: 10.1111/nph.70477.     Reference: September 27th, 2025
Gene Product: January 29th, 2022
62 days agoarftf13 ARF-transcription factor 13:
 
GRMZM2G378580
Zm00001d049295
Zm00001eb170540
Trisha McAllister et al. 2025. Unlocking grass leaf development: foundations for tunable cereal design New Phytol. :doi: 10.1111/nph.70477.     Reference: September 27th, 2025
Gene Product: January 29th, 2022
62 days agoarftf28 ARF-transcription factor 28:
 
GRMZM2G006042
Zm00001d023659
Zm00001eb408800
Trisha McAllister et al. 2025. Unlocking grass leaf development: foundations for tunable cereal design New Phytol. :doi: 10.1111/nph.70477.     Reference: September 27th, 2025
Gene Product: January 29th, 2022
Variation: April 11th, 2025
62 days agoumc1748  :
1.06
GRMZM2G386209
Zm00001d031555
Zm00001eb035970
Xiaojia Hao et al. 2025. Identification of Candidate Genes for Low Phosphorus Tolerance in Maize Seedling Stage Based on GWAS and Transcriptome. Plants. 14:2836.     Reference: September 27th, 2025
Variation: December 8th, 2016
62 days agobet1 glycinebetaine1:
3.04
   Yirui Sun et al. 2025. TE-like DNA methylation of highly expressed endosperm genes in maize bioRxiv preprint.     Reference: September 27th, 2025
Gene Product: September 1st, 2003
Variation: September 1st, 2003
62 days agons1 narrow sheath1:
2.05
GRMZM2G069028
Zm00001d004889
Zm00001eb092480
Trisha McAllister et al. 2025. Unlocking grass leaf development: foundations for tunable cereal design New Phytol. :doi: 10.1111/nph.70477.     Reference: September 27th, 2025
Gene Product: August 25th, 2017
Variation: February 20th, 2015
62 days agomeg1 maternally expressed gene1:
7.01
GRMZM2G354335
Zm00001d019030
Zm00001eb302080
Yirui Sun et al. 2025. TE-like DNA methylation of highly expressed endosperm genes in maize bioRxiv preprint.     Reference: September 27th, 2025
Variation: January 2nd, 2022
62 days agomkkk41 MAP kinase kinase kinase41:
3.05
GRMZM2G140537
Zm00001d041599
Zm00001eb136940
Xiaojia Hao et al. 2025. Identification of Candidate Genes for Low Phosphorus Tolerance in Maize Seedling Stage Based on GWAS and Transcriptome. Plants. 14:2836.     Reference: September 27th, 2025
Gene Product: March 14th, 2022
62 days agoss5 starch synthase5:
 
GRMZM2G130043
Zm00001d051976
Zm00001eb191890
Xiaojia Hao et al. 2025. Identification of Candidate Genes for Low Phosphorus Tolerance in Maize Seedling Stage Based on GWAS and Transcriptome. Plants. 14:2836.   At5g65685 (TAIR) Reference: September 27th, 2025
Gene Product: October 14th, 2016
Variation: August 6th, 2025
62 days agoubi3 ubiquitin3:
 
GRMZM2G014119
Zm00001d036717
Zm00001eb275020
Yirui Sun et al. 2025. TE-like DNA methylation of highly expressed endosperm genes in maize bioRxiv preprint.   AT1G31340 (TAIR) Reference: September 27th, 2025
Gene Product: September 1st, 2003
62 days agopap29 purple acid phosphatase29:
 
GRMZM2G434170
Zm00001d023404
Zm00001eb406620
Xiaojia Hao et al. 2025. Identification of Candidate Genes for Low Phosphorus Tolerance in Maize Seedling Stage Based on GWAS and Transcriptome. Plants. 14:2836.     Reference: September 27th, 2025
Gene Product: November 21st, 2018
62 days agopme16 pectin methylesterase16:
 
GRMZM2G119864
Zm00001d040649
Zm00001eb130480
Xiaojia Hao et al. 2025. Identification of Candidate Genes for Low Phosphorus Tolerance in Maize Seedling Stage Based on GWAS and Transcriptome. Plants. 14:2836.     Reference: September 27th, 2025
Gene Product: September 10th, 2018
62 days agoane1 androgenic embryo1:
4.09
GRMZM2G039942
Zm00001d053331
Zm00001eb203670
Yirui Sun et al. 2025. TE-like DNA methylation of highly expressed endosperm genes in maize bioRxiv preprint.     Reference: September 27th, 2025
Variation: May 11th, 2004
62 days agoprx120 peroxidase120:
3.04
GRMZM2G089982
Zm00001d040364
Zm00001eb128330
Feixue Zhang et al. 2025. Maize Peroxidase ZmPrx25 Modulates Apoplastic ROS Homeostasis and Promotes Seed Germination and Growth Under Osmotic and Drought Stresses. Antioxidants. 14:1067.     Reference: September 27th, 2025
Gene Product: January 20th, 2025
Variation: September 25th, 2007
62 days agobetl9 basal endosperm transfer layer9:
3.05
GRMZM2G087413
Zm00001d041822
Zm00001eb138660
Yirui Sun et al. 2025. TE-like DNA methylation of highly expressed endosperm genes in maize bioRxiv preprint.     Reference: September 27th, 2025
Gene Product: September 1st, 2003
Variation: October 8th, 2009
62 days agoumc1386b  :
1.05
GRMZM2G052650
Zm00001d030999
Zm00001eb031270
Xiaojia Hao et al. 2025. Identification of Candidate Genes for Low Phosphorus Tolerance in Maize Seedling Stage Based on GWAS and Transcriptome. Plants. 14:2836.     Reference: September 27th, 2025
Variation: October 27th, 2016
62 days agoiain1 IAA-inositol1:
5.04
GRMZM2G386155
Zm00001d016459
Zm00001eb240770
Zm00001eb240780
Yirui Sun et al. 2025. TE-like DNA methylation of highly expressed endosperm genes in maize bioRxiv preprint.     Reference: September 27th, 2025
Gene Product: December 17th, 2019
63 days agoLOC100383797  :
 
GRMZM2G141517
Zm00001d018752
Zm00001eb299510
Caine, RS et al. 2016. Development 143:3306-3314     Reference: September 26th, 2025
Gene Product: April 25th, 2025
63 days agoZm00001d034240  :
 
GRMZM2G072569
Zm00001d034240
Zm00001eb059050
Caine, RS et al. 2016. Development 143:3306-3314     Reference: September 26th, 2025
Gene Product: April 25th, 2025
63 days agoepf11 epidermal patterning factor11:
 
GRMZM2G077219
Zm00001d039470
Zm00001eb121050
Caine, RS et al. 2016. Development 143:3306-3314     Reference: September 26th, 2025
Gene Product: July 10th, 2019
63 days agoepf4 epidermal patterning factor4:
 
GRMZM2G330384
Zm00001d048438
Zm00001eb403370
Caine, RS et al. 2016. Development 143:3306-3314     Reference: September 26th, 2025
Gene Product: July 10th, 2019
63 days agoepf5 epidermal patterning factor5:
 
GRMZM2G166445
Zm00001eb004650
Caine, RS et al. 2016. Development 143:3306-3314     Reference: September 26th, 2025
Gene Product: July 10th, 2019
63 days agoepf7 epidermal patterning factor7:
 
GRMZM2G046353
Zm00001d052208
Zm00001eb194040
Caine, RS et al. 2016. Development 143:3306-3314     Reference: September 26th, 2025
Gene Product: July 10th, 2019
63 days agoepf12 epidermal patterning factor12:
 
GRMZM2G005384
Zm00001d018104
Zm00001eb255380
Caine, RS et al. 2016. Development 143:3306-3314     Reference: September 26th, 2025
Gene Product: July 10th, 2019
63 days agoepf15 epidermal patterning factor15:
 
GRMZM2G162466
Zm00001d010613
Zm00001eb352020
Caine, RS et al. 2016. Development 143:3306-3314     Reference: September 26th, 2025
Gene Product: July 10th, 2019
63 days agoer3 erecta-like3:
9.03
GRMZM2G082855
Zm00001d045481
Zm00001eb378340
Caine, RS et al. 2016. Development 143:3306-3314   AT5G07180 (TAIR) Reference: September 26th, 2025
Gene Product: July 10th, 2019
63 days agoepf8 epidermal patterning factor8:
4.09
GRMZM2G167812
Zm00001d052967
Zm00001eb200540
Caine, RS et al. 2016. Development 143:3306-3314     Reference: September 26th, 2025
Gene Product: July 10th, 2019
63 days agomtl1 metallothionein1:
4.00
GRMZM2G164229
Zm00001d048611
Zm00001eb164610
Gustavo G Striker et al. 2025. Maize physiology under waterlogging: shoot and root adaptive responses to mitigate low oxygen stress. J Exp Bot. :doi: 10.1093/jxb/eraf424.     Reference: September 26th, 2025
Gene Product: September 1st, 2003
Variation: September 1st, 2003
63 days agoumc1477  :
10.04 - 10.06
GRMZM2G016477
Zm00001d026063
Zm00001eb428530
Caine, RS et al. 2016. Development 143:3306-3314     Reference: September 26th, 2025
Variation: September 1st, 2003
63 days agoepf14 epidermal patterning factor14:
5.01
GRMZM2G166094
Zm00001d013565
Zm00001eb217540
Caine, RS et al. 2016. Development 143:3306-3314     Reference: September 26th, 2025
Gene Product: July 10th, 2019
Variation: September 1st, 2003
63 days agoepf6 epidermal patterning factor6:
6.06
GRMZM2G125037
Zm00001d038469
Zm00001eb290530
Caine, RS et al. 2016. Development 143:3306-3314     Reference: September 26th, 2025
Gene Product: July 10th, 2019
63 days agoumc2383a  :
1.03 - 1.03
GRMZM2G043584
Zm00001d028317
Zm00001eb009640
Caine, RS et al. 2016. Development 143:3306-3314     Reference: September 26th, 2025
Gene Product: April 25th, 2025
Variation: August 9th, 2025
63 days agoepf9 epidermal patterning factor9:
3.06
GRMZM2G702036
Zm00001d043039
Zm00001eb149400
Caine, RS et al. 2016. Development 143:3306-3314     Reference: September 26th, 2025
Gene Product: July 10th, 2019
63 days agoopr1 12-oxo-phytodienoic acid reductase1:
9.01
GRMZM2G106303
Zm00001d044908
Zm00001eb373050
Bo Lang et al. 2025. Trichoderma harzianum Cellobiohydrolase Thph2 Induces Reactive Oxygen Species-Mediated Resistance Against Southern Corn Leaf Blight in Maize. J Fungi. 11:629.     Reference: September 26th, 2025
Gene Product: September 3rd, 2010
Variation: July 21st, 2008
63 days agoacco15 1-aminocyclopropane-1-carboxylate oxidase15:
 
GRMZM2G166639
Zm00001d024853
Zm00001eb418140
Gustavo G Striker et al. 2025. Maize physiology under waterlogging: shoot and root adaptive responses to mitigate low oxygen stress. J Exp Bot. :doi: 10.1093/jxb/eraf424.     Reference: September 26th, 2025
Gene Product: May 16th, 2016
63 days agoer1 erecta-like1:
 
GRMZM2G463904
Zm00001d018261
Zm00001eb256740
Caine, RS et al. 2016. Development 143:3306-3314   AT2G26330 (TAIR) Reference: September 26th, 2025
Gene Product: July 10th, 2019
63 days agoepf1 epidermal patterning factor-like1:
 
GRMZM2G177393
Zm00001d026401
Zm00001eb431780
Caine, RS et al. 2016. Development 143:3306-3314     Reference: September 26th, 2025
Gene Product: July 10th, 2019
63 days agoepf2 epidermal patterning factor-like2:
 
GRMZM2G431783
Zm00001d002144
Zm00001eb069150
Caine, RS et al. 2016. Development 143:3306-3314     Reference: September 26th, 2025
Gene Product: July 10th, 2019
63 days agotmm1 too many mouths-like1:
 
GRMZM2G011401
Zm00001d044182
Zm00001eb159500
Caine, RS et al. 2016. Development 143:3306-3314   AT1G80080 (TAIR) Reference: September 26th, 2025
Gene Product: February 1st, 2023
63 days agostmg1 stomagen-like1:
 
GRMZM2G170975
Zm00001d012079
Zm00001eb364920
Caine, RS et al. 2016. Development 143:3306-3314     Reference: September 26th, 2025
Gene Product: July 10th, 2019
63 days agotmm2 too many mouths-like2:
 
GRMZM2G166413
Zm00001d011757
Zm00001eb361880
Caine, RS et al. 2016. Development 143:3306-3314     Reference: September 26th, 2025
Gene Product: February 1st, 2023
63 days agorlk7 receptor-like protein kinase7:
 
GRMZM2G149051
Zm00001d020862
Zm00001eb316130
Caine, RS et al. 2016. Development 143:3306-3314   LOC_Os09g30190 (MSU/TIGR) Reference: September 26th, 2025
Gene Product: July 10th, 2019
63 days agorlk2 receptor-like protein kinase2:
 
GRMZM2G039431
Zm00001d052835
Zm00001eb199400
Caine, RS et al. 2016. Development 143:3306-3314     Reference: September 26th, 2025
Gene Product: July 10th, 2019
63 days agorlk3 receptor-like protein kinase3:
 
GRMZM2G463493
Zm00001d008715
Zm00001eb336650
Caine, RS et al. 2016. Development 143:3306-3314     Reference: September 26th, 2025
Gene Product: July 10th, 2019
63 days agorlk4 receptor-like protein kinase4:
 
GRMZM2G131609
Zm00001d037672
Zm00001eb283400
Caine, RS et al. 2016. Development 143:3306-3314     Reference: September 26th, 2025
Gene Product: July 10th, 2019
63 days agorlk5 receptor-like protein kinase5:
 
AC233861.1_FG001
Zm00001d005986
Zm00001eb101560
Caine, RS et al. 2016. Development 143:3306-3314     Reference: September 26th, 2025
Gene Product: July 10th, 2019
63 days agorboh7 respiratory burst oxidase7:
 
GRMZM2G300965
Zm00001d023859
Zm00001eb410380
Gustavo G Striker et al. 2025. Maize physiology under waterlogging: shoot and root adaptive responses to mitigate low oxygen stress. J Exp Bot. :doi: 10.1093/jxb/eraf424.     Reference: September 26th, 2025
Gene Product: February 18th, 2023
63 days agoepf3 epidermal patterning factor-like3:
 
GRMZM2G051168
Zm00001d031199
Zm00001eb032920
Caine, RS et al. 2016. Development 143:3306-3314     Reference: September 26th, 2025
Gene Product: July 10th, 2019
63 days agoer2 erecta-like2:
6.05
GRMZM5G809695
Zm00001d037114
Zm00001eb278640
Caine, RS et al. 2016. Development 143:3306-3314   AT2G26330 (TAIR) Reference: September 26th, 2025
Gene Product: July 10th, 2019
63 days agoacs6 1-aminocyclopropane-1-carboxylate synthase6:
1.10
GRMZM2G054361
Zm00001d033862
Zm00001eb055950
Gustavo G Striker et al. 2025. Maize physiology under waterlogging: shoot and root adaptive responses to mitigate low oxygen stress. J Exp Bot. :doi: 10.1093/jxb/eraf424.     Reference: September 26th, 2025
Gene Product: May 16th, 2016
Variation: August 4th, 2008
64 days agoxth20 xyloglucan endotransglucosylase/hydrolase20:
 
GRMZM2G062811
Zm00001d024378
Zm00001eb414330
O'Brien, B et al. 2025. Spatio-temporal regulation of recombinase expression enables efficient autoexcision of selectable marker genes in soybean and maize. BMC Plant Biology. 25:1215.     Reference: September 25th, 2025
Gene Product: March 23rd, 2024
64 days agoamt8 ammonium transporter8:
1.11
GRMZM2G338809
GRMZM5G883969
Zm00001d034782
Zm00001eb063910
William Kramer et al. 2025. Changes in the nitrate assimilation pathway serve as a component of maize stress response to competition cues. Frontiers in Plant Science. 16:1617659.     Reference: September 25th, 2025
Gene Product: July 8th, 2013
64 days agoba1 barren stalk1:
3.06
GRMZM2G397518
Zm00001d042989
Zm00001eb148990
O'Brien, B et al. 2025. Spatio-temporal regulation of recombinase expression enables efficient autoexcision of selectable marker genes in soybean and maize. BMC Plant Biology. 25:1215.     Reference: September 25th, 2025
Gene Product: July 19th, 2012
Variation: March 18th, 2015
64 days agora3 ramosa3:
7.06
GRMZM2G014729
Zm00001d022193
Zm00001eb327910
O'Brien, B et al. 2025. Spatio-temporal regulation of recombinase expression enables efficient autoexcision of selectable marker genes in soybean and maize. BMC Plant Biology. 25:1215.     Reference: September 25th, 2025
Gene Product: October 3rd, 2020
Variation: December 3rd, 2010
64 days agoaaap53 amino acid/auxin permease53:
7.02
GRMZM2G173967
Zm00001d019225
Zm00001eb303770
William Kramer et al. 2025. Changes in the nitrate assimilation pathway serve as a component of maize stress response to competition cues. Frontiers in Plant Science. 16:1617659.     Reference: September 25th, 2025
Gene Product: March 31st, 2021
Variation: July 6th, 2021
64 days agoamt2 ammonium transporter2:
 
GRMZM2G028736
Zm00001d017249
Zm00001eb247430
William Kramer et al. 2025. Changes in the nitrate assimilation pathway serve as a component of maize stress response to competition cues. Frontiers in Plant Science. 16:1617659.     Reference: September 25th, 2025
Gene Product: July 8th, 2013
64 days agomab24 math-btb24:
 
GRMZM2G103251
Zm00001d036643
Zm00001eb274300
O'Brien, B et al. 2025. Spatio-temporal regulation of recombinase expression enables efficient autoexcision of selectable marker genes in soybean and maize. BMC Plant Biology. 25:1215.     Reference: September 25th, 2025
Gene Product: June 6th, 2014
Variation: May 23rd, 2017
64 days agonnr5 nitrate reductase5:
 
GRMZM2G428027
Zm00001d052139
Zm00001eb193390
William Kramer et al. 2025. Changes in the nitrate assimilation pathway serve as a component of maize stress response to competition cues. Frontiers in Plant Science. 16:1617659.     Reference: September 25th, 2025
Gene Product: September 1st, 2003
64 days agoaaap11 amino acid/auxin permease11:
 
GRMZM2G137161
Zm00001d003422
Zm00001eb080770
William Kramer et al. 2025. Changes in the nitrate assimilation pathway serve as a component of maize stress response to competition cues. Frontiers in Plant Science. 16:1617659.     Reference: September 25th, 2025
Gene Product: March 31st, 2021
64 days agogogat2 glutamate synthase2:
 
GRMZM2G085078
Zm00001d043845
Zm00001eb156610
William Kramer et al. 2025. Changes in the nitrate assimilation pathway serve as a component of maize stress response to competition cues. Frontiers in Plant Science. 16:1617659.     Reference: September 25th, 2025
Gene Product: January 2nd, 2022
64 days agopat13 protein S-acyltransferase13:
 
GRMZM2G166661
Zm00001d007419
Zm00001eb113570
O'Brien, B et al. 2025. Spatio-temporal regulation of recombinase expression enables efficient autoexcision of selectable marker genes in soybean and maize. BMC Plant Biology. 25:1215.     Reference: September 25th, 2025
Gene Product: February 26th, 2022
65 days agomrpa17 multidrug resistance protein associated17:
 
GRMZM2G049351
Zm00001d041947
Zm00001eb139690
Long, TD et al. 2025. ZmMYB127 Modulates Maize Kernel Texture and Size by Integrating the Synthesis of Starch, Zein Proteins and Auxin. Plant Biotechnol J. :doi: 10.1111/pbi.70384.     Reference: September 24th, 2025
Gene Product: July 11th, 2019
65 days agoamyb6 beta amylase6:
 
GRMZM2G025833
Zm00001d014083
Zm00001eb222250
Wenqing Li et al. 2025. Transcriptomic Analysis Reveals the Key Role of Photosynthetic System Stability and Carotenoid Accumulation in Drought Tolerance in Maize. Physiol Plant. 177:e70519.     Reference: September 24th, 2025
Gene Product: February 26th, 2021
65 days agoLOC103626416  :
 
GRMZM2G156398
GRMZM2G305148
GRMZM2G456816
Zm00001d014695
Zm00001eb227150
Brar, MS et al. 2025. Untargeted metabolomics reveals key metabolites and genes underlying salinity tolerance mechanisms in maize. Plant Genome. 18:e70102.     Reference: September 24th, 2025
Gene Product: August 26th, 2024
65 days agoZm00001d031811  :
 
GRMZM2G117378
Zm00001d031811
Zm00001eb038250
Brar, MS et al. 2025. Untargeted metabolomics reveals key metabolites and genes underlying salinity tolerance mechanisms in maize. Plant Genome. 18:e70102.     Reference: September 24th, 2025
Gene Product: June 12th, 2020
65 days agohipp12 heavy metal-associated isoprenylated plant protein12:
 
   Long, TD et al. 2025. ZmMYB127 Modulates Maize Kernel Texture and Size by Integrating the Synthesis of Starch, Zein Proteins and Auxin. Plant Biotechnol J. :doi: 10.1111/pbi.70384.     Reference: September 24th, 2025
Gene Product: February 12th, 2022
65 days agoLOC103652493  :
 
   Wenqing Li et al. 2025. Transcriptomic Analysis Reveals the Key Role of Photosynthetic System Stability and Carotenoid Accumulation in Drought Tolerance in Maize. Physiol Plant. 177:e70519.     Reference: September 24th, 2025
Gene Product: July 20th, 2025
65 days agorta9 resistance to aphids 9:
 
   Wang, CH et al. 2025. The Mitochondrial Protein RESISTANCE to APHIDS 9 Interacts with S40 to Resist Aphid Infestation by Modulating Reactive Oxygen Species Homeostasis in Maize (Zea mays). Adv Sci. :e04382.     Reference: September 24th, 2025
Variation: September 24th, 2025
65 days agolhca1 light harvesting complex A1:
2.08
GRMZM2G038519
Zm00001d006663
Zm00001eb107560
Wenqing Li et al. 2025. Transcriptomic Analysis Reveals the Key Role of Photosynthetic System Stability and Carotenoid Accumulation in Drought Tolerance in Maize. Physiol Plant. 177:e70519.     Reference: September 24th, 2025
Gene Product: September 1st, 2003
Variation: February 18th, 2015
65 days agospx11 SPX domain-containing membrane protein11:
10.04
GRMZM2G018018
Zm00001d026070
Zm00001eb428590
Wenqing Li et al. 2025. Transcriptomic Analysis Reveals the Key Role of Photosynthetic System Stability and Carotenoid Accumulation in Drought Tolerance in Maize. Physiol Plant. 177:e70519.     Reference: September 24th, 2025
Gene Product: October 9th, 2021
65 days agotoc1 timing of cab expression1:
4.05
GRMZM2G020081
Zm00001d051114
Zm00001eb184870
Adak, A et al. 2025. Genomic insights into temporal growth patterns in maize using phenotyping technologies Euphytica. 221:164.   AT5G61380 (TAIR) Reference: September 24th, 2025
Gene Product: January 11th, 2018
65 days agoIDP7948  :
8.02
GRMZM2G341010
Zm00001d008674
Zm00001eb336350
Zm00001eb336360
Brar, MS et al. 2025. Untargeted metabolomics reveals key metabolites and genes underlying salinity tolerance mechanisms in maize. Plant Genome. 18:e70102.     Reference: September 24th, 2025
Gene Product: August 26th, 2024
65 days agops1 pink scutellum1:
5.04 - 5.04
GRMZM5G849107
Zm00001d015651
Zm00001eb234930
Wenqing Li et al. 2025. Transcriptomic Analysis Reveals the Key Role of Photosynthetic System Stability and Carotenoid Accumulation in Drought Tolerance in Maize. Physiol Plant. 177:e70519.     Reference: September 24th, 2025
Gene Product: December 10th, 2011
Variation: March 30th, 2011
65 days agogrf8 general regulatory factor8:
7.04 - 7.04
GRMZM2G305211
Zm00001d021885
Zm00001eb325190
Wenqing Li et al. 2025. Transcriptomic Analysis Reveals the Key Role of Photosynthetic System Stability and Carotenoid Accumulation in Drought Tolerance in Maize. Physiol Plant. 177:e70519.     Reference: September 24th, 2025
Gene Product: March 6th, 2023
65 days agopsb29 photosystem II subunit29:
7.04
GRMZM2G033885
Zm00001d021763
Zm00001eb324090
Wenqing Li et al. 2025. Transcriptomic Analysis Reveals the Key Role of Photosynthetic System Stability and Carotenoid Accumulation in Drought Tolerance in Maize. Physiol Plant. 177:e70519.     Reference: September 24th, 2025
Gene Product: September 1st, 2003
Variation: January 8th, 2015
65 days agocpp2 CPP-transcription factor 2:
 
GRMZM2G015097
Zm00001d031008
Zm00001eb031300
Wenqing Li et al. 2025. Transcriptomic Analysis Reveals the Key Role of Photosynthetic System Stability and Carotenoid Accumulation in Drought Tolerance in Maize. Physiol Plant. 177:e70519.     Reference: September 24th, 2025
Gene Product: May 30th, 2025
65 days agohagtf38 GNAT-transcription factor 38:
 
AC149475.2_FG007
Zm00001d048407
Zm00001eb403080
Brar, MS et al. 2025. Untargeted metabolomics reveals key metabolites and genes underlying salinity tolerance mechanisms in maize. Plant Genome. 18:e70102.     Reference: September 24th, 2025
Gene Product: October 17th, 2024
65 days agoumc1742  :
3.04
GRMZM2G114552
Zm00001d040026
Zm00001eb125560
Wenqing Li et al. 2025. Transcriptomic Analysis Reveals the Key Role of Photosynthetic System Stability and Carotenoid Accumulation in Drought Tolerance in Maize. Physiol Plant. 177:e70519.     Reference: September 24th, 2025
Variation: September 1st, 2003
65 days agoexpa1 alpha expansin1:
3.06
GRMZM2G339122
Zm00001d043047
Zm00001eb149460
Long, TD et al. 2025. ZmMYB127 Modulates Maize Kernel Texture and Size by Integrating the Synthesis of Starch, Zein Proteins and Auxin. Plant Biotechnol J. :doi: 10.1111/pbi.70384.     Reference: September 24th, 2025
Gene Product: March 12th, 2008
Variation: September 1st, 2003
65 days agooec33 oxygen evolving complex, 33kDa subunit:
6.02
GRMZM2G175562
Zm00001d036535
Zm00001eb273380
Wenqing Li et al. 2025. Transcriptomic Analysis Reveals the Key Role of Photosynthetic System Stability and Carotenoid Accumulation in Drought Tolerance in Maize. Physiol Plant. 177:e70519.     Reference: September 24th, 2025
Gene Product: September 1st, 2003
Variation: September 16th, 2014
65 days agodxr2 deoxy xylulose reductoisomerase2:
8.01
GRMZM2G036290
Zm00001d008427
Zm00001eb334370
Zm00001eb334380
Wenqing Li et al. 2025. Transcriptomic Analysis Reveals the Key Role of Photosynthetic System Stability and Carotenoid Accumulation in Drought Tolerance in Maize. Physiol Plant. 177:e70519.     Reference: September 24th, 2025
Gene Product: December 10th, 2011
65 days agoknox3 knotted related homeobox3:
1.10
GRMZM2G000743
Zm00001d033861
Zm00001eb055940
Adak, A et al. 2025. Genomic insights into temporal growth patterns in maize using phenotyping technologies Euphytica. 221:164.     Reference: September 24th, 2025
Gene Product: September 1st, 2003
Variation: July 2nd, 2011
65 days agofht2 flavanone 3-hydroxylase2:
1.04
GRMZM2G703582
Zm00001d029218
Zm00001eb017350
Wenqing Li et al. 2025. Transcriptomic Analysis Reveals the Key Role of Photosynthetic System Stability and Carotenoid Accumulation in Drought Tolerance in Maize. Physiol Plant. 177:e70519.     Reference: September 24th, 2025
Gene Product: June 12th, 2025
65 days agoring177 RING-type E3 ligase177:
3.04
GRMZM2G049672
Zm00001d040191
Zm00001eb126920
Long, TD et al. 2025. ZmMYB127 Modulates Maize Kernel Texture and Size by Integrating the Synthesis of Starch, Zein Proteins and Auxin. Plant Biotechnol J. :doi: 10.1111/pbi.70384.     Reference: September 24th, 2025
Gene Product: May 22nd, 2025
65 days agoxt4 beta-1,4-xylosyltransferase4:
3.05
GRMZM2G056702
Zm00001d042279
Zm00001eb142710
Long, TD et al. 2025. ZmMYB127 Modulates Maize Kernel Texture and Size by Integrating the Synthesis of Starch, Zein Proteins and Auxin. Plant Biotechnol J. :doi: 10.1111/pbi.70384.     Reference: September 24th, 2025
Gene Product: August 12th, 2022
65 days agozep2 zeaxanthin epoxidase2:
 
GRMZM2G136344
Zm00001d025545
Zm00001eb423570
Wenqing Li et al. 2025. Transcriptomic Analysis Reveals the Key Role of Photosynthetic System Stability and Carotenoid Accumulation in Drought Tolerance in Maize. Physiol Plant. 177:e70519.     Reference: September 24th, 2025
Gene Product: December 10th, 2011
Variation: August 29th, 2011
65 days agoppck1 phosphoenolpyruvate carboxylase kinase1:
 
GRMZM2G178074
Zm00001d018429
Zm00001eb258360
Wenqing Li et al. 2025. Transcriptomic Analysis Reveals the Key Role of Photosynthetic System Stability and Carotenoid Accumulation in Drought Tolerance in Maize. Physiol Plant. 177:e70519.     Reference: September 24th, 2025
Gene Product: September 1st, 2003
65 days agonced7 nine-cis-epoxycarotenoid dioxygenase7:
 
GRMZM2G330848
Zm00001d022623
Zm00001eb331980
Wenqing Li et al. 2025. Transcriptomic Analysis Reveals the Key Role of Photosynthetic System Stability and Carotenoid Accumulation in Drought Tolerance in Maize. Physiol Plant. 177:e70519.     Reference: September 24th, 2025
Gene Product: September 20th, 2012
65 days agopld11 phospholipase D11:
 
GRMZM2G140811
Zm00001d022594
Zm00001eb331700
Wenqing Li et al. 2025. Transcriptomic Analysis Reveals the Key Role of Photosynthetic System Stability and Carotenoid Accumulation in Drought Tolerance in Maize. Physiol Plant. 177:e70519.     Reference: September 24th, 2025
Gene Product: August 9th, 2016
65 days agocyp23 cytochrome P-450 23:
 
GRMZM2G018612
Zm00001d046207
Zm00001eb384100
Wenqing Li et al. 2025. Transcriptomic Analysis Reveals the Key Role of Photosynthetic System Stability and Carotenoid Accumulation in Drought Tolerance in Maize. Physiol Plant. 177:e70519.     Reference: September 24th, 2025
Gene Product: December 30th, 2022
65 days agocgt1 C-glucosyl transferase1:
 
GRMZM2G162783
Zm00001d037382
Zm00001eb280920
Brar, MS et al. 2025. Untargeted metabolomics reveals key metabolites and genes underlying salinity tolerance mechanisms in maize. Plant Genome. 18:e70102.     Reference: September 24th, 2025
Gene Product: September 24th, 2018
65 days agosaur24 small auxin up RNA24:
 
GRMZM2G479596
Zm00001d006101
Zm00001eb102510
Wenqing Li et al. 2025. Transcriptomic Analysis Reveals the Key Role of Photosynthetic System Stability and Carotenoid Accumulation in Drought Tolerance in Maize. Physiol Plant. 177:e70519.     Reference: September 24th, 2025
Gene Product: November 26th, 2021
65 days agocdpk37 calcium dependent protein kinase37:
 
GRMZM2G040743
Zm00001d029758
Zm00001eb022180
Wenqing Li et al. 2025. Transcriptomic Analysis Reveals the Key Role of Photosynthetic System Stability and Carotenoid Accumulation in Drought Tolerance in Maize. Physiol Plant. 177:e70519.     Reference: September 24th, 2025
Gene Product: December 3rd, 2013
65 days agosr45_1 splicing regulator45_1:
 
GRMZM2G060540
Zm00001d042040
Zm00001eb140450
Long, TD et al. 2025. ZmMYB127 Modulates Maize Kernel Texture and Size by Integrating the Synthesis of Starch, Zein Proteins and Auxin. Plant Biotechnol J. :doi: 10.1111/pbi.70384.     Reference: September 24th, 2025
Gene Product: October 18th, 2023
65 days agolhca2 light harvesting complex A2:
 
GRMZM2G072280
Zm00001d021906
Zm00001eb325410
Wenqing Li et al. 2025. Transcriptomic Analysis Reveals the Key Role of Photosynthetic System Stability and Carotenoid Accumulation in Drought Tolerance in Maize. Physiol Plant. 177:e70519.     Reference: September 24th, 2025
Gene Product: January 8th, 2005
65 days agogsk2 glycogen synthase kinase2:
 
GRMZM2G472625
Zm00001d008893
Zm00001eb338190
Wenqing Li et al. 2025. Transcriptomic Analysis Reveals the Key Role of Photosynthetic System Stability and Carotenoid Accumulation in Drought Tolerance in Maize. Physiol Plant. 177:e70519.     Reference: September 24th, 2025
Gene Product: February 22nd, 2022
65 days agospx8 SPX domain-containing membrane protein8:
 
GRMZM2G086430
Zm00001d002614
Zm00001eb073510
Prakash, NR et al. 2025. Meta-QTL Analysis Explores Key Candidate Gene(s) for Ear Prolificacy in ‘Sikkim Primitive’: A Unique Maize Landrace of North Eastern Himalaya J Plant Growth Reg. :doi: 10.1007/s00344-025-11874-6.     Reference: September 24th, 2025
Gene Product: October 9th, 2021
65 days agopht18 phosphate transporter protein18:
 
GRMZM2G015401
Zm00001d018187
Zm00001eb256020
Brar, MS et al. 2025. Untargeted metabolomics reveals key metabolites and genes underlying salinity tolerance mechanisms in maize. Plant Genome. 18:e70102.     Reference: September 24th, 2025
Gene Product: September 1st, 2003
65 days agogb1 glycinebetaine1:
 
GRMZM2G062531
Zm00001d040979
Zm00001eb132640
Wenqing Li et al. 2025. Transcriptomic Analysis Reveals the Key Role of Photosynthetic System Stability and Carotenoid Accumulation in Drought Tolerance in Maize. Physiol Plant. 177:e70519.     Reference: September 24th, 2025
Gene Product: November 18th, 2021
65 days agodhn18 dehydrin18:
 
Zm00001d043730
Zm00001eb155620
Wenqing Li et al. 2025. Transcriptomic Analysis Reveals the Key Role of Photosynthetic System Stability and Carotenoid Accumulation in Drought Tolerance in Maize. Physiol Plant. 177:e70519.     Reference: September 24th, 2025
Gene Product: August 5th, 2017
65 days agolea2 late embryogenesis abundant protein2:
 
GRMZM2G704475
Zm00001d047567
Zm00001eb395500
Wenqing Li et al. 2025. Transcriptomic Analysis Reveals the Key Role of Photosynthetic System Stability and Carotenoid Accumulation in Drought Tolerance in Maize. Physiol Plant. 177:e70519.     Reference: September 24th, 2025
Gene Product: January 31st, 2019
65 days agoZm00001d040192  :
 
GRMZM2G049895
Zm00001d040192
Zm00001eb126930
Long, TD et al. 2025. ZmMYB127 Modulates Maize Kernel Texture and Size by Integrating the Synthesis of Starch, Zein Proteins and Auxin. Plant Biotechnol J. :doi: 10.1111/pbi.70384.     Reference: September 24th, 2025
Gene Product: April 8th, 2022
65 days agopco085448  :
8.07
GRMZM2G028535
Zm00001d012391
Zm00001eb367740
Wenqing Li et al. 2025. Transcriptomic Analysis Reveals the Key Role of Photosynthetic System Stability and Carotenoid Accumulation in Drought Tolerance in Maize. Physiol Plant. 177:e70519.     Reference: September 24th, 2025
Gene Product: May 9th, 2025
65 days agoring67 RING-type E3 ligase67:
1.08
GRMZM2G144782
Zm00001d032810
Zm00001eb046740
Wenqing Li et al. 2025. Transcriptomic Analysis Reveals the Key Role of Photosynthetic System Stability and Carotenoid Accumulation in Drought Tolerance in Maize. Physiol Plant. 177:e70519.     Reference: September 24th, 2025
Gene Product: May 22nd, 2025
Variation: May 12th, 2006
65 days agome4 malic enzyme4:
 
GRMZM2G118770
Zm00001d012764
Zm00001eb371140
Wenqing Li et al. 2025. Transcriptomic Analysis Reveals the Key Role of Photosynthetic System Stability and Carotenoid Accumulation in Drought Tolerance in Maize. Physiol Plant. 177:e70519.     Reference: September 24th, 2025
Gene Product: June 27th, 2019
Variation: October 15th, 2010
65 days agocl41366_1  :
7.02
GRMZM2G404647
GRMZM5G825192
Zm00001d020117
Zm00001d020118
Zm00001eb310060
Wenqing Li et al. 2025. Transcriptomic Analysis Reveals the Key Role of Photosynthetic System Stability and Carotenoid Accumulation in Drought Tolerance in Maize. Physiol Plant. 177:e70519.     Reference: September 24th, 2025
Variation: July 21st, 2025
66 days agogl15 glossy15:
9.03
GRMZM2G160730
Zm00001d046621
Zm00001eb387280
Schulz, A et al. 2025. Fishing for a reelGene: evaluating gene models with evolution and machine learning. Plant J. 123:e70483.     Reference: September 23rd, 2025
Variation: October 5th, 2012
66 days agowrky82 WRKY-transcription factor 82:
 
GRMZM5G863420
Zm00001d038843
Zm00001eb294180
Zhiqiang Wu et al. 2025. A WRKY Transcription Factor, ZmWRKY82, Conferred Enhanced Drought Stress Tolerance in Maize Plants. 14:2943.     Reference: September 23rd, 2025
Variation: November 21st, 2024
66 days agosu4 sugary4:
6.05
GRMZM2G090905
Zm00001d038121
Zm00001eb287400
Boehlein, SK et al. 2025. Interactions of separately conserved α-(1→6) glucosidases that participate in maize endosperm starch biosynthesis. Plant Physiol. :doi: 10.1093/plphys/kiaf417.     Reference: September 23rd, 2025
Gene Product: October 25th, 2011
Variation: June 3rd, 2011
67 days agoLOC100283857  :
 
GRMZM2G125668
Zm00001eb180920
Gao, YG et al. 2025. Genome-wide Identification, Structural Features and Single-Cell Expression Atlas of the Carbonic Anhydrase Gene Family in Maize (Zea mays L.) bioRxiv preprint.     Reference: September 22nd, 2025
Gene Product: September 22nd, 2025
67 days agoLOC100304381  :
 
GRMZM2G051683
Zm00001d043752
Zm00001eb155800
Gao, YG et al. 2025. Genome-wide Identification, Structural Features and Single-Cell Expression Atlas of the Carbonic Anhydrase Gene Family in Maize (Zea mays L.) bioRxiv preprint.     Reference: September 22nd, 2025
Gene Product: September 22nd, 2025
67 days agoLOC107548104  :
 
GRMZM2G123966
Zm00001d016566
Zm00001eb241770
Gao, YG et al. 2025. Genome-wide Identification, Structural Features and Single-Cell Expression Atlas of the Carbonic Anhydrase Gene Family in Maize (Zea mays L.) bioRxiv preprint.     Reference: September 22nd, 2025
Gene Product: September 22nd, 2025
67 days agocah7 carbonic anhydrase7:
 
GRMZM2G113191
Zm00001d031778
Zm00001eb037940
Qiqi Zhang et al. 2023. Regulatory NADH dehydrogenase-like complex optimizes C4 photosynthetic carbon flow and cellular redox in maize. New Phytol. :doi: 10.1111/nph.19332.     Reference: October 24th, 2023
Gene Product: September 22nd, 2025
67 days agoprx79 peroxidase79:
 
GRMZM2G129935
Zm00001d022282
Zm00001eb328810
Mauritz Leonard Sommer et al. 2025. Differential cold stress intensities drive unique morphological and transcriptomic changes in Zea mays root hairs BMC Genomics. 26:805.     Reference: September 22nd, 2025
Gene Product: January 20th, 2025
67 days agoZm00001d031814  :
 
GRMZM5G814389
Zm00001d031814
Zm00001eb038280
Gao, YG et al. 2025. Genome-wide Identification, Structural Features and Single-Cell Expression Atlas of the Carbonic Anhydrase Gene Family in Maize (Zea mays L.) bioRxiv preprint.     Reference: September 22nd, 2025
Gene Product: June 12th, 2020
67 days agoZm00001eb197090  :
 
   Gao, YG et al. 2025. Genome-wide Identification, Structural Features and Single-Cell Expression Atlas of the Carbonic Anhydrase Gene Family in Maize (Zea mays L.) bioRxiv preprint.     Reference: September 22nd, 2025
Gene Product: September 22nd, 2025
67 days agoZm00001eb388490  :
 
   Gao, YG et al. 2025. Genome-wide Identification, Structural Features and Single-Cell Expression Atlas of the Carbonic Anhydrase Gene Family in Maize (Zea mays L.) bioRxiv preprint.     Reference: September 22nd, 2025
Gene Product: September 22nd, 2025
67 days agoZm00001eb158310  :
 
   Gao, YG et al. 2025. Genome-wide Identification, Structural Features and Single-Cell Expression Atlas of the Carbonic Anhydrase Gene Family in Maize (Zea mays L.) bioRxiv preprint.     Reference: September 22nd, 2025
Gene Product: September 22nd, 2025
67 days agoZm00001eb129330  :
 
   Gao, YG et al. 2025. Genome-wide Identification, Structural Features and Single-Cell Expression Atlas of the Carbonic Anhydrase Gene Family in Maize (Zea mays L.) bioRxiv preprint.     Reference: September 22nd, 2025
Gene Product: September 22nd, 2025
67 days agocah6 carbonic anhydrase6:
8.06
GRMZM2G094165
Zm00001d011454
Zm00001eb359190
Gao, YG et al. 2025. Genome-wide Identification, Structural Features and Single-Cell Expression Atlas of the Carbonic Anhydrase Gene Family in Maize (Zea mays L.) bioRxiv preprint.     Reference: September 22nd, 2025
Gene Product: September 22nd, 2025
Variation: March 2nd, 2022
67 days agoIDP7979  :
1.07
GRMZM2G113165
Zm00001d031779
Zm00001eb037950
Gao, YG et al. 2025. Genome-wide Identification, Structural Features and Single-Cell Expression Atlas of the Carbonic Anhydrase Gene Family in Maize (Zea mays L.) bioRxiv preprint.     Reference: September 22nd, 2025
Gene Product: September 22nd, 2025
67 days agoacx5 acyl-coenzyme A oxidase5:
3.06
GRMZM2G014136
Zm00001d042884
Zm00001eb148110
Yu, T et al. 2025. Proteomic Analysis of Low-Temperature Stress Response in Maize (Zea mays L.) at the Seedling Stage Curr Issues Mol Biol. 47:784.     Reference: September 22nd, 2025
Gene Product: September 17th, 2022
67 days agopebp7 phosphatidylethanolamine-binding protein7:
 
GRMZM2G141756
Zm00001d038725
Zm00001eb293080
Yang, J et al. 2025. Dual role of Gloosy15 in regulating flowering by modulating gibberellins and floral organ gene expression in maize. New Phytol. :doi: 10.1111/nph.70492.     Reference: September 22nd, 2025
Gene Product: March 19th, 2024
Variation: June 19th, 2015
67 days agoeps1 enolpyruvylshikimate phosphate synthase1:
9.07
GRMZM5G877500
Zm00001d045450
Zm00001eb378020
Yu, T et al. 2025. Proteomic Analysis of Low-Temperature Stress Response in Maize (Zea mays L.) at the Seedling Stage Curr Issues Mol Biol. 47:784.     Reference: September 22nd, 2025
Gene Product: April 18th, 2020
Variation: November 15th, 2018
67 days agodek20 defective kernel20:
8.04 - 8.09
   Yu, T et al. 2025. Proteomic Analysis of Low-Temperature Stress Response in Maize (Zea mays L.) at the Seedling Stage Curr Issues Mol Biol. 47:784.   AT4G34200 (TAIR) Reference: September 22nd, 2025
Gene Product: October 25th, 2024
Variation: May 23rd, 2025
67 days agotp1 teopod1:
7.03
   Yang, J et al. 2025. Dual role of Gloosy15 in regulating flowering by modulating gibberellins and floral organ gene expression in maize. New Phytol. :doi: 10.1111/nph.70492.     Reference: September 22nd, 2025
Variation: October 24th, 2005
67 days agotp2 teopod2:
10.04 - 10.05
GRMZM5G803487
zma-MIR156h
Yang, J et al. 2025. Dual role of Gloosy15 in regulating flowering by modulating gibberellins and floral organ gene expression in maize. New Phytol. :doi: 10.1111/nph.70492.     Reference: September 22nd, 2025
Variation: October 24th, 2005
67 days agobhlh19 bHLH-transcription factor 19:
8.01 - 8.02
GRMZM2G066057
Zm00001d008444
Zm00001eb334500
Mauritz Leonard Sommer et al. 2025. Differential cold stress intensities drive unique morphological and transcriptomic changes in Zea mays root hairs BMC Genomics. 26:805.     Reference: September 22nd, 2025
Variation: September 1st, 2003
67 days agoexpa6 expansin-like6:
1.01
GRMZM2G095968
Zm00001d027520
Zm00001eb002590
Sun, Y et al. 2025. Overexpression of Maize Expansin Gene ZmEXPA6 Improves Salt Tolerance of Arabidopsis thaliana Agronomy. 15:2240.     Reference: September 22nd, 2025
Variation: May 3rd, 2016
67 days agomyb92 MYB-transcription factor 92:
 
GRMZM2G325907
Zm00001d024630
Zm00001eb416400
Wang, YY et al. 2025. A variome-transcriptome-metabolome network links GABA biosynthesis to stress resilience in maize. Plant Cell. :doi: 10.1093/plcell/koaf221.     Reference: September 22nd, 2025
Variation: June 27th, 2025
67 days agobhlh10 bHLH-transcription factor 10:
 
GRMZM2G067654
Zm00001d045107
Zm00001eb374700
Mauritz Leonard Sommer et al. 2025. Differential cold stress intensities drive unique morphological and transcriptomic changes in Zea mays root hairs BMC Genomics. 26:805.     Reference: September 22nd, 2025
Gene Product: September 14th, 2016
Variation: December 17th, 2018
67 days agoprmt3 protein arginine methyltransferase3:
7.05
GRMZM2G041328
Zm00001d022469
Zm00001eb330380
Yu, T et al. 2025. Proteomic Analysis of Low-Temperature Stress Response in Maize (Zea mays L.) at the Seedling Stage Curr Issues Mol Biol. 47:784.     Reference: September 22nd, 2025
Gene Product: October 24th, 2022
Variation: September 1st, 2003
67 days agocesa3 cellulose synthase3:
3.03
GRMZM2G039454
Zm00001d039660
Zm00001eb122750
Mauritz Leonard Sommer et al. 2025. Differential cold stress intensities drive unique morphological and transcriptomic changes in Zea mays root hairs BMC Genomics. 26:805.     Reference: September 22nd, 2025
Gene Product: October 7th, 2016
Variation: February 27th, 2015
67 days agocesa4 cellulose synthase4:
7.02
GRMZM2G424832
Zm00001d019149
Zm00001eb303110
Mauritz Leonard Sommer et al. 2025. Differential cold stress intensities drive unique morphological and transcriptomic changes in Zea mays root hairs BMC Genomics. 26:805.     Reference: September 22nd, 2025
Gene Product: October 7th, 2016
Variation: January 3rd, 2014
67 days agocesa7 cellulose synthase7:
7.02
GRMZM2G025231
Zm00001d019507
Zm00001eb306030
Mauritz Leonard Sommer et al. 2025. Differential cold stress intensities drive unique morphological and transcriptomic changes in Zea mays root hairs BMC Genomics. 26:805.     Reference: September 22nd, 2025
Gene Product: October 7th, 2016
Variation: January 3rd, 2014
67 days agocesa6 cellulose synthase6:
1.11
GRMZM2G113137
Zm00001d034770
Zm00001eb063800
Mauritz Leonard Sommer et al. 2025. Differential cold stress intensities drive unique morphological and transcriptomic changes in Zea mays root hairs BMC Genomics. 26:805.     Reference: September 22nd, 2025
Gene Product: October 7th, 2016
Variation: November 14th, 2012
67 days agocesa8 cellulose synthase8:
7.02
GRMZM2G177631
Zm00001d019317
Zm00001eb304560
Mauritz Leonard Sommer et al. 2025. Differential cold stress intensities drive unique morphological and transcriptomic changes in Zea mays root hairs BMC Genomics. 26:805.     Reference: September 22nd, 2025
Gene Product: October 7th, 2016
Variation: January 3rd, 2014
67 days agocesa9 cellulose synthase9:
2.06
GRMZM2G018241
Zm00001d005250
Zm00001eb095350
Mauritz Leonard Sommer et al. 2025. Differential cold stress intensities drive unique morphological and transcriptomic changes in Zea mays root hairs BMC Genomics. 26:805.     Reference: September 22nd, 2025
Gene Product: October 7th, 2016
Variation: January 3rd, 2014
67 days agoelfa3 elongation factor alpha3:
6.05
GRMZM2G154218
Zm00001d037873
Zm00001eb285210
Yu, T et al. 2025. Proteomic Analysis of Low-Temperature Stress Response in Maize (Zea mays L.) at the Seedling Stage Curr Issues Mol Biol. 47:784.     Reference: September 22nd, 2025
Gene Product: September 1st, 2003
Variation: April 7th, 2014
67 days agocah2 carbonic anhydrase2:
 
GRMZM2G348512
Zm00001d044096
Zm00001eb158800
Tianshu Sun et al. 2025. Conserved spatial patterning of gene expression in independent lineages of C4 plants New Phytol. :doi: 10.1111/nph.70475.     Reference: August 23rd, 2025
Gene Product: September 22nd, 2025
Variation: May 25th, 2018
67 days agocah3 carbonic anhydrase3:
 
GRMZM2G348512
Zm00001d044095
Zm00001eb158800
Tianshu Sun et al. 2025. Conserved spatial patterning of gene expression in independent lineages of C4 plants New Phytol. :doi: 10.1111/nph.70475.     Reference: August 23rd, 2025
Gene Product: September 22nd, 2025
67 days agonpi114a  :
8.01
GRMZM2G140885
Zm00001d008215
Zm00001eb332510
Gao, YG et al. 2025. Genome-wide Identification, Structural Features and Single-Cell Expression Atlas of the Carbonic Anhydrase Gene Family in Maize (Zea mays L.) bioRxiv preprint.     Reference: September 22nd, 2025
Gene Product: September 22nd, 2025
Variation: September 1st, 2003
67 days agocdj2 chaperone DNA J2:
1.09
GRMZM2G364069
Zm00001d033210
Zm00001eb050280
Gao, YG et al. 2025. Genome-wide Identification, Structural Features and Single-Cell Expression Atlas of the Carbonic Anhydrase Gene Family in Maize (Zea mays L.) bioRxiv preprint.     Reference: September 22nd, 2025
Gene Product: September 1st, 2003
Variation: September 29th, 2012
67 days agorth1 roothair defective1:
1.09
GRMZM2G099056
Zm00001d033303
Zm00001eb051220
Mauritz Leonard Sommer et al. 2025. Differential cold stress intensities drive unique morphological and transcriptomic changes in Zea mays root hairs BMC Genomics. 26:805.     Reference: September 22nd, 2025
Variation: April 2nd, 2007
67 days agotp3 teopod3:
3.02
   Yang, J et al. 2025. Dual role of Gloosy15 in regulating flowering by modulating gibberellins and floral organ gene expression in maize. New Phytol. :doi: 10.1111/nph.70492.     Reference: September 22nd, 2025
Variation: October 27th, 2005
67 days agoect14 evolutionarily conserved C-terminal14:
1.01
GRMZM2G076062
Zm00001d027731
Zm00001eb004420
Wang, YY et al. 2025. A variome-transcriptome-metabolome network links GABA biosynthesis to stress resilience in maize. Plant Cell. :doi: 10.1093/plcell/koaf221.     Reference: September 22nd, 2025
Gene Product: April 25th, 2024
Variation: February 1st, 2017
67 days agoaaa1 adenosylmethionine aminotransferase1:
2.02
GRMZM5G817886
Zm00001d002326
Zm00001eb070860
Yu, T et al. 2025. Proteomic Analysis of Low-Temperature Stress Response in Maize (Zea mays L.) at the Seedling Stage Curr Issues Mol Biol. 47:784.     Reference: September 22nd, 2025
Gene Product: September 1st, 2003
Variation: September 1st, 2003
67 days agocl41475_1  :
2.08
GRMZM2G001297
Zm00001d007158
Zm00001eb111400
Yu, T et al. 2025. Proteomic Analysis of Low-Temperature Stress Response in Maize (Zea mays L.) at the Seedling Stage Curr Issues Mol Biol. 47:784.   AT3G06810 (TAIR) Reference: September 22nd, 2025
Variation: September 25th, 2007
67 days agocl33905_1a  :
2.08
Zm00001eb109420
Gao, YG et al. 2025. Genome-wide Identification, Structural Features and Single-Cell Expression Atlas of the Carbonic Anhydrase Gene Family in Maize (Zea mays L.) bioRxiv preprint.     Reference: September 22nd, 2025
Gene Product: September 22nd, 2025
67 days agopco087467a  :
2.05
GRMZM2G024495
Zm00001d004909
Zm00001eb092650
Gao, YG et al. 2025. Genome-wide Identification, Structural Features and Single-Cell Expression Atlas of the Carbonic Anhydrase Gene Family in Maize (Zea mays L.) bioRxiv preprint.     Reference: September 22nd, 2025
Gene Product: September 22nd, 2025
67 days agorboh1 respiratory burst oxidase1:
3.06
GRMZM2G426953
Zm00001d042961
Zm00001eb148780
Mauritz Leonard Sommer et al. 2025. Differential cold stress intensities drive unique morphological and transcriptomic changes in Zea mays root hairs BMC Genomics. 26:805.     Reference: September 22nd, 2025
Gene Product: February 18th, 2023
Variation: June 7th, 2014
67 days agocah4 carbonic anhydrase4:
 
GRMZM2G414528
Zm00001d005920
Zm00001eb101050
Gao, YG et al. 2025. Genome-wide Identification, Structural Features and Single-Cell Expression Atlas of the Carbonic Anhydrase Gene Family in Maize (Zea mays L.) bioRxiv preprint.     Reference: September 22nd, 2025
Gene Product: September 22nd, 2025
Variation: November 11th, 2023
67 days agocah5 carbonic anhydrase5:
 
GRMZM2G145101
Zm00001d020764
Zm00001eb315340
Gao, YG et al. 2025. Genome-wide Identification, Structural Features and Single-Cell Expression Atlas of the Carbonic Anhydrase Gene Family in Maize (Zea mays L.) bioRxiv preprint.     Reference: September 22nd, 2025
Gene Product: September 22nd, 2025
67 days agoga16,17ox1 gibberellin 16,17-oxidase1:
 
GRMZM2G167673
Zm00001d038511
Zm00001eb290950
Yang, J et al. 2025. Dual role of Gloosy15 in regulating flowering by modulating gibberellins and floral organ gene expression in maize. New Phytol. :doi: 10.1111/nph.70492.     Reference: September 22nd, 2025
Gene Product: October 30th, 2014
67 days agoatl1 auxin transporter-like1:
 
GRMZM2G127949
Zm00001d042809
Zm00001eb147480
Mauritz Leonard Sommer et al. 2025. Differential cold stress intensities drive unique morphological and transcriptomic changes in Zea mays root hairs BMC Genomics. 26:805.   AT2G38120 (TAIR)
LOC_Os01g63770 (MSU/TIGR)
Reference: September 22nd, 2025
Gene Product: April 19th, 2017
Variation: April 19th, 2017
67 days agokwl1 kiwellin1:
 
GRMZM2G073114
Zm00001d013945
Zm00001eb221000
Chibbhi Bhaskar et al. 2025. Molecular puppeteering: Roles of Ustilago maydis effectors. Curr Opin Plant Biol. 88:102792.     Reference: September 22nd, 2025
Gene Product: January 22nd, 2019
67 days agoxat8 xylan α-1,3-arabinofuranosyl-transferase8:
 
GRMZM2G176576
Zm00001d042490
Zm00001eb144500
Mauritz Leonard Sommer et al. 2025. Differential cold stress intensities drive unique morphological and transcriptomic changes in Zea mays root hairs BMC Genomics. 26:805.     Reference: September 22nd, 2025
Gene Product: July 3rd, 2020
67 days agoxat1 xylan α-1,3-arabinofuranosyl-transferase1:
 
GRMZM2G096946
Zm00001d053282
Zm00001eb203240
Mauritz Leonard Sommer et al. 2025. Differential cold stress intensities drive unique morphological and transcriptomic changes in Zea mays root hairs BMC Genomics. 26:805.     Reference: September 22nd, 2025
Gene Product: July 3rd, 2020
67 days agoxat2 xylan α-1,3-arabinofuranosyl-transferase2:
 
GRMZM6G474234
Zm00001d046005
Zm00001eb382490
Mauritz Leonard Sommer et al. 2025. Differential cold stress intensities drive unique morphological and transcriptomic changes in Zea mays root hairs BMC Genomics. 26:805.     Reference: September 22nd, 2025
Gene Product: July 3rd, 2020
67 days agoxat3 xylan α-1,3-arabinofuranosyl-transferase3:
 
GRMZM2G447347
Zm00001d036122
Zm00001eb270290
Mauritz Leonard Sommer et al. 2025. Differential cold stress intensities drive unique morphological and transcriptomic changes in Zea mays root hairs BMC Genomics. 26:805.     Reference: September 22nd, 2025
Gene Product: July 3rd, 2020
67 days agoexpa7 alpha expansin7:
 
GRMZM2G127029
Zm00001d047353
Zm00001eb393650
Mauritz Leonard Sommer et al. 2025. Differential cold stress intensities drive unique morphological and transcriptomic changes in Zea mays root hairs BMC Genomics. 26:805.     Reference: September 22nd, 2025
Gene Product: March 12th, 2008
67 days agoxat5 xylan α-1,3-arabinofuranosyl-transferase5:
 
GRMZM2G062552
Zm00001d015186
Zm00001eb231570
Mauritz Leonard Sommer et al. 2025. Differential cold stress intensities drive unique morphological and transcriptomic changes in Zea mays root hairs BMC Genomics. 26:805.     Reference: September 22nd, 2025
Gene Product: July 3rd, 2020
67 days agoxat6 xylan α-1,3-arabinofuranosyl-transferase6:
 
GRMZM2G099082
Zm00001eb355700
Mauritz Leonard Sommer et al. 2025. Differential cold stress intensities drive unique morphological and transcriptomic changes in Zea mays root hairs BMC Genomics. 26:805.     Reference: September 22nd, 2025
Gene Product: July 3rd, 2020
67 days agoxat7 xylan α-1,3-arabinofuranosyl-transferase7:
 
GRMZM2G094579
Zm00001d054000
Zm00001eb209190
Mauritz Leonard Sommer et al. 2025. Differential cold stress intensities drive unique morphological and transcriptomic changes in Zea mays root hairs BMC Genomics. 26:805.     Reference: September 22nd, 2025
Gene Product: July 3rd, 2020
67 days agoGRMZM2G087259  :
 
GRMZM2G087259
Zm00001d050011
Zm00001eb176620
Gao, YG et al. 2025. Genome-wide Identification, Structural Features and Single-Cell Expression Atlas of the Carbonic Anhydrase Gene Family in Maize (Zea mays L.) bioRxiv preprint.     Reference: September 22nd, 2025
Gene Product: September 22nd, 2025
67 days agoapy9 apyrase9:
 
GRMZM2G006762
Zm00001d052386
Zm00001eb195710
Mauritz Leonard Sommer et al. 2025. Differential cold stress intensities drive unique morphological and transcriptomic changes in Zea mays root hairs BMC Genomics. 26:805.   AT5G18280 (TAIR) Reference: September 22nd, 2025
Gene Product: May 15th, 2024
67 days agolrl3 ljrhl1-like3:
5.08
GRMZM5G832135
Zm00001d018374
Zm00001eb257810
Mauritz Leonard Sommer et al. 2025. Differential cold stress intensities drive unique morphological and transcriptomic changes in Zea mays root hairs BMC Genomics. 26:805.   AT5G58010 (TAIR) Reference: September 22nd, 2025
Gene Product: September 14th, 2016
67 days agoccl19 coumarate-CoA ligase19:
5.04
GRMZM2G162663
Zm00001d016659
Zm00001eb242380
Yu, T et al. 2025. Proteomic Analysis of Low-Temperature Stress Response in Maize (Zea mays L.) at the Seedling Stage Curr Issues Mol Biol. 47:784.     Reference: September 22nd, 2025
Gene Product: April 30th, 2025
67 days agocesa11 cellulose synthase 11:
3.07
GRMZM2G055795
Zm00001d043477
Zm00001eb153340
Mauritz Leonard Sommer et al. 2025. Differential cold stress intensities drive unique morphological and transcriptomic changes in Zea mays root hairs BMC Genomics. 26:805.     Reference: September 22nd, 2025
Gene Product: October 7th, 2016
Variation: March 2nd, 2025
67 days agocesa12 cellulose synthase 12:
7.02
GRMZM2G142898
Zm00001d020531
Zm00001eb313250
Mauritz Leonard Sommer et al. 2025. Differential cold stress intensities drive unique morphological and transcriptomic changes in Zea mays root hairs BMC Genomics. 26:805.     Reference: September 22nd, 2025
Gene Product: October 7th, 2016
Variation: March 5th, 2024
67 days agogad3 glutamate decarboxylase3:
1.10
GRMZM5G826838
Zm00001d033805
Zm00001eb055490
Wang, YY et al. 2025. A variome-transcriptome-metabolome network links GABA biosynthesis to stress resilience in maize. Plant Cell. :doi: 10.1093/plcell/koaf221.   AT5G17330 (TAIR) Reference: September 22nd, 2025
Gene Product: June 5th, 2025
67 days agogpm743d  :
7.05
GRMZM2G037177
Zm00001d022324
Zm00001eb329150
Gao, YG et al. 2025. Genome-wide Identification, Structural Features and Single-Cell Expression Atlas of the Carbonic Anhydrase Gene Family in Maize (Zea mays L.) bioRxiv preprint.     Reference: September 22nd, 2025
Gene Product: September 22nd, 2025
69 days agoZm00001d037695  :
 
GRMZM2G350802
Zm00001d037695
Zm00001eb283600
Diana Ruggiero et al. 2025. Spatial inheritance patterns across maize ears are associated with alleles that reduce pollen fitness bioRxiv preprint. :doi: 10.1101/2025.09.17.676879.     Reference: September 20th, 2025
Variation: September 28th, 2016
69 days agofla15 fasciclin-like arabinogalactan15:
 
   Diana Ruggiero et al. 2025. Spatial inheritance patterns across maize ears are associated with alleles that reduce pollen fitness bioRxiv preprint. :doi: 10.1101/2025.09.17.676879.     Reference: September 20th, 2025
Gene Product: July 31st, 2025
69 days agohscf1 heat shock complementing factor1:
9.03
GRMZM2G139082
Zm00001d046913
Zm00001eb389400
Yingshuang Li et al. 2025. ZmHSCF1 enhances Agrobacterium-mediated transformation frequency in commercial maize inbred lines by promoting embryogenic callus proliferation. Plant Commun. :101525.     Reference: September 20th, 2025
Variation: December 22nd, 2012
69 days agodad1 defender against cell death 1:
9.03
GRMZM5G847530
Zm00001d045555
Zm00001eb379050
Ruoya Lv et al. 2025. Positive Regulation of Maize Resistance to Bipolaris maydis by the Cell Death Suppressor ZmDAD1 SSRN. :doi: 10.2139/ssrn.5501123.     Reference: September 20th, 2025
Gene Product: September 20th, 2025
Variation: September 1st, 2015
69 days agoprx117 peroxidase117:
10.03
GRMZM2G394500
Zm00001d024734
Zm00001eb417240
Ruoya Lv et al. 2025. Positive Regulation of Maize Resistance to Bipolaris maydis by the Cell Death Suppressor ZmDAD1 SSRN. :doi: 10.2139/ssrn.5501123.     Reference: September 20th, 2025
Gene Product: January 20th, 2025
69 days agosweet12b sugars will eventually be exported transporter12b:
 
GRMZM2G099609
Zm00001d047487
Zm00001eb394800
Jiang, ZZ et al. 2025. Overexpression of sugar transporter ZmSWEET12 improved drought tolerance in maize Plant Soil. :doi: 10.1007/s11104-025-07891-9.     Reference: September 20th, 2025
Gene Product: November 4th, 2015
69 days agogex2 gamete expressed2:
 
GRMZM2G036832
Zm00001d005781
Zm00001eb099800
Diana Ruggiero et al. 2025. Spatial inheritance patterns across maize ears are associated with alleles that reduce pollen fitness bioRxiv preprint. :doi: 10.1101/2025.09.17.676879.   AT5G49150 (TAIR) Reference: September 20th, 2025
Gene Product: February 25th, 2020
Variation: February 25th, 2020
70 days agortcs1 rootless concerning crown and seminal roots1:
1.02
GRMZM2G092542
Zm00001d027679
Zm00001eb003920
Asad Azeem et al. 2025. From Genes to Fields: Genetic Determinants and Tillage Practices Shaping Cereal Root Systems for Sustainable Productivity Rhizosphere. :doi: 10.1016/j.rhisph.2025.101182.     Reference: September 19th, 2025
Gene Product: October 5th, 2009
Variation: October 5th, 2009
70 days agonactf82 NAC-transcription factor 82:
 
GRMZM2G058518
Zm00001d043921
Zm00001eb157260
Sai Teja Mummadi et al. 2025. Gene regulatory network prediction using machine learning, deep learning, and hybrid approaches. For Res. 5:e014.     Reference: September 19th, 2025
Gene Product: July 8th, 2019
Variation: September 30th, 2018
70 days agohb20 Homeobox-transcription factor 20:
9.07
GRMZM2G060507
Zm00001d048471
Zm00001eb403720
Sai Teja Mummadi et al. 2025. Gene regulatory network prediction using machine learning, deep learning, and hybrid approaches. For Res. 5:e014.     Reference: September 19th, 2025
Gene Product: February 21st, 2025
70 days agortcl1 RTCS-like1:
9.07
AC149818.2_FG009
Zm00001d048401
Zm00001eb403030
Asad Azeem et al. 2025. From Genes to Fields: Genetic Determinants and Tillage Practices Shaping Cereal Root Systems for Sustainable Productivity Rhizosphere. :doi: 10.1016/j.rhisph.2025.101182.     Reference: September 19th, 2025
Variation: January 20th, 2016
70 days agoccd8 carotenoid cleavage dioxygenase8:
 
GRMZM2G446858
Zm00001d043442
Zm00001eb153000
Berengere Decouard et al. 2025. An aeroponic system to characterize maize root exudates in relation to N and P nutrition and arbuscular mycorrhizal symbiosis. J Exp Bot. :doi: 10.1093/jxb/eraf356.     Reference: September 19th, 2025
Gene Product: September 20th, 2012
Variation: September 21st, 2012
70 days agoburp2 BURP domain-containing protein-RD22-like2:
 
GRMZM5G800586
Zm00001d043538
Zm00001eb154060
Yuankai Wang et al. 2025. The Zm4CL2 gene regulates drought stress response in Zea mays L Plant Physiol Biochem. :doi: 10.1016/j.plaphy.2025.110389.     Reference: September 19th, 2025
Gene Product: August 18th, 2017
Variation: August 18th, 2017
71 days agoZm00001eb070510  :
 
GRMZM2G080041
Zm00001d002287
Zm00001eb070510
Yu-Long Zhou et al. 2025. Exogenous allantoin improves waterlogging tolerance of summer maize by regulating the endogenous allantoin and nitrogen metabolism. Plant Physiol Biochem. 229:110507.   AT5G46330 (TAIR) Reference: September 18th, 2025
Gene Product: April 25th, 2025
71 days agomsv1 maize streak virus tolerance1:
1.04
   Kerrigan B Gilbert et al. 2025. Allelic differences within DNA polymerase delta subunit 1 (POLD1) correlate with geminivirus resistance in diverse plants G3. :doi: 10.1093/g3journal/jkaf216.     Reference: September 18th, 2025
Variation: June 22nd, 2015
71 days agopold1 DNA polymerase delta subunit 1:
 
   Kerrigan B Gilbert et al. 2025. Allelic differences within DNA polymerase delta subunit 1 (POLD1) correlate with geminivirus resistance in diverse plants G3. :doi: 10.1093/g3journal/jkaf216.     Reference: September 18th, 2025
Gene Product: September 1st, 2003
71 days agopti1 pto-interacting1:
3.04
GRMZM2G378547
Zm00001d040695
Zm00001eb130850
Yu-Long Zhou et al. 2025. Exogenous allantoin improves waterlogging tolerance of summer maize by regulating the endogenous allantoin and nitrogen metabolism. Plant Physiol Biochem. 229:110507.     Reference: September 18th, 2025
Gene Product: May 13th, 2014
71 days agonnr2 nitrate reductase2:
5.07
GRMZM5G878558
Zm00001d018206
Zm00001eb256260
Yu-Long Zhou et al. 2025. Exogenous allantoin improves waterlogging tolerance of summer maize by regulating the endogenous allantoin and nitrogen metabolism. Plant Physiol Biochem. 229:110507.     Reference: September 18th, 2025
Gene Product: September 1st, 2003
Variation: October 26th, 2010
71 days agopal5 phenylalanine ammonia lyase5:
 
GRMZM2G081582
Zm00001d051163
Zm00001eb185250
Yu-Long Zhou et al. 2025. Exogenous allantoin improves waterlogging tolerance of summer maize by regulating the endogenous allantoin and nitrogen metabolism. Plant Physiol Biochem. 229:110507.     Reference: September 18th, 2025
Gene Product: August 13th, 2022
71 days agopal4 phenylalanine ammonia lyase4:
 
GRMZM2G063917
Zm00001d051166
Zm00001eb185260
Yu-Long Zhou et al. 2025. Exogenous allantoin improves waterlogging tolerance of summer maize by regulating the endogenous allantoin and nitrogen metabolism. Plant Physiol Biochem. 229:110507.     Reference: September 18th, 2025
Gene Product: August 13th, 2022
71 days agoalla1 allantoinase1:
 
GRMZM2G173413
Zm00001d026635
Zm00001eb433900
Yu-Long Zhou et al. 2025. Exogenous allantoin improves waterlogging tolerance of summer maize by regulating the endogenous allantoin and nitrogen metabolism. Plant Physiol Biochem. 229:110507.     Reference: September 18th, 2025
Gene Product: February 7th, 2018
71 days agopal11 phenylalanine ammonia lyase11:
 
Zm00001d033286
Zm00001eb050970
Yu-Long Zhou et al. 2025. Exogenous allantoin improves waterlogging tolerance of summer maize by regulating the endogenous allantoin and nitrogen metabolism. Plant Physiol Biochem. 229:110507.     Reference: September 18th, 2025
Gene Product: August 13th, 2022
72 days agopal14 phenylalanine ammonia lyase homolog14:
 
   Tonghan Wang et al. 2025. Analysis of maize PAL pan gene family and expression pattern under lepidopteran insect stress. Frontiers in Plant Science. 16:1651563.     Reference: September 17th, 2025
Gene Product: August 13th, 2022
72 days agogdi2 guanosine nucleotide diphosphate dissociation inhibitor2:
5.06
GRMZM2G085049
Zm00001d017859
Zm00001eb252880
Juan-Juan Xu et al. 2025. ZmGDI1 Modulates Stomatal Development and Drought Response via the Rho GTPase Pathway Regulation in Maize. Physiol Plant. 177:e70528.     Reference: September 17th, 2025
Gene Product: January 24th, 2020
72 days agodek18 defective kernel18:
5.00 - 5.03
   Dinesh Kumar Saini et al. 2025. Plant’s developmental decision to either abort a flower or set seed Trends Plant Sci. :doi: 10.1016/j.tplants.2025.08.015.     Reference: September 17th, 2025
Variation: September 1st, 2003
72 days agopan1 pangloss1:
 
GRMZM5G836190
Zm00001d031437
Zm00001eb034900
Juan-Juan Xu et al. 2025. ZmGDI1 Modulates Stomatal Development and Drought Response via the Rho GTPase Pathway Regulation in Maize. Physiol Plant. 177:e70528.     Reference: September 17th, 2025
Gene Product: November 27th, 2012
Variation: July 11th, 2014
72 days agosmu2 suppressors of mec-8 and unc-52 (C.elegans):
10.00
GRMZM2G430745
Zm00001d023239
Zm00001eb405000
Dinesh Kumar Saini et al. 2025. Plant’s developmental decision to either abort a flower or set seed Trends Plant Sci. :doi: 10.1016/j.tplants.2025.08.015.   AT2G26460 (TAIR) Reference: September 17th, 2025
Gene Product: May 16th, 2025
Variation: November 17th, 2009
72 days agomn1 miniature seed1:
2.04
GRMZM2G119689
Zm00001d003776
Zm00001eb083790
Dinesh Kumar Saini et al. 2025. Plant’s developmental decision to either abort a flower or set seed Trends Plant Sci. :doi: 10.1016/j.tplants.2025.08.015.     Reference: September 17th, 2025
Gene Product: June 12th, 2018
Variation: July 17th, 2025
72 days agomrp1 Myb related protein1:
8.05
GRMZM2G111306
Zm00001d010889
Zm00001eb354390
Dinesh Kumar Saini et al. 2025. Plant’s developmental decision to either abort a flower or set seed Trends Plant Sci. :doi: 10.1016/j.tplants.2025.08.015.     Reference: September 17th, 2025
Gene Product: September 1st, 2003
Variation: September 1st, 2003
72 days agorop4 Rho-related protein from plants 4:
5.00
GRMZM2G375002
Zm00001d018573
Zm00001eb259660
Juan-Juan Xu et al. 2025. ZmGDI1 Modulates Stomatal Development and Drought Response via the Rho GTPase Pathway Regulation in Maize. Physiol Plant. 177:e70528.     Reference: September 17th, 2025
Gene Product: April 1st, 2004
72 days agosweet4c sugars will eventually be exported transporter4c:
5.04
GRMZM2G137954
Zm00001d015912
Zm00001eb236810
Dinesh Kumar Saini et al. 2025. Plant’s developmental decision to either abort a flower or set seed Trends Plant Sci. :doi: 10.1016/j.tplants.2025.08.015.   LOC_Os02g19820 (MSU/TIGR) Reference: September 17th, 2025
Gene Product: November 4th, 2015
Variation: January 11th, 2023
72 days agopan2 pangloss2:
 
GRMZM2G034572
Zm00001d007862
Zm00001eb117610
Juan-Juan Xu et al. 2025. ZmGDI1 Modulates Stomatal Development and Drought Response via the Rho GTPase Pathway Regulation in Maize. Physiol Plant. 177:e70528.   AT4G20940 (TAIR) Reference: September 17th, 2025
Gene Product: November 27th, 2012
Variation: November 27th, 2012
72 days agopal12 phenylalanine ammonia lyase homolog12:
6.01
GRMZM2G017671
Zm00001d035789
Zm00001eb267790
Tonghan Wang et al. 2025. Analysis of maize PAL pan gene family and expression pattern under lepidopteran insect stress. Frontiers in Plant Science. 16:1651563.     Reference: September 17th, 2025
Gene Product: August 13th, 2022
73 days agozim1 ZIM-transcription factor 1:
 
GRMZM2G126507
Zm00001d020409
Zm00001eb312170
Sun, Y et al. 2025. Glycerophosphodiester Phosphodiesterase ZmGPX-PDE1 Regulates Phosphorus Remobilisation and JA-Mediated Anther Development in Maize. Plant Cell Environ.     Reference: September 16th, 2025
Gene Product: February 24th, 2021
73 days agosus2 sucrose synthase2:
1.04
GRMZM2G318780
Zm00001d029091
Zm00001eb016290
Priyanka Parihar et al. 2025. Sucrose synthase dynamics and its potential role in heat stress tolerance in cereals Frontiers in Plant Science. 16:1652076.     Reference: September 16th, 2025
Gene Product: October 25th, 2006
Variation: February 1st, 2020
74 days agohb2 hemoglobin2:
6.06
GRMZM2G168898
Zm00001d038718
Zm00001eb293010
Shen Qiu et al. 2025. Physiological mechanisms and agronomic strategies underlying flood tolerance variability in dryland crops: A global meta-analysis Field Crop Res. 334:110146.     Reference: September 15th, 2025
Gene Product: February 20th, 2018
74 days agopebp6 phosphatidylethanolamine-binding protein6:
 
GRMZM2G132880
Zm00001d052537
Zm00001eb197000
Arkhestova, D Kh et al. 2025. Flowering Initiation Genes Determine the Node for Inflorence-Ear in Zea Mays L. Dokl Biochem Biophys. doi: 10.1134/S1607672925600320.     Reference: September 15th, 2025
Gene Product: March 19th, 2024
Variation: December 15th, 2010
74 days agodek5 defective kernel5:
3.02
GRMZM2G083374
Zm00001d039612
Zm00001eb122270
Jie Lei et al. 2025. Genetic control of cereal kernel texture: towards a maize model Crop J. :doi: 10.1016/j.cj.2025.08.007.     Reference: September 15th, 2025
Gene Product: June 28th, 2019
Variation: June 27th, 2019
74 days agomch1 maize CRY1 homolog1:
 
GRMZM5G805627
Zm00001d046583
Zm00001eb386940
Jie Lei et al. 2025. Genetic control of cereal kernel texture: towards a maize model Crop J. :doi: 10.1016/j.cj.2025.08.007.     Reference: September 15th, 2025
Gene Product: September 1st, 2003
Variation: October 14th, 2010
74 days agoo1 opaque endosperm1:
4.08 - 4.08
GRMZM2G449909
Zm00001d052110
Zm00001eb193160
Jie Lei et al. 2025. Genetic control of cereal kernel texture: towards a maize model Crop J. :doi: 10.1016/j.cj.2025.08.007.     Reference: September 15th, 2025
Gene Product: September 1st, 2003
Variation: October 9th, 2017
74 days agoo5 opaque endosperm5:
7.02
GRMZM2G142873
Zm00001d020537
Zm00001eb313310
Jie Lei et al. 2025. Genetic control of cereal kernel texture: towards a maize model Crop J. :doi: 10.1016/j.cj.2025.08.007.     Reference: September 15th, 2025
Gene Product: June 17th, 2011
Variation: August 29th, 2011
74 days agoo7 opaque endosperm7:
10.07
GRMZM2G074759
Zm00001d026649
Zm00001eb434030
Jie Lei et al. 2025. Genetic control of cereal kernel texture: towards a maize model Crop J. :doi: 10.1016/j.cj.2025.08.007.     Reference: September 15th, 2025
Gene Product: December 20th, 2011
Variation: February 20th, 2012
74 days agopro1 proline responding1:
8.04
GRMZM2G375504
Zm00001d010056
Zm00001eb347680
Jie Lei et al. 2025. Genetic control of cereal kernel texture: towards a maize model Crop J. :doi: 10.1016/j.cj.2025.08.007.     Reference: September 15th, 2025
Gene Product: May 9th, 2025
Variation: June 18th, 2021
74 days agosh4 shrunken4:
5.05
GRMZM2G135291
Zm00001d017427
Zm00001eb248990
Jie Lei et al. 2025. Genetic control of cereal kernel texture: towards a maize model Crop J. :doi: 10.1016/j.cj.2025.08.007.     Reference: September 15th, 2025
Gene Product: September 1st, 2003
Variation: November 29th, 2023
74 days agoxet1 xyloglucan endotransglycosylase homolog1:
5.03
GRMZM2G026980
Zm00001d014615
Zm00001eb226470
Shen Qiu et al. 2025. Physiological mechanisms and agronomic strategies underlying flood tolerance variability in dryland crops: A global meta-analysis Field Crop Res. 334:110146.     Reference: September 15th, 2025
Gene Product: September 5th, 2012
74 days agoarftf17 ARF-transcription factor 17:
 
GRMZM2G159399
Zm00001d014013
Zm00001eb221620
Jie Lei et al. 2025. Genetic control of cereal kernel texture: towards a maize model Crop J. :doi: 10.1016/j.cj.2025.08.007.     Reference: September 15th, 2025
Gene Product: January 29th, 2022
Variation: March 22nd, 2024
74 days agohb1 hemoglobin1:
9.06
GRMZM2G067402
Zm00001d048020
Zm00001eb399590
Shen Qiu et al. 2025. Physiological mechanisms and agronomic strategies underlying flood tolerance variability in dryland crops: A global meta-analysis Field Crop Res. 334:110146.     Reference: September 15th, 2025
Gene Product: February 20th, 2018
Variation: September 24th, 2010
74 days agode30 defective endosperm B30:
7.01 - 7.02
AF546188.1_FG007
Zm00001d019158
Zm00001eb303160
Jie Lei et al. 2025. Genetic control of cereal kernel texture: towards a maize model Crop J. :doi: 10.1016/j.cj.2025.08.007.     Reference: September 15th, 2025
Gene Product: September 1st, 2003
Variation: September 15th, 2014
74 days agoo18 opaque18:
5.05 - 5.09
GRMZM2G105466
Zm00001d016902
Zm00001eb244650
Jie Lei et al. 2025. Genetic control of cereal kernel texture: towards a maize model Crop J. :doi: 10.1016/j.cj.2025.08.007.     Reference: September 15th, 2025
Gene Product: April 15th, 2022
Variation: April 15th, 2022
74 days agoarodh1 arogenate dehydrogenase1:
 
GRMZM2G084942
Zm00001d014734
Zm00001eb227480
Zm00001eb227500
Jie Lei et al. 2025. Genetic control of cereal kernel texture: towards a maize model Crop J. :doi: 10.1016/j.cj.2025.08.007.     Reference: September 15th, 2025
Gene Product: July 7th, 2018
Variation: July 7th, 2018
74 days agoocd1 oxalyl-CoA decarboxylase1:
 
GRMZM2G175171
Zm00001d008739
Zm00001eb336870
Jie Lei et al. 2025. Genetic control of cereal kernel texture: towards a maize model Crop J. :doi: 10.1016/j.cj.2025.08.007.     Reference: September 15th, 2025
Gene Product: September 12th, 2018
Variation: September 12th, 2018
74 days agoss3 starch synthase3:
 
GRMZM2G121612
Zm00001d026337
Zm00001eb431240
Jie Lei et al. 2025. Genetic control of cereal kernel texture: towards a maize model Crop J. :doi: 10.1016/j.cj.2025.08.007.     Reference: September 15th, 2025
Gene Product: October 14th, 2016
74 days agoisol1 isoamylase3-like1:
 
GRMZM2G385578
Zm00001d005948
Zm00001eb101250
Jie Lei et al. 2025. Genetic control of cereal kernel texture: towards a maize model Crop J. :doi: 10.1016/j.cj.2025.08.007.     Reference: September 15th, 2025
Gene Product: October 25th, 2011
74 days agocrk1 crumpled kernel1:
8.06
GRMZM2G144716
Zm00001d011750
Zm00001eb361800
Jie Lei et al. 2025. Genetic control of cereal kernel texture: towards a maize model Crop J. :doi: 10.1016/j.cj.2025.08.007.     Reference: September 15th, 2025
Gene Product: August 12th, 2022
Variation: August 12th, 2022
76 days agocel5 cellulase5:
 
GRMZM2G099101
Zm00001d047538
Zm00001eb395290
Yuxuan Li et al. 2025. Comparative Genomic and Transcriptomic Analysis Uncovers Metabolic Mechanisms Underlying Drought Tolerance Variation in Maize Agronomy. 15:2189.     Reference: September 13th, 2025
Gene Product: March 20th, 2023
76 days agopdcb2 plasmodesmata callose binding protein2:
 
GRMZM2G001288
Zm00001d029313
Zm00001eb018180
Siqi Sun et al. 2025. Brassinosteroids Enhance Low-Temperature Resistance by Promoting the Formation of Sugars in Maize Mesocotyls. Plants. 14:2612.     Reference: September 13th, 2025
Gene Product: August 21st, 2024
76 days agopdcb40 plasmodesmata callose binding protein40:
 
GRMZM2G325008
Zm00001d021598
Zm00001eb322450
Siqi Sun et al. 2025. Brassinosteroids Enhance Low-Temperature Resistance by Promoting the Formation of Sugars in Maize Mesocotyls. Plants. 14:2612.     Reference: September 13th, 2025
Gene Product: August 21st, 2024
76 days agoglu11 beta-glucosidase11:
 
GRMZM2G055699
Zm00001d037918
Zm00001eb285520
Yuxuan Li et al. 2025. Comparative Genomic and Transcriptomic Analysis Uncovers Metabolic Mechanisms Underlying Drought Tolerance Variation in Maize Agronomy. 15:2189.     Reference: September 13th, 2025
Gene Product: June 26th, 2019
76 days agoZm00001d028347  :
 
GRMZM2G116823
Zm00001d028347
Zm00001eb009930
Wang, F et al. 2025. Integrated GWAS and Transcriptome Analysis Reveal the Genetic and Molecular Basis of Low Nitrogen Tolerance in Maize Seedlings. Plants. 14:2689.     Reference: September 13th, 2025
Gene Product: January 20th, 2025
76 days agoamya4 alpha amylase4:
 
GRMZM2G103055
Zm00001d018159
Zm00001eb255870
Yuxuan Li et al. 2025. Comparative Genomic and Transcriptomic Analysis Uncovers Metabolic Mechanisms Underlying Drought Tolerance Variation in Maize Agronomy. 15:2189.     Reference: September 13th, 2025
Gene Product: September 1st, 2003
76 days agoarc8 ACT domain repeat8:
 
GRMZM2G459854
Zm00001d006267
Zm00001eb104040
Wang, F et al. 2025. Integrated GWAS and Transcriptome Analysis Reveal the Genetic and Molecular Basis of Low Nitrogen Tolerance in Maize Seedlings. Plants. 14:2689.     Reference: September 13th, 2025
Gene Product: May 15th, 2024
76 days agolecrk1 lectin receptor kinase1:
 
   Chuang Liu et al. 2025. An apoplastic fungal effector disrupts N-glycosylation of ZmLecRK1, inducing its degradation to suppress disease resistance in maize Nature Plants. :doi: 10.1038/s41477-025-02112-8.     Reference: September 13th, 2025
Gene Product: May 13th, 2014
Variation: September 12th, 2025
76 days agoLOC103644300  :
 
   Yuxuan Li et al. 2025. Comparative Genomic and Transcriptomic Analysis Uncovers Metabolic Mechanisms Underlying Drought Tolerance Variation in Maize Agronomy. 15:2189.     Reference: September 13th, 2025
Gene Product: March 4th, 2025
76 days agopdc4 pyruvate decarboxylase4:
 
   Siqi Sun et al. 2025. Brassinosteroids Enhance Low-Temperature Resistance by Promoting the Formation of Sugars in Maize Mesocotyls. Plants. 14:2612.     Reference: September 13th, 2025
Gene Product: September 1st, 2003
76 days agowakl59 wall associated kinase like59:
 
   Qian Yang et al. 2025. ZmWAK3-mediated cell wall remodeling and stomatal dynamics modulate drought tolerance in maize seedlings. Theor Appl Genet. 138:249.     Reference: September 13th, 2025
Gene Product: December 7th, 2023
76 days agoglu22 beta-glucosidase22:
10.04
GRMZM2G031628
GRMZM2G031660
Zm00001d025847
Zm00001eb426520
Yuxuan Li et al. 2025. Comparative Genomic and Transcriptomic Analysis Uncovers Metabolic Mechanisms Underlying Drought Tolerance Variation in Maize Agronomy. 15:2189.     Reference: September 13th, 2025
Gene Product: June 26th, 2019
76 days agoamyb2 beta amylase2:
5.03 - 5.04
GRMZM2G450125
Zm00001d027619
Zm00001eb003440
Yuxuan Li et al. 2025. Comparative Genomic and Transcriptomic Analysis Uncovers Metabolic Mechanisms Underlying Drought Tolerance Variation in Maize Agronomy. 15:2189.     Reference: September 13th, 2025
Gene Product: February 26th, 2021
Variation: September 23rd, 2013
76 days agobz2 bronze2:
1.08
GRMZM2G016241
Zm00001d032969
Zm00001eb048110
Wang Tang et al. 2025. Anthocyanin Synthesis Capability of Maize Cultivars Is Associated with Their Photosynthetic Carbon Partitioning for Growth Adaptability Under Low Phosphorus Plants. 14:2690.     Reference: September 13th, 2025
Gene Product: September 1st, 2003
Variation: March 31st, 2008
76 days agogpc3 glyceraldehyde-3-phosphate dehydrogenase3:
4.05 - 4.04
GRMZM2G071630
Zm00001d051001
Zm00001eb184000
Siqi Sun et al. 2025. Brassinosteroids Enhance Low-Temperature Resistance by Promoting the Formation of Sugars in Maize Mesocotyls. Plants. 14:2612.     Reference: September 13th, 2025
Gene Product: September 1st, 2003
Variation: June 1st, 2014
76 days agopgk3 phosphoglycerate kinase3:
5.04
GRMZM2G382914
Zm00001d015376
Zm00001eb233070
Siqi Sun et al. 2025. Brassinosteroids Enhance Low-Temperature Resistance by Promoting the Formation of Sugars in Maize Mesocotyls. Plants. 14:2612.     Reference: September 13th, 2025
Gene Product: November 24th, 2020
Variation: September 1st, 2003
76 days agopdc3 pyruvate decarboxylase3:
1.03
GRMZM2G087186
Zm00001d028759
Zm00001eb013520
Siqi Sun et al. 2025. Brassinosteroids Enhance Low-Temperature Resistance by Promoting the Formation of Sugars in Maize Mesocotyls. Plants. 14:2612.     Reference: September 13th, 2025
Gene Product: September 1st, 2003
Variation: September 1st, 2003
76 days agoeno1 enolase1:
9.02
GRMZM2G064302
Zm00001d045431
Zm00001eb377870
Siqi Sun et al. 2025. Brassinosteroids Enhance Low-Temperature Resistance by Promoting the Formation of Sugars in Maize Mesocotyls. Plants. 14:2612.     Reference: September 13th, 2025
Gene Product: September 1st, 2003
Variation: September 25th, 2007
76 days agopmg1 phosphoglycerate mutase1:
6.05
GRMZM5G833389
Zm00001d012518
Zm00001eb368990
Siqi Sun et al. 2025. Brassinosteroids Enhance Low-Temperature Resistance by Promoting the Formation of Sugars in Maize Mesocotyls. Plants. 14:2612.     Reference: September 13th, 2025
Gene Product: September 1st, 2003
Variation: September 1st, 2003
76 days agotrpp4 trehalose-6-phosphate phosphatase4:
4.08
GRMZM2G151044
Zm00001d052227
Zm00001eb194210
Siqi Sun et al. 2025. Brassinosteroids Enhance Low-Temperature Resistance by Promoting the Formation of Sugars in Maize Mesocotyls. Plants. 14:2612.     Reference: September 13th, 2025
Gene Product: October 3rd, 2020
Variation: April 2nd, 2019
76 days agosqs1 squalene synthase1:
1.11
GRMZM2G108225
Zm00001d013048
Zm00001eb212630
Wang, F et al. 2025. Integrated GWAS and Transcriptome Analysis Reveal the Genetic and Molecular Basis of Low Nitrogen Tolerance in Maize Seedlings. Plants. 14:2689.     Reference: September 13th, 2025
Gene Product: September 1st, 2003
Variation: January 27th, 2011
76 days agoprf1 profilin homolog1:
6.07
GRMZM2G074361
Zm00001d038783
Zm00001eb293600
Kumar, B et al. 2025. Genomic insights for turcicum leaf blight resistance in maize (Zea Mays L.) J Agric Food Res. 24:102340.     Reference: September 13th, 2025
Gene Product: July 13th, 2021
Variation: September 1st, 2003
76 days agogad1 glutamate decarboxylase1:
1.06
GRMZM2G017110
Zm00001d031749
Zm00001eb037690
Yuxuan Li et al. 2025. Comparative Genomic and Transcriptomic Analysis Uncovers Metabolic Mechanisms Underlying Drought Tolerance Variation in Maize Agronomy. 15:2189.   AT3G17760 (TAIR) Reference: September 13th, 2025
Gene Product: June 5th, 2025
Variation: June 16th, 2017
76 days agoAY109534  :
4.08
GRMZM2G021605
Zm00001d052233
Zm00001eb194260
Siqi Sun et al. 2025. Brassinosteroids Enhance Low-Temperature Resistance by Promoting the Formation of Sugars in Maize Mesocotyls. Plants. 14:2612.     Reference: September 13th, 2025
Variation: September 25th, 2007
76 days agoglu17 beta-glucosidase17:
1.09
AC217401.3_FG001
Zm00001d033650
Zm00001eb054240
Chuang Liu et al. 2025. An apoplastic fungal effector disrupts N-glycosylation of ZmLecRK1, inducing its degradation to suppress disease resistance in maize Nature Plants. :doi: 10.1038/s41477-025-02112-8.     Reference: September 13th, 2025
Gene Product: June 26th, 2019
Variation: November 28th, 2023
76 days agoasn2 asparagine synthetase2:
3.09
GRMZM2G093175
Zm00001d044608
Zm00001eb163240
Yuxuan Li et al. 2025. Comparative Genomic and Transcriptomic Analysis Uncovers Metabolic Mechanisms Underlying Drought Tolerance Variation in Maize Agronomy. 15:2189.     Reference: September 13th, 2025
Gene Product: February 1st, 2021
Variation: December 30th, 2015
76 days agofrk1 fructokinase1:
3.05
GRMZM2G086845
Zm00001d042536
Zm00001eb144910
Siqi Sun et al. 2025. Brassinosteroids Enhance Low-Temperature Resistance by Promoting the Formation of Sugars in Maize Mesocotyls. Plants. 14:2612.     Reference: September 13th, 2025
Variation: May 1st, 2010
76 days agohex4 hexokinase4:
 
GRMZM2G068913
Zm00001d042146
Zm00001eb141560
Siqi Sun et al. 2025. Brassinosteroids Enhance Low-Temperature Resistance by Promoting the Formation of Sugars in Maize Mesocotyls. Plants. 14:2612.     Reference: September 13th, 2025
Gene Product: September 15th, 2013
76 days agohex7 hexokinase7:
 
GRMZM2G051806
Zm00001d037689
Zm00001eb283530
Siqi Sun et al. 2025. Brassinosteroids Enhance Low-Temperature Resistance by Promoting the Formation of Sugars in Maize Mesocotyls. Plants. 14:2612.     Reference: September 13th, 2025
Gene Product: September 15th, 2013
76 days agoalt8 alanine amino transferase8:
 
GRMZM5G840582
Zm00001d007937
Zm00001eb118240
Yuxuan Li et al. 2025. Comparative Genomic and Transcriptomic Analysis Uncovers Metabolic Mechanisms Underlying Drought Tolerance Variation in Maize Agronomy. 15:2189.     Reference: September 13th, 2025
Gene Product: October 2nd, 2020
76 days agoprp11 pathogenesis-related protein11:
4.02
GRMZM2G117971
Zm00001d048949
Zm00001eb167710
Wang, F et al. 2025. Integrated GWAS and Transcriptome Analysis Reveal the Genetic and Molecular Basis of Low Nitrogen Tolerance in Maize Seedlings. Plants. 14:2689.     Reference: September 13th, 2025
Gene Product: May 31st, 2021
76 days agoacco3 1-aminocyclopropane-1-carboxylate oxidase3:
 
GRMZM2G166616
Zm00001d024852
Zm00001eb418130
Wang, F et al. 2025. Integrated GWAS and Transcriptome Analysis Reveal the Genetic and Molecular Basis of Low Nitrogen Tolerance in Maize Seedlings. Plants. 14:2689.     Reference: September 13th, 2025
Gene Product: May 16th, 2016
76 days agobx13 benzoxazinone synthesis13:
 
AC148152.3_FG005
Zm00001d007718
Zm00001eb116010
Yuxuan Li et al. 2025. Comparative Genomic and Transcriptomic Analysis Uncovers Metabolic Mechanisms Underlying Drought Tolerance Variation in Maize Agronomy. 15:2189.     Reference: September 13th, 2025
Gene Product: June 20th, 2016
Variation: June 20th, 2016
76 days agodek38 defective kernel38:
 
GRMZM2G048851
Zm00001d014595
Zm00001eb226270
Kumar, B et al. 2025. Genomic insights for turcicum leaf blight resistance in maize (Zea Mays L.) J Agric Food Res. 24:102340.   At2g39910 (TAIR) Reference: September 13th, 2025
Gene Product: June 2nd, 2017
Variation: May 2nd, 2017
76 days agocdpk17 calcium dependent protein kinase17:
 
GRMZM2G025387
Zm00001d011392
Zm00001eb358560
Kumar, B et al. 2025. Genomic insights for turcicum leaf blight resistance in maize (Zea Mays L.) J Agric Food Res. 24:102340.     Reference: September 13th, 2025
Gene Product: December 3rd, 2013
76 days agoincw7 invertase cell wall7:
 
GRMZM2G018716
Zm00001d001943
Zm00001eb067250
Siqi Sun et al. 2025. Brassinosteroids Enhance Low-Temperature Resistance by Promoting the Formation of Sugars in Maize Mesocotyls. Plants. 14:2612.     Reference: September 13th, 2025
Gene Product: June 12th, 2018
76 days agougt9250 uridinediphosphate-dependent glycosyltransferase9250:
 
GRMZM2G156127
Zm00001d019250
Zm00001eb304010
Yuxuan Li et al. 2025. Comparative Genomic and Transcriptomic Analysis Uncovers Metabolic Mechanisms Underlying Drought Tolerance Variation in Maize Agronomy. 15:2189.     Reference: September 13th, 2025
Gene Product: October 11th, 2021
76 days agoppr282 pentatricopeptide repeat protein282:
 
GRMZM2G177845
Zm00001d014599
Zm00001eb226310
Kumar, B et al. 2025. Genomic insights for turcicum leaf blight resistance in maize (Zea Mays L.) J Agric Food Res. 24:102340.   AT3G61360 (TAIR) Reference: September 13th, 2025
Gene Product: December 27th, 2016
76 days agorlk10 receptor-like protein kinase10:
 
GRMZM2G132212
Zm00001d038791
Zm00001eb293660
Kumar, B et al. 2025. Genomic insights for turcicum leaf blight resistance in maize (Zea Mays L.) J Agric Food Res. 24:102340.     Reference: September 13th, 2025
Gene Product: July 10th, 2019
Variation: September 17th, 2021
76 days agoZm00001d029087  :
 
GRMZM2G011240
GRMZM2G311182
Zm00001d029087
Zm00001eb016250
Yuxuan Li et al. 2025. Comparative Genomic and Transcriptomic Analysis Uncovers Metabolic Mechanisms Underlying Drought Tolerance Variation in Maize Agronomy. 15:2189.     Reference: September 13th, 2025
Gene Product: October 25th, 2006
77 days agoast91 anti-sigma factor antagonist domain of sulfate transporter91:
2.02
GRMZM2G395114
Zm00001d002038
Zm00001eb068160
Chen, J et al. 2025. Selenium Biofortification in Maize Kernels by Knockout of a Nuclear Localised Serine Hydroxymethyltransferase. Plant Biotechnol J. :doi: 10.1111/pbi.70347.   AT1G23090 (TAIR)
LOC_Os04g55800 (MSU/TIGR)
Reference: September 12th, 2025
Gene Product: May 8th, 2020
Variation: February 2nd, 2018
77 days agosfp5 sulfate transporter5:
9.02
GRMZM2G444801
Zm00001d000204
Zm00001eb377260
Chen, J et al. 2025. Selenium Biofortification in Maize Kernels by Knockout of a Nuclear Localised Serine Hydroxymethyltransferase. Plant Biotechnol J. :doi: 10.1111/pbi.70347.     Reference: September 12th, 2025
Gene Product: May 8th, 2020
77 days agoshmt3 serine hydroxymethyltransferase3:
8.07 - 8.07
GRMZM2G113959
GRMZM2G171116
Zm00001d012247
Zm00001eb366470
Chen, J et al. 2025. Selenium Biofortification in Maize Kernels by Knockout of a Nuclear Localised Serine Hydroxymethyltransferase. Plant Biotechnol J. :doi: 10.1111/pbi.70347.     Reference: September 12th, 2025
Gene Product: September 12th, 2025
77 days agoshmt5 serine hydroxymethyltransferase5:
3.06
GRMZM2G452630
Zm00001d042661
Zm00001eb146170
Chen, J et al. 2025. Selenium Biofortification in Maize Kernels by Knockout of a Nuclear Localised Serine Hydroxymethyltransferase. Plant Biotechnol J. :doi: 10.1111/pbi.70347.     Reference: September 12th, 2025
Gene Product: September 12th, 2025
Variation: September 12th, 2025
77 days agoaprl1 adenosine 5'-phosphosulfate reductase-like1:
7.03
AC189750.4_FG004
Zm00001d021596
Zm00001eb322440
Chen, J et al. 2025. Selenium Biofortification in Maize Kernels by Knockout of a Nuclear Localised Serine Hydroxymethyltransferase. Plant Biotechnol J. :doi: 10.1111/pbi.70347.     Reference: September 12th, 2025
Gene Product: October 10th, 2017
Variation: January 13th, 2016
77 days agoaprl2 adenosine 5'-phosphosulfate reductase-like2:
2.07
GRMZM2G087254
Zm00001d006467
Zm00001eb105800
Chen, J et al. 2025. Selenium Biofortification in Maize Kernels by Knockout of a Nuclear Localised Serine Hydroxymethyltransferase. Plant Biotechnol J. :doi: 10.1111/pbi.70347.     Reference: September 12th, 2025
Gene Product: October 10th, 2017
Variation: December 23rd, 2015
77 days agosfp2 sulfate transporter2:
 
GRMZM2G080178
Zm00001d050283
Zm00001eb178810
Chen, J et al. 2025. Selenium Biofortification in Maize Kernels by Knockout of a Nuclear Localised Serine Hydroxymethyltransferase. Plant Biotechnol J. :doi: 10.1111/pbi.70347.     Reference: September 12th, 2025
Gene Product: May 8th, 2020
77 days agosfp4 sulfate transporter4:
 
GRMZM2G154211
Zm00001d027749
Zm00001eb004550
Chen, J et al. 2025. Selenium Biofortification in Maize Kernels by Knockout of a Nuclear Localised Serine Hydroxymethyltransferase. Plant Biotechnol J. :doi: 10.1111/pbi.70347.     Reference: September 12th, 2025
Gene Product: May 8th, 2020
77 days agosfp6 sulfate transporter6:
 
GRMZM2G158013
Zm00001d043614
Zm00001eb154590
Chen, J et al. 2025. Selenium Biofortification in Maize Kernels by Knockout of a Nuclear Localised Serine Hydroxymethyltransferase. Plant Biotechnol J. :doi: 10.1111/pbi.70347.     Reference: September 12th, 2025
Gene Product: May 8th, 2020
77 days agosfp7 sulfate transporter7:
 
GRMZM2G068212
Zm00001d005256
Zm00001eb095410
Chen, J et al. 2025. Selenium Biofortification in Maize Kernels by Knockout of a Nuclear Localised Serine Hydroxymethyltransferase. Plant Biotechnol J. :doi: 10.1111/pbi.70347.     Reference: September 12th, 2025
Gene Product: May 8th, 2020
77 days agoshmt1 serine hydroxymethyltransferase1:
1.10
GRMZM2G135283
Zm00001eb056550
Chen, J et al. 2025. Selenium Biofortification in Maize Kernels by Knockout of a Nuclear Localised Serine Hydroxymethyltransferase. Plant Biotechnol J. :doi: 10.1111/pbi.70347.     Reference: September 12th, 2025
Gene Product: September 12th, 2025
Variation: March 31st, 2005
77 days agoshmt2 serine hydroxymethyltransferase2:
5.03
GRMZM2G078143
Zm00001d049234
Zm00001eb170020
Chen, J et al. 2025. Selenium Biofortification in Maize Kernels by Knockout of a Nuclear Localised Serine Hydroxymethyltransferase. Plant Biotechnol J. :doi: 10.1111/pbi.70347.     Reference: September 12th, 2025
Gene Product: September 1st, 2003
Variation: May 26th, 2015
78 days agoLOC100275543  :
 
AC214817.3_FG007
GRMZM2G701201
Zm00001d038484
Zm00001d038485
Zm00001eb290700
Lovro Vukadinović et al. 2025. Genome-Wide Association Study of Chlorophyll Fluorescence and Hyperspectral Indices in Drought-Stressed Young Plants in Maize Genes. 16:1068.     Reference: September 11th, 2025
Gene Product: July 10th, 2019
78 days agoropgef5 rho of plants guanine-nucleotide exchange factor5:
 
   Lovro Vukadinović et al. 2025. Genome-Wide Association Study of Chlorophyll Fluorescence and Hyperspectral Indices in Drought-Stressed Young Plants in Maize Genes. 16:1068.     Reference: September 11th, 2025
Gene Product: August 26th, 2024
78 days agoring174 RING-type E3 ligase174:
3.03
GRMZM5G890843
Zm00001d039706
Zm00001eb123170
Lovro Vukadinović et al. 2025. Genome-Wide Association Study of Chlorophyll Fluorescence and Hyperspectral Indices in Drought-Stressed Young Plants in Maize Genes. 16:1068.     Reference: September 11th, 2025
Gene Product: May 22nd, 2025
78 days agohb75 Homeobox-transcription factor 75:
2.02
GRMZM2G001289
Zm00001d002234
Zm00001eb070050
Madrid, G et al. 2025. An improved nuclei isolation protocol from leaf tissue for single-cell transcriptomics. PLoS One. 20:e0302118.     Reference: September 11th, 2025
Variation: September 1st, 2003
78 days agodnaj114 DnaJ family protein114:
2.04
AC235541.1_FG002
Zm00001d003948
Zm00001eb085350
Lovro Vukadinović et al. 2025. Genome-Wide Association Study of Chlorophyll Fluorescence and Hyperspectral Indices in Drought-Stressed Young Plants in Maize Genes. 16:1068.     Reference: September 11th, 2025
Gene Product: September 1st, 2003
Variation: March 18th, 2021
78 days agogras86 GRAS-transcription factor 86:
 
GRMZM2G317287
Zm00001d023247
Zm00001eb405080
Zm00001eb405090
Lovro Vukadinović et al. 2025. Genome-Wide Association Study of Chlorophyll Fluorescence and Hyperspectral Indices in Drought-Stressed Young Plants in Maize Genes. 16:1068.     Reference: September 11th, 2025
Gene Product: October 10th, 2016
78 days agozim19 ZIM-transcription factor 19:
 
GRMZM2G382794
Zm00001d034536
Zm00001eb061650
Lovro Vukadinović et al. 2025. Genome-Wide Association Study of Chlorophyll Fluorescence and Hyperspectral Indices in Drought-Stressed Young Plants in Maize Genes. 16:1068.     Reference: September 11th, 2025
Gene Product: February 24th, 2021
78 days agobhlh22 bHLH-transcription factor 22:
 
GRMZM2G162450
Zm00001d009715
Zm00001eb344960
Madrid, G et al. 2025. An improved nuclei isolation protocol from leaf tissue for single-cell transcriptomics. PLoS One. 20:e0302118.     Reference: September 11th, 2025
Variation: August 20th, 2025
78 days agoumc1948  :
1.01
GRMZM2G172758
Zm00001d027589
Zm00001eb003140
Lovro Vukadinović et al. 2025. Genome-Wide Association Study of Chlorophyll Fluorescence and Hyperspectral Indices in Drought-Stressed Young Plants in Maize Genes. 16:1068.     Reference: September 11th, 2025
Variation: May 10th, 2016
78 days agoatpA (cp)  :
 
GRMZM5G875287
Madrid, G et al. 2025. An improved nuclei isolation protocol from leaf tissue for single-cell transcriptomics. PLoS One. 20:e0302118.     Reference: September 11th, 2025
Gene Product: September 1st, 2003
78 days agoiqd4 IQ-domain 4:
1.08
GRMZM2G038988
Zm00001d033211
Zm00001eb050290
Lovro Vukadinović et al. 2025. Genome-Wide Association Study of Chlorophyll Fluorescence and Hyperspectral Indices in Drought-Stressed Young Plants in Maize Genes. 16:1068.     Reference: September 11th, 2025
Gene Product: May 23rd, 2021
78 days agosweet1b sugars will eventually be exported transporter1b:
 
GRMZM2G153358
Zm00001d038226
Zm00001eb288410
Madrid, G et al. 2025. An improved nuclei isolation protocol from leaf tissue for single-cell transcriptomics. PLoS One. 20:e0302118.     Reference: September 11th, 2025
Gene Product: November 4th, 2015
Variation: April 19th, 2019
78 days agotraf7 TNF receptor-associated factor 7:
 
GRMZM2G022606
Zm00001d023246
Zm00001eb405060
Lovro Vukadinović et al. 2025. Genome-Wide Association Study of Chlorophyll Fluorescence and Hyperspectral Indices in Drought-Stressed Young Plants in Maize Genes. 16:1068.     Reference: September 11th, 2025
Gene Product: June 30th, 2021
78 days agoasd1 aspartate-semialdehyde dehydrogenase1:
5.01
GRMZM2G076885
Zm00001d013223
Zm00001eb214360
Lovro Vukadinović et al. 2025. Genome-Wide Association Study of Chlorophyll Fluorescence and Hyperspectral Indices in Drought-Stressed Young Plants in Maize Genes. 16:1068.     Reference: September 11th, 2025
Gene Product: October 21st, 2020
78 days agopmi1 phosphomannose isomerase1:
 
GRMZM2G121066
Zm00001d040020
Zm00001eb125530
Lovro Vukadinović et al. 2025. Genome-Wide Association Study of Chlorophyll Fluorescence and Hyperspectral Indices in Drought-Stressed Young Plants in Maize Genes. 16:1068.     Reference: September 11th, 2025
Gene Product: October 21st, 2020
78 days agonmate4 nuclear-encoded maturase-related factor4:
 
GRMZM2G375999
Zm00001d046658
Zm00001eb387540
Lovro Vukadinović et al. 2025. Genome-Wide Association Study of Chlorophyll Fluorescence and Hyperspectral Indices in Drought-Stressed Young Plants in Maize Genes. 16:1068.     Reference: September 11th, 2025
Gene Product: September 1st, 2003
78 days agopet7 photosynthetic electron transport7:
 
GRMZM2G013342
Zm00001d034543
Zm00001eb061730
Lovro Vukadinović et al. 2025. Genome-Wide Association Study of Chlorophyll Fluorescence and Hyperspectral Indices in Drought-Stressed Young Plants in Maize Genes. 16:1068.     Reference: September 11th, 2025
Gene Product: May 11th, 2021
78 days agoiqd14 IQ-domain 14:
 
GRMZM2G028813
Zm00001d013112
Zm00001eb213320
Lovro Vukadinović et al. 2025. Genome-Wide Association Study of Chlorophyll Fluorescence and Hyperspectral Indices in Drought-Stressed Young Plants in Maize Genes. 16:1068.     Reference: September 11th, 2025
Gene Product: May 23rd, 2021
78 days agocyp67 cytochrome P450 67:
 
   Lovro Vukadinović et al. 2025. Genome-Wide Association Study of Chlorophyll Fluorescence and Hyperspectral Indices in Drought-Stressed Young Plants in Maize Genes. 16:1068.     Reference: September 11th, 2025
Gene Product: December 30th, 2022
78 days agoprh83 protein phosphatase homolog83:
 
GRMZM2G377904
Zm00001d013220
Zm00001eb214320
Lovro Vukadinović et al. 2025. Genome-Wide Association Study of Chlorophyll Fluorescence and Hyperspectral Indices in Drought-Stressed Young Plants in Maize Genes. 16:1068.     Reference: September 11th, 2025
Gene Product: October 25th, 2021
78 days agoaco12 aconitase12:
1.01
GRMZM2G176397
Zm00001d027558
Zm00001eb002960
Lovro Vukadinović et al. 2025. Genome-Wide Association Study of Chlorophyll Fluorescence and Hyperspectral Indices in Drought-Stressed Young Plants in Maize Genes. 16:1068.     Reference: September 11th, 2025
Gene Product: September 1st, 2003
Variation: March 31st, 2005
79 days agogg3 G-protein gamma subunit3:
 
   Huiyu Zhao et al. 2025. Plasma membrane maize Gγ protein MGG4 positively regulates seed size mainly through influencing kernel width. Plant Cell Rep. 44:210.     Reference: September 10th, 2025
Gene Product: May 1st, 2018
79 days agomips3 myo-inositol phosphate synthase3:
 
   Zhang, F et al. 2025. High-resolution time-series transcriptomic and metabolomic profiling reveals the regulatory mechanism underlying salt tolerance in maize Genome Biology. 26:275.     Reference: September 10th, 2025
Gene Product: July 13th, 2019
79 days agomips5 myo-inositol phosphate synthase5:
 
   Zhang, F et al. 2025. High-resolution time-series transcriptomic and metabolomic profiling reveals the regulatory mechanism underlying salt tolerance in maize Genome Biology. 26:275.     Reference: September 10th, 2025
Gene Product: July 13th, 2019
79 days agohb48 Homeobox-transcription factor 48:
 
GRMZM2G154641
Zm00001d042864
Zm00001eb147970
Huiyu Zhao et al. 2025. Plasma membrane maize Gγ protein MGG4 positively regulates seed size mainly through influencing kernel width. Plant Cell Rep. 44:210.     Reference: September 10th, 2025
Gene Product: February 21st, 2025
Variation: April 7th, 2017
79 days agowrky83 WRKY-transcription factor 83:
 
GRMZM2G012724
Zm00001d038023
Zm00001eb286490
Zhang, F et al. 2025. High-resolution time-series transcriptomic and metabolomic profiling reveals the regulatory mechanism underlying salt tolerance in maize Genome Biology. 26:275.     Reference: September 10th, 2025
Variation: July 2nd, 2021
79 days agogg4 G-protein gamma subunit4:
7.02
GRMZM2G172320
Zm00001d020629
Zm00001eb314160
Huiyu Zhao et al. 2025. Plasma membrane maize Gγ protein MGG4 positively regulates seed size mainly through influencing kernel width. Plant Cell Rep. 44:210.     Reference: September 10th, 2025
Gene Product: May 1st, 2018
79 days agomips2 myo-inositol phosphate synthase2:
 
GRMZM2G004528
Zm00001d048201
Zm00001eb401220
Zhang, F et al. 2025. High-resolution time-series transcriptomic and metabolomic profiling reveals the regulatory mechanism underlying salt tolerance in maize Genome Biology. 26:275.     Reference: September 10th, 2025
Gene Product: July 13th, 2019
Variation: March 20th, 2025
79 days agoat1 alkali tolerance1:
 
GRMZM2G139878
Zm00001d029464
Zm00001eb019600
Huiyu Zhao et al. 2025. Plasma membrane maize Gγ protein MGG4 positively regulates seed size mainly through influencing kernel width. Plant Cell Rep. 44:210.   Os03g0407400 (Gramene) Reference: September 10th, 2025
Gene Product: April 15th, 2021
Variation: March 23rd, 2023
80 days agosbt44 subtilisin44:
 
GRMZM2G031613
Zm00001d020867
Zm00001eb316180
Wenjie Yue et al. 2025. Genome imbalance modulates the expression of long non-coding RNAs in maize. Plant J. 123:e70464.     Reference: September 9th, 2025
Gene Product: November 11th, 2016
80 days agoarm14 armadillo domain protein14:
 
GRMZM2G125034
Zm00001d038471
Zm00001eb290550
Wenjie Yue et al. 2025. Genome imbalance modulates the expression of long non-coding RNAs in maize. Plant J. 123:e70464.     Reference: September 9th, 2025
Gene Product: February 1st, 2021
80 days agopub85 plant U-box type E3 ubiquitin ligase85:
 
GRMZM5G893055
Zm00001d032264
Zm00001eb042000
Wenjie Yue et al. 2025. Genome imbalance modulates the expression of long non-coding RNAs in maize. Plant J. 123:e70464.     Reference: September 9th, 2025
Gene Product: February 1st, 2024
80 days agometp7 metal tolerance protein7:
 
GRMZM2G032293
GRMZM2G379686
Zm00001d025130
Zm00001eb420390
Wenjie Yue et al. 2025. Genome imbalance modulates the expression of long non-coding RNAs in maize. Plant J. 123:e70464.     Reference: September 9th, 2025
Gene Product: May 23rd, 2024
80 days agoadf5 actin depolymerizing factor5:
1.03
GRMZM2G077942
Zm00001d028392
Zm00001eb010370
Wenjie Yue et al. 2025. Genome imbalance modulates the expression of long non-coding RNAs in maize. Plant J. 123:e70464.     Reference: September 9th, 2025
Gene Product: March 4th, 2020
Variation: March 4th, 2016
80 days agowox3b WUSCHEL-related homeobox 3b:
 
GRMZM2G140083
Zm00001d010998
Zm00001eb355310
Fei Du et al. 2025. Functional conservation and divergence of the WOX gene family in regulating meristem activity: From Arabidopsis to crops Plant Physiol. 199:kiaf374.     Reference: September 9th, 2025
Gene Product: August 25th, 2017
Variation: June 26th, 2024
80 days agoltp1 lipid transfer protein1:
 
GRMZM2G320373
Zm00001d038913
Zm00001eb294880
Wenjie Yue et al. 2025. Genome imbalance modulates the expression of long non-coding RNAs in maize. Plant J. 123:e70464.     Reference: September 9th, 2025
Gene Product: September 1st, 2003
80 days agoarm11 armadillo domain protein11:
 
GRMZM2G315431
Zm00001d020332
Zm00001eb311590
Wenjie Yue et al. 2025. Genome imbalance modulates the expression of long non-coding RNAs in maize. Plant J. 123:e70464.     Reference: September 9th, 2025
Gene Product: February 1st, 2021
Variation: January 31st, 2025
80 days agonope1 no perception1 :
 
GRMZM2G176737
Zm00001d024916
Zm00001eb418750
Wenjie Yue et al. 2025. Genome imbalance modulates the expression of long non-coding RNAs in maize. Plant J. 123:e70464.   LOC_Os04g01520 (MSU/TIGR) Reference: September 9th, 2025
Gene Product: September 7th, 2020
Variation: November 21st, 2020
80 days agocipk39 calcineurin B-like-interacting protein kinase39:
 
GRMZM2G356128
Zm00001d023365
Zm00001eb406290
Wenjie Yue et al. 2025. Genome imbalance modulates the expression of long non-coding RNAs in maize. Plant J. 123:e70464.     Reference: September 9th, 2025
Gene Product: August 25th, 2018
81 days agoincw3 invertase cell wall3:
10.04
GRMZM2G123633
Zm00001d025355
Zm00001eb421960
Joseph N Amoah et al. 2025. Nitrogen deficiency identifies carbon metabolism pathways and root adaptation in maize Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01631-0.     Reference: September 8th, 2025
Gene Product: June 12th, 2018
Variation: March 8th, 2022
81 days agostp2 sugar transport2:
 
AC208897.3_FG004
Zm00001d028230
Zm00001eb008810
Joseph N Amoah et al. 2025. Nitrogen deficiency identifies carbon metabolism pathways and root adaptation in maize Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01631-0.     Reference: September 8th, 2025
Gene Product: January 2nd, 2023
81 days agostp17 sugar transport protein17:
 
GRMZM2G117146
Zm00001d019138
Zm00001eb303000
Joseph N Amoah et al. 2025. Nitrogen deficiency identifies carbon metabolism pathways and root adaptation in maize Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01631-0.     Reference: September 8th, 2025
Gene Product: January 2nd, 2023
81 days agosweet6a sugars will eventually be exported transporter6a:
3.09
GRMZM2G157675
Zm00001d044421
Zm00001eb161560
Joseph N Amoah et al. 2025. Nitrogen deficiency identifies carbon metabolism pathways and root adaptation in maize Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01631-0.     Reference: September 8th, 2025
Gene Product: November 4th, 2015
Variation: March 31st, 2005
82 days agonnr4 nitrate reductase4:
 
GRMZM2G076723
Zm00001d031769
Zm00001eb037860
Ge, M et al. 2025. The transcription factor ZmNLP5 increases maize grain yield by regulating nitrogen assimilation genes Crop J. :doi: 10.1016/j.cj.2025.07.011.     Reference: September 7th, 2025
Gene Product: September 1st, 2003
Variation: December 13th, 2021
83 days agoatpB (cp)  :
 
   Huiyan Guo et al. 2025. Proteome and Ubiquitinome Analyses Reveal the Involvement of Ubiquitination in Resistance to Maize Lethal Necrosis. Mol Plant Pathol. 26:e70147.     Reference: September 6th, 2025
Gene Product: September 1st, 2003
83 days agoatpE (cp)  :
 
   Huiyan Guo et al. 2025. Proteome and Ubiquitinome Analyses Reveal the Involvement of Ubiquitination in Resistance to Maize Lethal Necrosis. Mol Plant Pathol. 26:e70147.     Reference: September 6th, 2025
Gene Product: September 1st, 2003
83 days agofba5 fructose 1,6-bisphosphate aldolase5:
 
   Huiyan Guo et al. 2025. Proteome and Ubiquitinome Analyses Reveal the Involvement of Ubiquitination in Resistance to Maize Lethal Necrosis. Mol Plant Pathol. 26:e70147.     Reference: September 6th, 2025
Gene Product: November 1st, 2024
83 days agoaco1 aconitase1:
4.04
GRMZM2G020801
Zm00001d049409
Zm00001eb171440
Huiyan Guo et al. 2025. Proteome and Ubiquitinome Analyses Reveal the Involvement of Ubiquitination in Resistance to Maize Lethal Necrosis. Mol Plant Pathol. 26:e70147.     Reference: September 6th, 2025
Gene Product: September 1st, 2003
Variation: March 28th, 2015
83 days agogo1 glycolate oxidase1:
 
GRMZM2G129246
Zm00001d018810
Zm00001eb300130
Huiyan Guo et al. 2025. Proteome and Ubiquitinome Analyses Reveal the Involvement of Ubiquitination in Resistance to Maize Lethal Necrosis. Mol Plant Pathol. 26:e70147.     Reference: September 6th, 2025
Gene Product: June 26th, 2009
Variation: September 6th, 2025
83 days agopsb3 photosystem II3:
4.04
GRMZM2G174984
Zm00001d049387
Zm00001eb171230
Huiyan Guo et al. 2025. Proteome and Ubiquitinome Analyses Reveal the Involvement of Ubiquitination in Resistance to Maize Lethal Necrosis. Mol Plant Pathol. 26:e70147.     Reference: September 6th, 2025
Variation: April 14th, 2015
83 days agothl1 thiolase1:
9.02
GRMZM2G085474
Zm00001d031212
Zm00001eb033060
Huiyan Guo et al. 2025. Proteome and Ubiquitinome Analyses Reveal the Involvement of Ubiquitination in Resistance to Maize Lethal Necrosis. Mol Plant Pathol. 26:e70147.     Reference: September 6th, 2025
Gene Product: September 1st, 2003
Variation: January 28th, 2011
83 days agofrk2 fructokinase2:
6.00
GRMZM2G051677
Zm00001d035037
Zm00001d035038
Zm00001eb260710
Huiyan Guo et al. 2025. Proteome and Ubiquitinome Analyses Reveal the Involvement of Ubiquitination in Resistance to Maize Lethal Necrosis. Mol Plant Pathol. 26:e70147.     Reference: September 6th, 2025
Variation: May 1st, 2010
83 days agopsad1 photosystem I subunit d1:
5.01
GRMZM2G024150
Zm00001d013039
Zm00001eb212520
Huiyan Guo et al. 2025. Proteome and Ubiquitinome Analyses Reveal the Involvement of Ubiquitination in Resistance to Maize Lethal Necrosis. Mol Plant Pathol. 26:e70147.     Reference: September 6th, 2025
Gene Product: September 1st, 2003
Variation: December 19th, 2014
83 days agopsbB (cp)  :
 
GRMZM5G808939
Huiyan Guo et al. 2025. Proteome and Ubiquitinome Analyses Reveal the Involvement of Ubiquitination in Resistance to Maize Lethal Necrosis. Mol Plant Pathol. 26:e70147.     Reference: September 6th, 2025
Gene Product: September 1st, 2003
83 days agopsaA (cp) psaA:
 
   Huiyan Guo et al. 2025. Proteome and Ubiquitinome Analyses Reveal the Involvement of Ubiquitination in Resistance to Maize Lethal Necrosis. Mol Plant Pathol. 26:e70147.     Reference: September 6th, 2025
Gene Product: September 1st, 2003
83 days agopsbC (cp)  :
 
   Huiyan Guo et al. 2025. Proteome and Ubiquitinome Analyses Reveal the Involvement of Ubiquitination in Resistance to Maize Lethal Necrosis. Mol Plant Pathol. 26:e70147.     Reference: September 6th, 2025
Gene Product: September 1st, 2003
83 days agopsa6 photosystem I reaction center6:
7.01
GRMZM2G012397
Zm00001d018797
Zm00001eb299990
Huiyan Guo et al. 2025. Proteome and Ubiquitinome Analyses Reveal the Involvement of Ubiquitination in Resistance to Maize Lethal Necrosis. Mol Plant Pathol. 26:e70147.     Reference: September 6th, 2025
Gene Product: September 1st, 2003
Variation: September 1st, 2003
83 days agopspb1 photosystem II oxygen evolving polypeptide1:
 
GRMZM2G016677
Zm00001d007857
Zm00001eb117670
Huiyan Guo et al. 2025. Proteome and Ubiquitinome Analyses Reveal the Involvement of Ubiquitination in Resistance to Maize Lethal Necrosis. Mol Plant Pathol. 26:e70147.     Reference: September 6th, 2025
Gene Product: September 1st, 2003
83 days agopspb2 photosystem II oxygen evolving polypeptide2:
7.01
GRMZM2G047954
Zm00001d018779
Zm00001eb299760
Huiyan Guo et al. 2025. Proteome and Ubiquitinome Analyses Reveal the Involvement of Ubiquitination in Resistance to Maize Lethal Necrosis. Mol Plant Pathol. 26:e70147.     Reference: September 6th, 2025
Gene Product: September 1st, 2003
Variation: March 31st, 2005
83 days agopet8 photosynthetic electron transport8:
10.02
GRMZM2G016622
Zm00001d019518
Zm00001eb306070
Huiyan Guo et al. 2025. Proteome and Ubiquitinome Analyses Reveal the Involvement of Ubiquitination in Resistance to Maize Lethal Necrosis. Mol Plant Pathol. 26:e70147.     Reference: September 6th, 2025
Gene Product: May 11th, 2021
83 days agoaldr1 aldose reductase1:
3.06
GRMZM2G479423
Zm00001d042869
Zm00001eb148000
Huiyan Guo et al. 2025. Proteome and Ubiquitinome Analyses Reveal the Involvement of Ubiquitination in Resistance to Maize Lethal Necrosis. Mol Plant Pathol. 26:e70147.     Reference: September 6th, 2025
Gene Product: June 23rd, 2025
84 days agoeil3 ethylene insensitive-like3:
1.04
GRMZM2G033570
Zm00001d028974
Zm00001eb015440
Dan Lv et al. 2025. Analysis of candidate genes identified via genome-wide association analysis of sugar-related traits in maize kernels. Plant Genome. 18:e70101.     Reference: September 5th, 2025
Variation: August 6th, 2008
84 days agolacs9 long-chain acyl-coA synthase9:
 
GRMZM2G339336
GRMZM5G840955
Zm00001d052399
Zm00001eb195860
Dan Lv et al. 2025. Analysis of candidate genes identified via genome-wide association analysis of sugar-related traits in maize kernels. Plant Genome. 18:e70101.     Reference: September 5th, 2025
Gene Product: October 31st, 2018
Variation: July 25th, 2024
84 days agolug9 leunig-related9:
 
GRMZM2G425377
Zm00001d011309
Zm00001eb357900
Fabio Guffanti et al. 2025. Genetic architecture and functional consequences of lateral root length in maize (Zea mays L.) bioRxiv preprint. :doi: 10.1101/2025.09.02.673713.     Reference: September 5th, 2025
Gene Product: September 10th, 2024
84 days agoIDP744  :
7.05
GRMZM2G130398
Zm00001d022316
Zm00001eb329090
Dan Lv et al. 2025. Analysis of candidate genes identified via genome-wide association analysis of sugar-related traits in maize kernels. Plant Genome. 18:e70101.     Reference: September 5th, 2025
Variation: March 31st, 2005
85 days agodof32 C2C2-Dof-transcription factor 32:
 
GRMZM2G011832
Zm00001d033093
Zm00001eb049160
Li, T et al. 2025. ZmDof08, a zinc finger transcription factor, plays critical roles in photosynthesis in maize. Plant Cell Rep. 44:207.     Reference: September 4th, 2025
Variation: September 4th, 2025
85 days agoyab1 C2C2-YABBY-transcription factor 1:
 
GRMZM2G054795
Zm00001d002829
Zm00001eb075520
Feiyan Li et al. 2025. Genome-Wide Identification of the YABBY Gene Family in Maize and Its Expression Analysis Under Low Phosphorus and High Nitrogen Stress Plants. 14:2763.     Reference: September 4th, 2025
Gene Product: October 16th, 2015
85 days agoyab3 C2C2-YABBY-transcription factor 3:
 
GRMZM2G106204
Zm00001d018829
Zm00001eb300360
Feiyan Li et al. 2025. Genome-Wide Identification of the YABBY Gene Family in Maize and Its Expression Analysis Under Low Phosphorus and High Nitrogen Stress Plants. 14:2763.     Reference: September 4th, 2025
Gene Product: October 16th, 2015
85 days agoyab4 C2C2-YABBY-transcription factor 4:
 
GRMZM2G046829
Zm00001d021863
Zm00001eb324980
Feiyan Li et al. 2025. Genome-Wide Identification of the YABBY Gene Family in Maize and Its Expression Analysis Under Low Phosphorus and High Nitrogen Stress Plants. 14:2763.     Reference: September 4th, 2025
Gene Product: October 16th, 2015
85 days agoyab5 C2C2-YABBY-transcription factor 5:
 
GRMZM2G116646
Zm00001d041277
Zm00001eb134520
Feiyan Li et al. 2025. Genome-Wide Identification of the YABBY Gene Family in Maize and Its Expression Analysis Under Low Phosphorus and High Nitrogen Stress Plants. 14:2763.     Reference: September 4th, 2025
Gene Product: October 16th, 2015
85 days agoyab11 C2C2-YABBY-transcription factor 11:
1.06
GRMZM2G141955
Zm00001d031109
Zm00001eb032110
Feiyan Li et al. 2025. Genome-Wide Identification of the YABBY Gene Family in Maize and Its Expression Analysis Under Low Phosphorus and High Nitrogen Stress Plants. 14:2763.     Reference: September 4th, 2025
Gene Product: October 16th, 2015
Variation: January 31st, 2017
85 days agoyab10 yabby homolog10:
1.07
GRMZM2G167824
Zm00001d032502
Zm00001eb043940
Feiyan Li et al. 2025. Genome-Wide Identification of the YABBY Gene Family in Maize and Its Expression Analysis Under Low Phosphorus and High Nitrogen Stress Plants. 14:2763.     Reference: September 4th, 2025
Gene Product: October 16th, 2015
Variation: March 23rd, 2009
85 days agoyab9 yabby9:
5.03
GRMZM2G074543
Zm00001d013895
Zm00001eb220660
Feiyan Li et al. 2025. Genome-Wide Identification of the YABBY Gene Family in Maize and Its Expression Analysis Under Low Phosphorus and High Nitrogen Stress Plants. 14:2763.     Reference: September 4th, 2025
Gene Product: October 16th, 2015
Variation: March 23rd, 2009
86 days agodhn4 dehydrin4:
 
GRMZM2G052364
Zm00001d010119
Zm00001eb348190
Yongfeng Xie et al. 2025. Comprehensive analysis of dehydrin genes reveals ZmDHN3 contributes to drought resistance in maize (Zea Mays L.) BMC Plant Biology. 25:1186.     Reference: September 3rd, 2025
Gene Product: August 5th, 2017
86 days agodhn5 dehydrin5:
 
Zm00001d010105
Zm00001eb348040
Yongfeng Xie et al. 2025. Comprehensive analysis of dehydrin genes reveals ZmDHN3 contributes to drought resistance in maize (Zea Mays L.) BMC Plant Biology. 25:1186.     Reference: September 3rd, 2025
Gene Product: August 5th, 2017
86 days agodhn13 dehydrin13:
1.09
GRMZM2G169372
Zm00001d033483
Zm00001eb052790
Yongfeng Xie et al. 2025. Comprehensive analysis of dehydrin genes reveals ZmDHN3 contributes to drought resistance in maize (Zea Mays L.) BMC Plant Biology. 25:1186.     Reference: September 3rd, 2025
Gene Product: August 5th, 2017
Variation: October 13th, 2016
86 days agoamya1 alpha amylase1:
 
   Joseph N Amoah et al. 2025. Nitrogen deficiency impacts growth and modulates carbon metabolism in maize. Planta. 262:94.     Reference: September 3rd, 2025
Gene Product: September 1st, 2003
Variation: May 12th, 2005
86 days agows3 white sheath3:
2.01
   Mikhailov, ME et al. 2025. Enhancing local meiotic crossovers in Arabidopsis and maize through juxtaposition of heterozygous and homozygous regions Nature Plants. :doi: 10.1038/s41477-025-02085-8.     Reference: September 3rd, 2025
Variation: September 1st, 2003
86 days agodhn3 dehydrin3:
4.06
GRMZM2G373522
Zm00001d051420
Zm00001eb187010
Yongfeng Xie et al. 2025. Comprehensive analysis of dehydrin genes reveals ZmDHN3 contributes to drought resistance in maize (Zea Mays L.) BMC Plant Biology. 25:1186.     Reference: September 3rd, 2025
Gene Product: August 5th, 2017
Variation: June 18th, 2011
86 days agomlo9 barley mlo defense gene homolog9:
2.01
GRMZM2G051974
Zm00001d001804
Zm00001eb065900
Mikhailov, ME et al. 2025. Enhancing local meiotic crossovers in Arabidopsis and maize through juxtaposition of heterozygous and homozygous regions Nature Plants. :doi: 10.1038/s41477-025-02085-8.     Reference: September 3rd, 2025
Variation: September 4th, 2014
86 days agosweet14a sugars will eventually be exported transporter14a:
 
GRMZM2G094955
Zm00001d007365
Zm00001eb113080
Joseph N Amoah et al. 2025. Nitrogen deficiency impacts growth and modulates carbon metabolism in maize. Planta. 262:94.     Reference: September 3rd, 2025
Gene Product: November 4th, 2015
86 days agodhn14 dehydrin14:
 
GRMZM2G448511
Zm00001d013647
Zm00001eb218350
Yongfeng Xie et al. 2025. Comprehensive analysis of dehydrin genes reveals ZmDHN3 contributes to drought resistance in maize (Zea Mays L.) BMC Plant Biology. 25:1186.     Reference: September 3rd, 2025
Gene Product: August 5th, 2017
86 days agodhn15 dehydrin15:
 
GRMZM2G147014
Zm00001d017547
Zm00001eb250120
Yongfeng Xie et al. 2025. Comprehensive analysis of dehydrin genes reveals ZmDHN3 contributes to drought resistance in maize (Zea Mays L.) BMC Plant Biology. 25:1186.     Reference: September 3rd, 2025
Gene Product: August 5th, 2017
86 days agoamyb1 beta-amylase1:
 
GRMZM2G082034
Zm00001d029164
Zm00001eb016920
Joseph N Amoah et al. 2025. Nitrogen deficiency impacts growth and modulates carbon metabolism in maize. Planta. 262:94.     Reference: September 3rd, 2025
Gene Product: February 26th, 2021
86 days agodhn17 dehydrin17:
 
Zm00001d010094
Zm00001eb347970
Yongfeng Xie et al. 2025. Comprehensive analysis of dehydrin genes reveals ZmDHN3 contributes to drought resistance in maize (Zea Mays L.) BMC Plant Biology. 25:1186.     Reference: September 3rd, 2025
Gene Product: August 5th, 2017
87 days agoGRMZM2G040890  :
 
GRMZM2G040890
Zm00001d018335
Zm00001eb257430
Taraka Ramji Moturu et al. 2018. Molecular evolution and diversification of the SMXL gene family. J Exp Bot. 69:2367-2378.   AT4G30350 (TAIR) Reference: September 2nd, 2025
Gene Product: September 2nd, 2025
87 days agoGRMZM2G032547  :
 
   Taraka Ramji Moturu et al. 2018. Molecular evolution and diversification of the SMXL gene family. J Exp Bot. 69:2367-2378.     Reference: September 2nd, 2025
Gene Product: September 2nd, 2025
87 days agoccp41 cysteine protease41:
 
   Tonghan Wang et al. 2025. Genome-wide molecular characterization and expression profiling of the cysteine protease gene family in maize BMC Genomics. 26:789.     Reference: September 2nd, 2025
Gene Product: October 11th, 2021
87 days agoccp42 cysteine protease42:
 
   Tonghan Wang et al. 2025. Genome-wide molecular characterization and expression profiling of the cysteine protease gene family in maize BMC Genomics. 26:789.     Reference: September 2nd, 2025
Gene Product: October 11th, 2021
87 days agoccp43 cysteine protease43:
 
   Tonghan Wang et al. 2025. Genome-wide molecular characterization and expression profiling of the cysteine protease gene family in maize BMC Genomics. 26:789.     Reference: September 2nd, 2025
Gene Product: October 11th, 2021
87 days agoccp37 cysteine protease37:
 
   Tonghan Wang et al. 2025. Genome-wide molecular characterization and expression profiling of the cysteine protease gene family in maize BMC Genomics. 26:789.     Reference: September 2nd, 2025
Gene Product: October 11th, 2021
87 days agoccp39 cysteine protease39:
 
   Tonghan Wang et al. 2025. Genome-wide molecular characterization and expression profiling of the cysteine protease gene family in maize BMC Genomics. 26:789.     Reference: September 2nd, 2025
Gene Product: October 11th, 2021
87 days agoccp40 cysteine protease40:
 
   Tonghan Wang et al. 2025. Genome-wide molecular characterization and expression profiling of the cysteine protease gene family in maize BMC Genomics. 26:789.     Reference: September 2nd, 2025
Gene Product: October 11th, 2021
87 days agoA0A1D6EBE9  :
 
   Taraka Ramji Moturu et al. 2018. Molecular evolution and diversification of the SMXL gene family. J Exp Bot. 69:2367-2378.     Reference: September 2nd, 2025
Gene Product: September 2nd, 2025
87 days agoA0A1D6EDF1  :
 
   Taraka Ramji Moturu et al. 2018. Molecular evolution and diversification of the SMXL gene family. J Exp Bot. 69:2367-2378.     Reference: September 2nd, 2025
Gene Product: September 2nd, 2025
87 days agoA0A1D6H7X9  :
 
   Taraka Ramji Moturu et al. 2018. Molecular evolution and diversification of the SMXL gene family. J Exp Bot. 69:2367-2378.     Reference: September 2nd, 2025
Gene Product: September 2nd, 2025
87 days agoA0A1D6HA37  :
 
   Taraka Ramji Moturu et al. 2018. Molecular evolution and diversification of the SMXL gene family. J Exp Bot. 69:2367-2378.     Reference: September 2nd, 2025
Gene Product: September 2nd, 2025
87 days agoA0A1D6NQU2  :
 
   Taraka Ramji Moturu et al. 2018. Molecular evolution and diversification of the SMXL gene family. J Exp Bot. 69:2367-2378.     Reference: September 2nd, 2025
Gene Product: September 2nd, 2025
87 days agoK7TGQ6  :
 
   Taraka Ramji Moturu et al. 2018. Molecular evolution and diversification of the SMXL gene family. J Exp Bot. 69:2367-2378.     Reference: September 2nd, 2025
Gene Product: September 2nd, 2025
87 days agoK7U3B1  :
 
   Taraka Ramji Moturu et al. 2018. Molecular evolution and diversification of the SMXL gene family. J Exp Bot. 69:2367-2378.     Reference: September 2nd, 2025
Gene Product: September 2nd, 2025
87 days agomir1 maize insect resistance1:
6.02
GRMZM2G150276
Zm00001d036542
Zm00001eb273450
Tonghan Wang et al. 2025. Genome-wide molecular characterization and expression profiling of the cysteine protease gene family in maize BMC Genomics. 26:789.     Reference: September 2nd, 2025
Gene Product: October 11th, 2021
Variation: November 21st, 2017
87 days agolfy1 leafy1:
 
   Zixu Ma et al. 2025. Biotic and Abiotic Factors Influencing Maize Plant Height Int J Mol Sci. 26:8530.   AT3G50930 (TAIR) Reference: September 2nd, 2025
Variation: April 2nd, 2025
87 days agomir2 maize insect resistance2:
6.02
GRMZM2G150256
Zm00001d036541
Zm00001eb273440
Tonghan Wang et al. 2025. Genome-wide molecular characterization and expression profiling of the cysteine protease gene family in maize BMC Genomics. 26:789.     Reference: September 2nd, 2025
Gene Product: September 1st, 2003
Variation: September 2nd, 2014
87 days agoccp8 cysteine protease8:
7.04
GRMZM2G036203
Zm00001d022035
Zm00001eb326560
Tonghan Wang et al. 2025. Genome-wide molecular characterization and expression profiling of the cysteine protease gene family in maize BMC Genomics. 26:789.     Reference: September 2nd, 2025
Gene Product: October 11th, 2021
Variation: September 1st, 2003
87 days agomir3 maize insect resistance3:
 
GRMZM2G166281
Zm00001d002065
Zm00001eb068400
Tonghan Wang et al. 2025. Genome-wide molecular characterization and expression profiling of the cysteine protease gene family in maize BMC Genomics. 26:789.     Reference: September 2nd, 2025
Gene Product: October 11th, 2021
Variation: August 1st, 2011
87 days agoccp10 cysteine protease10:
1.04
GRMZM2G072448
Zm00001d029568
Zm00001eb020430
Tonghan Wang et al. 2025. Genome-wide molecular characterization and expression profiling of the cysteine protease gene family in maize BMC Genomics. 26:789.     Reference: September 2nd, 2025
Gene Product: October 11th, 2021
Variation: April 17th, 2023
87 days agoccp38 cysteine protease38:
9.02
   Tonghan Wang et al. 2025. Genome-wide molecular characterization and expression profiling of the cysteine protease gene family in maize BMC Genomics. 26:789.     Reference: September 2nd, 2025
Gene Product: October 11th, 2021
87 days agoccp18 cysteine protease18:
4.03
GRMZM2G070011
Zm00001d049113
Zm00001eb169010
Tonghan Wang et al. 2025. Genome-wide molecular characterization and expression profiling of the cysteine protease gene family in maize BMC Genomics. 26:789.     Reference: September 2nd, 2025
Gene Product: October 11th, 2021
Variation: July 29th, 2004
87 days agosi606008c01  :
1.08
GRMZM5G859316
Zm00001d033231
Zm00001eb050500
Zixu Ma et al. 2025. Biotic and Abiotic Factors Influencing Maize Plant Height Int J Mol Sci. 26:8530.     Reference: September 2nd, 2025
Gene Product: April 24th, 2008
87 days agosi683003d07  :
1.08
GRMZM2G103672
Zm00001d033231
Zm00001eb050490
Zixu Ma et al. 2025. Biotic and Abiotic Factors Influencing Maize Plant Height Int J Mol Sci. 26:8530.     Reference: September 2nd, 2025
Gene Product: April 24th, 2008
87 days agoccp35 cysteine protease35:
1.07
GRMZM2G456217
Zm00001d031971
Zm00001eb039650
Tonghan Wang et al. 2025. Genome-wide molecular characterization and expression profiling of the cysteine protease gene family in maize BMC Genomics. 26:789.     Reference: September 2nd, 2025
Gene Product: October 11th, 2021
87 days agoccp45 cysteine protease45:
2.06
GRMZM5G820822
Zm00001d005828
Zm00001eb100260
Tonghan Wang et al. 2025. Genome-wide molecular characterization and expression profiling of the cysteine protease gene family in maize BMC Genomics. 26:789.     Reference: September 2nd, 2025
Gene Product: October 11th, 2021
87 days agoccp44 cysteine protease44:
2.06
GRMZM2G087728
Zm00001eb096370
Tonghan Wang et al. 2025. Genome-wide molecular characterization and expression profiling of the cysteine protease gene family in maize BMC Genomics. 26:789.     Reference: September 2nd, 2025
Gene Product: October 11th, 2021
87 days agoccp33 cysteine protease33:
3.05
AC209810.3_FG002
Zm00001d042446
Zm00001eb144160
Tonghan Wang et al. 2025. Genome-wide molecular characterization and expression profiling of the cysteine protease gene family in maize BMC Genomics. 26:789.     Reference: September 2nd, 2025
Gene Product: October 11th, 2021
87 days agocl8508_1  :
4.05
GRMZM2G119696
Zm00001d050227
Zm00001eb178400
Taraka Ramji Moturu et al. 2018. Molecular evolution and diversification of the SMXL gene family. J Exp Bot. 69:2367-2378.     Reference: September 2nd, 2025
Gene Product: September 2nd, 2025
87 days agoga20ox2 gibberellin 20-oxidase2:
 
GRMZM2G021051
Zm00001d007894
Zm00001eb117120
Zixu Ma et al. 2025. Biotic and Abiotic Factors Influencing Maize Plant Height Int J Mol Sci. 26:8530.     Reference: September 2nd, 2025
Gene Product: October 28th, 2014
87 days agosag12 senescence-associated gene12:
 
GRMZM2G061879
Zm00001d024898
Zm00001eb418570
Tonghan Wang et al. 2025. Genome-wide molecular characterization and expression profiling of the cysteine protease gene family in maize BMC Genomics. 26:789.     Reference: September 2nd, 2025
Gene Product: October 11th, 2021
87 days agobgh1 big grain1 homolog1:
 
GRMZM2G178852
Zm00001d027877
Zm00001eb005730
Zhang, H et al. 2025. Dissecting the genetic architecture of yield-related traits by QTL mapping in maize. Frontiers in Plant Science. 16:1624954.     Reference: September 2nd, 2025
Variation: May 2nd, 2020
87 days agoccp32 cysteine protease32:
 
GRMZM2G035045
Zm00001d012120
Zm00001eb365360
Tonghan Wang et al. 2025. Genome-wide molecular characterization and expression profiling of the cysteine protease gene family in maize BMC Genomics. 26:789.     Reference: September 2nd, 2025
Gene Product: October 11th, 2021
87 days agoccp7 cysteine protease7:
 
GRMZM2G077479
Zm00001d007049
Zm00001eb110440
Tonghan Wang et al. 2025. Genome-wide molecular characterization and expression profiling of the cysteine protease gene family in maize BMC Genomics. 26:789.     Reference: September 2nd, 2025
Gene Product: October 11th, 2021
87 days agod53 dwarf ortholog53:
 
GRMZM2G109674
Zm00001d023208
Zm00001eb404750
Taraka Ramji Moturu et al. 2018. Molecular evolution and diversification of the SMXL gene family. J Exp Bot. 69:2367-2378.   LOC_Os11g01330 (MSU/TIGR)
OS11G0104300 (Gramene)
Reference: September 2nd, 2025
Gene Product: September 2nd, 2025
Variation: December 27th, 2022
87 days agoccp9 cysteine protease9:
 
GRMZM2G049882
Zm00001d022036
Zm00001eb326570
Tonghan Wang et al. 2025. Genome-wide molecular characterization and expression profiling of the cysteine protease gene family in maize BMC Genomics. 26:789.     Reference: September 2nd, 2025
Gene Product: October 11th, 2021
87 days agoccp14 cysteine protease14:
 
GRMZM2G045706
Zm00001d005391
Zm00001eb096480
Tonghan Wang et al. 2025. Genome-wide molecular characterization and expression profiling of the cysteine protease gene family in maize BMC Genomics. 26:789.     Reference: September 2nd, 2025
Gene Product: October 11th, 2021
87 days agoccp15 cysteine protease15:
 
GRMZM2G014526
Zm00001d006050
Zm00001eb102130
Tonghan Wang et al. 2025. Genome-wide molecular characterization and expression profiling of the cysteine protease gene family in maize BMC Genomics. 26:789.     Reference: September 2nd, 2025
Gene Product: October 11th, 2021
87 days agoccp16 cysteine protease16:
 
GRMZM2G098102
Zm00001d049217
Zm00001eb169850
Tonghan Wang et al. 2025. Genome-wide molecular characterization and expression profiling of the cysteine protease gene family in maize BMC Genomics. 26:789.     Reference: September 2nd, 2025
Gene Product: October 11th, 2021
87 days agoccp17 cysteine protease17:
 
GRMZM2G166870
Zm00001d049219
Zm00001eb169880
Tonghan Wang et al. 2025. Genome-wide molecular characterization and expression profiling of the cysteine protease gene family in maize BMC Genomics. 26:789.     Reference: September 2nd, 2025
Gene Product: October 11th, 2021
87 days agoccp19 cysteine protease19:
 
GRMZM2G130053
Zm00001d013261
Zm00001eb214780
Tonghan Wang et al. 2025. Genome-wide molecular characterization and expression profiling of the cysteine protease gene family in maize BMC Genomics. 26:789.     Reference: September 2nd, 2025
Gene Product: October 11th, 2021
87 days agoccp20 cysteine protease20:
 
GRMZM2G363926
Zm00001d025038
Zm00001eb419730
Tonghan Wang et al. 2025. Genome-wide molecular characterization and expression profiling of the cysteine protease gene family in maize BMC Genomics. 26:789.     Reference: September 2nd, 2025
Gene Product: October 11th, 2021
87 days agoccp21 cysteine protease21:
 
GRMZM2G095265
Zm00001d008796
Zm00001eb337310
Tonghan Wang et al. 2025. Genome-wide molecular characterization and expression profiling of the cysteine protease gene family in maize BMC Genomics. 26:789.     Reference: September 2nd, 2025
Gene Product: October 11th, 2021
87 days agoccp22 cysteine protease22:
 
GRMZM2G019742
Zm00001d004355
Zm00001eb088060
Tonghan Wang et al. 2025. Genome-wide molecular characterization and expression profiling of the cysteine protease gene family in maize BMC Genomics. 26:789.     Reference: September 2nd, 2025
Gene Product: October 11th, 2021
87 days agoccp23 cysteine protease23:
 
GRMZM2G334321
Zm00001d004364
Zm00001eb088140
Tonghan Wang et al. 2025. Genome-wide molecular characterization and expression profiling of the cysteine protease gene family in maize BMC Genomics. 26:789.     Reference: September 2nd, 2025
Gene Product: October 11th, 2021
87 days agoccp24 cysteine protease24:
 
GRMZM2G397965
Zm00001d004371
Zm00001eb088160
Tonghan Wang et al. 2025. Genome-wide molecular characterization and expression profiling of the cysteine protease gene family in maize BMC Genomics. 26:789.     Reference: September 2nd, 2025
Gene Product: October 11th, 2021
87 days agoccp25 cysteine protease25:
 
GRMZM2G170391
Zm00001d037303
Zm00001eb280360
Tonghan Wang et al. 2025. Genome-wide molecular characterization and expression profiling of the cysteine protease gene family in maize BMC Genomics. 26:789.     Reference: September 2nd, 2025
Gene Product: October 11th, 2021
87 days agoccp26 cysteine protease26:
 
GRMZM2G137690
Zm00001d045713
Zm00001eb380320
Tonghan Wang et al. 2025. Genome-wide molecular characterization and expression profiling of the cysteine protease gene family in maize BMC Genomics. 26:789.     Reference: September 2nd, 2025
Gene Product: October 11th, 2021
87 days agoccp27 cysteine protease27:
 
AC225716.2_FG003
Zm00001d045711
Zm00001eb380300
Tonghan Wang et al. 2025. Genome-wide molecular characterization and expression profiling of the cysteine protease gene family in maize BMC Genomics. 26:789.     Reference: September 2nd, 2025
Gene Product: October 11th, 2021
87 days agoccp28 cysteine protease28:
 
GRMZM2G367701
Zm00001d011787
Zm00001eb362260
Tonghan Wang et al. 2025. Genome-wide molecular characterization and expression profiling of the cysteine protease gene family in maize BMC Genomics. 26:789.     Reference: September 2nd, 2025
Gene Product: October 11th, 2021
87 days agoccp29 cysteine protease29:
 
GRMZM2G180926
Zm00001d017834
Zm00001eb252670
Tonghan Wang et al. 2025. Genome-wide molecular characterization and expression profiling of the cysteine protease gene family in maize BMC Genomics. 26:789.     Reference: September 2nd, 2025
Gene Product: October 11th, 2021
87 days agoccp30 cysteine protease30:
 
GRMZM2G006377
Zm00001d038650
Zm00001eb292310
Tonghan Wang et al. 2025. Genome-wide molecular characterization and expression profiling of the cysteine protease gene family in maize BMC Genomics. 26:789.     Reference: September 2nd, 2025
Gene Product: October 11th, 2021
87 days agoccp31 cysteine protease31:
 
GRMZM2G010435
Zm00001d001900
Zm00001eb066830
Tonghan Wang et al. 2025. Genome-wide molecular characterization and expression profiling of the cysteine protease gene family in maize BMC Genomics. 26:789.     Reference: September 2nd, 2025
Gene Product: October 11th, 2021
87 days agoccp34 cysteine protease34:
 
GRMZM2G099765
Zm00001d007464
Zm00001eb113940
Tonghan Wang et al. 2025. Genome-wide molecular characterization and expression profiling of the cysteine protease gene family in maize BMC Genomics. 26:789.     Reference: September 2nd, 2025
Gene Product: October 11th, 2021
87 days agoccp36 cysteine protease36:
 
GRMZM2G020657
Zm00001d014474
Zm00001eb225280
Tonghan Wang et al. 2025. Genome-wide molecular characterization and expression profiling of the cysteine protease gene family in maize BMC Genomics. 26:789.     Reference: September 2nd, 2025
Gene Product: October 11th, 2021
87 days agoccp4 cysteine protease4:
7.03
GRMZM2G108849
Zm00001d021615
Zm00001eb322580
Tonghan Wang et al. 2025. Genome-wide molecular characterization and expression profiling of the cysteine protease gene family in maize BMC Genomics. 26:789.     Reference: September 2nd, 2025
Gene Product: October 11th, 2021
87 days agoccp6 cysteine protease6:
10.07
GRMZM2G340065
Zm00001d026577
Zm00001eb433330
Tonghan Wang et al. 2025. Genome-wide molecular characterization and expression profiling of the cysteine protease gene family in maize BMC Genomics. 26:789.     Reference: September 2nd, 2025
Gene Product: October 11th, 2021
87 days agoccp5 cysteine protease5:
6.01
GRMZM2G066326
Zm00001d035689
Zm00001eb267050
Tonghan Wang et al. 2025. Genome-wide molecular characterization and expression profiling of the cysteine protease gene family in maize BMC Genomics. 26:789.     Reference: September 2nd, 2025
Gene Product: October 11th, 2021
Variation: March 31st, 2005
87 days agoccp1 cysteine protease1:
5.04
GRMZM2G098298
Zm00001d016446
Zm00001eb240700
Tonghan Wang et al. 2025. Genome-wide molecular characterization and expression profiling of the cysteine protease gene family in maize BMC Genomics. 26:789.     Reference: September 2nd, 2025
Gene Product: October 11th, 2021
Variation: May 20th, 2015
88 days agohin13 hairpin-induced13:
 
GRMZM2G069511
Zm00001d043128
Zm00001eb150110
Marko Bajus et al. 2025. The yeast Papiliotrema laurentii alleviates drought-induced stress in maize and affects oxidative status, LEA genes, hormone concentrations, and fatty acid allocation Curr Plant Biol. :doi: 10.1016/j.cpb.2025.100542.     Reference: September 1st, 2025
Gene Product: February 1st, 2021
88 days agohin20 hairpin-induced20:
 
GRMZM2G449094
Zm00001d001832
Zm00001eb066210
Marko Bajus et al. 2025. The yeast Papiliotrema laurentii alleviates drought-induced stress in maize and affects oxidative status, LEA genes, hormone concentrations, and fatty acid allocation Curr Plant Biol. :doi: 10.1016/j.cpb.2025.100542.     Reference: September 1st, 2025
Gene Product: February 1st, 2021
88 days agohin24 hairpin-induced24:
 
GRMZM2G074248
Zm00001d042749
Zm00001eb146910
Marko Bajus et al. 2025. The yeast Papiliotrema laurentii alleviates drought-induced stress in maize and affects oxidative status, LEA genes, hormone concentrations, and fatty acid allocation Curr Plant Biol. :doi: 10.1016/j.cpb.2025.100542.     Reference: September 1st, 2025
Gene Product: February 1st, 2021
88 days agolea12 late embryogenesis abundant protein12:
 
GRMZM2G371375
Zm00001d002360
Zm00001eb071160
Marko Bajus et al. 2025. The yeast Papiliotrema laurentii alleviates drought-induced stress in maize and affects oxidative status, LEA genes, hormone concentrations, and fatty acid allocation Curr Plant Biol. :doi: 10.1016/j.cpb.2025.100542.     Reference: September 1st, 2025
Gene Product: January 31st, 2019
88 days agolea23 late embryogenesis abundant protein23:
 
GRMZM5G862956
Zm00001d044270
Zm00001eb160190
Marko Bajus et al. 2025. The yeast Papiliotrema laurentii alleviates drought-induced stress in maize and affects oxidative status, LEA genes, hormone concentrations, and fatty acid allocation Curr Plant Biol. :doi: 10.1016/j.cpb.2025.100542.     Reference: September 1st, 2025
Gene Product: January 31st, 2019
88 days agolea31 late embryogenesis abundant protein31:
 
GRMZM2G379835
Zm00001d017290
Zm00001eb247790
Marko Bajus et al. 2025. The yeast Papiliotrema laurentii alleviates drought-induced stress in maize and affects oxidative status, LEA genes, hormone concentrations, and fatty acid allocation Curr Plant Biol. :doi: 10.1016/j.cpb.2025.100542.     Reference: September 1st, 2025
Gene Product: January 31st, 2019
88 days agolea5 late embryogenesis abundant protein5:
 
   Marko Bajus et al. 2025. The yeast Papiliotrema laurentii alleviates drought-induced stress in maize and affects oxidative status, LEA genes, hormone concentrations, and fatty acid allocation Curr Plant Biol. :doi: 10.1016/j.cpb.2025.100542.     Reference: September 1st, 2025
Gene Product: January 31st, 2019
88 days agolea47 late embryogenesis abundant protein47:
 
   Marko Bajus et al. 2025. The yeast Papiliotrema laurentii alleviates drought-induced stress in maize and affects oxidative status, LEA genes, hormone concentrations, and fatty acid allocation Curr Plant Biol. :doi: 10.1016/j.cpb.2025.100542.     Reference: September 1st, 2025
Gene Product: January 31st, 2019
88 days agorab30 responsive to abscisic acid30:
1.01
GRMZM2G472236
Zm00001d027740
Zm00001eb004470
Marko Bajus et al. 2025. The yeast Papiliotrema laurentii alleviates drought-induced stress in maize and affects oxidative status, LEA genes, hormone concentrations, and fatty acid allocation Curr Plant Biol. :doi: 10.1016/j.cpb.2025.100542.     Reference: September 1st, 2025
Gene Product: September 1st, 2003
Variation: May 2nd, 2011
88 days agorab28 abscisic acid-responsive28:
5.01
GRMZM2G091535
Zm00001d013169
Zm00001eb213850
Marko Bajus et al. 2025. The yeast Papiliotrema laurentii alleviates drought-induced stress in maize and affects oxidative status, LEA genes, hormone concentrations, and fatty acid allocation Curr Plant Biol. :doi: 10.1016/j.cpb.2025.100542.     Reference: September 1st, 2025
Gene Product: January 31st, 2019
88 days agowrky67 WRKY-transcription factor 67:
 
GRMZM2G090594
Zm00001d024376
Zm00001eb414320
Yuhang Guo et al. 2025. A novel genetic framework reveals transcriptional "butterfly effect" underlying heterosis in maize. :doi: 10.1016/j.jare.2025.08.021.     Reference: September 1st, 2025
Gene Product: July 24th, 2017
88 days agosdg129 set domain gene129:
5.03
GRMZM2G305124
Zm00001d015064
Zm00001eb230520
Yuhang Guo et al. 2025. A novel genetic framework reveals transcriptional "butterfly effect" underlying heterosis in maize. :doi: 10.1016/j.jare.2025.08.021.     Reference: September 1st, 2025
Gene Product: June 30th, 2017
Variation: September 1st, 2003
88 days agoarftf12 ARF-transcription factor 12:
3.08
GRMZM2G437460
Zm00001d043922
Zm00001eb157270
Yuhang Guo et al. 2025. A novel genetic framework reveals transcriptional "butterfly effect" underlying heterosis in maize. :doi: 10.1016/j.jare.2025.08.021.     Reference: September 1st, 2025
Gene Product: January 29th, 2022
Variation: February 14th, 2022
88 days agoamt3 ammonium transporter3:
 
GRMZM2G118950
Zm00001d003025
Zm00001eb077350
Chen, Z et al. 2025. Comprehensive Responses of Root System Architecture and Anatomy to Nitrogen Stress in Maize (Zea mays L.) Genotypes with Contrasting Nitrogen Efficiency Agronomy. 15:2083.     Reference: September 1st, 2025
Gene Product: July 8th, 2013
88 days agosweet15b sugars will eventually be exported transporter15b:
 
GRMZM5G872392
Zm00001d016590
Zm00001eb241930
Yuhang Guo et al. 2025. A novel genetic framework reveals transcriptional "butterfly effect" underlying heterosis in maize. :doi: 10.1016/j.jare.2025.08.021.     Reference: September 1st, 2025
Gene Product: November 4th, 2015
Variation: June 18th, 2024
88 days agoatr1 ataxia-telangiectasia mutated and RAD3-related1:
 
GRMZM2G128938
GRMZM2G340282
Zm00001d014813
Zm00001eb228310
Xiaoli Hong et al. 2025. Identification of key candidate genes regulating hundred-grain weight in the maize inbred line Ye107 from Southern China. Plant Cell Rep. 44:206.   AT5G40820 (TAIR) Reference: September 1st, 2025
Gene Product: May 13th, 2014
Variation: June 5th, 2021
88 days agolea7 late embryogenesis abundant protein7:
 
GRMZM2G412436
Zm00001d016128
Zm00001eb238300
Marko Bajus et al. 2025. The yeast Papiliotrema laurentii alleviates drought-induced stress in maize and affects oxidative status, LEA genes, hormone concentrations, and fatty acid allocation Curr Plant Biol. :doi: 10.1016/j.cpb.2025.100542.     Reference: September 1st, 2025
Gene Product: January 31st, 2019
88 days agolea20 late embryogenesis abundant protein20:
3.07
GRMZM2G425629
Zm00001d043709
Zm00001eb155430
Marko Bajus et al. 2025. The yeast Papiliotrema laurentii alleviates drought-induced stress in maize and affects oxidative status, LEA genes, hormone concentrations, and fatty acid allocation Curr Plant Biol. :doi: 10.1016/j.cpb.2025.100542.     Reference: September 1st, 2025
Gene Product: January 31st, 2019
89 days agodnaJ46 DnaJ/Hsp40 46:
 
GRMZM2G028218
Zm00001d013111
Zm00001eb213310
Minglei Han et al. 2025. Transcriptomic and mitochondrial functional analyses for quaternary ammonium iminofullerenes enhancing drought tolerance in maize Plant Physiol Biochem. 229B:110442.     Reference: August 31st, 2025
Gene Product: September 1st, 2003
89 days agobag8 B-cell lymphoma-2 (Bcl-2) associated athanogene8:
 
GRMZM2G097135
Zm00001d049244
Zm00001eb170080
Minglei Han et al. 2025. Transcriptomic and mitochondrial functional analyses for quaternary ammonium iminofullerenes enhancing drought tolerance in maize Plant Physiol Biochem. 229B:110442.     Reference: August 31st, 2025
Gene Product: January 4th, 2025
89 days agocyp69 cytochrome P450 69:
 
GRMZM2G075244
Zm00001d006947
Zm00001eb110040
Minglei Han et al. 2025. Transcriptomic and mitochondrial functional analyses for quaternary ammonium iminofullerenes enhancing drought tolerance in maize Plant Physiol Biochem. 229B:110442.     Reference: August 31st, 2025
Gene Product: December 30th, 2022
89 days agocyp70 cytochrome P450 70:
 
GRMZM2G075461
Zm00001d006948
Zm00001eb110050
Minglei Han et al. 2025. Transcriptomic and mitochondrial functional analyses for quaternary ammonium iminofullerenes enhancing drought tolerance in maize Plant Physiol Biochem. 229B:110442.     Reference: August 31st, 2025
Gene Product: December 30th, 2022
89 days agofat10 fatty acyl-ACP thioesterase10:
 
GRMZM2G464176
Zm00001d026569
Zm00001eb433280
Yunlong Li et al. 2025. Comprehensive Characterization of the FATs Gene Family in Maize: Phylogeny, Expression Patterns, and Regulatory Networks Genes. 16:1035.     Reference: August 31st, 2025
Gene Product: May 23rd, 2012
89 days agovdac6 voltage-dependent anion channel protein6:
 
GRMZM2G137985
Zm00001d048149
Zm00001eb400750
Minglei Han et al. 2025. Transcriptomic and mitochondrial functional analyses for quaternary ammonium iminofullerenes enhancing drought tolerance in maize Plant Physiol Biochem. 229B:110442.     Reference: August 31st, 2025
Gene Product: July 4th, 2023
89 days agoprh132 protein phosphatase homolog132:
 
GRMZM5G813713
Zm00001d011202
Zm00001eb357040
Minglei Han et al. 2025. Transcriptomic and mitochondrial functional analyses for quaternary ammonium iminofullerenes enhancing drought tolerance in maize Plant Physiol Biochem. 229B:110442.     Reference: August 31st, 2025
Gene Product: October 25th, 2021
89 days agoLOC100272496  :
 
GRMZM2G020523
Zm00001d029604
Zm00001eb020790
Minglei Han et al. 2025. Transcriptomic and mitochondrial functional analyses for quaternary ammonium iminofullerenes enhancing drought tolerance in maize Plant Physiol Biochem. 229B:110442.     Reference: August 31st, 2025
Gene Product: January 20th, 2025
89 days agoprx13 peroxidase13:
 
GRMZM2G136534
Zm00001d031635
Zm00001eb036720
Minglei Han et al. 2025. Transcriptomic and mitochondrial functional analyses for quaternary ammonium iminofullerenes enhancing drought tolerance in maize Plant Physiol Biochem. 229B:110442.     Reference: August 31st, 2025
Gene Product: January 20th, 2025
89 days agoprx15 peroxidase15:
 
GRMZM2G341934
Zm00001d027411
Zm00001eb001560
Minglei Han et al. 2025. Transcriptomic and mitochondrial functional analyses for quaternary ammonium iminofullerenes enhancing drought tolerance in maize Plant Physiol Biochem. 229B:110442.     Reference: August 31st, 2025
Gene Product: January 20th, 2025
89 days agoprx84 peroxidase84:
 
GRMZM2G404676
Zm00001d018620
Zm00001eb298230
Minglei Han et al. 2025. Transcriptomic and mitochondrial functional analyses for quaternary ammonium iminofullerenes enhancing drought tolerance in maize Plant Physiol Biochem. 229B:110442.     Reference: August 31st, 2025
Gene Product: January 20th, 2025
89 days agocyp51 cytochrome P450 51:
 
GRMZM2G181236
Zm00001d032458
Zm00001eb043620
Minglei Han et al. 2025. Transcriptomic and mitochondrial functional analyses for quaternary ammonium iminofullerenes enhancing drought tolerance in maize Plant Physiol Biochem. 229B:110442.     Reference: August 31st, 2025
Gene Product: December 30th, 2022
89 days agobzip130 bZIP-transcription factor 130:
 
Zm00001d020711
Zm00001eb314860
Minglei Han et al. 2025. Transcriptomic and mitochondrial functional analyses for quaternary ammonium iminofullerenes enhancing drought tolerance in maize Plant Physiol Biochem. 229B:110442.     Reference: August 31st, 2025
Gene Product: August 21st, 2018
89 days agoadt5 arogenate dehydratase5:
 
GRMZM2G125923
Zm00001d025333
Zm00001eb421790
Minglei Han et al. 2025. Transcriptomic and mitochondrial functional analyses for quaternary ammonium iminofullerenes enhancing drought tolerance in maize Plant Physiol Biochem. 229B:110442.     Reference: August 31st, 2025
Gene Product: March 4th, 2024
89 days agoadt7 arogenate dehydratase7:
 
GRMZM2G466543
Zm00001d005351
Zm00001eb096110
Minglei Han et al. 2025. Transcriptomic and mitochondrial functional analyses for quaternary ammonium iminofullerenes enhancing drought tolerance in maize Plant Physiol Biochem. 229B:110442.     Reference: August 31st, 2025
Gene Product: March 4th, 2024
89 days agofat7 fatty acyl-ACP thioesterase7:
 
GRMZM2G140298
Zm00001d029901
Zm00001eb023380
Yunlong Li et al. 2025. Comprehensive Characterization of the FATs Gene Family in Maize: Phylogeny, Expression Patterns, and Regulatory Networks Genes. 16:1035.     Reference: August 31st, 2025
Gene Product: May 23rd, 2012
89 days agodnaj164 DnaJ family protein164:
 
   Minglei Han et al. 2025. Transcriptomic and mitochondrial functional analyses for quaternary ammonium iminofullerenes enhancing drought tolerance in maize Plant Physiol Biochem. 229B:110442.     Reference: August 31st, 2025
Gene Product: September 1st, 2003
89 days agofat6 fatty acyl-ACP thioesterase6:
 
   Yunlong Li et al. 2025. Comprehensive Characterization of the FATs Gene Family in Maize: Phylogeny, Expression Patterns, and Regulatory Networks Genes. 16:1035.     Reference: August 31st, 2025
Gene Product: May 23rd, 2012
89 days agofat5 fatty acyl-ACP thioesterase5:
 
   Yunlong Li et al. 2025. Comprehensive Characterization of the FATs Gene Family in Maize: Phylogeny, Expression Patterns, and Regulatory Networks Genes. 16:1035.     Reference: August 31st, 2025
Gene Product: May 23rd, 2012
89 days agofat1 fatty acyl thioesterase1:
9.03
GRMZM2G406603
Zm00001d046454
Zm00001eb385960
Yunlong Li et al. 2025. Comprehensive Characterization of the FATs Gene Family in Maize: Phylogeny, Expression Patterns, and Regulatory Networks Genes. 16:1035.     Reference: August 31st, 2025
Gene Product: January 3rd, 2023
Variation: May 27th, 2014
89 days agofat9 fatty acyl-ACP thioesterase9:
7.03
GRMZM2G143955
Zm00001d021046
Zm00001eb317680
Yunlong Li et al. 2025. Comprehensive Characterization of the FATs Gene Family in Maize: Phylogeny, Expression Patterns, and Regulatory Networks Genes. 16:1035.     Reference: August 31st, 2025
Gene Product: May 23rd, 2012
89 days agoprx7 peroxidase7:
1.05
GRMZM2G088765
Zm00001d030199
Zm00001eb025690
Minglei Han et al. 2025. Transcriptomic and mitochondrial functional analyses for quaternary ammonium iminofullerenes enhancing drought tolerance in maize Plant Physiol Biochem. 229B:110442.     Reference: August 31st, 2025
Gene Product: January 20th, 2025
89 days agoaco3 aconitase3:
9.07
GRMZM2G009808
Zm00001d048358
Zm00001eb402710
Minglei Han et al. 2025. Transcriptomic and mitochondrial functional analyses for quaternary ammonium iminofullerenes enhancing drought tolerance in maize Plant Physiol Biochem. 229B:110442.     Reference: August 31st, 2025
Gene Product: September 1st, 2003
89 days agogst58 glutathione S-transferase58:
1.01
GRMZM2G096247
Zm00001d027541
Zm00001eb002800
Minglei Han et al. 2025. Transcriptomic and mitochondrial functional analyses for quaternary ammonium iminofullerenes enhancing drought tolerance in maize Plant Physiol Biochem. 229B:110442.     Reference: August 31st, 2025
Gene Product: September 1st, 2003
Variation: August 9th, 2010
89 days agoumc1464  :
2.08
GRMZM2G365160
Zm00001d006900
Zm00001eb109620
Minglei Han et al. 2025. Transcriptomic and mitochondrial functional analyses for quaternary ammonium iminofullerenes enhancing drought tolerance in maize Plant Physiol Biochem. 229B:110442.     Reference: August 31st, 2025
Variation: September 1st, 2003
89 days agoabi17 ABI3-VP1-transcription factor 17:
 
GRMZM2G017187
Zm00001d003601
Zm00001eb082150
Minglei Han et al. 2025. Transcriptomic and mitochondrial functional analyses for quaternary ammonium iminofullerenes enhancing drought tolerance in maize Plant Physiol Biochem. 229B:110442.     Reference: August 31st, 2025
Gene Product: January 29th, 2022
89 days agoarftf3 ARF-transcription factor 3:
 
GRMZM2G078274
Zm00001d001879
Zm00001eb066640
Minglei Han et al. 2025. Transcriptomic and mitochondrial functional analyses for quaternary ammonium iminofullerenes enhancing drought tolerance in maize Plant Physiol Biochem. 229B:110442.     Reference: August 31st, 2025
Gene Product: January 29th, 2022
Variation: September 27th, 2024
89 days agoiaa28 Aux/IAA-transcription factor 28:
 
GRMZM2G147243
Zm00001d037774
Zm00001eb284310
Minglei Han et al. 2025. Transcriptomic and mitochondrial functional analyses for quaternary ammonium iminofullerenes enhancing drought tolerance in maize Plant Physiol Biochem. 229B:110442.     Reference: August 31st, 2025
Variation: July 8th, 2017
89 days agozim23 ZIM-transcription factor 23:
 
GRMZM2G089736
Zm00001d022139
Zm00001eb327450
Minglei Han et al. 2025. Transcriptomic and mitochondrial functional analyses for quaternary ammonium iminofullerenes enhancing drought tolerance in maize Plant Physiol Biochem. 229B:110442.     Reference: August 31st, 2025
Gene Product: February 24th, 2021
89 days agoa4 anthocyaninless4:
8.06
GRMZM2G013726
Zm00001d011438
Zm00001eb359030
Minglei Han et al. 2025. Transcriptomic and mitochondrial functional analyses for quaternary ammonium iminofullerenes enhancing drought tolerance in maize Plant Physiol Biochem. 229B:110442.     Reference: August 31st, 2025
Variation: August 30th, 2013
89 days agofat3 fatty acyl-ACP thioesterase3:
2.06
GRMZM2G017382
Zm00001d005148
Zm00001eb094620
Yunlong Li et al. 2025. Comprehensive Characterization of the FATs Gene Family in Maize: Phylogeny, Expression Patterns, and Regulatory Networks Genes. 16:1035.     Reference: August 31st, 2025
Gene Product: May 23rd, 2012
89 days agogot4 glutamate-oxaloacetate transaminase4:
 
GRMZM2G400604
Zm00001d042685
Zm00001eb146400
Minglei Han et al. 2025. Transcriptomic and mitochondrial functional analyses for quaternary ammonium iminofullerenes enhancing drought tolerance in maize Plant Physiol Biochem. 229B:110442.   AT2G22250 (TAIR) Reference: August 31st, 2025
Gene Product: October 21st, 2021
Variation: August 8th, 2014
89 days agoprh8 protein phosphatase homolog8:
 
GRMZM2G122228
Zm00001d044015
Zm00001eb158020
Minglei Han et al. 2025. Transcriptomic and mitochondrial functional analyses for quaternary ammonium iminofullerenes enhancing drought tolerance in maize Plant Physiol Biochem. 229B:110442.     Reference: August 31st, 2025
Gene Product: October 25th, 2021
89 days agocyc10 cyclin10:
 
GRMZM2G107377
Zm00001d019696
Zm00001eb307250
Minglei Han et al. 2025. Transcriptomic and mitochondrial functional analyses for quaternary ammonium iminofullerenes enhancing drought tolerance in maize Plant Physiol Biochem. 229B:110442.     Reference: August 31st, 2025
Gene Product: February 17th, 2025
Variation: December 21st, 2016
89 days agoimd4 isopropylmalate dehydrogenase4:
 
GRMZM2G120857
Zm00001d008244
Zm00001eb332780
Minglei Han et al. 2025. Transcriptomic and mitochondrial functional analyses for quaternary ammonium iminofullerenes enhancing drought tolerance in maize Plant Physiol Biochem. 229B:110442.     Reference: August 31st, 2025
Gene Product: September 1st, 2003
89 days agoprh20 protein phosphatase homolog20:
 
GRMZM2G300125
Zm00001d011495
Zm00001eb359460
Minglei Han et al. 2025. Transcriptomic and mitochondrial functional analyses for quaternary ammonium iminofullerenes enhancing drought tolerance in maize Plant Physiol Biochem. 229B:110442.     Reference: August 31st, 2025
Gene Product: October 25th, 2021
89 days agotir2 transport inhibitor response2:
 
GRMZM2G155849
Zm00001d007357
Zm00001eb113030
Minglei Han et al. 2025. Transcriptomic and mitochondrial functional analyses for quaternary ammonium iminofullerenes enhancing drought tolerance in maize Plant Physiol Biochem. 229B:110442.     Reference: August 31st, 2025
Gene Product: April 27th, 2022
89 days agoscoal1 succinyl-CoA ligase1:
 
GRMZM2G064695
Zm00001d017258
Zm00001eb247500
Minglei Han et al. 2025. Transcriptomic and mitochondrial functional analyses for quaternary ammonium iminofullerenes enhancing drought tolerance in maize Plant Physiol Biochem. 229B:110442.     Reference: August 31st, 2025
Gene Product: December 30th, 2019
89 days agoogdh1 2-oxoglutarate dehydrogenase1:
 
GRMZM2G142863
Zm00001d003947
Zm00001eb085340
Minglei Han et al. 2025. Transcriptomic and mitochondrial functional analyses for quaternary ammonium iminofullerenes enhancing drought tolerance in maize Plant Physiol Biochem. 229B:110442.     Reference: August 31st, 2025
Gene Product: March 25th, 2020
89 days agoskus15 skewed root growth similar15:
 
GRMZM2G064106
Zm00001d020260
Zm00001eb311110
Minglei Han et al. 2025. Transcriptomic and mitochondrial functional analyses for quaternary ammonium iminofullerenes enhancing drought tolerance in maize Plant Physiol Biochem. 229B:110442.     Reference: August 31st, 2025
Gene Product: October 9th, 2020
89 days agobsk6 brassinosteroid-signaling kinase6:
 
Zm00001d026653
Zm00001eb434080
Minglei Han et al. 2025. Transcriptomic and mitochondrial functional analyses for quaternary ammonium iminofullerenes enhancing drought tolerance in maize Plant Physiol Biochem. 229B:110442.     Reference: August 31st, 2025
Gene Product: May 13th, 2014
89 days agopht19 phosphate transporter protein19:
 
GRMZM2G009045
Zm00001d020702
Zm00001eb314770
Minglei Han et al. 2025. Transcriptomic and mitochondrial functional analyses for quaternary ammonium iminofullerenes enhancing drought tolerance in maize Plant Physiol Biochem. 229B:110442.     Reference: August 31st, 2025
Gene Product: September 1st, 2003
89 days agopx21 peroxidase21:
 
AC205413.4_FG001
Zm00001d024752
Zm00001eb417350
Minglei Han et al. 2025. Transcriptomic and mitochondrial functional analyses for quaternary ammonium iminofullerenes enhancing drought tolerance in maize Plant Physiol Biochem. 229B:110442.     Reference: August 31st, 2025
Gene Product: January 20th, 2025
89 days agoglpx3 glutathione peroxidase3:
 
GRMZM2G144153
Zm00001d002704
Zm00001eb074350
Minglei Han et al. 2025. Transcriptomic and mitochondrial functional analyses for quaternary ammonium iminofullerenes enhancing drought tolerance in maize Plant Physiol Biochem. 229B:110442.     Reference: August 31st, 2025
Gene Product: March 4th, 2022
89 days agogsk1 glycogen synthase kinase1:
 
GRMZM2G045330
Zm00001d039407
Zm00001eb120370
Minglei Han et al. 2025. Transcriptomic and mitochondrial functional analyses for quaternary ammonium iminofullerenes enhancing drought tolerance in maize Plant Physiol Biochem. 229B:110442.     Reference: August 31st, 2025
Gene Product: February 22nd, 2022
89 days agosudh13 succinate dehydrogenase13:
 
GRMZM2G039542
Zm00001d013966
Zm00001eb221180
Minglei Han et al. 2025. Transcriptomic and mitochondrial functional analyses for quaternary ammonium iminofullerenes enhancing drought tolerance in maize Plant Physiol Biochem. 229B:110442.     Reference: August 31st, 2025
Gene Product: October 25th, 2016
89 days agomdh8 malate dehydrogenase8:
 
GRMZM2G161245
Zm00001d032187
Zm00001eb041400
Minglei Han et al. 2025. Transcriptomic and mitochondrial functional analyses for quaternary ammonium iminofullerenes enhancing drought tolerance in maize Plant Physiol Biochem. 229B:110442.     Reference: August 31st, 2025
Gene Product: September 1st, 2003
89 days agoZm00001d037849  :
 
GRMZM2G147245
Zm00001d037849
Zm00001eb285030
Minglei Han et al. 2025. Transcriptomic and mitochondrial functional analyses for quaternary ammonium iminofullerenes enhancing drought tolerance in maize Plant Physiol Biochem. 229B:110442.   AT2G30490 (TAIR) Reference: August 31st, 2025
Gene Product: December 29th, 2022
89 days agomkk1 mitogen-activated protein kinase1:
9.02
GRMZM5G834697
Zm00001d045064
Zm00001eb374270
Minglei Han et al. 2025. Transcriptomic and mitochondrial functional analyses for quaternary ammonium iminofullerenes enhancing drought tolerance in maize Plant Physiol Biochem. 229B:110442.     Reference: August 31st, 2025
Gene Product: June 11th, 2024
89 days agofat8 fatty acyl-ACP thioesterase8:
2.07
GRMZM2G102878
Zm00001d006080
Zm00001eb102360
Yunlong Li et al. 2025. Comprehensive Characterization of the FATs Gene Family in Maize: Phylogeny, Expression Patterns, and Regulatory Networks Genes. 16:1035.     Reference: August 31st, 2025
Gene Product: May 23rd, 2012
Variation: March 31st, 2005
89 days agoein2 ethylene insensitive 2:
3.01
GRMZM2G068217
Zm00001d039341
Zm00001eb119690
Minglei Han et al. 2025. Transcriptomic and mitochondrial functional analyses for quaternary ammonium iminofullerenes enhancing drought tolerance in maize Plant Physiol Biochem. 229B:110442.   AT5G03280 (TAIR) Reference: August 31st, 2025
Variation: March 6th, 2024
89 days agoIDP4084  :
10.03
   Minglei Han et al. 2025. Transcriptomic and mitochondrial functional analyses for quaternary ammonium iminofullerenes enhancing drought tolerance in maize Plant Physiol Biochem. 229B:110442.     Reference: August 31st, 2025
Variation: March 31st, 2005
89 days agodar2 monodehydroascorbate reductase2:
4.05
GRMZM2G134708
Zm00001d049954
Zm00001eb176160
Minglei Han et al. 2025. Transcriptomic and mitochondrial functional analyses for quaternary ammonium iminofullerenes enhancing drought tolerance in maize Plant Physiol Biochem. 229B:110442.     Reference: August 31st, 2025
Gene Product: October 15th, 2020
89 days agosnrkII3 SnRK2 serine threonine protein kinase3:
1.05
GRMZM2G180916
Zm00001d029975
Zm00001eb023880
Minglei Han et al. 2025. Transcriptomic and mitochondrial functional analyses for quaternary ammonium iminofullerenes enhancing drought tolerance in maize Plant Physiol Biochem. 229B:110442.     Reference: August 31st, 2025
Gene Product: April 14th, 2018
91 days agonrg10 nitrate regulatory gene10:
 
GRMZM2G145221
Zm00001d051338
Zm00001eb186340
Zhao, L et al. 2025. Integrated DNA methylome and transcriptome analysis reveals the epigenetic regulatory mechanisms underlying maize response to copper stress. PLoS One. 20:e0329456.     Reference: August 29th, 2025
Gene Product: March 13th, 2024
91 days agocyp60 cytochrome P450 60:
 
   Zhao, L et al. 2025. Integrated DNA methylome and transcriptome analysis reveals the epigenetic regulatory mechanisms underlying maize response to copper stress. PLoS One. 20:e0329456.     Reference: August 29th, 2025
Gene Product: December 30th, 2022
91 days agoZm00001d032868  :
 
   Zhao, L et al. 2025. Integrated DNA methylome and transcriptome analysis reveals the epigenetic regulatory mechanisms underlying maize response to copper stress. PLoS One. 20:e0329456.     Reference: August 29th, 2025
Gene Product: January 27th, 2025
91 days agowak3 wall-associated receptor kinase3:
 
   Zhao, L et al. 2025. Integrated DNA methylome and transcriptome analysis reveals the epigenetic regulatory mechanisms underlying maize response to copper stress. PLoS One. 20:e0329456.     Reference: August 29th, 2025
Gene Product: December 7th, 2023
91 days agomybr36 MYB-related-transcription factor 36:
2.02
GRMZM2G014534
Zm00001d002482
Zm00001eb072260
Zhao, L et al. 2025. Integrated DNA methylome and transcriptome analysis reveals the epigenetic regulatory mechanisms underlying maize response to copper stress. PLoS One. 20:e0329456.     Reference: August 29th, 2025
Gene Product: July 25th, 2017
91 days agojmj18 JUMONJI-transcription factor 18:
 
GRMZM2G321810
Zm00001d042447
Zm00001eb144170
Zm00001eb144180
Zhao, L et al. 2025. Integrated DNA methylome and transcriptome analysis reveals the epigenetic regulatory mechanisms underlying maize response to copper stress. PLoS One. 20:e0329456.     Reference: August 29th, 2025
Gene Product: April 3rd, 2019
91 days agomterf10 mTERF domain protein10:
 
GRMZM2G177019
Zm00001d041537
Zm00001eb136360
Zhao, L et al. 2025. Integrated DNA methylome and transcriptome analysis reveals the epigenetic regulatory mechanisms underlying maize response to copper stress. PLoS One. 20:e0329456.     Reference: August 29th, 2025
Gene Product: February 19th, 2015
Variation: June 14th, 2019
91 days agosat2 serine acetyltransferase2:
1.02
GRMZM2G013430
Zm00001d028154
Zm00001eb008110
Zhao, L et al. 2025. Integrated DNA methylome and transcriptome analysis reveals the epigenetic regulatory mechanisms underlying maize response to copper stress. PLoS One. 20:e0329456.     Reference: August 29th, 2025
Gene Product: December 31st, 2014
Variation: July 21st, 2008
91 days agohyd6 hydroxylase6:
 
GRMZM2G090051
Zm00001d027443
Zm00001eb001850
Zhao, L et al. 2025. Integrated DNA methylome and transcriptome analysis reveals the epigenetic regulatory mechanisms underlying maize response to copper stress. PLoS One. 20:e0329456.     Reference: August 29th, 2025
Gene Product: December 13th, 2011
Variation: September 3rd, 2011
91 days agomkkk10 MAP kinase kinase kinase10:
 
GRMZM2G180555
Zm00001d047875
Zm00001eb398160
Zhao, L et al. 2025. Integrated DNA methylome and transcriptome analysis reveals the epigenetic regulatory mechanisms underlying maize response to copper stress. PLoS One. 20:e0329456.     Reference: August 29th, 2025
Gene Product: March 14th, 2022
91 days agoaga5 alkaline galactosidase5:
 
GRMZM2G047292
Zm00001d003277
Zm00001eb079430
Zhao, L et al. 2025. Integrated DNA methylome and transcriptome analysis reveals the epigenetic regulatory mechanisms underlying maize response to copper stress. PLoS One. 20:e0329456.     Reference: August 29th, 2025
Gene Product: March 1st, 2018
91 days agohak21 potassium high-affinity transporter21:
 
GRMZM2G438960
Zm00001d033071
Zm00001eb048960
Zhao, L et al. 2025. Integrated DNA methylome and transcriptome analysis reveals the epigenetic regulatory mechanisms underlying maize response to copper stress. PLoS One. 20:e0329456.     Reference: August 29th, 2025
Gene Product: March 12th, 2020
91 days agoupl13 ubiquitin-protein ligase13:
 
GRMZM2G104920
Zm00001d018207
Zm00001eb256270
Zhao, L et al. 2025. Integrated DNA methylome and transcriptome analysis reveals the epigenetic regulatory mechanisms underlying maize response to copper stress. PLoS One. 20:e0329456.   AT2G32950 (TAIR) Reference: August 29th, 2025
Gene Product: May 22nd, 2025
Variation: July 7th, 2023
91 days agodapat3 diaminopimelate aminotransferase3:
 
GRMZM2G119150
Zm00001d028165
Zm00001eb008180
Ana Claudia Ruschel Mochko et al. 2025. Pipecolic Acid‐Induced Physiological and Biochemical Changes in Maize Hamper Colletotrichum graminicola Infection Plant Pathol. :doi: 10.1111/ppa.70045.     Reference: August 29th, 2025
Gene Product: October 21st, 2020
91 days agoosm1 osmotin-like protein1:
 
GRMZM2G136372
Zm00001d031157
Zm00001eb032580
Zhao, L et al. 2025. Integrated DNA methylome and transcriptome analysis reveals the epigenetic regulatory mechanisms underlying maize response to copper stress. PLoS One. 20:e0329456.   AT4G11650 (TAIR) Reference: August 29th, 2025
Gene Product: September 1st, 2003
91 days agoZm00001d002199  :
 
GRMZM2G454511
Zm00001d002199
Zm00001eb069690
Zhao, L et al. 2025. Integrated DNA methylome and transcriptome analysis reveals the epigenetic regulatory mechanisms underlying maize response to copper stress. PLoS One. 20:e0329456.     Reference: August 29th, 2025
Gene Product: January 27th, 2025
91 days agonrat8 nramp aluminum transporter8:
 
GRMZM2G322844
Zm00001d007397
Zm00001eb113380
Zhao, L et al. 2025. Integrated DNA methylome and transcriptome analysis reveals the epigenetic regulatory mechanisms underlying maize response to copper stress. PLoS One. 20:e0329456.     Reference: August 29th, 2025
Gene Product: August 17th, 2015
91 days agoIDP622  :
1.02
GRMZM2G009326
Zm00001d027976
Zm00001eb006620
Zhao, L et al. 2025. Integrated DNA methylome and transcriptome analysis reveals the epigenetic regulatory mechanisms underlying maize response to copper stress. PLoS One. 20:e0329456.     Reference: August 29th, 2025
Variation: March 12th, 2007
91 days agoeng1 endo-1,3-1,4-beta-D-glucanase1:
4.05
GRMZM2G073079
Zm00001d050196
Zm00001eb178190
Ana Claudia Ruschel Mochko et al. 2025. Pipecolic Acid‐Induced Physiological and Biochemical Changes in Maize Hamper Colletotrichum graminicola Infection Plant Pathol. :doi: 10.1111/ppa.70045.     Reference: August 29th, 2025
Variation: May 20th, 2009
91 days agoccl17 coumarate-CoA ligase17:
5.03
GRMZM2G120539
Zm00001d015025
Zm00001eb230220
Zhao, L et al. 2025. Integrated DNA methylome and transcriptome analysis reveals the epigenetic regulatory mechanisms underlying maize response to copper stress. PLoS One. 20:e0329456.     Reference: August 29th, 2025
Gene Product: April 30th, 2025
3 months agopfkb3 6-phosphofructokinase B3:
 
GRMZM2G007630
GRMZM2G178346
Zm00001d011526
Zm00001eb359730
Xu, XS et al. 2025. Large-scale single-cell profiling of stem cells identifies redundant regulators of shoot development and yield trait variation Dev Cell. 60:1–13.     Reference: August 28th, 2025
Gene Product: January 18th, 2025
3 months agolbd51 LBD-transcription factor 51:
 
Zm00001d031882
Zm00001eb038820
Shifeng Wang et al. 2025. Genome-Wide Analysis of the Maize LBD Gene Family Reveals a Role for ZmLBD12 in the Development of Lateral Roots. Plants. 14:2600.     Reference: August 28th, 2025
Gene Product: July 28th, 2023
3 months agoxth12 xyloglucan endotransglucosylase/hydrolase12:
 
GRMZM2G110299
Zm00001d044775
Zm00001eb371910
Arletys M Verdecia-Mogena et al. 2025. Entomopathogenic Nematodes Induce Metabolic Reallocation in Maize Roots Without Altering the Performance of Two Root Herbivores, Diabrotica virgifera and Diabrotica balteata. Plant Cell Environ. :doi: 10.1111/pce.70143.     Reference: August 28th, 2025
Gene Product: March 23rd, 2024
3 months agoadsk2 adenosine kinase2:
 
   Xu, XS et al. 2025. Large-scale single-cell profiling of stem cells identifies redundant regulators of shoot development and yield trait variation Dev Cell. 60:1–13.     Reference: August 28th, 2025
Gene Product: September 1st, 2003
Variation: September 1st, 2003
3 months agohct24 hydroxycinnamoyltransferase24:
 
GRMZM2G025971
Zm00001d006260
Zm00001eb104000
Sobiech, A et al. 2025. Transcriptomic Characterization of Candidate Genes for Fusarium Resistance in Maize (Zea mays L.) Pathogens. 14:779.     Reference: August 28th, 2025
Gene Product: November 7th, 2015
3 months agoabph1 aberrant phyllotaxy1:
2.03
GRMZM2G035688
Zm00001d002982
Zm00001eb076960
Xu, XS et al. 2025. Large-scale single-cell profiling of stem cells identifies redundant regulators of shoot development and yield trait variation Dev Cell. 60:1–13.     Reference: August 28th, 2025
Gene Product: April 20th, 2009
Variation: July 4th, 2009
3 months agoial1 ig1-as2 like1:
8.06
GRMZM2G133806
Zm00001d012180
Zm00001eb365880
Shifeng Wang et al. 2025. Genome-Wide Analysis of the Maize LBD Gene Family Reveals a Role for ZmLBD12 in the Development of Lateral Roots. Plants. 14:2600.     Reference: August 28th, 2025
Gene Product: July 28th, 2023
Variation: October 1st, 2010
3 months agoadsk3 adenosine kinase3:
2.03
GRMZM2G003775
GRMZM2G089767
Zm00001d003017
Zm00001eb077250
Xu, XS et al. 2025. Large-scale single-cell profiling of stem cells identifies redundant regulators of shoot development and yield trait variation Dev Cell. 60:1–13.     Reference: August 28th, 2025
Gene Product: September 1st, 2003
3 months agocct11 CO CO-LIKE TIMING OF CAB1 protein domain11:
2.05
GRMZM2G135446
Zm00001d004875
Zm00001eb092230
Li, CL et al. 2025. Transcriptomic analysis revealed that short-day treatment of seedlings promotes flowering in maize (Zea mays L.). Genes & Genomics. :doi: 10.1007/s13258-025-01640-z.     Reference: August 28th, 2025
Gene Product: June 18th, 2018
3 months agosudh14 succinate dehydrogenase14:
1.07
GRMZM2G087651
Zm00001d032588
Zm00001eb044740
Fedorin, DN et al. 2025. Site-Specific Changes in Cytosine Methylation in Promoters of the Genes Encoding the Membrane Subunits of Succinate Dehydrogenase During Germination of Maize Seeds. Int J Mol Sci. 26:8010.     Reference: August 28th, 2025
Gene Product: October 25th, 2016
3 months agoIDP7275  :
1.06
AC195785.3_FG004
Zm00001d031230
Zm00001eb033220
Arletys M Verdecia-Mogena et al. 2025. Entomopathogenic Nematodes Induce Metabolic Reallocation in Maize Roots Without Altering the Performance of Two Root Herbivores, Diabrotica virgifera and Diabrotica balteata. Plant Cell Environ. :doi: 10.1111/pce.70143.     Reference: August 28th, 2025
Gene Product: January 27th, 2025
3 months agoig1 indeterminate gametophyte1:
3.06 - 3.07
GRMZM2G118250
Zm00001d042560
Zm00001eb145150
Shifeng Wang et al. 2025. Genome-Wide Analysis of the Maize LBD Gene Family Reveals a Role for ZmLBD12 in the Development of Lateral Roots. Plants. 14:2600.     Reference: August 28th, 2025
Gene Product: July 28th, 2023
Variation: October 19th, 2010
3 months agolhcb12 light harvesting chlorophyll a/b binding protein12:
1.08
GRMZM2G414192
Zm00001d033132
Zm00001eb049630
Li, CL et al. 2025. Transcriptomic analysis revealed that short-day treatment of seedlings promotes flowering in maize (Zea mays L.). Genes & Genomics. :doi: 10.1007/s13258-025-01640-z.     Reference: August 28th, 2025
Gene Product: January 8th, 2005
3 months agolhcb2 light harvesting chlorophyll a/b binding protein2:
7.03
AC207722.2_FG009
Zm00001d021435
Zm00001eb320890
Li, CL et al. 2025. Transcriptomic analysis revealed that short-day treatment of seedlings promotes flowering in maize (Zea mays L.). Genes & Genomics. :doi: 10.1007/s13258-025-01640-z.     Reference: August 28th, 2025
Gene Product: January 8th, 2005
Variation: August 20th, 2014
3 months agoarftf4 ARF-transcription factor 4:
 
GRMZM2G034840
Zm00001d001945
Zm00001eb067270
Xu, XS et al. 2025. Large-scale single-cell profiling of stem cells identifies redundant regulators of shoot development and yield trait variation Dev Cell. 60:1–13.     Reference: August 28th, 2025
Gene Product: January 29th, 2022
3 months agobif4 barren inflorescence4:
 
GRMZM5G864847
Zm00001d037691
Zm00001eb283560
Xu, XS et al. 2025. Large-scale single-cell profiling of stem cells identifies redundant regulators of shoot development and yield trait variation Dev Cell. 60:1–13.     Reference: August 28th, 2025
Gene Product: October 16th, 2015
Variation: October 16th, 2015
3 months agoumc1684  :
7.04
GRMZM2G057281
Zm00001d021784
Zm00001eb324240
Dai, LQ et al. 2026. Transcriptome analysis of embryogenic callus regeneration in maize inbred line J Northwest Agric For Univ. 54:11-23.     Reference: August 28th, 2025
Variation: September 1st, 2003
3 months agoumc1990  :
5.04
GRMZM2G120408
Zm00001d016066
Zm00001eb237930
Xu, XS et al. 2025. Large-scale single-cell profiling of stem cells identifies redundant regulators of shoot development and yield trait variation Dev Cell. 60:1–13.     Reference: August 28th, 2025
Variation: September 1st, 2003
3 months agoicl1 isocitrate lyase1:
7.03
GRMZM2G056369
Zm00001d021666
Zm00001eb323090
Fedorin, DN et al. 2025. Site-Specific Changes in Cytosine Methylation in Promoters of the Genes Encoding the Membrane Subunits of Succinate Dehydrogenase During Germination of Maize Seeds. Int J Mol Sci. 26:8010.     Reference: August 28th, 2025
Gene Product: September 1st, 2003
Variation: July 29th, 2015
3 months agopap15 purple acid phosphatase15:
1.06
GRMZM2G136453
Zm00001d031657
Zm00001eb036930
Arletys M Verdecia-Mogena et al. 2025. Entomopathogenic Nematodes Induce Metabolic Reallocation in Maize Roots Without Altering the Performance of Two Root Herbivores, Diabrotica virgifera and Diabrotica balteata. Plant Cell Environ. :doi: 10.1111/pce.70143.     Reference: August 28th, 2025
Gene Product: November 21st, 2018
3 months agochb101b chromatin remodeling complex subunit B (Swi3):
1.10
GRMZM2G047038
Zm00001d033825
Zm00001eb055620
Li, CL et al. 2025. Transcriptomic analysis revealed that short-day treatment of seedlings promotes flowering in maize (Zea mays L.). Genes & Genomics. :doi: 10.1007/s13258-025-01640-z.     Reference: August 28th, 2025
Variation: September 1st, 2003
3 months agomet2 DNA methyl transferase2:
10.06
GRMZM2G025592
Zm00001d026291
Fedorin, DN et al. 2025. Site-Specific Changes in Cytosine Methylation in Promoters of the Genes Encoding the Membrane Subunits of Succinate Dehydrogenase During Germination of Maize Seeds. Int J Mol Sci. 26:8010.     Reference: August 28th, 2025
Gene Product: April 6th, 2018
Variation: November 13th, 2018
3 months agomybr88 MYB-related-transcription factor 88:
4.09
GRMZM2G064328
Zm00001d053687
Zm00001eb206120
Li, CL et al. 2025. Transcriptomic analysis revealed that short-day treatment of seedlings promotes flowering in maize (Zea mays L.). Genes & Genomics. :doi: 10.1007/s13258-025-01640-z.     Reference: August 28th, 2025
Variation: September 1st, 2003
3 months agopfkb2 6-phosphofructokinase B2:
3.04
GRMZM2G171400
Zm00001d040183
Zm00001eb126820
Xu, XS et al. 2025. Large-scale single-cell profiling of stem cells identifies redundant regulators of shoot development and yield trait variation Dev Cell. 60:1–13.     Reference: August 28th, 2025
Gene Product: January 18th, 2025
3 months agosudh4 succinate dehydrogenase4:
 
GRMZM2G079888
Zm00001d007966
Zm00001eb117970
Fedorin, DN et al. 2025. Site-Specific Changes in Cytosine Methylation in Promoters of the Genes Encoding the Membrane Subunits of Succinate Dehydrogenase During Germination of Maize Seeds. Int J Mol Sci. 26:8010.     Reference: August 28th, 2025
Gene Product: October 25th, 2016
Variation: October 25th, 2016
3 months agostp4 sugar transport protein4:
 
GRMZM5G801949
Zm00001d021775
Zm00001eb324180
Arletys M Verdecia-Mogena et al. 2025. Entomopathogenic Nematodes Induce Metabolic Reallocation in Maize Roots Without Altering the Performance of Two Root Herbivores, Diabrotica virgifera and Diabrotica balteata. Plant Cell Environ. :doi: 10.1111/pce.70143.     Reference: August 28th, 2025
Gene Product: January 2nd, 2023
3 months agotom4 transporter of mugineic acid4:
 
GRMZM2G029219
Zm00001d040422
Zm00001eb128730
Arletys M Verdecia-Mogena et al. 2025. Entomopathogenic Nematodes Induce Metabolic Reallocation in Maize Roots Without Altering the Performance of Two Root Herbivores, Diabrotica virgifera and Diabrotica balteata. Plant Cell Environ. :doi: 10.1111/pce.70143.     Reference: August 28th, 2025
Gene Product: September 23rd, 2016
3 months agoadsk1 adenosine kinase1:
4.05
GRMZM2G135132
Zm00001d051157
Zm00001eb185220
Xu, XS et al. 2025. Large-scale single-cell profiling of stem cells identifies redundant regulators of shoot development and yield trait variation Dev Cell. 60:1–13.     Reference: August 28th, 2025
Gene Product: September 1st, 2003
Variation: March 31st, 2005
3 months agopfkb1 6-phosphofructokinase B1:
8.01
GRMZM2G051842
Zm00001d008406
Zm00001eb334210
Xu, XS et al. 2025. Large-scale single-cell profiling of stem cells identifies redundant regulators of shoot development and yield trait variation Dev Cell. 60:1–13.     Reference: August 28th, 2025
Gene Product: January 18th, 2025
Variation: March 31st, 2005
3 months agolhcb5 light harvesting chlorophyll a/b binding protein5:
2.08
GRMZM2G149428
Zm00001d007267
Zm00001eb112260
Dai, LQ et al. 2026. Transcriptome analysis of embryogenic callus regeneration in maize inbred line J Northwest Agric For Univ. 54:11-23.     Reference: August 28th, 2025
Variation: February 19th, 2015
3 months agocaspl15 casparian-strip-membrane-domain-like15:
 
   Zhang, H et al. 2025. ZmMYB104 Enhances Heat-Stress Tolerance by Activating ZmCAT2 Expression in Maize. Physiol Plant. 177:e70478.     Reference: August 27th, 2025
Gene Product: June 17th, 2020
3 months agonactf11 NAC-transcription factor 11:
 
GRMZM2G031001
Zm00001d028995
Zm00001eb015570
Wang, YH et al. 2025. Brassinosteroid Coordinates with ROS, Auxin and Gibberellin to Promote Mesocotyl Elongation and Deep-Sowing Tolerance in Maize. Curr Issues Mol Biol. 47:668.     Reference: August 27th, 2025
Variation: April 23rd, 2024
3 months agoprp16 pathogenesis-related protein116:
5.08
GRMZM5G852886
Zm00001d018322
Zm00001eb257300
Muhammad Zafar Saleem et al. 2025. In silico characterization, physiochemical analysis, and antifungal evaluation of the Zea mays PR-1 protein Sci. Rep.. 15:31523.     Reference: August 27th, 2025
Gene Product: December 12th, 2022
Variation: September 1st, 2003
3 months agogot5 glutamate-oxaloacetate transaminase5:
 
GRMZM2G033799
Zm00001d010190
Zm00001eb348660
Jorge El-Azaz et al. 2025. The multilayered regulation of aromatic amino acid biosynthesis in plants Trends Biochem Sci. :doi: 10.1016/j.tibs.2025.07.008.   AT2G22250 (TAIR) Reference: August 27th, 2025
Gene Product: October 21st, 2021
Variation: June 6th, 2025
3 months agohsp29 heat shock protein29:
 
GRMZM5G803365
Zm00001d015777
Zm00001eb235800
Zhang, H et al. 2025. ZmMYB104 Enhances Heat-Stress Tolerance by Activating ZmCAT2 Expression in Maize. Physiol Plant. 177:e70478.     Reference: August 27th, 2025
Gene Product: January 15th, 2019
3 months agosod1 superoxide dismutase1:
 
GRMZM5G891739
Zm00001d028232
Zm00001eb008850
Ziming Wang et al. 2025. Identification of the ZmATG18 subfamily genes in maize and the role of ZmATG18a in drought stress BMC Genomics. 26:777.     Reference: August 26th, 2025
Gene Product: October 4th, 2021
3 months agohb84 Homeobox-transcription factor 84:
1.06
GRMZM2G099319
Zm00001d031182
Zm00001eb032780
Shanshan Zhang et al. 2025. ZmPP2C45 and ZmBELL4 suppress maize biochemical defense against insect herbivores. New Phytol. :doi: 10.1111/nph.70485.     Reference: August 26th, 2025
Gene Product: February 21st, 2025
Variation: December 30th, 2016
3 months agoga2ox4 gibberellin 2-oxidase4:
 
GRMZM2G153359
Zm00001d017294
Zm00001eb247830
Zhixiang Lu et al. 2025. Pathogenic Roles of Polyketide Synthase CLPKS18 and (R)-(-)-Mellein from Curvularia lunata in Maize Leaf Spot J Fungi. 11:627.     Reference: August 26th, 2025
Gene Product: October 27th, 2014
3 months agoatg18a autophagy18a:
 
GRMZM2G122607
Zm00001d011920
Zm00001eb363500
Ziming Wang et al. 2025. Identification of the ZmATG18 subfamily genes in maize and the role of ZmATG18a in drought stress BMC Genomics. 26:777.     Reference: August 26th, 2025
Variation: August 26th, 2025
3 months agotar2 tryptophan aminotransferase related2:
 
GRMZM2G066345
Zm00001d039691
Zm00001eb123040
Zhixiang Lu et al. 2025. Pathogenic Roles of Polyketide Synthase CLPKS18 and (R)-(-)-Mellein from Curvularia lunata in Maize Leaf Spot J Fungi. 11:627.     Reference: August 26th, 2025
Gene Product: April 30th, 2011
3 months agoprx39 peroxidase39:
 
GRMZM2G085967
Zm00001d014467
Zm00001eb225230
Ziming Wang et al. 2025. Identification of the ZmATG18 subfamily genes in maize and the role of ZmATG18a in drought stress BMC Genomics. 26:777.     Reference: August 26th, 2025
Gene Product: January 20th, 2025
3 months agocoi3 coronatine insensitive3:
 
GRMZM2G353209
Zm00001d038273
Zm00001eb288770
Zhixiang Lu et al. 2025. Pathogenic Roles of Polyketide Synthase CLPKS18 and (R)-(-)-Mellein from Curvularia lunata in Maize Leaf Spot J Fungi. 11:627.     Reference: August 26th, 2025
Gene Product: November 2nd, 2018
3 months agosaur41 small auxin up RNA41:
 
GRMZM2G432060
Zm00001d051302
Zm00001eb186060
Zhixiang Lu et al. 2025. Pathogenic Roles of Polyketide Synthase CLPKS18 and (R)-(-)-Mellein from Curvularia lunata in Maize Leaf Spot J Fungi. 11:627.     Reference: August 26th, 2025
Gene Product: November 26th, 2021
3 months agoaas10 auxin amido synthetase10:
8.03
GRMZM2G001421
Zm00001d008957
Zm00001eb338800
Zhixiang Lu et al. 2025. Pathogenic Roles of Polyketide Synthase CLPKS18 and (R)-(-)-Mellein from Curvularia lunata in Maize Leaf Spot J Fungi. 11:627.     Reference: August 26th, 2025
Gene Product: October 21st, 2019
3 months agoereb235 AP2-EREBP-transcription factor 235:
6.05
GRMZM2G067036
Zm00001d038343
Zm00001eb289400
Laura Carbonell-Rozas et al. 2025. Lipids signature shift in Zea Mays L. resistant and susceptible inbred lines in response to Fusarium verticillioides BMC Plant Biology. 25:1135.     Reference: August 26th, 2025
Gene Product: July 5th, 2019
Variation: March 31st, 2005
3 months agoprh45 protein phosphatase homolog45:
 
GRMZM2G108309
Zm00001d047385
Zm00001eb393920
Shanshan Zhang et al. 2025. ZmPP2C45 and ZmBELL4 suppress maize biochemical defense against insect herbivores. New Phytol. :doi: 10.1111/nph.70485.     Reference: August 26th, 2025
Gene Product: October 25th, 2021
3 months agobhlh201 bHLH-transcription factor 201:
 
GRMZM2G317317
Zm00001d028312
Zm00001eb009610
Chao Zhang et al. 2025. Integrated Transcriptomic and Metabolomic Analysis of Color Changes in Maize Root Systems Treated with Methyl Jasmonate Biology. 14:1124.     Reference: August 25th, 2025
Gene Product: September 14th, 2016
3 months agoereb227 AP2-EREBP-transcription factor 227:
 
Zm00001d029940
Zm00001eb023680
Lipps, S et al. 2025. Insights into the genetic and biochemical basis of Gibberella ear rot resistance in maize. Plant Genome. 18(3) e70099.     Reference: August 25th, 2025
Gene Product: July 5th, 2019
3 months agohipp6 heavy metal-associated isoprenylated plant protein6:
 
   Lipps, S et al. 2025. Insights into the genetic and biochemical basis of Gibberella ear rot resistance in maize. Plant Genome. 18(3) e70099.     Reference: August 25th, 2025
Gene Product: February 12th, 2022
3 months agohct31 hydroxycinnamoyltransferase31:
 
   Chao Zhang et al. 2025. Integrated Transcriptomic and Metabolomic Analysis of Color Changes in Maize Root Systems Treated with Methyl Jasmonate Biology. 14:1124.     Reference: August 25th, 2025
Gene Product: November 7th, 2015
3 months agopsei2 cystatin2:
8.08
GRMZM2G012160
Zm00001d012561
Zm00001eb369350
Fu, R et al. 2017. Identification of Salt Tolerance-related microRNAs and Their Targets in Maize (Zea mays L.) Using High-throughput Sequencing and Degradome Analysis. Frontiers in Plant Science. 8:864.     Reference: August 25th, 2025
Gene Product: April 21st, 2008
Variation: January 15th, 2015
3 months agobm4 brown midrib4:
9.08
GRMZM2G393334
Zm00001d048514
Zm00001eb404110
Lipps, S et al. 2025. Insights into the genetic and biochemical basis of Gibberella ear rot resistance in maize. Plant Genome. 18(3) e70099.     Reference: August 25th, 2025
Gene Product: December 17th, 2014
Variation: December 17th, 2014
3 months agort1 rootless1:
3.04
   Hein, K et al. 2025. Phenome-to-genome insights for evaluating root system architecture in field studies of maize. Plant Genome. 18:e70100.     Reference: August 25th, 2025
Variation: August 25th, 2025
3 months agosbp6 SBP-transcription factor 6:
5.00
GRMZM2G138421
Zm00001d012916
Zm00001eb211350
Lipps, S et al. 2025. Insights into the genetic and biochemical basis of Gibberella ear rot resistance in maize. Plant Genome. 18(3) e70099.     Reference: August 25th, 2025
Gene Product: July 5th, 2019
Variation: September 1st, 2003
3 months agoumc1331  :
1.11
GRMZM5G874478
Zm00001d034768
Zm00001eb063770
Fu, R et al. 2017. Identification of Salt Tolerance-related microRNAs and Their Targets in Maize (Zea mays L.) Using High-throughput Sequencing and Degradome Analysis. Frontiers in Plant Science. 8:864.     Reference: August 25th, 2025
Variation: October 19th, 2016
3 months agomyb56 MYB-transcription factor 56:
 
GRMZM2G130149
Zm00001d030678
Zm00001eb028820
Chao Zhang et al. 2025. Integrated Transcriptomic and Metabolomic Analysis of Color Changes in Maize Root Systems Treated with Methyl Jasmonate Biology. 14:1124.     Reference: August 25th, 2025
Gene Product: July 25th, 2017
Variation: September 12th, 2024
3 months agomybr32 MYB-related-transcription factor 32:
 
GRMZM2G088524
Zm00001d029963
Zm00001eb023780
Chao Zhang et al. 2025. Integrated Transcriptomic and Metabolomic Analysis of Color Changes in Maize Root Systems Treated with Methyl Jasmonate Biology. 14:1124.     Reference: August 25th, 2025
Variation: November 21st, 2024
3 months agothx18 Trihelix-transcription factor 18:
 
GRMZM2G314660
Zm00001d027335
Zm00001eb000880
Lipps, S et al. 2025. Insights into the genetic and biochemical basis of Gibberella ear rot resistance in maize. Plant Genome. 18(3) e70099.     Reference: August 25th, 2025
Gene Product: November 9th, 2021
3 months agoetr40 ethylene receptor homolog40:
2.05
GRMZM2G089010
Zm00001d004372
Zm00001eb088180
Lipps, S et al. 2025. Insights into the genetic and biochemical basis of Gibberella ear rot resistance in maize. Plant Genome. 18(3) e70099.     Reference: August 25th, 2025
Variation: August 6th, 2008
3 months agoipt6 isopentenyl transferase6:
 
GRMZM2G116878
Zm00001d034584
Zm00001eb062030
Lipps, S et al. 2025. Insights into the genetic and biochemical basis of Gibberella ear rot resistance in maize. Plant Genome. 18(3) e70099.     Reference: August 25th, 2025
Gene Product: April 4th, 2025
3 months agohct3 hydroxycinnamoyltransferase3:
 
GRMZM2G127251
Zm00001d037073
Zm00001eb278280
Chao Zhang et al. 2025. Integrated Transcriptomic and Metabolomic Analysis of Color Changes in Maize Root Systems Treated with Methyl Jasmonate Biology. 14:1124.     Reference: August 25th, 2025
Gene Product: November 7th, 2015
3 months agosacd6 stearoyl-acyl-carrier-protein desaturase6:
 
GRMZM2G027673
Zm00001d050552
Zm00001eb181020
Yang, YX et al. 2019. Identification of maize flowering gene co-expression modules by WGCNA Acta Agron Sin. 45:161-174.     Reference: August 25th, 2025
Gene Product: October 10th, 2016
3 months agofkf1 flavin-binding kelch repeat f-box1:
 
GRMZM2G107945
Zm00001d007445
Zm00001eb113780
Yang, YX et al. 2019. Identification of maize flowering gene co-expression modules by WGCNA Acta Agron Sin. 45:161-174.   AT1G68050 (TAIR) Reference: August 25th, 2025
Gene Product: April 27th, 2022
Variation: March 19th, 2024
3 months agolac22 laccase22:
 
GRMZM2G336337
Zm00001d012477
Zm00001eb368580
Lipps, S et al. 2025. Insights into the genetic and biochemical basis of Gibberella ear rot resistance in maize. Plant Genome. 18(3) e70099.     Reference: August 25th, 2025
Gene Product: March 31st, 2018
3 months agomyo4 myosin4:
 
GRMZM2G435294
Zm00001d044819
Zm00001eb372280
Lipps, S et al. 2025. Insights into the genetic and biochemical basis of Gibberella ear rot resistance in maize. Plant Genome. 18(3) e70099.     Reference: August 25th, 2025
Gene Product: September 1st, 2003
Variation: December 3rd, 2020
3 months agoaatr1 amino acid transporter1:
 
GRMZM2G108597
Zm00001d004633
Zm00001eb090330
Gurjeet Singh et al. 2025. Advances in Genomics-Assisted Breeding Strategies for Enhancing Nutrient Uptake and Use Efficiency in Cereals: A Pathway Toward Sustainable Agriculture Plant Stress. :doi: 10.1016/j.stress.2025.101002.     Reference: August 25th, 2025
Gene Product: March 31st, 2021
3 months agoaaap44 amino acid/auxin permease44:
 
GRMZM2G429322
Zm00001d035166
Zm00001eb261510
Yang, YX et al. 2019. Identification of maize flowering gene co-expression modules by WGCNA Acta Agron Sin. 45:161-174.     Reference: August 25th, 2025
Gene Product: March 31st, 2021
3 months agocipk5 calcineurin B-like-interacting protein kinase5:
8.03
GRMZM2G390896
Zm00001d008901
Zm00001eb338250
Gurjeet Singh et al. 2025. Advances in Genomics-Assisted Breeding Strategies for Enhancing Nutrient Uptake and Use Efficiency in Cereals: A Pathway Toward Sustainable Agriculture Plant Stress. :doi: 10.1016/j.stress.2025.101002.     Reference: August 25th, 2025
Gene Product: August 25th, 2018
3 months agonas1 nicotianamine synthase1:
9.04
GRMZM2G385200
Zm00001d047651
Zm00001eb396230
Gurjeet Singh et al. 2025. Advances in Genomics-Assisted Breeding Strategies for Enhancing Nutrient Uptake and Use Efficiency in Cereals: A Pathway Toward Sustainable Agriculture Plant Stress. :doi: 10.1016/j.stress.2025.101002.     Reference: August 25th, 2025
Gene Product: July 26th, 2013
Variation: March 19th, 2008
3 months agocys6 cysteine synthase6:
9.02
GRMZM2G104269
Zm00001d045340
Zm00001eb376890
Yang, YX et al. 2019. Identification of maize flowering gene co-expression modules by WGCNA Acta Agron Sin. 45:161-174.     Reference: August 25th, 2025
Gene Product: September 1st, 2003
3 months agoIDP80  :
7.01
GRMZM2G012324
Zm00001d018796
Zm00001eb299980
Fu, R et al. 2017. Identification of Salt Tolerance-related microRNAs and Their Targets in Maize (Zea mays L.) Using High-throughput Sequencing and Degradome Analysis. Frontiers in Plant Science. 8:864.     Reference: August 25th, 2025
Variation: March 31st, 2005
3 months agonas3 nicotianamine synthase 3:
1.09
GRMZM2G478568
Zm00001d033496
Zm00001eb052890
Gurjeet Singh et al. 2025. Advances in Genomics-Assisted Breeding Strategies for Enhancing Nutrient Uptake and Use Efficiency in Cereals: A Pathway Toward Sustainable Agriculture Plant Stress. :doi: 10.1016/j.stress.2025.101002.     Reference: August 25th, 2025
Gene Product: July 26th, 2013
Variation: March 19th, 2008
3 months agonas2 nicotianamine synthase2:
1.03
GRMZM2G030036
Zm00001d028888
Zm00001eb014700
Gurjeet Singh et al. 2025. Advances in Genomics-Assisted Breeding Strategies for Enhancing Nutrient Uptake and Use Efficiency in Cereals: A Pathway Toward Sustainable Agriculture Plant Stress. :doi: 10.1016/j.stress.2025.101002.     Reference: August 25th, 2025
Gene Product: July 26th, 2013
Variation: March 19th, 2008
3 months agostp19 sugar transport protein19:
7.02
GRMZM2G029153
Zm00001d020463
Zm00001eb312640
Ma, HL et al. 2018. Frontiers Plant Sci 9:974     Reference: August 25th, 2025
Gene Product: January 2nd, 2023
3 months agoarftf26 ARF-transcription factor 26:
 
GRMZM5G874163
Zm00001d012731
Zm00001eb370810
Ziyan Yu et al. 2025. Effects of exogenous GR24 on the growth and gene expression of maize seedlings under drought stress. Phytochemistry. :114652.     Reference: August 24th, 2025
Gene Product: January 29th, 2022
Variation: July 7th, 2017
3 months agogst16 glutathione transferase16:
7.03
GRMZM5G895383
Zm00001d021470
Zm00001eb321220
Ziyan Yu et al. 2025. Effects of exogenous GR24 on the growth and gene expression of maize seedlings under drought stress. Phytochemistry. :114652.     Reference: August 24th, 2025
Gene Product: September 1st, 2003
Variation: August 17th, 2010
3 months agomlo7 barley mlo defense gene homolog7:
9.04
GRMZM2G416887
Zm00001d046781
Zm00001eb388440
Ziyan Yu et al. 2025. Effects of exogenous GR24 on the growth and gene expression of maize seedlings under drought stress. Phytochemistry. :114652.     Reference: August 24th, 2025
Variation: October 19th, 2010
3 months agompk7 MAP kinase7:
 
GRMZM2G002100
Zm00001d036215
Zm00001eb270940
Ziyan Yu et al. 2025. Effects of exogenous GR24 on the growth and gene expression of maize seedlings under drought stress. Phytochemistry. :114652.     Reference: August 24th, 2025
Gene Product: July 12th, 2013
Variation: January 18th, 2013
3 months agoprh6 protein phosphatase homolog6:
 
GRMZM2G308615
Zm00001d020100
Zm00001eb309920
Ziyan Yu et al. 2025. Effects of exogenous GR24 on the growth and gene expression of maize seedlings under drought stress. Phytochemistry. :114652.     Reference: August 24th, 2025
Gene Product: October 25th, 2021
3 months agohma10 heavy metal ATPase10:
 
GRMZM2G143512
Zm00001d002708
Zm00001eb074380
Ziyan Yu et al. 2025. Effects of exogenous GR24 on the growth and gene expression of maize seedlings under drought stress. Phytochemistry. :114652.     Reference: August 24th, 2025
Gene Product: October 23rd, 2019
3 months agosus6 sucrose synthase6:
 
GRMZM2G045171
Zm00001d051837
Zm00001eb190590
Ziyan Yu et al. 2025. Effects of exogenous GR24 on the growth and gene expression of maize seedlings under drought stress. Phytochemistry. :114652.     Reference: August 24th, 2025
Gene Product: October 25th, 2006
3 months agoprh96 protein phosphatase homolog96:
 
GRMZM5G836628
Zm00001d007207
Zm00001eb111860
Ziyan Yu et al. 2025. Effects of exogenous GR24 on the growth and gene expression of maize seedlings under drought stress. Phytochemistry. :114652.     Reference: August 24th, 2025
Gene Product: October 25th, 2021
3 months agompk3 MAP kinase3:
1.03
GRMZM2G017792
Zm00001d028711
Zm00001eb013100
Ziyan Yu et al. 2025. Effects of exogenous GR24 on the growth and gene expression of maize seedlings under drought stress. Phytochemistry. :114652.     Reference: August 24th, 2025
Gene Product: July 9th, 2013
Variation: July 18th, 2025
3 months agome10 malic enzyme10:
 
GRMZM2G404237
Zm00001d010358
Zm00001eb349990
Tianshu Sun et al. 2025. Conserved spatial patterning of gene expression in independent lineages of C4 plants New Phytol. :doi: 10.1111/nph.70475.     Reference: August 23rd, 2025
Gene Product: June 27th, 2019
3 months agopep3 phosphoenolpyruvate carboxylase3:
4.08
GRMZM2G074122
Zm00001d053453
Zm00001eb204600
Tianshu Sun et al. 2025. Conserved spatial patterning of gene expression in independent lineages of C4 plants New Phytol. :doi: 10.1111/nph.70475.     Reference: August 23rd, 2025
Gene Product: September 1st, 2003
Variation: April 10th, 2015
3 months agome2 NADP-dependent malic enzyme2:
6.05
GRMZM2G122479
Zm00001d037962
Zm00001eb285890
Tianshu Sun et al. 2025. Conserved spatial patterning of gene expression in independent lineages of C4 plants New Phytol. :doi: 10.1111/nph.70475.     Reference: August 23rd, 2025
Gene Product: June 27th, 2019
Variation: August 24th, 2014
3 months agoppp1 pyrophosphate-energized proton pump1:
5.07
GRMZM2G090718
GRMZM6G300210
Zm00001d018197
Zm00001eb256150
Tianshu Sun et al. 2025. Conserved spatial patterning of gene expression in independent lineages of C4 plants New Phytol. :doi: 10.1111/nph.70475.     Reference: August 23rd, 2025
Gene Product: September 1st, 2003
Variation: December 14th, 2014
3 months agome6 NADP-dependent malic enzyme6:
3.07
GRMZM2G159724
Zm00001d043601
Zm00001eb154490
Tianshu Sun et al. 2025. Conserved spatial patterning of gene expression in independent lineages of C4 plants New Phytol. :doi: 10.1111/nph.70475.     Reference: August 23rd, 2025
Gene Product: June 27th, 2019
Variation: August 16th, 2011
3 months agome7 malic enzyme7:
 
Zm00001d037961
Zm00001eb285890
Tianshu Sun et al. 2025. Conserved spatial patterning of gene expression in independent lineages of C4 plants New Phytol. :doi: 10.1111/nph.70475.     Reference: August 23rd, 2025
Gene Product: June 27th, 2019
3 months agome8 NAD-dependent malic enzyme8:
 
GRMZM2G085747
Zm00001d013911
Zm00001eb220780
Tianshu Sun et al. 2025. Conserved spatial patterning of gene expression in independent lineages of C4 plants New Phytol. :doi: 10.1111/nph.70475.     Reference: August 23rd, 2025
Gene Product: June 4th, 2020
3 months agoprp9 pathogenesis-related protein9:
 
GRMZM2G075283
Zm00001d023811
Zm00001eb410040
Fangju Jiao et al. 2025. Physiological and Transcriptomic Mechanisms of Exogenous Salicylic Acid-Induced Resistance to Ear Rot in Maize Agronomy. 15:2002.     Reference: August 23rd, 2025
Gene Product: December 12th, 2022
3 months agopep6 phosphoenolpyruvate carboxylase6:
8.08
GRMZM2G110714
Zm00001d012702
Zm00001eb370590
Tianshu Sun et al. 2025. Conserved spatial patterning of gene expression in independent lineages of C4 plants New Phytol. :doi: 10.1111/nph.70475.     Reference: August 23rd, 2025
Gene Product: September 1st, 2003
3 months agome9 NAD-dependent malic enzyme9:
7.03
GRMZM2G406672
Zm00001d021546
Zm00001eb321980
Tianshu Sun et al. 2025. Conserved spatial patterning of gene expression in independent lineages of C4 plants New Phytol. :doi: 10.1111/nph.70475.     Reference: August 23rd, 2025
Gene Product: June 4th, 2020
3 months agocyp50 cytochrome P450 50:
 
GRMZM2G162737
Zm00001d004957
Zm00001eb093140
Xiao, SL et al. 2025. Reinventing a Sustainable Green Revolution by Breeding and Planting Semi-dwarf Maize. Molecular Plant. :doi: 10.1016/j.molp.2025.08.011.     Reference: August 22nd, 2025
Gene Product: December 30th, 2022
3 months agoftcl3 5-formyltetrahydrofolate cyclo-ligase3:
5.03
GRMZM2G124863
Zm00001d013786
Zm00001eb219580
Lian, T et al. 2025. An Allele of Glutamate Formiminotransferase Triggers 5-Methyl-Tetrahydrofolate-to-MeFox Conversion and Facilitates Folate Biofortification in Maize. Adv Sci. :e15082.     Reference: August 22nd, 2025
Gene Product: August 20th, 2014
Variation: August 22nd, 2025
3 months agona1 nana plant1:
3.06 - 3.08
GRMZM2G449033
Zm00001d042843
Zm00001eb147800
Xiao, SL et al. 2025. Reinventing a Sustainable Green Revolution by Breeding and Planting Semi-dwarf Maize. Molecular Plant. :doi: 10.1016/j.molp.2025.08.011.     Reference: August 22nd, 2025
Gene Product: July 24th, 2012
Variation: December 22nd, 2016
3 months agobhlh121 bHLH-transcription factor 121:
 
GRMZM2G083504
Zm00001d006065
Zm00001eb102260
Xiao, SL et al. 2025. Reinventing a Sustainable Green Revolution by Breeding and Planting Semi-dwarf Maize. Molecular Plant. :doi: 10.1016/j.molp.2025.08.011.     Reference: August 22nd, 2025
Variation: March 20th, 2023
3 months agogrftf2 GRF-transcription factor 2:
2.07
GRMZM2G004619
Zm00001d006348
Zm00001eb104790
Xiao, SL et al. 2025. Reinventing a Sustainable Green Revolution by Breeding and Planting Semi-dwarf Maize. Molecular Plant. :doi: 10.1016/j.molp.2025.08.011.     Reference: August 22nd, 2025
Variation: September 25th, 2007
3 months agobhlh132 bHLH-transcription factor 132:
3.05
GRMZM2G114873
Zm00001d042482
Zm00001eb144450
Xiao, SL et al. 2025. Reinventing a Sustainable Green Revolution by Breeding and Planting Semi-dwarf Maize. Molecular Plant. :doi: 10.1016/j.molp.2025.08.011.     Reference: August 22nd, 2025
Gene Product: September 14th, 2016
3 months agoga2ox5 gibberellin 2-oxidase5:
 
GRMZM2G176963
Zm00001d040737
Zm00001eb131180
Xiao, SL et al. 2025. Reinventing a Sustainable Green Revolution by Breeding and Planting Semi-dwarf Maize. Molecular Plant. :doi: 10.1016/j.molp.2025.08.011.     Reference: August 22nd, 2025
Gene Product: October 27th, 2014
3 months agoga2ox10 gibberellin 2-oxidase10:
 
GRMZM2G031724
Zm00001d012712
Zm00001eb370660
Xiao, SL et al. 2025. Reinventing a Sustainable Green Revolution by Breeding and Planting Semi-dwarf Maize. Molecular Plant. :doi: 10.1016/j.molp.2025.08.011.     Reference: August 22nd, 2025
Gene Product: October 27th, 2014
3 months agocipk4 calcineurin B-like-interacting protein kinase4:
 
GRMZM2G472643
Zm00001d033316
Zm00001eb051020
Xiao, SL et al. 2025. Reinventing a Sustainable Green Revolution by Breeding and Planting Semi-dwarf Maize. Molecular Plant. :doi: 10.1016/j.molp.2025.08.011.   AT4G14580 (TAIR) Reference: August 22nd, 2025
Gene Product: August 25th, 2018
Variation: June 25th, 2021
3 months agoapx7 ascorbate peroxidase7:
 
GRMZM2G047968
GRMZM2G083128
Zm00001d031494
Zm00001eb035440
Xiao, SL et al. 2025. Reinventing a Sustainable Green Revolution by Breeding and Planting Semi-dwarf Maize. Molecular Plant. :doi: 10.1016/j.molp.2025.08.011.     Reference: August 22nd, 2025
Gene Product: January 20th, 2025
3 months agoprx101 peroxidase101:
 
GRMZM2G097934
Zm00001d046035
Zm00001eb382680
Kumar, B et al. 2025. Meta-QTLs and candidate genes mining for starch and climate resilience to improve bioethanol production in maize Ind Crop Prod. 235:121753.     Reference: August 21st, 2025
Gene Product: January 20th, 2025
3 months agoole2 oleosin2:
5.02
   Camille Salaün et al. 2025. The characterization of the LEAFY COTYLEDON 2 activation domains reveals its conserved dual mode of action in flowering plants. Plant J. 123:e70380.     Reference: August 21st, 2025
Gene Product: September 1st, 2003
Variation: September 1st, 2003
3 months agozep1 zeaxanthin epoxidase1:
2.04
GRMZM2G127139
Zm00001d003512
Zm00001d003513
Zm00001eb081460
Zm00001eb081470
Duan, FY et al. 2025. Multi-omics analysis reveals distinct responses to light stress in photosynthesis and primary metabolism between maize and rice. Plant Commun. :101488.     Reference: August 21st, 2025
Gene Product: December 10th, 2011
Variation: January 23rd, 2025
3 months agolhcb1 light harvesting chlorophyll a/b binding protein1:
3.09
GRMZM2G429955
Zm00001d044399
Zm00001eb161390
Duan, FY et al. 2025. Multi-omics analysis reveals distinct responses to light stress in photosynthesis and primary metabolism between maize and rice. Plant Commun. :101488.     Reference: August 21st, 2025
Gene Product: January 8th, 2005
3 months agoabi49 ABI3-VP1-transcription factor 49:
 
GRMZM2G405699
Zm00001d034965
Zm00001eb259870
Camille Salaün et al. 2025. The characterization of the LEAFY COTYLEDON 2 activation domains reveals its conserved dual mode of action in flowering plants. Plant J. 123:e70380.     Reference: August 21st, 2025
Gene Product: January 29th, 2022
3 months agolimtf8 LIM-transcription factor 8:
 
GRMZM2G134752
Zm00001d051262
Zm00001eb185900
Kumar, B et al. 2025. Meta-QTLs and candidate genes mining for starch and climate resilience to improve bioethanol production in maize Ind Crop Prod. 235:121753.     Reference: August 21st, 2025
Gene Product: December 16th, 2019
3 months agoabi47 ABI3-VP1-transcription factor 47:
4.08
GRMZM2G125596
Zm00001d052750
Zm00001eb198710
Camille Salaün et al. 2025. The characterization of the LEAFY COTYLEDON 2 activation domains reveals its conserved dual mode of action in flowering plants. Plant J. 123:e70380.     Reference: August 21st, 2025
Gene Product: January 29th, 2022
3 months agocmu1 chorismate mutase1:
8.08
GRMZM2G116087
Zm00001d012674
Zm00001eb370320
Duan, FY et al. 2025. Multi-omics analysis reveals distinct responses to light stress in photosynthesis and primary metabolism between maize and rice. Plant Commun. :101488.     Reference: August 21st, 2025
Gene Product: February 12th, 2014
3 months agopdrp1 PDK regulatory protein1:
2.07
GRMZM2G131286
Zm00001d006520
Zm00001eb106240
Duan, FY et al. 2025. Multi-omics analysis reveals distinct responses to light stress in photosynthesis and primary metabolism between maize and rice. Plant Commun. :101488.     Reference: August 21st, 2025
Gene Product: July 28th, 2014
3 months agofdx6 ferredoxin6:
 
GRMZM2G106190
Zm00001d038291
Zm00001eb288920
Duan, FY et al. 2025. Multi-omics analysis reveals distinct responses to light stress in photosynthesis and primary metabolism between maize and rice. Plant Commun. :101488.     Reference: August 21st, 2025
Gene Product: September 1st, 2003
Variation: November 18th, 2011
3 months agohyd5 hydroxylase5:
 
GRMZM2G382534
Zm00001d048469
Zm00001eb403700
Duan, FY et al. 2025. Multi-omics analysis reveals distinct responses to light stress in photosynthesis and primary metabolism between maize and rice. Plant Commun. :101488.     Reference: August 21st, 2025
Gene Product: December 13th, 2011
Variation: September 3rd, 2011
3 months agovde1 violaxanthin de-epoxidase1:
 
GRMZM2G027219
Zm00001d004021
Zm00001eb085840
Duan, FY et al. 2025. Multi-omics analysis reveals distinct responses to light stress in photosynthesis and primary metabolism between maize and rice. Plant Commun. :101488.     Reference: August 21st, 2025
Gene Product: December 13th, 2011
3 months agoss7 starch synthase7:
 
Zm00001d052263
Zm00001eb194550
Kumar, B et al. 2025. Meta-QTLs and candidate genes mining for starch and climate resilience to improve bioethanol production in maize Ind Crop Prod. 235:121753.     Reference: August 21st, 2025
Gene Product: October 14th, 2016
3 months agofdx5 ferredoxin5:
 
GRMZM2G122327
Zm00001d035002
Zm00001eb260150
Duan, FY et al. 2025. Multi-omics analysis reveals distinct responses to light stress in photosynthesis and primary metabolism between maize and rice. Plant Commun. :101488.     Reference: August 21st, 2025
Gene Product: September 1st, 2003
Variation: August 3rd, 2018
3 months agolac7 laccase7:
 
GRMZM2G400390
Zm00001d042848
Zm00001eb147860
Kumar, B et al. 2025. Meta-QTLs and candidate genes mining for starch and climate resilience to improve bioethanol production in maize Ind Crop Prod. 235:121753.     Reference: August 21st, 2025
Gene Product: March 31st, 2018
3 months agodnaj105 DnaJ family protein105:
 
GRMZM2G144997
Zm00001d028968
Zm00001eb015400
Ma, ZX et al. 2025. Mutation of ZmWRKY87 increases maize salt sensitivity by regulating ZmPP2C4 expression Plant Physiol Biochem. :oi: 10.1016/j.plaphy.2025.110388.     Reference: August 20th, 2025
Gene Product: September 1st, 2003
3 months agoLOC103647911  :
 
GRMZM2G141432
Zm00001d007084
Zm00001eb110750
Ying Ding et al. 2025. Histone ZmH2B regulates resistance to the Southern corn leaf blight pathogen Bipolaris maydis in maize BMC Plant Biology. 25:1097.     Reference: August 20th, 2025
Gene Product: September 1st, 2003
3 months agoLOC103639304  :
 
GRMZM2G305027
Zm00001d047788
Zm00001eb397510
Ying Ding et al. 2025. Histone ZmH2B regulates resistance to the Southern corn leaf blight pathogen Bipolaris maydis in maize BMC Plant Biology. 25:1097.     Reference: August 20th, 2025
Gene Product: September 1st, 2003
3 months agohis2b8 histone 2B8:
 
GRMZM2G472696
Zm00001d048491
Zm00001eb403860
Ying Ding et al. 2025. Histone ZmH2B regulates resistance to the Southern corn leaf blight pathogen Bipolaris maydis in maize BMC Plant Biology. 25:1097.     Reference: August 20th, 2025
Gene Product: September 1st, 2003
3 months agothx60 Trihelix-transcription factor 60:
 
GRMZM2G029888
GRMZM6G332242
Zm00001d032453
Zm00001eb043580
Ma, ZX et al. 2025. Mutation of ZmWRKY87 increases maize salt sensitivity by regulating ZmPP2C4 expression Plant Physiol Biochem. :oi: 10.1016/j.plaphy.2025.110388.     Reference: August 20th, 2025
Gene Product: November 9th, 2021
3 months agopub18 plant U-box type E3 ubiquitin ligase18:
 
GRMZM2G041141
Zm00001d016764
Zm00001eb243330
Ying Ding et al. 2025. Histone ZmH2B regulates resistance to the Southern corn leaf blight pathogen Bipolaris maydis in maize BMC Plant Biology. 25:1097.     Reference: August 20th, 2025
Gene Product: February 1st, 2024
3 months agohis2b3 histone 2B3:
2.06
GRMZM2G057852
Zm00001d005789
Zm00001eb099910
Ying Ding et al. 2025. Histone ZmH2B regulates resistance to the Southern corn leaf blight pathogen Bipolaris maydis in maize BMC Plant Biology. 25:1097.     Reference: August 20th, 2025
Gene Product: September 1st, 2003
Variation: September 15th, 2010
3 months agohis2b7 histone 2B7:
 
   Ying Ding et al. 2025. Histone ZmH2B regulates resistance to the Southern corn leaf blight pathogen Bipolaris maydis in maize BMC Plant Biology. 25:1097.     Reference: August 20th, 2025
Gene Product: September 1st, 2003
3 months agoGRMZM2G304575  :
 
   Ying Ding et al. 2025. Histone ZmH2B regulates resistance to the Southern corn leaf blight pathogen Bipolaris maydis in maize BMC Plant Biology. 25:1097.     Reference: August 20th, 2025
Gene Product: September 1st, 2003
3 months agoGRMZM2G442555  :
 
   Ying Ding et al. 2025. Histone ZmH2B regulates resistance to the Southern corn leaf blight pathogen Bipolaris maydis in maize BMC Plant Biology. 25:1097.     Reference: August 20th, 2025
Gene Product: September 1st, 2003
3 months agohis2b6 histone 2B6:
10.04
GRMZM2G046841
Zm00001d025913
Zm00001eb427180
Ying Ding et al. 2025. Histone ZmH2B regulates resistance to the Southern corn leaf blight pathogen Bipolaris maydis in maize BMC Plant Biology. 25:1097.     Reference: August 20th, 2025
Gene Product: September 1st, 2003
3 months agoumc1246  :
10.04
GRMZM2G075315
Zm00001d024996
Zm00001eb419390
Ying Ding et al. 2025. Histone ZmH2B regulates resistance to the Southern corn leaf blight pathogen Bipolaris maydis in maize BMC Plant Biology. 25:1097.     Reference: August 20th, 2025
Variation: September 1st, 2003
3 months agohis2b1 histone2b1:
7.02
GRMZM2G071959
Zm00001d020580
Zm00001eb313690
Ying Ding et al. 2025. Histone ZmH2B regulates resistance to the Southern corn leaf blight pathogen Bipolaris maydis in maize BMC Plant Biology. 25:1097.     Reference: August 20th, 2025
Gene Product: September 1st, 2003
Variation: June 13th, 2014
3 months agowrky57 WRKY-transcription factor 57:
 
GRMZM2G169966
Zm00001d038451
Zm00001eb290350
Ma, ZX et al. 2025. Mutation of ZmWRKY87 increases maize salt sensitivity by regulating ZmPP2C4 expression Plant Physiol Biochem. :oi: 10.1016/j.plaphy.2025.110388.     Reference: August 20th, 2025
Variation: August 20th, 2025
3 months agobhlh35 bHLH-transcription factor 35:
 
GRMZM2G173372
Zm00001d027546
Zm00001eb002830
Xiaohang Wang et al. 2025. The transcription factors ZmFAMA and ZmSCRM2 form a heterodimeric complex to regulate stomatal development in maize. J Exp Bot. :doi: 10.1093/jxb/eraf377.     Reference: August 20th, 2025
Variation: May 10th, 2016
3 months agohin6 hairpin-induced6:
6.05 - 6.05
GRMZM2G118951
Zm00001d037751
Zm00001eb284140
Ma, ZX et al. 2025. Mutation of ZmWRKY87 increases maize salt sensitivity by regulating ZmPP2C4 expression Plant Physiol Biochem. :oi: 10.1016/j.plaphy.2025.110388.     Reference: August 20th, 2025
Gene Product: February 1st, 2021
3 months agopsb1 photosystem II1:
6.01 - 6.08
GRMZM2G102838
Zm00001d036340
Zm00001eb271820
Rojas, M et al. 2025. Opposing action of photosystem II assembly factors RBD1 and HCF136 underlies light-regulated psbA translation in plant chloroplasts. Proc Natl Acad Sci, USA. :122(34): e2423694122.     Reference: August 20th, 2025
Variation: July 8th, 2015
3 months agohis2b2 histone2b2:
4.05
GRMZM2G119071
Zm00001d050100
Zm00001eb177270
Ying Ding et al. 2025. Histone ZmH2B regulates resistance to the Southern corn leaf blight pathogen Bipolaris maydis in maize BMC Plant Biology. 25:1097.     Reference: August 20th, 2025
Gene Product: September 1st, 2003
Variation: June 23rd, 2014
3 months agohis2a1 histone2A1:
9.06
GRMZM2G305046
Zm00001d047787
Zm00001eb397500
Ying Ding et al. 2025. Histone ZmH2B regulates resistance to the Southern corn leaf blight pathogen Bipolaris maydis in maize BMC Plant Biology. 25:1097.     Reference: August 20th, 2025
Gene Product: September 1st, 2003
Variation: September 3rd, 2015
3 months agohis2b5 histone 2B5:
4.06
GRMZM2G342515
Zm00001d051591
Zm00001eb188570
Ying Ding et al. 2025. Histone ZmH2B regulates resistance to the Southern corn leaf blight pathogen Bipolaris maydis in maize BMC Plant Biology. 25:1097.     Reference: August 20th, 2025
Gene Product: September 1st, 2003
Variation: June 23rd, 2014
3 months agotpt1 triose phosphate translocator1:
 
Zm00001d039258
Zm00001eb118870
Ma, ZX et al. 2025. Mutation of ZmWRKY87 increases maize salt sensitivity by regulating ZmPP2C4 expression Plant Physiol Biochem. :oi: 10.1016/j.plaphy.2025.110388.     Reference: August 20th, 2025
Gene Product: September 1st, 2003
Variation: September 1st, 2003
3 months agotrh3 thioredoxin h homolog3:
 
GRMZM2G079089
Zm00001d044247
Zm00001eb160020
Ying Ding et al. 2025. Histone ZmH2B regulates resistance to the Southern corn leaf blight pathogen Bipolaris maydis in maize BMC Plant Biology. 25:1097.     Reference: August 20th, 2025
Gene Product: September 1st, 2003
Variation: August 7th, 2013
3 months agohcf244 high chlorophyll fluorescence244:
 
GRMZM2G143917
Zm00001d031997
Zm00001eb039850
Rojas, M et al. 2025. Opposing action of photosystem II assembly factors RBD1 and HCF136 underlies light-regulated psbA translation in plant chloroplasts. Proc Natl Acad Sci, USA. :122(34): e2423694122.   AT4G35250 (TAIR) Reference: August 20th, 2025
Variation: January 27th, 2020
3 months agohis405 histone H4 family5:
 
GRMZM2G149178
Zm00001d026015
Zm00001eb428040
Ying Ding et al. 2025. Histone ZmH2B regulates resistance to the Southern corn leaf blight pathogen Bipolaris maydis in maize BMC Plant Biology. 25:1097.     Reference: August 20th, 2025
Gene Product: September 1st, 2003
3 months agochx12 cation/H+ antiporter 12:
 
GRMZM2G025611
Zm00001d035631
Zm00001eb266600
Xiaohang Wang et al. 2025. The transcription factors ZmFAMA and ZmSCRM2 form a heterodimeric complex to regulate stomatal development in maize. J Exp Bot. :doi: 10.1093/jxb/eraf377.     Reference: August 20th, 2025
Gene Product: April 26th, 2021
3 months agohis303 histone303:
 
GRMZM2G451254
Zm00001d016723
Zm00001eb243130
Ying Ding et al. 2025. Histone ZmH2B regulates resistance to the Southern corn leaf blight pathogen Bipolaris maydis in maize BMC Plant Biology. 25:1097.     Reference: August 20th, 2025
Gene Product: June 15th, 2021
3 months agobhlh176 bHLH-transcription factor 176:
 
GRMZM5G857090
Zm00001d036382
Zm00001eb272150
Xiaohang Wang et al. 2025. The transcription factors ZmFAMA and ZmSCRM2 form a heterodimeric complex to regulate stomatal development in maize. J Exp Bot. :doi: 10.1093/jxb/eraf377.     Reference: August 20th, 2025
Gene Product: September 14th, 2016
3 months agoerdh5 early response to dehydration 15-homolog5:
 
GRMZM2G181551
Zm00001d048165
Zm00001eb400880
Mohammad Sayari et al. 2025. Unveiling molecular mechanisms and candidate genes for goss’s bacterial wilt and leaf blight resistance in corn through RNA-Seq analysis BMC Genomics. 26:755.     Reference: August 19th, 2025
Gene Product: December 23rd, 2022
3 months agoplt15 phospholipid transfer protein15:
 
GRMZM2G387360
Zm00001d013907
Zm00001eb220740
Mohammad Sayari et al. 2025. Unveiling molecular mechanisms and candidate genes for goss’s bacterial wilt and leaf blight resistance in corn through RNA-Seq analysis BMC Genomics. 26:755.     Reference: August 19th, 2025
Gene Product: September 1st, 2003
3 months agoppr499 pentatricopeptide repeat protein499:
 
GRMZM2G145130
Zm00001d024521
Zm00001eb415510
Zhu, YL et al. 2025. Genetic effects on chromatin accessibility reveal the molecular mechanisms of complex traits in maize. Plant J. 123:e70437.     Reference: August 19th, 2025
Gene Product: December 27th, 2016
3 months agoglu9 beta-glucosidase9:
 
GRMZM5G845736
Zm00001d003044
Zm00001eb077490
Zhu, YL et al. 2025. Genetic effects on chromatin accessibility reveal the molecular mechanisms of complex traits in maize. Plant J. 123:e70437.     Reference: August 19th, 2025
Gene Product: June 26th, 2019
3 months agocsu1118  :
9.07
GRMZM5G860976
Zm00001d048258
Zm00001eb401720
Mohammad Sayari et al. 2025. Unveiling molecular mechanisms and candidate genes for goss’s bacterial wilt and leaf blight resistance in corn through RNA-Seq analysis BMC Genomics. 26:755.     Reference: August 19th, 2025
Variation: September 1st, 2003
3 months agomate18 multidrug and toxic compound extrusion18:
2.06
GRMZM2G079127
Zm00001d005018
Zm00001eb093580
Mohammad Sayari et al. 2025. Unveiling molecular mechanisms and candidate genes for goss’s bacterial wilt and leaf blight resistance in corn through RNA-Seq analysis BMC Genomics. 26:755.     Reference: August 19th, 2025
Gene Product: August 17th, 2015
3 months agonbp35 nuclear binding protein35:
5.05
GRMZM2G031496
Zm00001d017120
Zm00001eb246360
Zhu, YL et al. 2025. Genetic effects on chromatin accessibility reveal the molecular mechanisms of complex traits in maize. Plant J. 123:e70437.     Reference: August 19th, 2025
Gene Product: September 1st, 2003
Variation: February 18th, 2013
3 months agocsu622  :
2.09
GRMZM2G001444
Zm00001d007645
Zm00001eb115340
Zhu, YL et al. 2025. Genetic effects on chromatin accessibility reveal the molecular mechanisms of complex traits in maize. Plant J. 123:e70437.     Reference: August 19th, 2025
Variation: September 1st, 2003
3 months agofad7 fatty acid desaturase7:
9.06
GRMZM2G128971
Zm00001d047743
Zm00001eb397050
Zhu, YL et al. 2025. Genetic effects on chromatin accessibility reveal the molecular mechanisms of complex traits in maize. Plant J. 123:e70437.     Reference: August 19th, 2025
Gene Product: September 1st, 2003
Variation: September 25th, 2007
3 months agoca2p16 CCAAT-HAP2-transcription factor 216:
 
GRMZM2G091964
Zm00001d033602
Zm00001eb053830
Mohammad Sayari et al. 2025. Unveiling molecular mechanisms and candidate genes for goss’s bacterial wilt and leaf blight resistance in corn through RNA-Seq analysis BMC Genomics. 26:755.     Reference: August 19th, 2025
Gene Product: August 9th, 2016
3 months agofarl3 FAR1-like-transcription factor 3:
 
GRMZM2G155980
Zm00001d034813
Zm00001eb064180
Mohammad Sayari et al. 2025. Unveiling molecular mechanisms and candidate genes for goss’s bacterial wilt and leaf blight resistance in corn through RNA-Seq analysis BMC Genomics. 26:755.     Reference: August 19th, 2025
Gene Product: June 28th, 2019
3 months agozim10 ZIM-transcription factor 10:
 
GRMZM2G173596
Zm00001d014253
Zm00001eb223620
Xiaocui Yan et al. 2025. CHH demethylation in the ZmGST2 promoter enhances maize drought tolerance by regulating ROS scavenging and root growth. BMC Plant Biology. 25:1083.     Reference: August 19th, 2025
Gene Product: February 24th, 2021
3 months agobx7 benzoxazinone synthesis7:
4.03
GRMZM2G441753
Zm00001d049179
Zm00001eb169520
Mohammad Sayari et al. 2025. Unveiling molecular mechanisms and candidate genes for goss’s bacterial wilt and leaf blight resistance in corn through RNA-Seq analysis BMC Genomics. 26:755.     Reference: August 19th, 2025
Gene Product: October 31st, 2011
Variation: October 26th, 2011
3 months agogst15 glutathione transferase15:
8.05
GRMZM2G150474
Zm00001d010870
Zm00001eb354260
Mohammad Sayari et al. 2025. Unveiling molecular mechanisms and candidate genes for goss’s bacterial wilt and leaf blight resistance in corn through RNA-Seq analysis BMC Genomics. 26:755.     Reference: August 19th, 2025
Gene Product: September 1st, 2003
Variation: August 17th, 2010
3 months agogst24 glutathione transferase24:
5.07
GRMZM2G032856
Zm00001d018220
Zm00001eb256380
Xiaocui Yan et al. 2025. CHH demethylation in the ZmGST2 promoter enhances maize drought tolerance by regulating ROS scavenging and root growth. BMC Plant Biology. 25:1083.     Reference: August 19th, 2025
Gene Product: September 1st, 2003
Variation: August 20th, 2010
3 months agocyp1 cytochrome P450 homolog1:
3.10
GRMZM5G899349
Zm00001d044673
Zm00001eb163800
Mohammad Sayari et al. 2025. Unveiling molecular mechanisms and candidate genes for goss’s bacterial wilt and leaf blight resistance in corn through RNA-Seq analysis BMC Genomics. 26:755.   AT1G11680 (TAIR) Reference: August 19th, 2025
Gene Product: September 1st, 2003
Variation: February 28th, 2015
3 months agocyp33 cytochrome P450 CYP81A39:
1.10
GRMZM2G154828
Zm00001d034097
Zm00001eb058070
Mohammad Sayari et al. 2025. Unveiling molecular mechanisms and candidate genes for goss’s bacterial wilt and leaf blight resistance in corn through RNA-Seq analysis BMC Genomics. 26:755.     Reference: August 19th, 2025
Gene Product: December 30th, 2022
3 months agomtl5 metallothionein5:
6.01
GRMZM2G430807
Zm00001d035659
Zm00001eb266820
Mohammad Sayari et al. 2025. Unveiling molecular mechanisms and candidate genes for goss’s bacterial wilt and leaf blight resistance in corn through RNA-Seq analysis BMC Genomics. 26:755.     Reference: August 19th, 2025
Gene Product: September 1st, 2003
3 months agoAW330564  :
10.01
GRMZM2G058595
Zm00001d023314
Zm00001eb405820
Mohammad Sayari et al. 2025. Unveiling molecular mechanisms and candidate genes for goss’s bacterial wilt and leaf blight resistance in corn through RNA-Seq analysis BMC Genomics. 26:755.     Reference: August 19th, 2025
Variation: July 29th, 2004
3 months agoaasr7 abscisic acid stress ripening7:
 
GRMZM2G014797
Zm00001d040786
Zm00001eb131490
Mohammad Sayari et al. 2025. Unveiling molecular mechanisms and candidate genes for goss’s bacterial wilt and leaf blight resistance in corn through RNA-Seq analysis BMC Genomics. 26:755.     Reference: August 19th, 2025
Gene Product: January 2nd, 2019
3 months agoftcl1 5-formyltetrahydrofolate cyclo-ligase1:
 
GRMZM2G001904
Zm00001d023534
Zm00001eb407750
Mohammad Sayari et al. 2025. Unveiling molecular mechanisms and candidate genes for goss’s bacterial wilt and leaf blight resistance in corn through RNA-Seq analysis BMC Genomics. 26:755.     Reference: August 19th, 2025
Gene Product: August 20th, 2014
3 months agopco093477  :
4.01
GRMZM2G020508
Zm00001d048680
Zm00001eb165310
Mohammad Sayari et al. 2025. Unveiling molecular mechanisms and candidate genes for goss’s bacterial wilt and leaf blight resistance in corn through RNA-Seq analysis BMC Genomics. 26:755.     Reference: August 19th, 2025
Variation: May 20th, 2021
3 months agodgk4 diacylglycerol kinase4:
 
GRMZM2G019562
Zm00001d029550
Zm00001eb020260
Mohammad Sayari et al. 2025. Unveiling molecular mechanisms and candidate genes for goss’s bacterial wilt and leaf blight resistance in corn through RNA-Seq analysis BMC Genomics. 26:755.     Reference: August 19th, 2025
Gene Product: September 18th, 2017
Variation: September 18th, 2017
3 months agoincw6 invertase cell wall6:
 
GRMZM2G018692
Zm00001d001944
Zm00001eb067260
Xiaocui Yan et al. 2025. CHH demethylation in the ZmGST2 promoter enhances maize drought tolerance by regulating ROS scavenging and root growth. BMC Plant Biology. 25:1083.     Reference: August 19th, 2025
Gene Product: June 12th, 2018
3 months agocyp26 cytochrome P-450 26:
 
GRMZM2G087875
Zm00001d012322
Zm00001eb367120
Xiaocui Yan et al. 2025. CHH demethylation in the ZmGST2 promoter enhances maize drought tolerance by regulating ROS scavenging and root growth. BMC Plant Biology. 25:1083.     Reference: August 19th, 2025
Gene Product: December 30th, 2022
3 months agoaasr10 abscisic acid stress ripening10:
 
GRMZM2G009792
Zm00001d035409
Zm00001eb263060
Mohammad Sayari et al. 2025. Unveiling molecular mechanisms and candidate genes for goss’s bacterial wilt and leaf blight resistance in corn through RNA-Seq analysis BMC Genomics. 26:755.     Reference: August 19th, 2025
Gene Product: January 2nd, 2019
3 months agohsp7 heat shock protein7:
 
GRMZM5G802801
Zm00001d010529
Zm00001eb351340
Xiaocui Yan et al. 2025. CHH demethylation in the ZmGST2 promoter enhances maize drought tolerance by regulating ROS scavenging and root growth. BMC Plant Biology. 25:1083.     Reference: August 19th, 2025
Gene Product: September 1st, 2003
3 months agolaz3 lazarus ortholog3:
 
GRMZM2G122045
Zm00001d034719
Zm00001eb063290
Xiaocui Yan et al. 2025. CHH demethylation in the ZmGST2 promoter enhances maize drought tolerance by regulating ROS scavenging and root growth. BMC Plant Biology. 25:1083.     Reference: August 19th, 2025
Gene Product: July 27th, 2019
3 months agoaco7 aconitase7:
 
GRMZM2G036131
Zm00001d040769
Zm00001eb131380
Su, B et al. 2025. ZmNLR-7-Mediated Synergistic Regulation of ROS, Hormonal Signaling, and Defense Gene Networks Drives Maize Immunity to Southern Corn Leaf Blight Curr Issues Mol Biol. 47:573.     Reference: August 19th, 2025
Gene Product: September 1st, 2003
3 months agosams1 S-adenosylmethionine synthetase1:
 
GRMZM2G117198
Zm00001d010920
Zm00001eb354640
Su, B et al. 2025. ZmNLR-7-Mediated Synergistic Regulation of ROS, Hormonal Signaling, and Defense Gene Networks Drives Maize Immunity to Southern Corn Leaf Blight Curr Issues Mol Biol. 47:573.     Reference: August 19th, 2025
Gene Product: January 27th, 2020
3 months agocyp32 cytochrome P450 CYP81A38:
 
GRMZM2G154870
Zm00001d034096
Zm00001eb058060
Mohammad Sayari et al. 2025. Unveiling molecular mechanisms and candidate genes for goss’s bacterial wilt and leaf blight resistance in corn through RNA-Seq analysis BMC Genomics. 26:755.     Reference: August 19th, 2025
Gene Product: December 30th, 2022
3 months agogeb3 glucan endo-1,3-beta-glucosidase homolog3:
 
GRMZM2G061403
Zm00001d011886
Zm00001eb363180
Mohammad Sayari et al. 2025. Unveiling molecular mechanisms and candidate genes for goss’s bacterial wilt and leaf blight resistance in corn through RNA-Seq analysis BMC Genomics. 26:755.     Reference: August 19th, 2025
Gene Product: September 1st, 2003
3 months agosr45_3 splicing regulator45_3:
 
GRMZM2G073567
Zm00001d047847
Zm00001eb397980
Mohammad Sayari et al. 2025. Unveiling molecular mechanisms and candidate genes for goss’s bacterial wilt and leaf blight resistance in corn through RNA-Seq analysis BMC Genomics. 26:755.     Reference: August 19th, 2025
Gene Product: October 18th, 2023
3 months agochn29 chitinase29:
 
GRMZM2G358153
Zm00001d049028
Zm00001eb168350
Mohammad Sayari et al. 2025. Unveiling molecular mechanisms and candidate genes for goss’s bacterial wilt and leaf blight resistance in corn through RNA-Seq analysis BMC Genomics. 26:755.     Reference: August 19th, 2025
Gene Product: May 31st, 2021
3 months agocipk38 calcineurin B-like-interacting protein kinase38:
 
GRMZM2G170552
Zm00001d010459
Zm00001eb350770
Su, B et al. 2025. ZmNLR-7-Mediated Synergistic Regulation of ROS, Hormonal Signaling, and Defense Gene Networks Drives Maize Immunity to Southern Corn Leaf Blight Curr Issues Mol Biol. 47:573.     Reference: August 19th, 2025
Gene Product: August 25th, 2018
3 months agosig6 sigma-like factor6:
5.00
GRMZM2G144196
Zm00001d012810
Zm00001eb210370
Mohammad Sayari et al. 2025. Unveiling molecular mechanisms and candidate genes for goss’s bacterial wilt and leaf blight resistance in corn through RNA-Seq analysis BMC Genomics. 26:755.     Reference: August 19th, 2025
Gene Product: December 24th, 2019
Variation: June 24th, 2015
3 months agofomt2 flavonoid O-methyltransferase 2:
 
GRMZM2G093092
Zm00001d047192
Mohammad Sayari et al. 2025. Unveiling molecular mechanisms and candidate genes for goss’s bacterial wilt and leaf blight resistance in corn through RNA-Seq analysis BMC Genomics. 26:755.     Reference: August 19th, 2025
Gene Product: February 16th, 2011
3 months agosaur21 small auxin up RNA21:
 
GRMZM2G451037
Zm00001d004384
Zm00001eb088260
Xiaocui Yan et al. 2025. CHH demethylation in the ZmGST2 promoter enhances maize drought tolerance by regulating ROS scavenging and root growth. BMC Plant Biology. 25:1083.     Reference: August 19th, 2025
Gene Product: November 26th, 2021
3 months agopao9 polyamine oxidase9:
 
GRMZM2G071343
Zm00001d028172
Zm00001eb008280
Mohammad Sayari et al. 2025. Unveiling molecular mechanisms and candidate genes for goss’s bacterial wilt and leaf blight resistance in corn through RNA-Seq analysis BMC Genomics. 26:755.     Reference: August 19th, 2025
Gene Product: June 10th, 2020
3 months agocl29338_1  :
10.04
GRMZM2G006948
Zm00001d025668
Zm00001eb424700
Zhu, YL et al. 2025. Genetic effects on chromatin accessibility reveal the molecular mechanisms of complex traits in maize. Plant J. 123:e70437.     Reference: August 19th, 2025
Variation: September 25th, 2007
3 months agorop9 Rho-related protein from plants 9:
5.03
GRMZM5G803949
Zm00001d015036
Zm00001eb230300
Zhu, YL et al. 2025. Genetic effects on chromatin accessibility reveal the molecular mechanisms of complex traits in maize. Plant J. 123:e70437.     Reference: August 19th, 2025
Gene Product: April 1st, 2004
3 months agoIDP518  :
3.09
GRMZM2G120619
Zm00001d044396
Zm00001eb161370
Mohammad Sayari et al. 2025. Unveiling molecular mechanisms and candidate genes for goss’s bacterial wilt and leaf blight resistance in corn through RNA-Seq analysis BMC Genomics. 26:755.     Reference: August 19th, 2025
Variation: March 31st, 2005
3 months agoIDP219  :
6.01
GRMZM2G134020
Zm00001d035367
Zm00001eb262690
Mohammad Sayari et al. 2025. Unveiling molecular mechanisms and candidate genes for goss’s bacterial wilt and leaf blight resistance in corn through RNA-Seq analysis BMC Genomics. 26:755.     Reference: August 19th, 2025
Variation: March 31st, 2005
3 months agoers14 ethylene receptor1-14:
5.01
GRMZM2G102601
Zm00001d013486
Zm00001eb216810
Su, B et al. 2025. ZmNLR-7-Mediated Synergistic Regulation of ROS, Hormonal Signaling, and Defense Gene Networks Drives Maize Immunity to Southern Corn Leaf Blight Curr Issues Mol Biol. 47:573.     Reference: August 19th, 2025
Variation: May 16th, 2014
3 months agochn20 chitinase20:
5.03
GRMZM2G064360
Zm00001d014840
Zm00001eb228500
Mohammad Sayari et al. 2025. Unveiling molecular mechanisms and candidate genes for goss’s bacterial wilt and leaf blight resistance in corn through RNA-Seq analysis BMC Genomics. 26:755.     Reference: August 19th, 2025
Gene Product: May 31st, 2021
3 months agoapx5 Cytosolic ascorbate peroxidase5:
6.07
GRMZM2G093346
Zm00001d038867
Zm00001eb294460
Mohammad Sayari et al. 2025. Unveiling molecular mechanisms and candidate genes for goss’s bacterial wilt and leaf blight resistance in corn through RNA-Seq analysis BMC Genomics. 26:755.     Reference: August 19th, 2025
Gene Product: September 1st, 2003
Variation: August 10th, 2012
3 months agopebp9 phosphatidylethanolamine-binding protein9:
 
GRMZM2G021614
Zm00001d008446
Zm00001eb334510
Liu, CL et al. 2025. Genome-Wide Identification and Analysis of the Zcn Gene Family in Maize SSRN. :doi: 10.2139/ssrn.5389785.     Reference: August 16th, 2025
Gene Product: March 19th, 2024
Variation: December 8th, 2010
3 months agopebp10 phosphatidylethanolamine-binding protein10:
 
GRMZM2G152689
Zm00001d040113
Zm00001eb126300
Liu, CL et al. 2025. Genome-Wide Identification and Analysis of the Zcn Gene Family in Maize SSRN. :doi: 10.2139/ssrn.5389785.     Reference: August 16th, 2025
Gene Product: March 19th, 2024
Variation: December 8th, 2010
3 months agopebp11 phosphatidylethanolamine-binding protein11:
 
GRMZM2G117057
Zm00001d037439
Zm00001eb281410
Liu, CL et al. 2025. Genome-Wide Identification and Analysis of the Zcn Gene Family in Maize SSRN. :doi: 10.2139/ssrn.5389785.     Reference: August 16th, 2025
Gene Product: March 19th, 2024
Variation: December 10th, 2010
3 months agopebp13 phosphatidylethanolamine-binding protein13:
 
GRMZM2G108016
Zm00001d016253
Zm00001eb239360
Liu, CL et al. 2025. Genome-Wide Identification and Analysis of the Zcn Gene Family in Maize SSRN. :doi: 10.2139/ssrn.5389785.     Reference: August 16th, 2025
Gene Product: March 19th, 2024
Variation: December 10th, 2010
3 months agopebp16 phosphatidylethanolamine-binding protein16:
 
GRMZM2G127121
Zm00001d017134
Zm00001eb246470
Liu, CL et al. 2025. Genome-Wide Identification and Analysis of the Zcn Gene Family in Maize SSRN. :doi: 10.2139/ssrn.5389785.     Reference: August 16th, 2025
Gene Product: March 19th, 2024
Variation: December 15th, 2010
3 months agopebp17 phosphatidylethanolamine-binding protein17:
 
GRMZM2G075215
Zm00001d004630
Zm00001eb090320
Liu, CL et al. 2025. Genome-Wide Identification and Analysis of the Zcn Gene Family in Maize SSRN. :doi: 10.2139/ssrn.5389785.     Reference: August 16th, 2025
Gene Product: March 19th, 2024
Variation: December 15th, 2010
3 months agopebp18 phosphatidylethanolamine-binding protein18:
 
GRMZM2G158809
Zm00001d006116
Zm00001eb102650
Liu, CL et al. 2025. Genome-Wide Identification and Analysis of the Zcn Gene Family in Maize SSRN. :doi: 10.2139/ssrn.5389785.     Reference: August 16th, 2025
Gene Product: March 19th, 2024
Variation: December 13th, 2010
3 months agopebp19 phosphatidylethanolamine-binding protein:
 
GRMZM2G062052
Zm00001d025737
Zm00001eb425430
Liu, CL et al. 2025. Genome-Wide Identification and Analysis of the Zcn Gene Family in Maize SSRN. :doi: 10.2139/ssrn.5389785.     Reference: August 16th, 2025
Gene Product: March 19th, 2024
Variation: December 15th, 2010
3 months agopebp21 phosphatidylethanolamine-binding protein21:
 
GRMZM2G019993
Zm00001d004010
Zm00001eb085740
Liu, CL et al. 2025. Genome-Wide Identification and Analysis of the Zcn Gene Family in Maize SSRN. :doi: 10.2139/ssrn.5389785.     Reference: August 16th, 2025
Gene Product: March 19th, 2024
Variation: December 13th, 2010
3 months agopebp24 phosphatidylethanolamine-binding protein24:
 
GRMZM2G440005
Zm00001d021135
Zm00001eb318290
Liu, CL et al. 2025. Genome-Wide Identification and Analysis of the Zcn Gene Family in Maize SSRN. :doi: 10.2139/ssrn.5389785.     Reference: August 16th, 2025
Gene Product: March 19th, 2024
Variation: December 14th, 2010
3 months agopebp25 phosphatidylethanolamine-binding protein25:
 
GRMZM2G021560
Zm00001d003226
Zm00001eb078980
Liu, CL et al. 2025. Genome-Wide Identification and Analysis of the Zcn Gene Family in Maize SSRN. :doi: 10.2139/ssrn.5389785.     Reference: August 16th, 2025
Gene Product: March 19th, 2024
Variation: December 15th, 2010
3 months agoB6UH30  :
 
AC197705.4_FG003
Zm00001d010586
Zm00001eb351790
Liu, CL et al. 2025. Genome-Wide Identification and Analysis of the Zcn Gene Family in Maize SSRN. :doi: 10.2139/ssrn.5389785.     Reference: August 16th, 2025
Gene Product: March 19th, 2024
3 months agosbt19 subtilisin19:
 
AC211737.3_FG012
GRMZM5G883741
Zm00001d017522
Zm00001eb249900
Ying Zhou et al. 2025. Dissecting the genetic basis of agronomic traits by multi-trait GWAS and genetic networks in maize (Zea mays L.) aBIOTECH. :doi: 10.1007/s42994-025-00241-4.     Reference: August 15th, 2025
Gene Product: November 11th, 2016
3 months agogi1 gigantea1:
8.03
GRMZM2G107101
Zm00001d008826
Zm00001eb337600
Wu, FK et al. 2025. The blue light receptor ZmFKF1a recruits ZmGI1 to the nucleus to accelerate shoot apex development and flowering in maize. Plant Cell. :doi: 10.1093/plcell/koaf199.     Reference: August 15th, 2025
Gene Product: September 19th, 2012
Variation: April 23rd, 2013
3 months agotua1 alpha tubulin1:
1.10
GRMZM2G153292
Zm00001d033850
Zm00001eb055850
Ying Zhou et al. 2025. Dissecting the genetic basis of agronomic traits by multi-trait GWAS and genetic networks in maize (Zea mays L.) aBIOTECH. :doi: 10.1007/s42994-025-00241-4.     Reference: August 15th, 2025
Gene Product: September 1st, 2003
Variation: August 9th, 2013
3 months agotst3 tonoplast sugar transporter3:
5.03
GRMZM2G040871
Zm00001d014872
Zm00001eb228740
Nan Sun et al. 2025. Tonoplast Sugar Transporter ZmTST1 Positively Regulates Plant Growth, Salt and Drought Tolerance Plant Physiol Biochem. :doi: 10.1016/j.plaphy.2025.110380.     Reference: August 15th, 2025
Gene Product: October 28th, 2021
3 months agoglr1 glutamic acid- and lysine-rich1:
3.00
GRMZM2G123558
Zm00001d039283
Zm00001eb119130
Ying Zhou et al. 2025. Dissecting the genetic basis of agronomic traits by multi-trait GWAS and genetic networks in maize (Zea mays L.) aBIOTECH. :doi: 10.1007/s42994-025-00241-4.     Reference: August 15th, 2025
Gene Product: September 4th, 2019
3 months agosci1 subtilisin-chymotrypsin inhibitor homolog1:
8.05
GRMZM2G028393
Zm00001d011080
Zm00001eb355990
Daniel Munyao Mutyambai et al. 2025. Insect frass fertilizer upregulates maize defence genes and resistance against an invasive herbivore pest Sci. Rep.. 15:29978.     Reference: August 15th, 2025
Gene Product: March 5th, 2024
Variation: August 25th, 2015
3 months agohb8 Homeobox-transcription factor 8:
1.10
GRMZM2G135447
Zm00001d034212
Zm00001eb058930
Ying Zhou et al. 2025. Dissecting the genetic basis of agronomic traits by multi-trait GWAS and genetic networks in maize (Zea mays L.) aBIOTECH. :doi: 10.1007/s42994-025-00241-4.     Reference: August 15th, 2025
Gene Product: September 1st, 2003
Variation: September 1st, 2003
3 months agoga20ox1 gibberellin 20-oxidase1:
1.12
AC203966.5_FG005
Zm00001d034898
Zm00001eb064970
Ying Zhou et al. 2025. Dissecting the genetic basis of agronomic traits by multi-trait GWAS and genetic networks in maize (Zea mays L.) aBIOTECH. :doi: 10.1007/s42994-025-00241-4.     Reference: August 15th, 2025
Gene Product: October 28th, 2014
3 months agoremo1 remorin1:
 
GRMZM2G107774
Zm00001d028185
Zm00001eb008420
Ying Zhou et al. 2025. Dissecting the genetic basis of agronomic traits by multi-trait GWAS and genetic networks in maize (Zea mays L.) aBIOTECH. :doi: 10.1007/s42994-025-00241-4.     Reference: August 15th, 2025
Gene Product: September 24th, 2018
Variation: February 6th, 2016
3 months agoxgat1 xyloglucan galactosyltransferase1:
 
GRMZM2G075492
Zm00001d032794
Zm00001eb046610
Ying Zhou et al. 2025. Dissecting the genetic basis of agronomic traits by multi-trait GWAS and genetic networks in maize (Zea mays L.) aBIOTECH. :doi: 10.1007/s42994-025-00241-4.     Reference: August 15th, 2025
Gene Product: July 2nd, 2020
3 months agoga20ox7 gibberellin 20-oxidase7:
 
AC234528.1_FG006
Zm00001d031926
Zm00001eb039280
Ying Zhou et al. 2025. Dissecting the genetic basis of agronomic traits by multi-trait GWAS and genetic networks in maize (Zea mays L.) aBIOTECH. :doi: 10.1007/s42994-025-00241-4.     Reference: August 15th, 2025
Gene Product: October 28th, 2014
3 months agotst4 tonoplast sugar transporter4:
 
GRMZM2G122869
Zm00001d048823
Zm00001eb166700
Nan Sun et al. 2025. Tonoplast Sugar Transporter ZmTST1 Positively Regulates Plant Growth, Salt and Drought Tolerance Plant Physiol Biochem. :doi: 10.1016/j.plaphy.2025.110380.     Reference: August 15th, 2025
Gene Product: October 28th, 2021
3 months agotst1 tonoplast sugar transporter1:
1.05
GRMZM2G083173
Zm00001d029762
Zm00001eb022230
Nan Sun et al. 2025. Tonoplast Sugar Transporter ZmTST1 Positively Regulates Plant Growth, Salt and Drought Tolerance Plant Physiol Biochem. :doi: 10.1016/j.plaphy.2025.110380.     Reference: August 15th, 2025
Gene Product: October 28th, 2021
3 months agoaaap35 amino acid/auxin permease35:
5.06
GRMZM2G074053
Zm00001d017557
Zm00001eb250210
Ying Zhou et al. 2025. Dissecting the genetic basis of agronomic traits by multi-trait GWAS and genetic networks in maize (Zea mays L.) aBIOTECH. :doi: 10.1007/s42994-025-00241-4.     Reference: August 15th, 2025
Gene Product: March 31st, 2021
3 months agoconz1 constans1:
9.03
GRMZM2G405368
Zm00001d045735
Zm00001eb380460
Wu, FK et al. 2025. The blue light receptor ZmFKF1a recruits ZmGI1 to the nucleus to accelerate shoot apex development and flowering in maize. Plant Cell. :doi: 10.1093/plcell/koaf199.     Reference: August 15th, 2025
Gene Product: June 18th, 2018
Variation: July 28th, 2008
3 months agopfk13 phosphofructose kinase13:
 
GRMZM2G409131
Zm00001d020006
Zm00001eb309240
Yi-Hsuan Lin et al. 2023. Exogenous Methylglyoxal Alleviates Drought-Induced ''Plant Diabetes'' and Leaf Senescence in Maize. J Exp Bot. :doi: 10.1093/jxb/erad503.     Reference: August 14th, 2025
Gene Product: July 20th, 2025
3 months agopfk5 phosphofructose kinase5:
 
GRMZM2G004932
Zm00001d038775
Zm00001eb293530
Weichao Fu et al. 2025. Genome-wide identification of the phosphofructokinase gene family in maize (Zea mays L.) and their expression levels under abiotic stress and phytohormones. BMC Plant Biology. 25:936.     Reference: August 14th, 2025
Gene Product: July 20th, 2025
3 months agosci2 subtilisin-chymotrypsin inhibitor homolog2:
 
GRMZM2G096680
Zm00001d035683
Zm00001eb267030
Dongsheng Guo et al. 2025. Linalool-triggered plant-soil feedback drives defense adaptation in dense maize plantings Science. 389:6761.     Reference: August 14th, 2025
Gene Product: March 5th, 2024
3 months agopfk11 phosphofructose kinase11:
 
   Weichao Fu et al. 2025. Genome-wide identification of the phosphofructokinase gene family in maize (Zea mays L.) and their expression levels under abiotic stress and phytohormones. BMC Plant Biology. 25:936.     Reference: August 14th, 2025
Gene Product: January 18th, 2025
3 months agocyp95 cytochrome P450 95:
 
   Sanjida Mallick et al. 2025. Exploring secondary metabolite biosynthesis clusters in the genome of Zea mays through in silico analysis Plant Biosyst. :doi: 10.1080/11263504.2025.2541733.     Reference: August 14th, 2025
Gene Product: December 30th, 2022
3 months agopfk10 phosphofructose kinase10:
 
   Weichao Fu et al. 2025. Genome-wide identification of the phosphofructokinase gene family in maize (Zea mays L.) and their expression levels under abiotic stress and phytohormones. BMC Plant Biology. 25:936.     Reference: August 14th, 2025
Gene Product: July 20th, 2025
3 months agopfk9 phosphofructose kinase9:
 
   Weichao Fu et al. 2025. Genome-wide identification of the phosphofructokinase gene family in maize (Zea mays L.) and their expression levels under abiotic stress and phytohormones. BMC Plant Biology. 25:936.     Reference: August 14th, 2025
Gene Product: July 20th, 2025
3 months agopfk15 phosphofructose kinase15:
 
   Weichao Fu et al. 2025. Genome-wide identification of the phosphofructokinase gene family in maize (Zea mays L.) and their expression levels under abiotic stress and phytohormones. BMC Plant Biology. 25:936.     Reference: August 14th, 2025
Gene Product: July 20th, 2025
3 months agocyp94 cytochrome P450 94:
2.04
GRMZM2G419342
Zm00001d003142
Zm00001eb078320
Sanjida Mallick et al. 2025. Exploring secondary metabolite biosynthesis clusters in the genome of Zea mays through in silico analysis Plant Biosyst. :doi: 10.1080/11263504.2025.2541733.     Reference: August 14th, 2025
Gene Product: December 30th, 2022
3 months agobx14 benzoxazinone synthesis14:
2.05
GRMZM2G127418
Zm00001d004921
Zm00001eb092770
Dongsheng Guo et al. 2025. Linalool-triggered plant-soil feedback drives defense adaptation in dense maize plantings Science. 389:6761.     Reference: August 14th, 2025
Gene Product: July 8th, 2013
Variation: June 20th, 2016
3 months agopfk7 phosphofructose kinase7:
3.07
GRMZM5G879882
Zm00001d043563
Zm00001eb153830
Weichao Fu et al. 2025. Genome-wide identification of the phosphofructokinase gene family in maize (Zea mays L.) and their expression levels under abiotic stress and phytohormones. BMC Plant Biology. 25:936.     Reference: August 14th, 2025
Gene Product: July 20th, 2025
3 months agobt1 brittle endosperm1:
5.04
GRMZM2G144081
Zm00001d015746
Zm00001eb235570
Wang, S et al. 2025. DPE1, a novel allelic of BT1, is critical for maize endosperm development and carbohydrate metabolism Plant Sci. :doi: 10.1016/j.plantsci.2025.112720.     Reference: August 14th, 2025
Gene Product: February 24th, 2015
Variation: August 14th, 2025
3 months agotcrr1 transfer cell response regulator1:
4.05
GRMZM2G016145
Zm00001d050200
Zm00001eb178220
Qiang Huo et al. 2025. Exploring maize transcriptional regulatory landscape through large-scale profiling of transcription factor binding sites. Molecular Plant. :doi: 10.1016/j.molp.2025.08.009.     Reference: August 14th, 2025
Gene Product: January 16th, 2021
Variation: December 31st, 2015
3 months agoorp1 orange pericarp1:
4.05
GRMZM2G169593
Zm00001d049610
Zm00001eb173100
Dongsheng Guo et al. 2025. Linalool-triggered plant-soil feedback drives defense adaptation in dense maize plantings Science. 389:6761.     Reference: August 14th, 2025
Gene Product: September 1st, 2003
Variation: May 19th, 2006
3 months agoereb92 AP2-EREBP-transcription factor 92:
 
GRMZM2G174347
Zm00001d000339
Zm00001eb352580
Qiang Huo et al. 2025. Exploring maize transcriptional regulatory landscape through large-scale profiling of transcription factor binding sites. Molecular Plant. :doi: 10.1016/j.molp.2025.08.009.     Reference: August 14th, 2025
Variation: November 17th, 2023
3 months agodof47 C2C2-Dof-transcription factor 1:
 
AC155434.2_FG006
Zm00001d022525
Zm00001eb331000
Qiang Huo et al. 2025. Exploring maize transcriptional regulatory landscape through large-scale profiling of transcription factor binding sites. Molecular Plant. :doi: 10.1016/j.molp.2025.08.009.     Reference: August 14th, 2025
Variation: July 8th, 2017
3 months agothx12 Trihelix-transcription factor 12:
 
GRMZM2G016649
Zm00001d002801
Zm00001eb075250
Qiang Huo et al. 2025. Exploring maize transcriptional regulatory landscape through large-scale profiling of transcription factor binding sites. Molecular Plant. :doi: 10.1016/j.molp.2025.08.009.     Reference: August 14th, 2025
Gene Product: November 9th, 2021
3 months agowrky29 WRKY-transcription factor 29:
 
GRMZM2G040298
Zm00001d043569
Zm00001eb154170
Qiang Huo et al. 2025. Exploring maize transcriptional regulatory landscape through large-scale profiling of transcription factor binding sites. Molecular Plant. :doi: 10.1016/j.molp.2025.08.009.     Reference: August 14th, 2025
Gene Product: July 24th, 2017
3 months agotga1 teosinte glume architecture1:
4.05
GRMZM2G101511
Zm00001d049822
Zm00001eb175150
Dongsheng Guo et al. 2025. Linalool-triggered plant-soil feedback drives defense adaptation in dense maize plantings Science. 389:6761.     Reference: August 14th, 2025
Gene Product: July 5th, 2019
Variation: May 7th, 2015
3 months agomybr17 MYB-related-transcription factor 17:
3.09
GRMZM2G071977
Zm00001d044409
Zm00001eb161460
Qiang Huo et al. 2025. Exploring maize transcriptional regulatory landscape through large-scale profiling of transcription factor binding sites. Molecular Plant. :doi: 10.1016/j.molp.2025.08.009.     Reference: August 14th, 2025
Variation: September 1st, 2003
3 months agowip1 wound induced protein1:
8.01
GRMZM2G156632
Zm00001d008548
Zm00001eb335210
Dongsheng Guo et al. 2025. Linalool-triggered plant-soil feedback drives defense adaptation in dense maize plantings Science. 389:6761.     Reference: August 14th, 2025
Gene Product: May 30th, 2014
Variation: September 1st, 2003
3 months agosut7 sucrose transporter7:
9.07
GRMZM2G087901
Zm00001d048311
Zm00001eb402200
Qiang Huo et al. 2025. Exploring maize transcriptional regulatory landscape through large-scale profiling of transcription factor binding sites. Molecular Plant. :doi: 10.1016/j.molp.2025.08.009.     Reference: August 14th, 2025
Gene Product: September 14th, 2013
Variation: April 13th, 2017
3 months agorip2 ribosome-inactivating protein2:
7.04
GRMZM2G119705
Zm00001d022032
Zm00001eb326540
Dongsheng Guo et al. 2025. Linalool-triggered plant-soil feedback drives defense adaptation in dense maize plantings Science. 389:6761.     Reference: August 14th, 2025
Gene Product: September 1st, 2003
Variation: November 21st, 2017
3 months agopco069699a  :
1.12
GRMZM2G115162
Zm00001d034944
Zm00001eb065420
Dongsheng Guo et al. 2025. Linalool-triggered plant-soil feedback drives defense adaptation in dense maize plantings Science. 389:6761.     Reference: August 14th, 2025
Gene Product: March 19th, 2025
3 months agobx8 benzoxazinone synthesis8:
4.01
GRMZM2G085054
Zm00001d048707
Zm00001eb165590
Dongsheng Guo et al. 2025. Linalool-triggered plant-soil feedback drives defense adaptation in dense maize plantings Science. 389:6761.     Reference: August 14th, 2025
Gene Product: October 11th, 2021
Variation: October 31st, 2011
3 months agoaz19D1 alpha zein 19kDa D1:
1.05
AF546187.1_FG001
Zm00001d030852
Zm00001eb030130
Qiang Huo et al. 2025. Exploring maize transcriptional regulatory landscape through large-scale profiling of transcription factor binding sites. Molecular Plant. :doi: 10.1016/j.molp.2025.08.009.     Reference: August 14th, 2025
Gene Product: September 1st, 2003
3 months agopin11 PIN-formed protein11:
 
GRMZM2G040911
Zm00001d006082
Zm00001eb102370
Qiang Huo et al. 2025. Exploring maize transcriptional regulatory landscape through large-scale profiling of transcription factor binding sites. Molecular Plant. :doi: 10.1016/j.molp.2025.08.009.     Reference: August 14th, 2025
Gene Product: April 3rd, 2024
3 months agobx10 benzoxazinone synthesis10:
 
GRMZM2G311036
Zm00001d029359
Zm00001eb018660
Dongsheng Guo et al. 2025. Linalool-triggered plant-soil feedback drives defense adaptation in dense maize plantings Science. 389:6761.     Reference: August 14th, 2025
Gene Product: July 8th, 2013
3 months agobx11 benzoxazinone synthesis11:
 
GRMZM2G336824
Zm00001d029356
Zm00001eb018640
Dongsheng Guo et al. 2025. Linalool-triggered plant-soil feedback drives defense adaptation in dense maize plantings Science. 389:6761.     Reference: August 14th, 2025
Gene Product: July 8th, 2013
3 months agobx12 benzoxazinone synthesis12:
 
GRMZM2G023325
Zm00001d029353
Zm00001eb018630
Dongsheng Guo et al. 2025. Linalool-triggered plant-soil feedback drives defense adaptation in dense maize plantings Science. 389:6761.     Reference: August 14th, 2025
Gene Product: July 8th, 2013
Variation: July 8th, 2013
3 months agotrpp12 trehalose-6-phosphate phosphatase12:
 
GRMZM2G178546
Zm00001d047110
Zm00001eb391600
Yi-Hsuan Lin et al. 2023. Exogenous Methylglyoxal Alleviates Drought-Induced ''Plant Diabetes'' and Leaf Senescence in Maize. J Exp Bot. :doi: 10.1093/jxb/erad503.     Reference: August 14th, 2025
Gene Product: October 3rd, 2020
3 months agoko2 kaurene oxidase2:
 
GRMZM2G161472
Zm00001d046342
Zm00001eb385070
Sanjida Mallick et al. 2025. Exploring secondary metabolite biosynthesis clusters in the genome of Zea mays through in silico analysis Plant Biosyst. :doi: 10.1080/11263504.2025.2541733.     Reference: August 14th, 2025
Gene Product: October 27th, 2014
3 months agokao2 kaurenoic acid oxidase2:
 
GRMZM2G089803
Zm00001d047830
Zm00001eb397820
Sanjida Mallick et al. 2025. Exploring secondary metabolite biosynthesis clusters in the genome of Zea mays through in silico analysis Plant Biosyst. :doi: 10.1080/11263504.2025.2541733.     Reference: August 14th, 2025
Gene Product: August 15th, 2012
3 months agotrpp14 trehalose-6-phosphate phosphatase14:
 
GRMZM6G738249
Zm00001d029371
Zm00001eb018720
Yi-Hsuan Lin et al. 2023. Exogenous Methylglyoxal Alleviates Drought-Induced ''Plant Diabetes'' and Leaf Senescence in Maize. J Exp Bot. :doi: 10.1093/jxb/erad503.     Reference: August 14th, 2025
Gene Product: October 3rd, 2020
3 months agopfk3 phosphofructokinase3:
 
GRMZM2G401970
Zm00001d037910
Zm00001eb284270
Weichao Fu et al. 2025. Genome-wide identification of the phosphofructokinase gene family in maize (Zea mays L.) and their expression levels under abiotic stress and phytohormones. BMC Plant Biology. 25:936.     Reference: August 14th, 2025
Gene Product: January 18th, 2025
3 months agotrpp6 trehalose-6-phosphate phosphatase6:
5.06
GRMZM2G112830
Zm00001d017502
Zm00001eb249690
Yi-Hsuan Lin et al. 2023. Exogenous Methylglyoxal Alleviates Drought-Induced ''Plant Diabetes'' and Leaf Senescence in Maize. J Exp Bot. :doi: 10.1093/jxb/erad503.     Reference: August 14th, 2025
Gene Product: October 3rd, 2020
3 months agoprx52 peroxidase52:
 
GRMZM2G321839
Zm00001d043238
Zm00001eb151190
Yi-Hsuan Lin et al. 2023. Exogenous Methylglyoxal Alleviates Drought-Induced ''Plant Diabetes'' and Leaf Senescence in Maize. J Exp Bot. :doi: 10.1093/jxb/erad503.     Reference: August 14th, 2025
Gene Product: January 20th, 2025
3 months agocyp92 cytochrome P450 92:
 
GRMZM2G164036
Zm00001d003144
Zm00001eb078340
Sanjida Mallick et al. 2025. Exploring secondary metabolite biosynthesis clusters in the genome of Zea mays through in silico analysis Plant Biosyst. :doi: 10.1080/11263504.2025.2541733.     Reference: August 14th, 2025
Gene Product: December 30th, 2022
3 months agopfk8 phosphofructose kinase8:
5.06
GRMZM2G123371
Zm00001d017830
Zm00001eb252630
Weichao Fu et al. 2025. Genome-wide identification of the phosphofructokinase gene family in maize (Zea mays L.) and their expression levels under abiotic stress and phytohormones. BMC Plant Biology. 25:936.     Reference: August 14th, 2025
Gene Product: July 20th, 2025
3 months agoprx87 peroxidase87:
7.02
GRMZM5G843748
Zm00001d020808
Zm00001eb315770
Yi-Hsuan Lin et al. 2023. Exogenous Methylglyoxal Alleviates Drought-Induced ''Plant Diabetes'' and Leaf Senescence in Maize. J Exp Bot. :doi: 10.1093/jxb/erad503.     Reference: August 14th, 2025
Gene Product: January 20th, 2025
Variation: September 25th, 2007
3 months agopdh2 pyruvate dehydrogenase2:
1.06
GRMZM2G043198
Zm00001d031659
Zm00001eb036940
Yi-Hsuan Lin et al. 2023. Exogenous Methylglyoxal Alleviates Drought-Induced ''Plant Diabetes'' and Leaf Senescence in Maize. J Exp Bot. :doi: 10.1093/jxb/erad503.     Reference: August 14th, 2025
Gene Product: February 14th, 2008
Variation: February 25th, 2013
3 months agopdh3 pyruvate dehydrogenase3:
2.07
GRMZM2G097226
Zm00001d006107
Zm00001eb102550
Yi-Hsuan Lin et al. 2023. Exogenous Methylglyoxal Alleviates Drought-Induced ''Plant Diabetes'' and Leaf Senescence in Maize. J Exp Bot. :doi: 10.1093/jxb/erad503.     Reference: August 14th, 2025
Gene Product: February 14th, 2008
Variation: February 14th, 2008
3 months agobx6 benzoxazinone synthesis6:
4.01
GRMZM6G617209
Zm00001d048634
Zm00001eb164860
Dongsheng Guo et al. 2025. Linalool-triggered plant-soil feedback drives defense adaptation in dense maize plantings Science. 389:6761.     Reference: August 14th, 2025
Gene Product: June 20th, 2016
Variation: April 12th, 2019
3 months agopfk19 phosphofructose kinase19:
5.06
GRMZM2G042502
Zm00001d051629
Zm00001eb188910
Weichao Fu et al. 2025. Genome-wide identification of the phosphofructokinase gene family in maize (Zea mays L.) and their expression levels under abiotic stress and phytohormones. BMC Plant Biology. 25:936.     Reference: August 14th, 2025
Gene Product: July 20th, 2025
3 months agopfk14 phosphofructose kinase14:
8.02
GRMZM2G080375
Zm00001d008816
Zm00001eb337520
Weichao Fu et al. 2025. Genome-wide identification of the phosphofructokinase gene family in maize (Zea mays L.) and their expression levels under abiotic stress and phytohormones. BMC Plant Biology. 25:936.     Reference: August 14th, 2025
Gene Product: July 20th, 2025
3 months agopfk12 phosphofructose kinase12:
2.06
GRMZM2G127717
Zm00001d005756
Zm00001eb099530
Weichao Fu et al. 2025. Genome-wide identification of the phosphofructokinase gene family in maize (Zea mays L.) and their expression levels under abiotic stress and phytohormones. BMC Plant Biology. 25:936.     Reference: August 14th, 2025
Gene Product: July 20th, 2025
3 months agocyp93 cytochrome P450 93:
6.00
GRMZM2G052825
Zm00001d034986
Zm00001eb260010
Sanjida Mallick et al. 2025. Exploring secondary metabolite biosynthesis clusters in the genome of Zea mays through in silico analysis Plant Biosyst. :doi: 10.1080/11263504.2025.2541733.     Reference: August 14th, 2025
Gene Product: December 30th, 2022
Variation: June 27th, 2021
3 months agopfk6 phosphofructose kinase6:
3.02
GRMZM2G132069
Zm00001d039499
Zm00001eb121310
Weichao Fu et al. 2025. Genome-wide identification of the phosphofructokinase gene family in maize (Zea mays L.) and their expression levels under abiotic stress and phytohormones. BMC Plant Biology. 25:936.     Reference: August 14th, 2025
Gene Product: July 20th, 2025
3 months agopfk1 phosphofructose kinase1:
6.05
GRMZM2G059151
Zm00001d037278
Zm00001eb280120
Weichao Fu et al. 2025. Genome-wide identification of the phosphofructokinase gene family in maize (Zea mays L.) and their expression levels under abiotic stress and phytohormones. BMC Plant Biology. 25:936.     Reference: August 14th, 2025
Gene Product: July 20th, 2025
Variation: July 7th, 2015
3 months agodnaJ78 DnaJ/Hsp40 78:
 
GRMZM2G177447
Zm00001d009873
Zm00001eb346260
Xin Wen et al. 2025. Genome-wide association study for plant height and ear height in maize under well-watered and water-stressed conditions BMC Genomics. 26:745.     Reference: August 13th, 2025
Gene Product: September 1st, 2003
3 months agoppr9 pentatricopeptide repeat protein9:
 
GRMZM2G169280
Zm00001d027800
Zm00001eb005000
Xin Wen et al. 2025. Genome-wide association study for plant height and ear height in maize under well-watered and water-stressed conditions BMC Genomics. 26:745.     Reference: August 13th, 2025
Gene Product: December 27th, 2016
3 months agonrg14 nitrate regulatory gene14:
 
GRMZM2G345991
Zm00001d017553
Zm00001eb250180
Xin Wen et al. 2025. Genome-wide association study for plant height and ear height in maize under well-watered and water-stressed conditions BMC Genomics. 26:745.     Reference: August 13th, 2025
Gene Product: March 13th, 2024
3 months agoring14 RING-type E3 ligase14:
 
   Xin Wen et al. 2025. Genome-wide association study for plant height and ear height in maize under well-watered and water-stressed conditions BMC Genomics. 26:745.     Reference: August 13th, 2025
Gene Product: May 22nd, 2025
3 months agopen1 plastid-localized 5′–3′ exonuclease1:
 
   Xin Wen et al. 2025. Genome-wide association study for plant height and ear height in maize under well-watered and water-stressed conditions BMC Genomics. 26:745.     Reference: August 13th, 2025
Gene Product: June 25th, 2025
Variation: June 25th, 2025
3 months agohipp47 heavy metal-associated isoprenylated plant protein47:
 
   Xin Wen et al. 2025. Genome-wide association study for plant height and ear height in maize under well-watered and water-stressed conditions BMC Genomics. 26:745.     Reference: August 13th, 2025
Gene Product: February 12th, 2022
3 months agoppr474 pentatricopeptide repeat protein474:
 
   Xin Wen et al. 2025. Genome-wide association study for plant height and ear height in maize under well-watered and water-stressed conditions BMC Genomics. 26:745.     Reference: August 13th, 2025
Gene Product: December 27th, 2016
3 months agoakin2 AKINbetagamma-1 protein kinase2:
1.03
GRMZM2G107867
Zm00001d028733
Zm00001eb013270
Busche, M et al. 2025. Decoding the Growth-Defense Dialectic: TOR signaling and developmental genetics in maize. J Exp Bot. :doi: 10.1093/jxb/eraf358.     Reference: August 13th, 2025
Gene Product: December 4th, 2020
Variation: September 25th, 2007
3 months agogrf2 general regulatory factor2:
10.04
GRMZM2G078641
Zm00001d025617
Zm00001eb424290
Xin Wen et al. 2025. Genome-wide association study for plant height and ear height in maize under well-watered and water-stressed conditions BMC Genomics. 26:745.     Reference: August 13th, 2025
Gene Product: March 6th, 2023
Variation: June 5th, 2014
3 months agohmg2 high mobility group box protein2:
5.06
GRMZM2G013821
Zm00001d017555
Zm00001eb250190
Xin Wen et al. 2025. Genome-wide association study for plant height and ear height in maize under well-watered and water-stressed conditions BMC Genomics. 26:745.     Reference: August 13th, 2025
Gene Product: September 1st, 2003
Variation: June 24th, 2014
3 months agohmg3 high mobility group protein3:
4.06
GRMZM2G156785
Zm00001d051427
Zm00001eb187040
Xin Wen et al. 2025. Genome-wide association study for plant height and ear height in maize under well-watered and water-stressed conditions BMC Genomics. 26:745.     Reference: August 13th, 2025
Gene Product: September 1st, 2003
Variation: June 24th, 2014
3 months agoarftf35 ARF-transcription factor 35:
 
GRMZM2G317900
Zm00001d014690
Zm00001eb227100
Xin Wen et al. 2025. Genome-wide association study for plant height and ear height in maize under well-watered and water-stressed conditions BMC Genomics. 26:745.     Reference: August 13th, 2025
Gene Product: January 29th, 2022
3 months agomterf19 mTERF-domain protein19:
 
GRMZM2G017429
Zm00001d018066
Zm00001eb254990
Xin Wen et al. 2025. Genome-wide association study for plant height and ear height in maize under well-watered and water-stressed conditions BMC Genomics. 26:745.     Reference: August 13th, 2025
Gene Product: February 19th, 2015
3 months agoumc1819  :
1.12
GRMZM2G058511
Zm00001d034862
Zm00001eb064630
Wear, EE et al. 2025. Comparison of transcriptional activity profiling by metabolic labeling or nuclear RNA sequencing. Plant J. 123:e70401.     Reference: August 13th, 2025
Variation: September 1st, 2003
3 months agophb2 prohibitin2:
10.04
GRMZM2G107114
Zm00001d025619
Zm00001eb424310
Xin Wen et al. 2025. Genome-wide association study for plant height and ear height in maize under well-watered and water-stressed conditions BMC Genomics. 26:745.     Reference: August 13th, 2025
Gene Product: September 1st, 2003
Variation: October 8th, 2015
3 months agosol1 sympathy for the ligule1:
1.04 - 1.04
GRMZM2G075262
Zm00001d029051
Zm00001eb015970
Busche, M et al. 2025. Decoding the Growth-Defense Dialectic: TOR signaling and developmental genetics in maize. J Exp Bot. :doi: 10.1093/jxb/eraf358.   AT5G05190 (TAIR) Reference: August 13th, 2025
Gene Product: June 21st, 2019
Variation: June 21st, 2019
3 months agoatpc1 ATP synthase chloroplast subunit1:
5.07
GRMZM5G862663
Zm00001d018069
Zm00001eb255030
Xin Wen et al. 2025. Genome-wide association study for plant height and ear height in maize under well-watered and water-stressed conditions BMC Genomics. 26:745.     Reference: August 13th, 2025
Gene Product: September 1st, 2003
Variation: May 28th, 2013
3 months agorpl6a ribosomal protein L6a:
4.06
GRMZM2G080608
Zm00001d051422
Xin Wen et al. 2025. Genome-wide association study for plant height and ear height in maize under well-watered and water-stressed conditions BMC Genomics. 26:745.     Reference: August 13th, 2025
Gene Product: August 21st, 2024
Variation: August 21st, 2024
3 months agotrpp7 trehalose-6-phosphate phosphatase7:
 
GRMZM2G055150
Zm00001d018082
Zm00001eb255170
Xin Wen et al. 2025. Genome-wide association study for plant height and ear height in maize under well-watered and water-stressed conditions BMC Genomics. 26:745.     Reference: August 13th, 2025
Gene Product: October 3rd, 2020
3 months agoiddp10 indeterminate domain p10:
 
GRMZM2G090595
Zm00001d017560
Zm00001eb250240
Xin Wen et al. 2025. Genome-wide association study for plant height and ear height in maize under well-watered and water-stressed conditions BMC Genomics. 26:745.     Reference: August 13th, 2025
Gene Product: May 31st, 2024
3 months agoGRMZM2G350428  :
 
GRMZM2G350428
Zm00001d013054
Zm00001eb212680
Yang, TX et al. 2025. Maize rough endosperm6 is a predicted RNA helicase required for miRNA processing and endosperm cell patterning. Plant Physiol. :doi: 10.1093/plphys/kiaf342.     Reference: August 13th, 2025
Gene Product: February 22nd, 2021
3 months agonod1 narrow odd dwarf1:
 
GRMZM2G027821
Zm00001d027722
Zm00001eb004320
Busche, M et al. 2025. Decoding the Growth-Defense Dialectic: TOR signaling and developmental genetics in maize. J Exp Bot. :doi: 10.1093/jxb/eraf358.   AT4G35920 (TAIR)
LOC_Os03g06120 (MSU/TIGR)
Reference: August 13th, 2025
Gene Product: August 10th, 2022
Variation: September 8th, 2018
3 months agoxer4 xerico4:
 
GRMZM2G029623
Zm00001d018823
Zm00001eb300290
Xin Wen et al. 2025. Genome-wide association study for plant height and ear height in maize under well-watered and water-stressed conditions BMC Genomics. 26:745.     Reference: August 13th, 2025
Gene Product: May 22nd, 2025
3 months agovq31 VQ motif-transcription factor31:
 
GRMZM2G061941
Zm00001d018089
Zm00001eb255230
Xin Wen et al. 2025. Genome-wide association study for plant height and ear height in maize under well-watered and water-stressed conditions BMC Genomics. 26:745.     Reference: August 13th, 2025
Gene Product: August 31st, 2019
3 months agolic3 lichenase3:
 
GRMZM2G014723
Zm00001d009876
Zm00001eb346270
Xin Wen et al. 2025. Genome-wide association study for plant height and ear height in maize under well-watered and water-stressed conditions BMC Genomics. 26:745.     Reference: August 13th, 2025
Gene Product: February 1st, 2021
3 months agoptac16 plastid transcriptionally active16:
 
GRMZM2G449496
Zm00001d009877
Zm00001eb346280
Xin Wen et al. 2025. Genome-wide association study for plant height and ear height in maize under well-watered and water-stressed conditions BMC Genomics. 26:745.     Reference: August 13th, 2025
Gene Product: December 21st, 2022
3 months agopat21 protein S-acyltransferase21:
 
GRMZM2G080644
Zm00001d051421
Zm00001eb187020
Xin Wen et al. 2025. Genome-wide association study for plant height and ear height in maize under well-watered and water-stressed conditions BMC Genomics. 26:745.     Reference: August 13th, 2025
Gene Product: February 26th, 2022
3 months agopat26 protein S-acyltransferase26:
 
GRMZM2G141503
Zm00001d017550
Zm00001eb250140
Xin Wen et al. 2025. Genome-wide association study for plant height and ear height in maize under well-watered and water-stressed conditions BMC Genomics. 26:745.     Reference: August 13th, 2025
Gene Product: February 26th, 2022
3 months agovit2 vacuolar iron transporter2:
 
GRMZM2G107306
Zm00001d025623
Zm00001eb424350
Xin Wen et al. 2025. Genome-wide association study for plant height and ear height in maize under well-watered and water-stressed conditions BMC Genomics. 26:745.     Reference: August 13th, 2025
Gene Product: April 27th, 2022
3 months agoanx2 annexin2:
5.07
GRMZM2G061950
Zm00001d018090
Zm00001eb255240
Xin Wen et al. 2025. Genome-wide association study for plant height and ear height in maize under well-watered and water-stressed conditions BMC Genomics. 26:745.     Reference: August 13th, 2025
Gene Product: February 17th, 2025
Variation: October 15th, 2013
3 months agotdr1 teosinte drive responder1:
 
GRMZM2G390678
Zm00001d014308
Zm00001eb224090
Zm00004b012122
Megan E Frayer et al. 2025. The molecular evolutionary basis of species formation revisited Trends Genet. :doi: 10.1016/j.tig.2025.07.003.     Reference: August 11th, 2025
Variation: August 7th, 2024
3 months agobzr2 BZR-transcription factor 2:
 
GRMZM5G852801
GRMZM6G287292
Zm00001d039439
Zm00001eb120750
Engelhorn, J et al. 2025. Genetic variation at transcription factor binding sites largely explains phenotypic heritability in maize Nature Genetics. :doi: 10.1038/s41588-025-02246-7.     Reference: August 11th, 2025
Gene Product: May 4th, 2022
3 months agobif2 barren inflorescence2:
1.05
GRMZM2G171822
Zm00001d031068
Zm00001eb031760
Engelhorn, J et al. 2025. Genetic variation at transcription factor binding sites largely explains phenotypic heritability in maize Nature Genetics. :doi: 10.1038/s41588-025-02246-7.   AT2G34650 (TAIR) Reference: August 11th, 2025
Gene Product: July 19th, 2012
Variation: October 23rd, 2013
3 months agosbt11 subtilisin11:
3.06
GRMZM2G052365
Zm00001d043327
Zm00001eb152020
Engelhorn, J et al. 2025. Genetic variation at transcription factor binding sites largely explains phenotypic heritability in maize Nature Genetics. :doi: 10.1038/s41588-025-02246-7.     Reference: August 11th, 2025
Gene Product: November 11th, 2016
Variation: July 29th, 2004
3 months agodng105 DNA glycosylase105:
 
GRMZM5G828460
Zm00001d016521
Zm00001eb241310
Lingjiao Fan et al. 2025. Plants repress ROS1 expression to attenuate heat-induced transposon burst Nature Plants. :doi: 10.1038/s41477-025-02076-9.     Reference: August 11th, 2025
Gene Product: October 5th, 2021
3 months agotip3d tonoplast intrinsic protein3d:
 
GRMZM2G039845
Zm00001d002952
Zm00001eb076690
Engelhorn, J et al. 2025. Genetic variation at transcription factor binding sites largely explains phenotypic heritability in maize Nature Genetics. :doi: 10.1038/s41588-025-02246-7.     Reference: August 11th, 2025
Gene Product: January 27th, 2022
3 months agopex2 pollen extensin-like2:
4.01
GRMZM2G478929
Zm00001d048715
Zm00001eb165660
Qinjie Chu et al. 2025. Characterization of phosphorylation variants for identifying adaptive alleles in Zea. Plant J. 123:e70414.     Reference: August 10th, 2025
Gene Product: September 1st, 2003
Variation: September 1st, 2003
3 months agoocl1 outer cell layer1:
3.04
GRMZM2G026643
Zm00001d040090
Zm00001eb126140
Zhang, JH et al. 2025. Genome-Wide Identification of the HD-ZIP Transcription Factor Family in Maize and Functional Analysis of the Role of ZmHD-ZIP23 in Seed Size Plants. 14:2477.     Reference: August 10th, 2025
Gene Product: September 1st, 2003
Variation: April 12th, 2005
3 months agohb17 Homeobox-transcription factor 17:
10.03
GRMZM2G118063
Zm00001d000247
Zm00001eb413140
Zhang, JH et al. 2025. Genome-Wide Identification of the HD-ZIP Transcription Factor Family in Maize and Functional Analysis of the Role of ZmHD-ZIP23 in Seed Size Plants. 14:2477.     Reference: August 10th, 2025
Variation: September 1st, 2003
3 months agohb120 Homeobox-transcription factor 120:
 
GRMZM2G056600
Zm00001d020804
Zm00001eb315750
Zhang, JH et al. 2025. Genome-Wide Identification of the HD-ZIP Transcription Factor Family in Maize and Functional Analysis of the Role of ZmHD-ZIP23 in Seed Size Plants. 14:2477.     Reference: August 10th, 2025
Variation: August 26th, 2023
3 months agohb71 Homeobox-transcription factor 71:
 
GRMZM2G145690
Zm00001d018225
Zm00001eb256420
Zhang, JH et al. 2025. Genome-Wide Identification of the HD-ZIP Transcription Factor Family in Maize and Functional Analysis of the Role of ZmHD-ZIP23 in Seed Size Plants. 14:2477.     Reference: August 10th, 2025
Gene Product: October 3rd, 2020
3 months agoocl2 outer cell layer2:
10.06
AC235534.1_FG007
Zm00001d026088
Zm00001eb428740
Zhang, JH et al. 2025. Genome-Wide Identification of the HD-ZIP Transcription Factor Family in Maize and Functional Analysis of the Role of ZmHD-ZIP23 in Seed Size Plants. 14:2477.     Reference: August 10th, 2025
Gene Product: September 1st, 2003
Variation: September 1st, 2003
3 months agoocl3 outer cell layer3:
7.03
GRMZM2G116658
Zm00001d021236
Zm00001eb319090
Zhang, JH et al. 2025. Genome-Wide Identification of the HD-ZIP Transcription Factor Family in Maize and Functional Analysis of the Role of ZmHD-ZIP23 in Seed Size Plants. 14:2477.     Reference: August 10th, 2025
Gene Product: September 1st, 2003
Variation: February 23rd, 2013
3 months agoocl5 outer cell layer5:
4.04 - 4.05
GRMZM2G130442
Zm00001d049443
Zm00001eb171720
Zhang, JH et al. 2025. Genome-Wide Identification of the HD-ZIP Transcription Factor Family in Maize and Functional Analysis of the Role of ZmHD-ZIP23 in Seed Size Plants. 14:2477.     Reference: August 10th, 2025
Gene Product: September 1st, 2003
Variation: August 12th, 2019
3 months agohb91 Homeobox-transcription factor 91:
10.07
GRMZM2G122897
Zm00001d026351
Zm00001eb431350
Zhang, JH et al. 2025. Genome-Wide Identification of the HD-ZIP Transcription Factor Family in Maize and Functional Analysis of the Role of ZmHD-ZIP23 in Seed Size Plants. 14:2477.     Reference: August 10th, 2025
Gene Product: October 3rd, 2020
Variation: April 25th, 2017
3 months agorld2 rolled leaf2:
1.01
GRMZM2G042250
Zm00001d027317
Zm00001eb000690
Zhang, JH et al. 2025. Genome-Wide Identification of the HD-ZIP Transcription Factor Family in Maize and Functional Analysis of the Role of ZmHD-ZIP23 in Seed Size Plants. 14:2477.     Reference: August 10th, 2025
Gene Product: October 6th, 2015
Variation: January 18th, 2010
3 months agoao2 aldehyde oxidase2:
5.01
GRMZM5G899851
Zm00001d013098
Zm00001eb213190
Wang, CL et al. 2025. Unraveling saline-alkali stress tolerance: Contrasting morpho-physiological, biochemical, and ionic responses in maize (Zea mays L.) genotypes. Plant Physiol Biochem. 229:110349.     Reference: August 10th, 2025
Gene Product: October 4th, 2014
3 months agohb148 homeobox-transcription factor 148:
5.03
Zm00001d013699
Zm00001eb218730
Zhang, JH et al. 2025. Genome-Wide Identification of the HD-ZIP Transcription Factor Family in Maize and Functional Analysis of the Role of ZmHD-ZIP23 in Seed Size Plants. 14:2477.     Reference: August 10th, 2025
Variation: March 31st, 2005
3 months agoZm00001d013162  :
 
Zm00001d013162
Zm00001eb213770
Lindsay, PL et al. 2025. Antagonistic interactions between CLAVATA receptors shape maize ear development bioRxiv preprint. :doi: 10.1101/2025.08.04.667500.     Reference: August 9th, 2025
Gene Product: April 25th, 2025
3 months agokcs16 3-ketoacyl-CoA synthase16:
 
GRMZM2G160417
Zm00001d039053
Zm00001eb296230
Zhao, ZW et al. 2025. ZmCRY1s interact with GL2 in a blue light dependent manner to regulate epidermal wax composition in Zea mays bioRxiv preprint. :doi: 10.1101/2025.08.06.668858.     Reference: August 9th, 2025
Gene Product: November 1st, 2018
3 months agoupl14 ubiquitin-protein ligase14:
 
GRMZM2G126795
Zm00001d052138
Zm00001eb193380
Zhao, ZW et al. 2025. ZmCRY1s interact with GL2 in a blue light dependent manner to regulate epidermal wax composition in Zea mays bioRxiv preprint. :doi: 10.1101/2025.08.06.668858.   AT2G32950 (TAIR) Reference: August 9th, 2025
Gene Product: May 22nd, 2025
3 months agorup1 repressor of UV-B photomorphogenesis homolog1:
 
GRMZM2G389155
Zm00001d014990
Zm00001eb229880
Zhao, ZW et al. 2025. ZmCRY1s interact with GL2 in a blue light dependent manner to regulate epidermal wax composition in Zea mays bioRxiv preprint. :doi: 10.1101/2025.08.06.668858.   AT5G23730 (TAIR) Reference: August 9th, 2025
Gene Product: December 19th, 2020
3 months agosacd2 stearoyl-acyl-carrier-protein desaturase2:
8.06
GRMZM2G180399
Zm00001d012033
Zm00001eb364580
Zhao, ZW et al. 2025. ZmCRY1s interact with GL2 in a blue light dependent manner to regulate epidermal wax composition in Zea mays bioRxiv preprint. :doi: 10.1101/2025.08.06.668858.     Reference: August 9th, 2025
Gene Product: October 10th, 2016
Variation: June 15th, 2016
3 months agokcs1 3-ketoacyl-CoA synthase1:
8.03
GRMZM2G393897
Zm00001d009608
Zm00001eb344070
Zhao, ZW et al. 2025. ZmCRY1s interact with GL2 in a blue light dependent manner to regulate epidermal wax composition in Zea mays bioRxiv preprint. :doi: 10.1101/2025.08.06.668858.     Reference: August 9th, 2025
Gene Product: November 1st, 2018
3 months agopx25 peroxidase25:
 
GRMZM2G061088
Zm00001d009140
Zm00001eb340440
Li, R et al. 2025. ZmPOD5 positively regulates drought tolerance by modulating ROS production. Plant Sci. :112699.     Reference: August 8th, 2025
Gene Product: January 20th, 2025
3 months agoaldh31 aldehyde dehydrogenase31:
 
GRMZM2G070514
Zm00001d050495
Zm00001eb180340
Li, R et al. 2025. ZmPOD5 positively regulates drought tolerance by modulating ROS production. Plant Sci. :112699.     Reference: August 8th, 2025
Gene Product: June 28th, 2005
3 months agosqd3 sulfolipid biosynthesis3:
 
   Xinqi Wei et al. 2025. Non-coding RNA-mediated regulation of seed endosperm development Frontiers in Plant Science. 16:1640284.     Reference: August 8th, 2025
Gene Product: December 1st, 2018
3 months agoaasr1 abscisic acid stress ripening1:
10.02
GRMZM2G136910
Zm00001d023529
Zm00001eb407710
Li, R et al. 2025. ZmPOD5 positively regulates drought tolerance by modulating ROS production. Plant Sci. :112699.     Reference: August 8th, 2025
Gene Product: January 2nd, 2019
Variation: December 30th, 2011
3 months agoad1 adherent1:
1.08
GRMZM2G167438
Zm00001d032728
Zm00001eb046050
Alison Uberti et al. 2025. Molecular breeding approaches for the improvement of oil content and fatty acid composition in exotic-derived maize germplasm. New Phytol. :doi: 10.1111/nph.70439.     Reference: August 8th, 2025
Gene Product: November 1st, 2018
Variation: February 13th, 2020
3 months agoca2p6 CCAAT-HAP2-transcription factor 26:
1.08
GRMZM5G829103
Zm00001d033215
Zm00001eb050320
Xinqi Wei et al. 2025. Non-coding RNA-mediated regulation of seed endosperm development Frontiers in Plant Science. 16:1640284.     Reference: August 8th, 2025
Gene Product: August 9th, 2016
Variation: December 17th, 2016
3 months agotar1 tryptophan aminotransferase related1:
6.05
GRMZM2G127160
Zm00001d037498
Zm00001eb281900
Zhang, M et al. 2011. Extensive, clustered parental imprinting of protein-coding and noncoding RNAs in developing maize endosperm. Proc Natl Acad Sci, USA. 108:20042-7.     Reference: August 8th, 2025
Gene Product: April 30th, 2011
3 months agopox3 guaiacol peroxidase3:
6.05
GRMZM2G135108
Zm00001d037547
Zm00001eb282410
Li, R et al. 2025. ZmPOD5 positively regulates drought tolerance by modulating ROS production. Plant Sci. :112699.     Reference: August 8th, 2025
Gene Product: September 1st, 2003
Variation: January 7th, 2016
3 months agofax2 fatty acid export2:
 
GRMZM2G143389
Zm00001d026478
Zm00001eb432380
Alison Uberti et al. 2025. Molecular breeding approaches for the improvement of oil content and fatty acid composition in exotic-derived maize germplasm. New Phytol. :doi: 10.1111/nph.70439.     Reference: August 8th, 2025
Gene Product: March 14th, 2020
3 months agocrt4 calreticulin4:
 
GRMZM2G074687
Zm00001d005460
Zm00001eb096980
Li, R et al. 2025. ZmPOD5 positively regulates drought tolerance by modulating ROS production. Plant Sci. :112699.     Reference: August 8th, 2025
Gene Product: February 12th, 2007
3 months agoacb5 Acyl-CoA-binding protein5:
 
GRMZM2G108138
Zm00001d028397
Zm00001eb010410
Alison Uberti et al. 2025. Molecular breeding approaches for the improvement of oil content and fatty acid composition in exotic-derived maize germplasm. New Phytol. :doi: 10.1111/nph.70439.     Reference: August 8th, 2025
Gene Product: February 15th, 2021
3 months agofad14 fatty acid desaturase14:
 
GRMZM2G430729
Zm00001d044507
Zm00001eb162340
Zm00001eb162350
Alison Uberti et al. 2025. Molecular breeding approaches for the improvement of oil content and fatty acid composition in exotic-derived maize germplasm. New Phytol. :doi: 10.1111/nph.70439.     Reference: August 8th, 2025
Gene Product: January 6th, 2022
3 months agokcs38 3-ketoacyl-CoA synthase38:
 
GRMZM2G020740
Zm00001d021200
Zm00001eb318810
Alison Uberti et al. 2025. Molecular breeding approaches for the improvement of oil content and fatty acid composition in exotic-derived maize germplasm. New Phytol. :doi: 10.1111/nph.70439.     Reference: August 8th, 2025
Gene Product: November 1st, 2018
3 months agoprx44 peroxidase44:
 
GRMZM2G122816
Zm00001d027710
Zm00001eb004200
Li, R et al. 2025. ZmPOD5 positively regulates drought tolerance by modulating ROS production. Plant Sci. :112699.     Reference: August 8th, 2025
Gene Product: January 20th, 2025
3 months agoplt3 phospholipid transfer protein homolog3:
3.06
GRMZM2G126397
Zm00001d043049
Zm00001eb149490
Alison Uberti et al. 2025. Molecular breeding approaches for the improvement of oil content and fatty acid composition in exotic-derived maize germplasm. New Phytol. :doi: 10.1111/nph.70439.     Reference: August 8th, 2025
Gene Product: September 1st, 2003
Variation: January 8th, 2017
3 months agoIDP290  :
5.05
GRMZM2G398500
Zm00001d017458
Zm00001eb249240
Alison Uberti et al. 2025. Molecular breeding approaches for the improvement of oil content and fatty acid composition in exotic-derived maize germplasm. New Phytol. :doi: 10.1111/nph.70439.     Reference: August 8th, 2025
Variation: March 31st, 2005
3 months agoadf14 actin depolymerizing factor14:
 
Zm00001d034643
Zm00001eb062580
Liu, H et al. 2025. Genome-wide identification of genes involved in stomatal closure in response to drought stress using two maize inbred lines Plant Physiol Biochem. :doi: 10.1016/j.plaphy.2025.110290.     Reference: August 7th, 2025
Gene Product: March 4th, 2020
3 months agoht1 Helminthosporium turcicum resistance1:
2.08
GRMZM2G379770
Zm00001d007056
Zm00001eb110490
Tae-Chun Park et al. 2025. Beyond the genome: the role of functional markers in contemporary plant breeding Frontiers in Plant Science. 16:1637299.     Reference: August 7th, 2025
Gene Product: February 1st, 2023
Variation: September 1st, 2003
3 months agobnlg1057  :
1.06
Zm00001d031531
Zm00001eb035720
Ch Anil Kumar et al. 2025. Study of Genetics and Tagging of Gene Linked to Spotted Stem Borer (Chilo partellus) Resistance in Maize Int J Plant Soil Sci.     Reference: August 7th, 2025
Variation: September 1st, 2003
3 months agoga2ox12 gibberellin 2-oxidase12:
 
GRMZM2G177104
Zm00001d018617
Zm00001eb298190
Tae-Chun Park et al. 2025. Beyond the genome: the role of functional markers in contemporary plant breeding Frontiers in Plant Science. 16:1637299.     Reference: August 7th, 2025
Gene Product: October 27th, 2014
3 months agompk19 MAP kinase19:
 
GRMZM2G007848
Zm00001d011525
Zm00001eb359720
Liu, H et al. 2025. Genome-wide identification of genes involved in stomatal closure in response to drought stress using two maize inbred lines Plant Physiol Biochem. :doi: 10.1016/j.plaphy.2025.110290.     Reference: August 7th, 2025
Gene Product: July 12th, 2013
3 months agotcptf45 TCP-transcription factor 45:
 
Zm00001d052256
Zm00001eb194480
Liu, H et al. 2025. Genome-wide identification of genes involved in stomatal closure in response to drought stress using two maize inbred lines Plant Physiol Biochem. :doi: 10.1016/j.plaphy.2025.110290.     Reference: August 7th, 2025
Gene Product: September 27th, 2019
3 months agoumc1773  :
3.04
GRMZM2G390374
Zm00001d041438
Zm00001eb135700
Henrike Würsig et al. 2025. Responses of Maize Roots, Rhizosphere Enzyme Kinetics, and Prokaryote Diversity to Alternating Precipitation: Insights from a Three-Year Field Study Ann Bot. :doi: 10.1093/aob/mcaf180.     Reference: August 6th, 2025
Variation: September 1st, 2003
3 months agoglu25 beta-glucosidase25:
 
GRMZM5G882852
Zm00001d003045
Zm00001eb077510
Kolkman, JM et al. 2022. Brown midrib mutant and genome-wide association analysis uncover lignin genes for disease resistance in maize. Plant Genome. :e20278.     Reference: August 5th, 2025
Gene Product: June 26th, 2019
3 months agoglu24 beta-glucosidase24:
 
GRMZM2G012236
Zm00001d003046
Zm00001eb077520
Kolkman, JM et al. 2022. Brown midrib mutant and genome-wide association analysis uncover lignin genes for disease resistance in maize. Plant Genome. :e20278.     Reference: August 5th, 2025
Gene Product: June 26th, 2019
3 months agocaspl45 casparian-strip-membrane-domain-like45:
 
   Kolkman, JM et al. 2022. Brown midrib mutant and genome-wide association analysis uncover lignin genes for disease resistance in maize. Plant Genome. :e20278.     Reference: August 5th, 2025
Gene Product: June 17th, 2020
3 months agozfp69 zinc finger protein transcription factor69:
 
   Phuong Dong Tran Nguyen et al. 2025. Revolutionizing molecular plant breeding through genetic engineering of in vivo haploid induction genes. Mol Biol Rep. 52:791.     Reference: August 5th, 2025
Gene Product: November 14th, 2022
Variation: July 9th, 2025
3 months agofae2 fatty acid elongase2:
9.03
GRMZM2G022558
Zm00001d046444
Zm00001eb385870
Khammona, K et al. 2025. Genes and genetics belong to maize haploid induction Frontiers in Plant Science. 16:1634053.     Reference: August 5th, 2025
Variation: January 9th, 2019
3 months agoalmt16 aluminum-activated malate transporter homolog16:
10.04
GRMZM2G094860
Zm00001d026102
Zm00001eb428870
Kolkman, JM et al. 2022. Brown midrib mutant and genome-wide association analysis uncover lignin genes for disease resistance in maize. Plant Genome. :e20278.     Reference: August 5th, 2025
Gene Product: March 16th, 2022
3 months agoumc1283  :
5.04
GRMZM2G094353
Zm00001d015737
Zm00001eb235450
Khammona, K et al. 2025. Genes and genetics belong to maize haploid induction Frontiers in Plant Science. 16:1634053.     Reference: August 5th, 2025
Variation: September 1st, 2003
3 months agobzip49 bZIP-transcription factor 49:
 
GRMZM2G478417
Zm00001d031790
Zm00001eb038010
Khammona, K et al. 2025. Genes and genetics belong to maize haploid induction Frontiers in Plant Science. 16:1634053.     Reference: August 5th, 2025
Variation: April 8th, 2021
3 months agoproh9 prolyl 4-hydroxylase 9:
6.06
GRMZM2G157267
Zm00001d038530
Zm00001eb291170
Kolkman, JM et al. 2022. Brown midrib mutant and genome-wide association analysis uncover lignin genes for disease resistance in maize. Plant Genome. :e20278.     Reference: August 5th, 2025
Gene Product: June 18th, 2021
3 months agoIDP1954  :
2.03
GRMZM2G114276
Zm00001d002599
Zm00001eb073370
Kolkman, JM et al. 2022. Brown midrib mutant and genome-wide association analysis uncover lignin genes for disease resistance in maize. Plant Genome. :e20278.     Reference: August 5th, 2025
Variation: March 31st, 2005
3 months agohct11 hydroxycinnamoyltransferase11:
7.02
GRMZM2G156296
Zm00001d020530
Zm00001eb313230
Kolkman, JM et al. 2022. Brown midrib mutant and genome-wide association analysis uncover lignin genes for disease resistance in maize. Plant Genome. :e20278.     Reference: August 5th, 2025
Gene Product: November 7th, 2015
Variation: March 31st, 2005
3 months agoIDP22  :
8.01
GRMZM2G154896
Zm00001d008342
Zm00001eb333640
Kolkman, JM et al. 2022. Brown midrib mutant and genome-wide association analysis uncover lignin genes for disease resistance in maize. Plant Genome. :e20278.     Reference: August 5th, 2025
Variation: March 31st, 2005
3 months agoprx99 peroxidase99:
 
GRMZM2G015280
Zm00001d047514
Zm00001eb395060
Suying Guo et al. 2025. Genome-Wide Association Analysis of Fresh Maize Int J Mol Sci. 26:7431.     Reference: August 4th, 2025
Gene Product: January 20th, 2025
3 months agodnaJ7 DnaJ/Hsp40 7:
 
GRMZM2G001895
GRMZM2G367023
Zm00001d030026
Zm00001eb024320
Suying Guo et al. 2025. Genome-Wide Association Analysis of Fresh Maize Int J Mol Sci. 26:7431.     Reference: August 4th, 2025
Gene Product: September 1st, 2003
3 months agometp6 metal tolerance protein6:
 
GRMZM2G177532
Zm00001d029129
Zm00001eb016640
Suying Guo et al. 2025. Genome-Wide Association Analysis of Fresh Maize Int J Mol Sci. 26:7431.     Reference: August 4th, 2025
Gene Product: May 23rd, 2024
3 months agoZm00001d051932  :
 
GRMZM2G099097
Zm00001d051932
Zm00001eb191580
Suying Guo et al. 2025. Genome-Wide Association Analysis of Fresh Maize Int J Mol Sci. 26:7431.   AT1G02205 (TAIR) Reference: August 4th, 2025
Gene Product: February 13th, 2020
Variation: May 29th, 2024
3 months agoring439 RING-type E3 ligase439:
 
   Suying Guo et al. 2025. Genome-Wide Association Analysis of Fresh Maize Int J Mol Sci. 26:7431.     Reference: August 4th, 2025
Gene Product: May 22nd, 2025
3 months agosbp1 SBP-domain protein1:
5.04
GRMZM2G111136
Zm00001d015451
Zm00001eb233670
Suying Guo et al. 2025. Genome-Wide Association Analysis of Fresh Maize Int J Mol Sci. 26:7431.     Reference: August 4th, 2025
Gene Product: July 5th, 2019
Variation: October 8th, 2011
3 months agotubg1 gamma-tubulin1:
 
GRMZM2G073888
Zm00001d009780
Zm00001eb345620
Suying Guo et al. 2025. Genome-Wide Association Analysis of Fresh Maize Int J Mol Sci. 26:7431.     Reference: August 4th, 2025
Gene Product: January 12th, 2020
Variation: July 22nd, 2015
3 months agovq5 VQ motif-transcription factor5:
 
GRMZM2G174650
Zm00001d030024
Zm00001eb024310
Suying Guo et al. 2025. Genome-Wide Association Analysis of Fresh Maize Int J Mol Sci. 26:7431.     Reference: August 4th, 2025
Gene Product: August 31st, 2019
3 months agovq13 VQ motif-transcription factor13:
 
GRMZM2G023921
Zm00001d002088
Zm00001eb068610
Suying Guo et al. 2025. Genome-Wide Association Analysis of Fresh Maize Int J Mol Sci. 26:7431.     Reference: August 4th, 2025
Gene Product: August 31st, 2019
3 months agoaaap47 amino acid/auxin permease47:
 
GRMZM2G134888
Zm00001d037057
Zm00001eb278120
Suying Guo et al. 2025. Genome-Wide Association Analysis of Fresh Maize Int J Mol Sci. 26:7431.     Reference: August 4th, 2025
Gene Product: March 31st, 2021
3 months agocl10409_1  :
 
GRMZM2G067265
Zm00001d020696
Zm00001eb314710
Suying Guo et al. 2025. Genome-Wide Association Analysis of Fresh Maize Int J Mol Sci. 26:7431.     Reference: August 4th, 2025
Gene Product: October 21st, 2021
3 months agomkkk49 MAP kinase kinase kinase49:
5.05
GRMZM2G007466
Zm00001d017167
Zm00001eb246710
Suying Guo et al. 2025. Genome-Wide Association Analysis of Fresh Maize Int J Mol Sci. 26:7431.     Reference: August 4th, 2025
Gene Product: March 14th, 2022
Variation: September 25th, 2007
3 months agoIDP1625  :
5.05
GRMZM2G001033
Zm00001d017144
Zm00001eb246560
Suying Guo et al. 2025. Genome-Wide Association Analysis of Fresh Maize Int J Mol Sci. 26:7431.     Reference: August 4th, 2025
Variation: March 31st, 2005
3 months agoarftf29 ARF-transcription factor 29:
 
GRMZM2G086949
Zm00001d026540
Zm00001eb433020
Wang, YF et al. 2025. Identification of yield-related QTLs and their applications using DH population in maize BMC Genomics. 26:719.     Reference: August 3rd, 2025
Gene Product: January 29th, 2022
3 months agolac4 laccase4:
 
GRMZM2G072780
Zm00001d042906
Zm00001eb148280
Wang, YF et al. 2025. Identification of yield-related QTLs and their applications using DH population in maize BMC Genomics. 26:719.     Reference: August 3rd, 2025
Gene Product: March 31st, 2018
3 months agogrx5 glutaredoxin5:
 
GRMZM2G470756
Zm00001d016593
Zm00001eb241960
Wang, YF et al. 2025. Identification of yield-related QTLs and their applications using DH population in maize BMC Genomics. 26:719.     Reference: August 3rd, 2025
Gene Product: January 21st, 2021
Variation: December 14th, 2021
3 months agogrx2 glutaredoxin2:
 
GRMZM2G480903
Zm00001d003927
Zm00001eb085190
Wang, YF et al. 2025. Identification of yield-related QTLs and their applications using DH population in maize BMC Genomics. 26:719.     Reference: August 3rd, 2025
Gene Product: January 21st, 2021
Variation: December 14th, 2021
3 months agocel7 cellulase7:
 
GRMZM2G003379
Zm00001d029011
Zm00001eb015710
Wang, YF et al. 2025. Identification of yield-related QTLs and their applications using DH population in maize BMC Genomics. 26:719.     Reference: August 3rd, 2025
Gene Product: March 20th, 2023
3 months agorxo1 reaction to X. oryzae1:
6.00
GRMZM2G334584
Zm00001d035183
Zm00001eb261660
Zhou et al.: Genome-wide gene responses in a transgenic rice line carrying the maize resistance gene Rxo1 to the rice bacterial streak pathogen, Xanthomonas oryzae pv. oryzicola. BMC Genomics 2010 11:78.     Reference: August 1st, 2025
Variation: May 13th, 2012
4 months agofla3 fasciclin-like arabinogalactan3:
 
GRMZM2G003752
Zm00001d002607
Zm00001eb073440
Yongyan Cao et al. 2025. Genome-wide identification and analysis of the FLA gene family in maize (Zea mays L.) and its expression in response to abiotic stresses. BMC Plant Biology. 25:982.     Reference: July 31st, 2025
Gene Product: July 31st, 2025
4 months agofla22.1 fasciclin-like arabinogalactan22.1:
 
GRMZM2G001514
Zm00001d009567
Zm00001eb343680
Yongyan Cao et al. 2025. Genome-wide identification and analysis of the FLA gene family in maize (Zea mays L.) and its expression in response to abiotic stresses. BMC Plant Biology. 25:982.     Reference: July 31st, 2025
Gene Product: July 31st, 2025
4 months agofla22 fasciclin-like arabinogalactan22:
 
GRMZM2G025240
Zm00001d009566
Zm00001eb343680
Yongyan Cao et al. 2025. Genome-wide identification and analysis of the FLA gene family in maize (Zea mays L.) and its expression in response to abiotic stresses. BMC Plant Biology. 25:982.     Reference: July 31st, 2025
Gene Product: July 31st, 2025
4 months agofla24 fasciclin-like arabinogalactan24:
 
   Yongyan Cao et al. 2025. Genome-wide identification and analysis of the FLA gene family in maize (Zea mays L.) and its expression in response to abiotic stresses. BMC Plant Biology. 25:982.     Reference: July 31st, 2025
Gene Product: July 31st, 2025
4 months agofla4 fasciclin-like arabinogalactan4:
 
   Yongyan Cao et al. 2025. Genome-wide identification and analysis of the FLA gene family in maize (Zea mays L.) and its expression in response to abiotic stresses. BMC Plant Biology. 25:982.     Reference: July 31st, 2025
Gene Product: July 31st, 2025
4 months agofla7 fasciclin-like arabinogalactan7:
 
   Yongyan Cao et al. 2025. Genome-wide identification and analysis of the FLA gene family in maize (Zea mays L.) and its expression in response to abiotic stresses. BMC Plant Biology. 25:982.     Reference: July 31st, 2025
Gene Product: July 31st, 2025
4 months agofla8 fasciclin-like arabinogalactan8:
 
   Yongyan Cao et al. 2025. Genome-wide identification and analysis of the FLA gene family in maize (Zea mays L.) and its expression in response to abiotic stresses. BMC Plant Biology. 25:982.     Reference: July 31st, 2025
Gene Product: July 31st, 2025
4 months agofla9 fasciclin-like arabinogalactan9:
 
   Yongyan Cao et al. 2025. Genome-wide identification and analysis of the FLA gene family in maize (Zea mays L.) and its expression in response to abiotic stresses. BMC Plant Biology. 25:982.     Reference: July 31st, 2025
Gene Product: July 31st, 2025
4 months agofla10 fasciclin-like arabinogalactan10:
 
   Yongyan Cao et al. 2025. Genome-wide identification and analysis of the FLA gene family in maize (Zea mays L.) and its expression in response to abiotic stresses. BMC Plant Biology. 25:982.     Reference: July 31st, 2025
Gene Product: July 31st, 2025
4 months agofla12 fasciclin-like arabinogalactan12:
 
   Yongyan Cao et al. 2025. Genome-wide identification and analysis of the FLA gene family in maize (Zea mays L.) and its expression in response to abiotic stresses. BMC Plant Biology. 25:982.     Reference: July 31st, 2025
Gene Product: July 31st, 2025
4 months agofla13 fasciclin-like arabinogalactan13:
 
   Yongyan Cao et al. 2025. Genome-wide identification and analysis of the FLA gene family in maize (Zea mays L.) and its expression in response to abiotic stresses. BMC Plant Biology. 25:982.     Reference: July 31st, 2025
Gene Product: July 31st, 2025
4 months agofla14 fasciclin-like arabinogalactan14:
 
   Yongyan Cao et al. 2025. Genome-wide identification and analysis of the FLA gene family in maize (Zea mays L.) and its expression in response to abiotic stresses. BMC Plant Biology. 25:982.     Reference: July 31st, 2025
Gene Product: July 31st, 2025
4 months agofla16 fasciclin-like arabinogalactan16:
 
   Yongyan Cao et al. 2025. Genome-wide identification and analysis of the FLA gene family in maize (Zea mays L.) and its expression in response to abiotic stresses. BMC Plant Biology. 25:982.     Reference: July 31st, 2025
Gene Product: July 31st, 2025
4 months agofla18 fasciclin-like arabinogalactan18:
 
   Yongyan Cao et al. 2025. Genome-wide identification and analysis of the FLA gene family in maize (Zea mays L.) and its expression in response to abiotic stresses. BMC Plant Biology. 25:982.     Reference: July 31st, 2025
Gene Product: July 31st, 2025
4 months agofla23 fasciclin-like arabinogalactan23:
 
   Yongyan Cao et al. 2025. Genome-wide identification and analysis of the FLA gene family in maize (Zea mays L.) and its expression in response to abiotic stresses. BMC Plant Biology. 25:982.     Reference: July 31st, 2025
Gene Product: July 31st, 2025
4 months agofla26 fasciclin-like arabinogalactan26:
 
   Yongyan Cao et al. 2025. Genome-wide identification and analysis of the FLA gene family in maize (Zea mays L.) and its expression in response to abiotic stresses. BMC Plant Biology. 25:982.     Reference: July 31st, 2025
Gene Product: July 31st, 2025
4 months agofla27 fasciclin-like arabinogalactan27:
 
   Yongyan Cao et al. 2025. Genome-wide identification and analysis of the FLA gene family in maize (Zea mays L.) and its expression in response to abiotic stresses. BMC Plant Biology. 25:982.     Reference: July 31st, 2025
Gene Product: July 31st, 2025
4 months agoao3 aldehyde oxidase3:
1.11
GRMZM2G019799
Zm00001d034385
Zm00001eb060220
Yuxin Chen et al. 2025. Molybdenum cofactor biosynthesis gene ZmCNX6 regulates vivipary and drought tolerance in maize Crop J. :doi: 10.1016/j.cj.2025.07.004.     Reference: July 31st, 2025
Gene Product: February 5th, 2013
4 months agofla11 fasciclin-like arabinogalactan11:
4.09
AC184130.4_FG005
Zm00001d053755
Zm00001eb206820
Yongyan Cao et al. 2025. Genome-wide identification and analysis of the FLA gene family in maize (Zea mays L.) and its expression in response to abiotic stresses. BMC Plant Biology. 25:982.     Reference: July 31st, 2025
Gene Product: July 31st, 2025
4 months agothx27 Trihelix-transcription factor 27:
 
AC209784.3_FG011
Zm00001d042917
Zm00001eb148360
Zm00001eb148370
Yongyan Cao et al. 2025. Genome-wide identification and analysis of the FLA gene family in maize (Zea mays L.) and its expression in response to abiotic stresses. BMC Plant Biology. 25:982.     Reference: July 31st, 2025
Gene Product: November 9th, 2021
4 months agorfz1 rat frizzled homolog1:
 
GRMZM2G084812
GRMZM6G949474
Zm00001d037540
Zm00001eb282320
Yongyan Cao et al. 2025. Genome-wide identification and analysis of the FLA gene family in maize (Zea mays L.) and its expression in response to abiotic stresses. BMC Plant Biology. 25:982.     Reference: July 31st, 2025
Gene Product: September 1st, 2003
Variation: December 30th, 2010
4 months agofla1 fasciclin-like arabinogalactan1:
1.01
GRMZM2G065718
Zm00001d027471
Zm00001eb002090
Yongyan Cao et al. 2025. Genome-wide identification and analysis of the FLA gene family in maize (Zea mays L.) and its expression in response to abiotic stresses. BMC Plant Biology. 25:982.     Reference: July 31st, 2025
Gene Product: July 31st, 2025
4 months agofla6 fasciclin-like arabinogalactan6:
3.08
GRMZM2G022931
Zm00001d043929
Zm00001eb157310
Yongyan Cao et al. 2025. Genome-wide identification and analysis of the FLA gene family in maize (Zea mays L.) and its expression in response to abiotic stresses. BMC Plant Biology. 25:982.     Reference: July 31st, 2025
Gene Product: July 31st, 2025
4 months agoao4 aldehyde oxidase4:
 
GRMZM2G141473
Zm00001d034388
Zm00001eb060260
Yuxin Chen et al. 2025. Molybdenum cofactor biosynthesis gene ZmCNX6 regulates vivipary and drought tolerance in maize Crop J. :doi: 10.1016/j.cj.2025.07.004.     Reference: July 31st, 2025
Gene Product: October 4th, 2014
4 months agofla2 fasciclin-like arabinogalactan2:
 
GRMZM2G329181
Zm00001d034373
Zm00001eb060130
Yongyan Cao et al. 2025. Genome-wide identification and analysis of the FLA gene family in maize (Zea mays L.) and its expression in response to abiotic stresses. BMC Plant Biology. 25:982.     Reference: July 31st, 2025
Gene Product: July 31st, 2025
4 months agofla20 fasciclin-like arabinogalactan20:
 
GRMZM2G133053
Zm00001d020840
Zm00001eb315990
Yongyan Cao et al. 2025. Genome-wide identification and analysis of the FLA gene family in maize (Zea mays L.) and its expression in response to abiotic stresses. BMC Plant Biology. 25:982.     Reference: July 31st, 2025
Gene Product: July 31st, 2025
4 months agofla19 fasciclin-like arabinogalactan19:
7.02
   Yongyan Cao et al. 2025. Genome-wide identification and analysis of the FLA gene family in maize (Zea mays L.) and its expression in response to abiotic stresses. BMC Plant Biology. 25:982.     Reference: July 31st, 2025
Gene Product: July 31st, 2025
4 months agofla21 fasciclin-like arabinogalactan21:
 
GRMZM2G174799
Zm00001d020903
Zm00001eb316460
Yongyan Cao et al. 2025. Genome-wide identification and analysis of the FLA gene family in maize (Zea mays L.) and its expression in response to abiotic stresses. BMC Plant Biology. 25:982.     Reference: July 31st, 2025
Gene Product: July 31st, 2025
4 months agoendo1 endosperm specific protein1:
9.03
GRMZM2G144610
Zm00001d000418
Zm00001eb380720
Yongyan Cao et al. 2025. Genome-wide identification and analysis of the FLA gene family in maize (Zea mays L.) and its expression in response to abiotic stresses. BMC Plant Biology. 25:982.     Reference: July 31st, 2025
Gene Product: July 31st, 2025
Variation: September 1st, 2015
4 months agocnx6 cofactor of nitrate reductase and xanthine dehydrogenase6:
 
GRMZM2G165966
Zm00001d053887
Zm00001eb208120
Yuxin Chen et al. 2025. Molybdenum cofactor biosynthesis gene ZmCNX6 regulates vivipary and drought tolerance in maize Crop J. :doi: 10.1016/j.cj.2025.07.004.   AT2G43760 (TAIR) Reference: July 31st, 2025
Variation: July 31st, 2025
4 months agoftsz1 filamenting temperature-sensitive mutant Z homolog1:
2.01
GRMZM2G119773
Zm00001d001939
Zm00001eb067210
Lv, HY et al. 2025. Filamentous Temperature-Sensitive Z Protein J175 Regulates Maize Chloroplasts’ and Amyloplasts’ Division and Development Plants. 14:2198.   AT5G55280 (TAIR) Reference: July 30th, 2025
Variation: September 25th, 2007
4 months agotub1 beta tubulin1:
1.01
GRMZM2G164696
Zm00001d027295
Zm00001eb000490
Subin Myong et al. 2025. Zea mays meiotic spindle ultrastructure reveals kinetochore-microtubule interface and embedded membrane components. Cytogenet Genome Res. :1-29.     Reference: July 30th, 2025
Gene Product: September 1st, 2003
Variation: September 1st, 2003
4 months agolug15 leunig-related15:
3.09
GRMZM2G022383
Zm00001d044432
Zm00001eb161690
Qiuquan Yu et al. 2025. Genetic Analysis and Fine Mapping of Leaf Rolling qCL1 in Sweet Corn J Nucl Agric Sci. 39:1863-1874.     Reference: July 30th, 2025
Gene Product: September 10th, 2024
4 months agoumc1562  :
8.05
GRMZM2G059693
Zm00001d010840
Zm00001eb353970
Su, AG et al. 2025. Multi-Omics Analysis Elucidates Phased Defense and Resource Allocation Trade-Offs in Fusarium Resistance of Maize Plant Stress. :doi: 10.1016/j.stress.2025.100977.     Reference: July 30th, 2025
Variation: September 19th, 2018
4 months agopap19 purple acid phosphatase19:
1.03
GRMZM2G152447
Zm00001d028367
Zm00001eb010130
Qiuquan Yu et al. 2025. Genetic Analysis and Fine Mapping of Leaf Rolling qCL1 in Sweet Corn J Nucl Agric Sci. 39:1863-1874.     Reference: July 30th, 2025
Gene Product: November 21st, 2018
4 months agovq4 VQ motif-transcription factor4:
 
GRMZM2G128644
Zm00001d028953
Zm00001eb015250
Qiuquan Yu et al. 2025. Genetic Analysis and Fine Mapping of Leaf Rolling qCL1 in Sweet Corn J Nucl Agric Sci. 39:1863-1874.     Reference: July 30th, 2025
Gene Product: August 31st, 2019
4 months agotrx4 thioredoxin4:
 
GRMZM5G892522
Zm00001d026608
Zm00001eb433660
Qiuquan Yu et al. 2025. Genetic Analysis and Fine Mapping of Leaf Rolling qCL1 in Sweet Corn J Nucl Agric Sci. 39:1863-1874.     Reference: July 30th, 2025
Gene Product: August 31st, 2020
4 months agopipk1 phosphatidylinositol 4-phosphate 5-kinase1:
 
AC204530.4_FG006
GRMZM5G831486
Zm00001d029209
Zm00001eb017280
Qiuquan Yu et al. 2025. Genetic Analysis and Fine Mapping of Leaf Rolling qCL1 in Sweet Corn J Nucl Agric Sci. 39:1863-1874.     Reference: July 30th, 2025
Gene Product: October 20th, 2021
4 months agoftsz3 filamenting temperature-sensitive mutant Z homolog2:
10.07
GRMZM2G177224
Zm00001d026669
Zm00001eb434230
Lv, HY et al. 2025. Filamentous Temperature-Sensitive Z Protein J175 Regulates Maize Chloroplasts’ and Amyloplasts’ Division and Development Plants. 14:2198.   AT2G36250 (TAIR) Reference: July 30th, 2025
Variation: July 16th, 2025
4 months agoLOC100502532  :
 
GRMZM2G057616
Zm00001d046919
Zm00001eb389440
Muhammad Faheem Jan et al. 2025. Next-generation strategies for nitrogen-efficient maize production for a greener tomorrow Field Crop Res. 333:110084.   AT5G40890 (TAIR) Reference: July 29th, 2025
Gene Product: November 30th, 2021
4 months agocprf1 chloroplastic polypeptide chain release factor1:
 
   Chen, H et al. 2025. Mutation in maize chloroplastic polypeptide chain release factor (ZmcpRF1) affects chloroplast development and leaf color Planta. 262:63.   AT3G62910 (TAIR) Reference: July 29th, 2025
Variation: July 28th, 2025
4 months agoalkbh1 2-oxoglutarate-dependent oxygenase AlkB homolog 1:
 
   Guo, WJ et al. 2025. Heat stress responses mediated by N6-methyladenine DNA methylation in maize. Cell Reports. 44:116058.     Reference: July 29th, 2025
Gene Product: July 29th, 2025
Variation: July 29th, 2025
4 months agoaasr6 abscisic acid stress ripening6:
5.04
GRMZM2G057841
Zm00001d016760
Zm00001eb243310
Muhammad Faheem Jan et al. 2025. Next-generation strategies for nitrogen-efficient maize production for a greener tomorrow Field Crop Res. 333:110084.     Reference: July 29th, 2025
Gene Product: January 2nd, 2019
Variation: November 12th, 2014
4 months agovpp3 vacuolar proton pump3:
4.09
GRMZM2G421857
Zm00001d053765
Zm00001eb206920
Zm00001eb206930
Moniba Zahid Mahmood et al. 2025. Silicon-Mediated Mitigation of Salt Stress in Maize Plants. Plant Environ Interact. 6:e70073.     Reference: July 29th, 2025
Gene Product: September 1st, 2003
Variation: March 18th, 2011
4 months agotcptf23 TCP-transcription factor 23:
 
GRMZM2G120151
Zm00001d038683
Zm00001eb292690
Yang, PP et al. 2025. ZmTCP23 regulates leaf angle and tassel branch angle formation in maize by modulating LG1 expression and abscisic acid catabolism. J Integr Plant Biol. :doi: 10.1111/jipb.70000.     Reference: July 29th, 2025
Gene Product: September 27th, 2019
Variation: March 18th, 2021
4 months agohsp19 heat shock protein19:
9.06
GRMZM2G024718
Zm00001d048073
Zm00001eb400020
Guo, WJ et al. 2025. Heat stress responses mediated by N6-methyladenine DNA methylation in maize. Cell Reports. 44:116058.     Reference: July 29th, 2025
Gene Product: September 1st, 2003
Variation: September 1st, 2003
4 months agoknox10 knotted related homeobox10:
5.01 - 5.03
GRMZM2G002225
Zm00001d013559
Zm00001d013560
Zm00001eb217470
Zm00001eb217480
Guo, WJ et al. 2025. Heat stress responses mediated by N6-methyladenine DNA methylation in maize. Cell Reports. 44:116058.     Reference: July 29th, 2025
Gene Product: September 1st, 2003
Variation: September 1st, 2003
4 months agovpp8 vacuolar proton pump8:
7.04
GRMZM2G019999
Zm00001d021721
Zm00001eb323620
Moniba Zahid Mahmood et al. 2025. Silicon-Mediated Mitigation of Salt Stress in Maize Plants. Plant Environ Interact. 6:e70073.     Reference: July 29th, 2025
Gene Product: September 1st, 2003
4 months agoxer1 xerico1:
2.07
GRMZM2G018070
Zm00001d005978
Zm00001eb101500
Yang, PP et al. 2025. ZmTCP23 regulates leaf angle and tassel branch angle formation in maize by modulating LG1 expression and abscisic acid catabolism. J Integr Plant Biol. :doi: 10.1111/jipb.70000.     Reference: July 29th, 2025
Gene Product: May 22nd, 2025
4 months agoAY109870  :
3.04
GRMZM2G111014
Zm00001d040416
Zm00001eb128720
Guo, WJ et al. 2025. Heat stress responses mediated by N6-methyladenine DNA methylation in maize. Cell Reports. 44:116058.     Reference: July 29th, 2025
Variation: July 29th, 2004
4 months agohsp8 heat shock protein8:
 
GRMZM2G080724
Zm00001d031325
Zm00001eb034050
Guo, WJ et al. 2025. Heat stress responses mediated by N6-methyladenine DNA methylation in maize. Cell Reports. 44:116058.     Reference: July 29th, 2025
Gene Product: January 15th, 2019
Variation: January 22nd, 2021
4 months agobhlh180 bHLH-transcription factor 180:
 
GRMZM2G131104
Zm00001d021086
Zm00001eb318020
Wang, CH et al. 2025. ZmbHLH180 promotes drought-induced chlorophyll degradation by directly activating NON-YELLOW COLORING in maize (Zea mays) Plant Physiol Biochem. :doi: 10.1016/j.plaphy.2025.110262.     Reference: July 28th, 2025
Gene Product: September 14th, 2016
4 months agoxth19 xyloglucan endotransglucosylase/hydrolase19:
 
GRMZM2G142857
Zm00001d026250
Zm00001eb430410
Wang, CH et al. 2025. ZmbHLH180 promotes drought-induced chlorophyll degradation by directly activating NON-YELLOW COLORING in maize (Zea mays) Plant Physiol Biochem. :doi: 10.1016/j.plaphy.2025.110262.     Reference: July 28th, 2025
Gene Product: March 23rd, 2024
4 months agohsp10 heat shock protein10:
1.03
AC208204.3_FG006
Zm00001d028555
Zm00001eb011880
Qi, JL et al. 2025. Two alternatively spliced variants of ZmHSF12 regulate the balance of plant growth and heat tolerance in maize and Arabidopsis Plant J. :doi: 10.1111/tpj.70372.     Reference: July 28th, 2025
Gene Product: January 15th, 2019
Variation: August 8th, 2017
4 months agoAY110052  :
1.03
GRMZM2G141799
Zm00001d028575
Zm00001eb012060
Wang, CH et al. 2025. ZmbHLH180 promotes drought-induced chlorophyll degradation by directly activating NON-YELLOW COLORING in maize (Zea mays) Plant Physiol Biochem. :doi: 10.1016/j.plaphy.2025.110262.     Reference: July 28th, 2025
Variation: September 25th, 2007
4 months agohsp9 heat shock protein9:
 
GRMZM2G046382
Zm00001d028557
Zm00001eb011900
Qi, JL et al. 2025. Two alternatively spliced variants of ZmHSF12 regulate the balance of plant growth and heat tolerance in maize and Arabidopsis Plant J. :doi: 10.1111/tpj.70372.     Reference: July 28th, 2025
Gene Product: January 15th, 2019
4 months agohsp11 heat shock protein11:
 
GRMZM2G306679
Zm00001d028561
Zm00001eb011930
Qi, JL et al. 2025. Two alternatively spliced variants of ZmHSF12 regulate the balance of plant growth and heat tolerance in maize and Arabidopsis Plant J. :doi: 10.1111/tpj.70372.     Reference: July 28th, 2025
Gene Product: January 15th, 2019
4 months agosaur76 small auxin up RNA76:
 
GRMZM2G425072
Zm00001d025947
Zm00001eb427500
Wang, CH et al. 2025. ZmbHLH180 promotes drought-induced chlorophyll degradation by directly activating NON-YELLOW COLORING in maize (Zea mays) Plant Physiol Biochem. :doi: 10.1016/j.plaphy.2025.110262.     Reference: July 28th, 2025
Gene Product: November 26th, 2021
4 months agoxth7 xyloglucan endo-transglycosylase/hydrolase7:
 
GRMZM2G063566
Zm00001d024382
Zm00001eb414360
Wang, CH et al. 2025. ZmbHLH180 promotes drought-induced chlorophyll degradation by directly activating NON-YELLOW COLORING in maize (Zea mays) Plant Physiol Biochem. :doi: 10.1016/j.plaphy.2025.110262.     Reference: July 28th, 2025
Gene Product: March 23rd, 2024
4 months agoxth2 xyloglucan endo-transglycosylase/hydrolase2:
 
GRMZM2G128876
Zm00001d024071
Zm00001eb411910
Wang, CH et al. 2025. ZmbHLH180 promotes drought-induced chlorophyll degradation by directly activating NON-YELLOW COLORING in maize (Zea mays) Plant Physiol Biochem. :doi: 10.1016/j.plaphy.2025.110262.     Reference: July 28th, 2025
Gene Product: March 23rd, 2024
4 months agosaur19 small auxin up RNA19:
 
GRMZM2G429254
Zm00001d002826
Zm00001eb075490
Wang, CH et al. 2025. ZmbHLH180 promotes drought-induced chlorophyll degradation by directly activating NON-YELLOW COLORING in maize (Zea mays) Plant Physiol Biochem. :doi: 10.1016/j.plaphy.2025.110262.     Reference: July 28th, 2025
Gene Product: November 26th, 2021
4 months agoxth3 xyloglucan endo-transglycosylase/hydrolase3:
10.03
GRMZM2G364748
Zm00001d024379
Zm00001eb414340
Wang, CH et al. 2025. ZmbHLH180 promotes drought-induced chlorophyll degradation by directly activating NON-YELLOW COLORING in maize (Zea mays) Plant Physiol Biochem. :doi: 10.1016/j.plaphy.2025.110262.     Reference: July 28th, 2025
Gene Product: March 23rd, 2024
4 months agokcs15 3-ketoacyl-CoA synthase15:
1.08
GRMZM2G162508
Zm00001d032948
Zm00001eb047970
Tao Shen et al. 2025. Development and Validation of Multi-Locus GWAS-Based KASP Markers for Maize Ustilago maydis Resistance Plants. 14:2315.     Reference: July 26th, 2025
Gene Product: November 1st, 2018
Variation: November 4th, 2016
4 months agoereb94 AP2-EREBP-transcription factor 94:
 
GRMZM2G363052
Zm00001d020043
Zm00001eb309590
Tao Shen et al. 2025. Development and Validation of Multi-Locus GWAS-Based KASP Markers for Maize Ustilago maydis Resistance Plants. 14:2315.     Reference: July 26th, 2025
Variation: May 9th, 2017
4 months agochn17 chitinase17:
 
GRMZM2G057093
Zm00001d032946
Zm00001eb047940
Tao Shen et al. 2025. Development and Validation of Multi-Locus GWAS-Based KASP Markers for Maize Ustilago maydis Resistance Plants. 14:2315.     Reference: July 26th, 2025
Gene Product: May 31st, 2021
4 months agobetl3 basal endosperm transfer layer3:
3.05
GRMZM2G175976
Zm00001d041671
Zm00001eb137490
Quanzhi Li et al. 2025. ZmMYB155 is involved in starch synthesis and basal endosperm transfer layer development in maize. Plant Cell Rep. 44:180.     Reference: July 25th, 2025
Variation: October 21st, 2013
4 months agorh4 RNA helicase4:
 
AC198418.3_FG005
Zm00001d034721
Zm00001eb063300
Oskouei Rasouli Pourya et al. 2025. Leaf proteome analysis of maize inbred lines B73 and Mo17 infected by Fusarium verticillioides (Sacc.) Nirenberg Plant Science Today. :doi: 10.14719/pst.7204.   At5g26742 (TAIR)
LOC_Os03g61220 (MSU/TIGR)
Os03g0827700 (Gramene)
Reference: July 25th, 2025
Gene Product: December 13th, 2022
Variation: November 10th, 2020
4 months agomyb155 MYB-transcription factor 155:
 
GRMZM2G150680
Zm00001d024488
Zm00001eb415180
Quanzhi Li et al. 2025. ZmMYB155 is involved in starch synthesis and basal endosperm transfer layer development in maize. Plant Cell Rep. 44:180.     Reference: July 25th, 2025
Variation: July 25th, 2025
4 months agobetl4 basal endosperm transfer layer4:
 
GRMZM2G073290
Zm00001d000161
Zm00001eb201370
Quanzhi Li et al. 2025. ZmMYB155 is involved in starch synthesis and basal endosperm transfer layer development in maize. Plant Cell Rep. 44:180.     Reference: July 25th, 2025
Gene Product: September 1st, 2003
Variation: September 1st, 2003
4 months agobag11 B-cell lymphoma-2 (Bcl-2) associated athanogene11:
5.04
GRMZM2G063162
Zm00001d016070
Zm00001eb237960
Oskouei Rasouli Pourya et al. 2025. Leaf proteome analysis of maize inbred lines B73 and Mo17 infected by Fusarium verticillioides (Sacc.) Nirenberg Plant Science Today. :doi: 10.14719/pst.7204.     Reference: July 25th, 2025
Gene Product: January 4th, 2025
Variation: October 3rd, 2014
4 months agowakl2 wall associated kinase like2:
1.06
GRMZM2G115981
GRMZM6G907181
Zm00001d031338
Zm00001eb034180
Oskouei Rasouli Pourya et al. 2025. Leaf proteome analysis of maize inbred lines B73 and Mo17 infected by Fusarium verticillioides (Sacc.) Nirenberg Plant Science Today. :doi: 10.14719/pst.7204.     Reference: July 25th, 2025
Gene Product: December 7th, 2023
Variation: March 21st, 2006
4 months agocaf2 crs2 associated factor2:
3.04
AC199526.5_FG003
Zm00001d040696
Zm00001eb130860
Oskouei Rasouli Pourya et al. 2025. Leaf proteome analysis of maize inbred lines B73 and Mo17 infected by Fusarium verticillioides (Sacc.) Nirenberg Plant Science Today. :doi: 10.14719/pst.7204.   AT1G23400 (TAIR)
LOC_Os01g21990 (MSU/TIGR)
Os01g0323300 (Gramene)
Reference: July 25th, 2025
Gene Product: July 23rd, 2009
Variation: July 22nd, 2009
4 months agocer8 eceriferum8:
10.03
GRMZM2G101875
Zm00001d024723
Zm00001eb417150
Oskouei Rasouli Pourya et al. 2025. Leaf proteome analysis of maize inbred lines B73 and Mo17 infected by Fusarium verticillioides (Sacc.) Nirenberg Plant Science Today. :doi: 10.14719/pst.7204.   AT2G47240 (TAIR) Reference: July 25th, 2025
Gene Product: October 31st, 2018
Variation: October 31st, 2018
4 months agowik1 wall immune-related kinase1:
1.03
GRMZM5G886952
Zm00001d028560
Zm00001eb011920
Oskouei Rasouli Pourya et al. 2025. Leaf proteome analysis of maize inbred lines B73 and Mo17 infected by Fusarium verticillioides (Sacc.) Nirenberg Plant Science Today. :doi: 10.14719/pst.7204.     Reference: July 25th, 2025
Gene Product: July 10th, 2019
Variation: January 18th, 2024
4 months agogg2 G-protein gamma subunit2:
 
GRMZM6G935329
Zm00001d033287
Zm00001eb050990
Oskouei Rasouli Pourya et al. 2025. Leaf proteome analysis of maize inbred lines B73 and Mo17 infected by Fusarium verticillioides (Sacc.) Nirenberg Plant Science Today. :doi: 10.14719/pst.7204.   AT3G22942 (TAIR)
LOC_Os03g43480 (MSU/TIGR)
Reference: July 25th, 2025
Gene Product: May 1st, 2018
4 months agompk11 MAP kinase11:
 
GRMZM2G375975
Zm00001d011465
Zm00001eb359260
Oskouei Rasouli Pourya et al. 2025. Leaf proteome analysis of maize inbred lines B73 and Mo17 infected by Fusarium verticillioides (Sacc.) Nirenberg Plant Science Today. :doi: 10.14719/pst.7204.     Reference: July 25th, 2025
Gene Product: July 12th, 2013
4 months agoIDP1669  :
9.06
GRMZM2G479243
Zm00001d047842
Zm00001eb397950
Oskouei Rasouli Pourya et al. 2025. Leaf proteome analysis of maize inbred lines B73 and Mo17 infected by Fusarium verticillioides (Sacc.) Nirenberg Plant Science Today. :doi: 10.14719/pst.7204.     Reference: July 25th, 2025
Variation: March 31st, 2005
4 months agoLOC103633277  :
 
GRMZM2G465987
Zm00001d021727
Zm00001eb323660
Wang, P-X et al. 2025. Integrated physiological, transcriptomic and metabolomic analysis revealed heterosis for cadmium tolerance in maize. Plant Physiol Biochem. 228:110265.     Reference: July 23rd, 2025
Gene Product: January 27th, 2025
4 months agocys2 cysteine synthase2:
1.06
GRMZM2G005887
Zm00001d031136
Zm00001eb032380
Brar, MS et al. 2025. Temporal analysis of physiological phenotypes identifies metabolic and genetic underpinnings of senescence in maize. Plant Cell. :doi: 10.1093/plcell/koaf176.     Reference: July 23rd, 2025
Gene Product: September 1st, 2003
Variation: October 25th, 2012
4 months agoZm00001eb292480  :
 
   Brar, MS et al. 2025. Temporal analysis of physiological phenotypes identifies metabolic and genetic underpinnings of senescence in maize. Plant Cell. :doi: 10.1093/plcell/koaf176.   Os05g0510600 (Gramene) Reference: July 23rd, 2025
Gene Product: January 6th, 2025
4 months agoidh2 isocitrate dehydrogenase2:
6.07
GRMZM5G829778
Zm00001d039079
Zm00001eb296460
Brar, MS et al. 2025. Temporal analysis of physiological phenotypes identifies metabolic and genetic underpinnings of senescence in maize. Plant Cell. :doi: 10.1093/plcell/koaf176.     Reference: July 23rd, 2025
Gene Product: October 2nd, 2023
Variation: September 1st, 2003
4 months agosad1 shikimate dehydrogenase1:
10.03 - 10.04
GRMZM2G014376
Zm00001d023892
Zm00001eb410660
Brar, MS et al. 2025. Temporal analysis of physiological phenotypes identifies metabolic and genetic underpinnings of senescence in maize. Plant Cell. :doi: 10.1093/plcell/koaf176.     Reference: July 23rd, 2025
Gene Product: September 1st, 2003
Variation: January 24th, 2015
4 months agocol10 C2C2-CO-like-transcription factor 10:
 
GRMZM2G012717
Zm00001d037327
Zm00001eb280600
Zahra Zinati et al. 2025. Integrative analysis of co-expression networks and codon usage bias in maize under biotic stress. PLoS One. 20:e0317755.     Reference: July 23rd, 2025
Gene Product: June 18th, 2018
4 months agocol5 C2C2-CO-like-transcription factor 5:
 
GRMZM2G075562
Zm00001d017885
Zm00001eb253150
Zahra Zinati et al. 2025. Integrative analysis of co-expression networks and codon usage bias in maize under biotic stress. PLoS One. 20:e0317755.     Reference: July 23rd, 2025
Gene Product: June 18th, 2018
4 months agocpp5 CPP-transcription factor 5:
 
GRMZM2G322090
Zm00001d031009
Zm00001eb031310
Zahra Zinati et al. 2025. Integrative analysis of co-expression networks and codon usage bias in maize under biotic stress. PLoS One. 20:e0317755.     Reference: July 23rd, 2025
Gene Product: May 30th, 2025
4 months agonactf70 NAC-transcription factor 70:
 
GRMZM2G312201
Zm00001d043094
Zm00001eb149810
Zahra Zinati et al. 2025. Integrative analysis of co-expression networks and codon usage bias in maize under biotic stress. PLoS One. 20:e0317755.     Reference: July 23rd, 2025
Gene Product: July 8th, 2019
4 months agofdl1 fused leaves1:
7.04
GRMZM2G056407
Zm00001d022227
Zm00001eb328280
Zahra Zinati et al. 2025. Integrative analysis of co-expression networks and codon usage bias in maize under biotic stress. PLoS One. 20:e0317755.     Reference: July 23rd, 2025
Gene Product: September 1st, 2003
Variation: February 13th, 2020
4 months agocts2 citrate synthase2:
4.09
GRMZM2G064023
Zm00001d053685
Zm00001eb206100
Brar, MS et al. 2025. Temporal analysis of physiological phenotypes identifies metabolic and genetic underpinnings of senescence in maize. Plant Cell. :doi: 10.1093/plcell/koaf176.     Reference: July 23rd, 2025
Gene Product: July 5th, 2019
4 months agoalt7 alanine aminotransferase7:
7.00
GRMZM2G120563
Zm00001d018639
Zm00001eb298440
Brar, MS et al. 2025. Temporal analysis of physiological phenotypes identifies metabolic and genetic underpinnings of senescence in maize. Plant Cell. :doi: 10.1093/plcell/koaf176.     Reference: July 23rd, 2025
Gene Product: October 2nd, 2020
4 months agotsa1 tryptophan synthase alpha subunit1:
 
GRMZM5G841619
Zm00001d018969
Zm00001eb301540
Brar, MS et al. 2025. Temporal analysis of physiological phenotypes identifies metabolic and genetic underpinnings of senescence in maize. Plant Cell. :doi: 10.1093/plcell/koaf176.     Reference: July 23rd, 2025
Gene Product: October 21st, 2011
4 months agonit2 nitrilase2:
 
GRMZM2G111225
Zm00001d051214
Zm00001eb185550
Brar, MS et al. 2025. Temporal analysis of physiological phenotypes identifies metabolic and genetic underpinnings of senescence in maize. Plant Cell. :doi: 10.1093/plcell/koaf176.     Reference: July 23rd, 2025
Gene Product: May 29th, 2012
Variation: June 5th, 2012
4 months agohma3 heavy metal ATPase3:
 
GRMZM2G175576
Zm00001d005190
Zm00001eb095020
Wang, P-X et al. 2025. Integrated physiological, transcriptomic and metabolomic analysis revealed heterosis for cadmium tolerance in maize. Plant Physiol Biochem. 228:110265.     Reference: July 23rd, 2025
Gene Product: October 23rd, 2019
Variation: June 4th, 2021
4 months agoarodh4 arogenate dehydrogenase4:
 
GRMZM2G324297
Zm00001d046168
Zm00001eb383660
Brar, MS et al. 2025. Temporal analysis of physiological phenotypes identifies metabolic and genetic underpinnings of senescence in maize. Plant Cell. :doi: 10.1093/plcell/koaf176.     Reference: July 23rd, 2025
Gene Product: July 7th, 2018
4 months agoamyb3 beta-amylase3:
 
GRMZM2G347708
Zm00001d029154
Zm00001eb016870
Zm00001eb016880
Wang, P-X et al. 2025. Integrated physiological, transcriptomic and metabolomic analysis revealed heterosis for cadmium tolerance in maize. Plant Physiol Biochem. 228:110265.     Reference: July 23rd, 2025
Gene Product: February 26th, 2021
4 months agohsp6 heat shock protein6:
 
AC209784.3_FG007
Zm00001d042922
Zm00001eb148420
Iqbal Hussain et al. 2025. Heat-induced modulation of growth parameters and gene expression profiles in maize (Zea mays L.) seedlings Mol Biol Rep. 52:745.     Reference: July 23rd, 2025
Gene Product: September 1st, 2003
4 months agonrh5 nucleoside N-ribohydrolase5:
 
GRMZM2G015344
Zm00001d031958
Zm00001eb039560
Brar, MS et al. 2025. Temporal analysis of physiological phenotypes identifies metabolic and genetic underpinnings of senescence in maize. Plant Cell. :doi: 10.1093/plcell/koaf176.     Reference: July 23rd, 2025
Gene Product: April 22nd, 2020
4 months agolysA1 dihydrodipicolinate decarboxylase1:
 
GRMZM2G020446
Zm00001d023429
Zm00001eb406820
Brar, MS et al. 2025. Temporal analysis of physiological phenotypes identifies metabolic and genetic underpinnings of senescence in maize. Plant Cell. :doi: 10.1093/plcell/koaf176.     Reference: July 23rd, 2025
Gene Product: October 21st, 2020
4 months agochls12 chalcone synthase12:
 
GRMZM2G131529
Zm00001d040483
Zm00001eb129160
Jodi B Callwood et al. 2025. Identification of phenotypic and transcriptomic signatures underpinning maize crown root systems Plant Phenomics 7(1) 100008.     Reference: July 23rd, 2025
Gene Product: September 1st, 2003
4 months agoLOC606449  :
 
GRMZM2G068665
Zm00001d042117
Zm00001eb141220
Brar, MS et al. 2025. Temporal analysis of physiological phenotypes identifies metabolic and genetic underpinnings of senescence in maize. Plant Cell. :doi: 10.1093/plcell/koaf176.     Reference: July 23rd, 2025
Gene Product: May 9th, 2025
4 months agocamta8 CAMTA-transcription factor 8:
9.04
GRMZM2G431243
Zm00001d047209
Zm00001eb392440
Zahra Zinati et al. 2025. Integrative analysis of co-expression networks and codon usage bias in maize under biotic stress. PLoS One. 20:e0317755.     Reference: July 23rd, 2025
Variation: September 25th, 2007
4 months agoIDP3879  :
4.05
Zm00001d051129
Zm00001eb185030
Brar, MS et al. 2025. Temporal analysis of physiological phenotypes identifies metabolic and genetic underpinnings of senescence in maize. Plant Cell. :doi: 10.1093/plcell/koaf176.     Reference: July 23rd, 2025
Variation: March 31st, 2005
4 months agoIDP122  :
5.00
GRMZM2G144020
Zm00001d012955
Zm00001eb211620
Jodi B Callwood et al. 2025. Identification of phenotypic and transcriptomic signatures underpinning maize crown root systems Plant Phenomics 7(1) 100008.     Reference: July 23rd, 2025
Variation: March 31st, 2005
4 months agoIDP1981  :
7.04
GRMZM2G072054
Zm00001d021908
Zm00001eb325420
Brar, MS et al. 2025. Temporal analysis of physiological phenotypes identifies metabolic and genetic underpinnings of senescence in maize. Plant Cell. :doi: 10.1093/plcell/koaf176.     Reference: July 23rd, 2025
Variation: March 31st, 2005
4 months agoiddp1 indeterminate domain p1:
1.08
GRMZM2G179677
Zm00001d031992
Zm00001eb039810
Zahra Zinati et al. 2025. Integrative analysis of co-expression networks and codon usage bias in maize under biotic stress. PLoS One. 20:e0317755.     Reference: July 23rd, 2025
Gene Product: May 31st, 2024
4 months agolimtf10 LIM-transcription factor 10:
6.01
GRMZM2G004959
Zm00001d035304
Zm00001eb264630
Zahra Zinati et al. 2025. Integrative analysis of co-expression networks and codon usage bias in maize under biotic stress. PLoS One. 20:e0317755.     Reference: July 23rd, 2025
Gene Product: December 16th, 2019
4 months agogpm584  :
1.01
GRMZM2G300801
Zm00001d027727
Zm00001eb004390
Brar, MS et al. 2025. Temporal analysis of physiological phenotypes identifies metabolic and genetic underpinnings of senescence in maize. Plant Cell. :doi: 10.1093/plcell/koaf176.   AT4G35630 (TAIR) Reference: July 23rd, 2025
Gene Product: October 25th, 2024
4 months agoadcl1 aminodeoxychorismate lyase1:
1.04
GRMZM2G108416
Zm00001d029231
Zm00001eb017520
Brar, MS et al. 2025. Temporal analysis of physiological phenotypes identifies metabolic and genetic underpinnings of senescence in maize. Plant Cell. :doi: 10.1093/plcell/koaf176.     Reference: July 23rd, 2025
Gene Product: January 14th, 2021
4 months agoereb217 AP2-EREBP-transcription factor 217:
 
Zm00001d044950
Zm00001eb373370
Mengyao Li et al. 2025. Uncovering chromatin accessibility dynamics in early maize endosperm and seed coat differentiation. Plant J. 123:e70316.     Reference: July 22nd, 2025
Gene Product: July 5th, 2019
4 months agoZm00001d034671  :
 
   Mengyu Lei et al. 2025. Comprehensive analysis of 1,771 transcriptomes from 7 tissues enhance genetic and biological interpretations of maize complex traits. G3. :doi: 10.1093/g3journal/jkaf140.     Reference: July 22nd, 2025
Gene Product: January 27th, 2025
4 months agoLOC103637966  :
 
   Lu, YT et al. 2025. Identification of Quality-Related Genomic Regions and Candidate Genes in Silage Maize by Combining GWAS and Meta-Analysis Plants. 14:2250.     Reference: July 22nd, 2025
Gene Product: May 19th, 2025
4 months agoacc3 acetyl-CoA carboxylase3:
5.03
GRMZM2G377341
Zm00001d014294
Zm00001eb223980
Mengyao Li et al. 2025. Uncovering chromatin accessibility dynamics in early maize endosperm and seed coat differentiation. Plant J. 123:e70316.     Reference: July 22nd, 2025
Gene Product: September 29th, 2020
4 months agofl3 floury3:
8.03
GRMZM2G006585
Zm00001d009292
Zm00001eb341550
Mengyao Li et al. 2025. Uncovering chromatin accessibility dynamics in early maize endosperm and seed coat differentiation. Plant J. 123:e70316.     Reference: July 22nd, 2025
Gene Product: September 7th, 2017
Variation: September 7th, 2017
4 months agodof36 C2C2-Dof-transcription factor 36:
 
GRMZM2G137502
Zm00001d029512
Zm00001eb020000
Mengyao Li et al. 2025. Uncovering chromatin accessibility dynamics in early maize endosperm and seed coat differentiation. Plant J. 123:e70316.     Reference: July 22nd, 2025
Variation: October 7th, 2016
4 months agozim29 ZIM-transcription factor 29:
 
GRMZM2G064775
Zm00001d014249
Zm00001eb223580
Mengyao Li et al. 2025. Uncovering chromatin accessibility dynamics in early maize endosperm and seed coat differentiation. Plant J. 123:e70316.     Reference: July 22nd, 2025
Gene Product: February 24th, 2021
4 months agopdi1 protein disulfide isomerase1:
4.03
GRMZM2G091481
Zm00001d049099
Zm00001eb168910
Mengyao Li et al. 2025. Uncovering chromatin accessibility dynamics in early maize endosperm and seed coat differentiation. Plant J. 123:e70316.     Reference: July 22nd, 2025
Gene Product: September 1st, 2003
Variation: December 23rd, 2015
4 months agomeg3 maternally expressed gene3:
7.01
GRMZM2G344323
Zm00001d019027
Mengyao Li et al. 2025. Uncovering chromatin accessibility dynamics in early maize endosperm and seed coat differentiation. Plant J. 123:e70316.     Reference: July 22nd, 2025
Variation: October 25th, 2009
4 months agocyp14 cytochrome P450 14:
 
GRMZM2G143202
Zm00001d029822
Mengyu Lei et al. 2025. Comprehensive analysis of 1,771 transcriptomes from 7 tissues enhance genetic and biological interpretations of maize complex traits. G3. :doi: 10.1093/g3journal/jkaf140.     Reference: July 22nd, 2025
Gene Product: June 3rd, 2015
Variation: June 3rd, 2015
4 months agomeg13 maternally expressed gene13:
 
GRMZM2G175912
Zm00001d019019
Zm00001eb302020
Mengyao Li et al. 2025. Uncovering chromatin accessibility dynamics in early maize endosperm and seed coat differentiation. Plant J. 123:e70316.     Reference: July 22nd, 2025
Variation: August 29th, 2014
4 months agosut6 sucrose transporter6:
 
GRMZM2G106741
Zm00001d050873
Zm00001eb183000
Mengyao Li et al. 2025. Uncovering chromatin accessibility dynamics in early maize endosperm and seed coat differentiation. Plant J. 123:e70316.     Reference: July 22nd, 2025
Gene Product: September 14th, 2013
Variation: April 13th, 2017
4 months agocdpk15 calcium dependent protein kinase15:
 
GRMZM2G441511
Zm00001d028582
Lu, YT et al. 2025. Identification of Quality-Related Genomic Regions and Candidate Genes in Silage Maize by Combining GWAS and Meta-Analysis Plants. 14:2250.     Reference: July 22nd, 2025
Gene Product: December 3rd, 2013
4 months agodrepp2 developmentally regulated plasma membrane polypeptide2:
 
GRMZM2G007151
Zm00001d009010
Zm00001eb339340
Mengyu Lei et al. 2025. Comprehensive analysis of 1,771 transcriptomes from 7 tissues enhance genetic and biological interpretations of maize complex traits. G3. :doi: 10.1093/g3journal/jkaf140.     Reference: July 22nd, 2025
Gene Product: September 4th, 2019
4 months agoaldh12 aldehyde dehydrogenase12:
 
GRMZM5G820733
Zm00001d003983
Zm00001eb085560
Mengyao Li et al. 2025. Uncovering chromatin accessibility dynamics in early maize endosperm and seed coat differentiation. Plant J. 123:e70316.     Reference: July 22nd, 2025
Gene Product: January 5th, 2024
4 months agogpe1 glucose-6-phosphate 1-epimerase1:
 
GRMZM2G039588
Zm00001d001999
Zm00001eb067700
Mengyao Li et al. 2025. Uncovering chromatin accessibility dynamics in early maize endosperm and seed coat differentiation. Plant J. 123:e70316.     Reference: July 22nd, 2025
Gene Product: November 29th, 2023
4 months agoRSZ21  :
9.02
GRMZM2G151923
Zm00001d045076
Zm00001eb374380
Lu, YT et al. 2025. Identification of Quality-Related Genomic Regions and Candidate Genes in Silage Maize by Combining GWAS and Meta-Analysis Plants. 14:2250.     Reference: July 22nd, 2025
Gene Product: October 18th, 2023
4 months agosi946031d03b  :
9.02
GRMZM2G436583
Zm00001d045075
Zm00001eb374360
Lu, YT et al. 2025. Identification of Quality-Related Genomic Regions and Candidate Genes in Silage Maize by Combining GWAS and Meta-Analysis Plants. 14:2250.     Reference: July 22nd, 2025
Gene Product: November 27th, 2023
4 months agotar3 tryptophan aminotransferase related3:
6.05
GRMZM2G141810
Zm00001d037674
Zm00001eb283420
Lu, YT et al. 2025. Identification of Quality-Related Genomic Regions and Candidate Genes in Silage Maize by Combining GWAS and Meta-Analysis Plants. 14:2250.     Reference: July 22nd, 2025
Gene Product: April 30th, 2011
4 months agopfk4 phosphofructose kinase4:
 
GRMZM2G314094
Zm00001d045919
Zm00001eb381920
Xinglong Wang et al. 2024. Improving resilience to high temperature in drought: water replenishment enhances sucrose and amino acid metabolisms in maize grain. Plant J.     Reference: May 23rd, 2025
Gene Product: July 20th, 2025
4 months agoZm00001d013450  :
 
GRMZM2G029436
Zm00001d013450
Zm00001eb216490
    Gene Product: July 20th, 2025
4 months agoLOC103636102  :
 
       Gene Product: July 20th, 2025
4 months agoLOC103653522  :
 
       Gene Product: July 20th, 2025
4 months agoLOC103637275  :
 
       Gene Product: July 20th, 2025
4 months agoLOC103634294  :
 
       Gene Product: July 20th, 2025
4 months agoLOC103629367  :
 
       Gene Product: July 20th, 2025
4 months agomkkk12 MAP kinase kinase kinase12:
5.01
GRMZM2G130927
Zm00001d013477
Zm00001eb216720
Xiao, ZY et al. 2025. The combination of linkage mapping, genome-wide association study, and dynamic transcriptome analysis reveals conserved candidate genes for salt tolerance in maize. Theor Appl Genet. 138:186.     Reference: July 20th, 2025
Gene Product: March 14th, 2022
4 months agoca2p7 CCAAT-HAP2-transcription factor 27:
 
GRMZM2G126957
Zm00001d026305
Zm00001eb430970
Zm00001eb430980
Xiao, ZY et al. 2025. The combination of linkage mapping, genome-wide association study, and dynamic transcriptome analysis reveals conserved candidate genes for salt tolerance in maize. Theor Appl Genet. 138:186.     Reference: July 20th, 2025
Gene Product: August 9th, 2016
4 months agoprh54 protein phosphatase homolog54:
9.06
GRMZM2G130943
Zm00001d048131
Zm00001eb400570
Xiao, ZY et al. 2025. The combination of linkage mapping, genome-wide association study, and dynamic transcriptome analysis reveals conserved candidate genes for salt tolerance in maize. Theor Appl Genet. 138:186.     Reference: July 20th, 2025
Gene Product: October 25th, 2021
4 months agodnaJ3 DnaJ/Hsp40 3:
 
GRMZM2G016734
Zm00001d028820
Zm00001eb014050
Ke Shi et al. 2025. Molecular characterization of Zea mays ZmDnaJ3: a key protein positively regulating heat and drought stress adaptation. Plant Sci. :112673.     Reference: July 18th, 2025
Gene Product: September 1st, 2003
4 months agoidd21 indeterminate domain21:
 
GRMZM2G021587
Zm00001d006319
Zm00001eb104490
Shi, R et al. 2025. Integrating high-throughput phenotyping and genome-wide association analyses to unravel Mediterranean maize resilience to combined drought and high temperatures Plant Stress. :doi: 10.1016/j.stress.2025.100954.     Reference: July 18th, 2025
Gene Product: May 31st, 2024
4 months agogrftf6 GRF-transcription factor 6:
 
GRMZM2G034876
Zm00001d017742
Zm00001eb251820
Yin, P et al. 2025. The ZmMPK3-ZmGRF1 module promotes maize growth by enhancing cell proliferation under salt stress. Science Bulletin. :doi: 10.1016/j.scib.2025.06.034.     Reference: July 18th, 2025
Variation: July 18th, 2025
4 months agotcptf2 TCP-transcription factor 2:
4.09
GRMZM2G003944
Zm00001d053020
Zm00001eb200970
Shi, R et al. 2025. Integrating high-throughput phenotyping and genome-wide association analyses to unravel Mediterranean maize resilience to combined drought and high temperatures Plant Stress. :doi: 10.1016/j.stress.2025.100954.     Reference: July 18th, 2025
Gene Product: September 27th, 2019
Variation: March 17th, 2017
4 months agohin5 hairpin-induced5:
1.09
GRMZM2G002499
Zm00001d033645
Zm00001eb054190
Shi, R et al. 2025. Integrating high-throughput phenotyping and genome-wide association analyses to unravel Mediterranean maize resilience to combined drought and high temperatures Plant Stress. :doi: 10.1016/j.stress.2025.100954.     Reference: July 18th, 2025
Gene Product: February 1st, 2021
4 months agopap21 purple acid phosphatase21:
 
GRMZM2G157027
Zm00001d004075
Zm00001eb086200
Shi, R et al. 2025. Integrating high-throughput phenotyping and genome-wide association analyses to unravel Mediterranean maize resilience to combined drought and high temperatures Plant Stress. :doi: 10.1016/j.stress.2025.100954.     Reference: July 18th, 2025
Gene Product: November 21st, 2018
4 months agoskus3 skewed root growth similar3:
 
GRMZM2G129064
Zm00001d038521
Zm00001eb291060
Shi, R et al. 2025. Integrating high-throughput phenotyping and genome-wide association analyses to unravel Mediterranean maize resilience to combined drought and high temperatures Plant Stress. :doi: 10.1016/j.stress.2025.100954.     Reference: July 18th, 2025
Gene Product: October 9th, 2020
4 months agofdx4 ferredoxin4:
 
GRMZM2G146395
Zm00001d003797
Zm00001eb083950
Shi, R et al. 2025. Integrating high-throughput phenotyping and genome-wide association analyses to unravel Mediterranean maize resilience to combined drought and high temperatures Plant Stress. :doi: 10.1016/j.stress.2025.100954.     Reference: July 18th, 2025
Gene Product: September 1st, 2003
4 months agoglpx6 glutathione peroxidase6:
9.04
GRMZM2G329144
Zm00001d047448
Zm00001eb394400
Shi, R et al. 2025. Integrating high-throughput phenotyping and genome-wide association analyses to unravel Mediterranean maize resilience to combined drought and high temperatures Plant Stress. :doi: 10.1016/j.stress.2025.100954.     Reference: July 18th, 2025
Gene Product: March 4th, 2022
4 months agocep5 C-terminally encoded peptide5:
6.05
GRMZM2G148964
Zm00001d037730
Zm00001eb283900
Shi, R et al. 2025. Integrating high-throughput phenotyping and genome-wide association analyses to unravel Mediterranean maize resilience to combined drought and high temperatures Plant Stress. :doi: 10.1016/j.stress.2025.100954.     Reference: July 18th, 2025
Gene Product: October 23rd, 2020
Variation: March 31st, 2005
4 months agondhF (cp)  :
 
   Luciano Univaso et al. 2025. The rps15-rpl32 intergenic locus is a phylogeographic marker for Latin American Zea mays landrace varieties and subspecies BMC Genomics. 26:672.     Reference: July 17th, 2025
Gene Product: September 1st, 2003
4 months agoscl1 scarecrow-like1:
8.03
GRMZM2G023872
Zm00001d009646
Zm00001eb344400
Thai Q Dao et al. 2025. Comparing hormone dynamics in cereal crops via transient expression of hormone sensors. Plant Cell Physiol. :doi: 10.1093/pcp/pcaf080.     Reference: July 17th, 2025
Gene Product: June 24th, 2019
Variation: August 26th, 2015
4 months agoarr5 ARR-B-transcription factor 5:
 
GRMZM2G133262
Zm00001d014723
Zm00001eb227390
Menglin Pu et al. 2025. The B-type response regulator ZmRR5 controls maize kernel size by regulating BETL development Crop J. :doi: 10.1016/j.cj.2025.03.008.     Reference: July 17th, 2025
Gene Product: June 30th, 2017
Variation: April 7th, 2025
4 months agotcptf26 TCP-transcription factor 26:
 
GRMZM2G077755
Zm00001d018045
Zm00001eb254600
Thai Q Dao et al. 2025. Comparing hormone dynamics in cereal crops via transient expression of hormone sensors. Plant Cell Physiol. :doi: 10.1093/pcp/pcaf080.     Reference: July 17th, 2025
Gene Product: September 27th, 2019
4 months agondhD (cp)  :
 
   Luciano Univaso et al. 2025. The rps15-rpl32 intergenic locus is a phylogeographic marker for Latin American Zea mays landrace varieties and subspecies BMC Genomics. 26:672.     Reference: July 17th, 2025
Gene Product: September 1st, 2003
4 months agorpl32 (cp) 50S ribosomal protein L32 gene:
 
   Luciano Univaso et al. 2025. The rps15-rpl32 intergenic locus is a phylogeographic marker for Latin American Zea mays landrace varieties and subspecies BMC Genomics. 26:672.     Reference: July 17th, 2025
Gene Product: September 1st, 2003
4 months agoznf7 zinc finger protein7:
 
GRMZM2G302912
Zm00001d037945
Zm00001eb285790
Thai Q Dao et al. 2025. Comparing hormone dynamics in cereal crops via transient expression of hormone sensors. Plant Cell Physiol. :doi: 10.1093/pcp/pcaf080.     Reference: July 17th, 2025
Gene Product: January 9th, 2020
4 months agotcrr2 transfer cell response regulator2:
 
GRMZM2G090264
Zm00001d032381
Zm00001eb042960
Menglin Pu et al. 2025. The B-type response regulator ZmRR5 controls maize kernel size by regulating BETL development Crop J. :doi: 10.1016/j.cj.2025.03.008.     Reference: July 17th, 2025
Gene Product: January 16th, 2021
4 months agogid3 gibberellin-insensitive dwarf protein homolog3:
 
GRMZM2G040278
Zm00001d048185
Zm00001eb401080
Thai Q Dao et al. 2025. Comparing hormone dynamics in cereal crops via transient expression of hormone sensors. Plant Cell Physiol. :doi: 10.1093/pcp/pcaf080.     Reference: July 17th, 2025
Gene Product: April 27th, 2022
4 months agogid4 gibberellin-insensitive dwarf protein homolog4:
 
GRMZM2G440543
Zm00001d028159
Zm00001eb008130
Thai Q Dao et al. 2025. Comparing hormone dynamics in cereal crops via transient expression of hormone sensors. Plant Cell Physiol. :doi: 10.1093/pcp/pcaf080.     Reference: July 17th, 2025
Gene Product: April 27th, 2022
4 months agolcr1 leaf curling responsiveness1:
 
   Federico Belén et al. 2025. Maize mutant hybrids with improved drought tolerance and increased yield in a field experimental setting bioRxiv preprint. :doi: 10.1101/2025.07.10.664191.     Reference: July 16th, 2025
Variation: March 19th, 2025
4 months agolcr2 leaf curling responsiveness2:
8.06
   Federico Belén et al. 2025. Maize mutant hybrids with improved drought tolerance and increased yield in a field experimental setting bioRxiv preprint. :doi: 10.1101/2025.07.10.664191.     Reference: July 16th, 2025
Variation: March 19th, 2025
4 months agoZm00001d031201  :
 
   Katia Taylor et al. 2025. CEPR1 function across plant lineages: peptide hormone recognition by cereal crop orthologs and developmental roles in barley. J Exp Bot. :doi: 10.1093/jxb/eraf316.     Reference: July 15th, 2025
Gene Product: April 25th, 2025
4 months agoctepr1 C-terminally encoded peptide receptor1:
 
   Katia Taylor et al. 2025. CEPR1 function across plant lineages: peptide hormone recognition by cereal crop orthologs and developmental roles in barley. J Exp Bot. :doi: 10.1093/jxb/eraf316.     Reference: July 15th, 2025
Gene Product: July 15th, 2025
4 months agoorp2 orange pericarp2:
10.03
GRMZM2G005024
Zm00001d024702
Zm00001eb416990
Julia M Troy et al. 2025. The Dynamic Effects of Transposon Insertions on AuxRP1 Transcription During Vegetative Development in Zea mays MicroPubl Biol. :doi: 10.17912/micropub.biology.001640.     Reference: July 15th, 2025
Gene Product: September 1st, 2003
Variation: September 1st, 2003
4 months agomlg3 lea protein group3:
6.07
GRMZM2G096475
Zm00001d038870
Zm00001eb294480
Elad Oren et al. 2025. Grass Rhizome Proteomics Reveals Convergent Freezing-Tolerance Strategies. bioRxiv preprint. :doi: 10.1101/2025.05.15.654294.     Reference: July 15th, 2025
Gene Product: September 1st, 2003
Variation: September 1st, 2003
4 months agosbt54 subtilisin54:
 
GRMZM2G107686
Zm00001d027627
Zm00001eb003520
Juan-Juan Xu et al. 2025. The regulatory role of ZmSTOMAGEN1/2 in maize stomatal development is elucidated via gene editing and metabolic profiling. PLoS One. 20:e0328433.     Reference: July 14th, 2025
Gene Product: November 11th, 2016
4 months agoepfl1 epidermal patterning factor-like1:
 
GRMZM2G017321
Zm00001d049795
Zm00001eb174960
Juan-Juan Xu et al. 2025. The regulatory role of ZmSTOMAGEN1/2 in maize stomatal development is elucidated via gene editing and metabolic profiling. PLoS One. 20:e0328433.     Reference: July 14th, 2025
Gene Product: July 10th, 2019
4 months agoepfl2 epidermal patterning factor-like2:
 
GRMZM2G115133
Zm00001d042381
Zm00001eb143570
Juan-Juan Xu et al. 2025. The regulatory role of ZmSTOMAGEN1/2 in maize stomatal development is elucidated via gene editing and metabolic profiling. PLoS One. 20:e0328433.     Reference: July 14th, 2025
Gene Product: July 10th, 2019
4 months agoTIDP2769  :
9.03
GRMZM2G070603
Zm00001d045845
Zm00001eb381290
Cai, RH et al. 2025. ZmWRKY107 modulates salt tolerance in maize plants by regulating ZmPOD52 expression. Planta. 262:49.     Reference: July 14th, 2025
Gene Product: January 20th, 2025
4 months agots2 tassel seed2:
1.03
GRMZM2G455809
Zm00001d028806
Zm00001eb013890
Lin, Z et al. 2025. GT1 regulates maize sex determination by affecting the jasmonate pathway. Plant J. 123:e70306.     Reference: July 14th, 2025
Gene Product: September 1st, 2003
Variation: September 1st, 2003
4 months agots4 tasselseed4:
3.05 - 3.05
GRMZM5G803935
Lin, Z et al. 2025. GT1 regulates maize sex determination by affecting the jasmonate pathway. Plant J. 123:e70306.     Reference: July 14th, 2025
Gene Product: June 17th, 2016
Variation: October 25th, 2023
4 months agots6 tasselseed6:
1.11
GRMZM5G862109
Zm00001d034629
Zm00001eb062460
Lin, Z et al. 2025. GT1 regulates maize sex determination by affecting the jasmonate pathway. Plant J. 123:e70306.     Reference: July 14th, 2025
Gene Product: July 5th, 2019
Variation: December 4th, 2013
4 months agowrky22 WRKY-transcription factor 22:
8.09
GRMZM2G111354
Zm00001d012789
Zm00001eb371340
Cai, RH et al. 2025. ZmWRKY107 modulates salt tolerance in maize plants by regulating ZmPOD52 expression. Planta. 262:49.     Reference: July 14th, 2025
Variation: July 14th, 2025
4 months agobhlh82 bHLH-transcription factor 82:
 
GRMZM2G417164
Zm00001d009778
Zm00001eb345600
Juan-Juan Xu et al. 2025. The regulatory role of ZmSTOMAGEN1/2 in maize stomatal development is elucidated via gene editing and metabolic profiling. PLoS One. 20:e0328433.     Reference: July 14th, 2025
Gene Product: September 14th, 2016
Variation: August 30th, 2019
4 months agots3 tassel seed3:
1.09
   Lin, Z et al. 2025. GT1 regulates maize sex determination by affecting the jasmonate pathway. Plant J. 123:e70306.     Reference: July 14th, 2025
Variation: September 1st, 2003
4 months agocl14964_1  :
3.04
GRMZM2G151653
Zm00001d040678
Zm00001eb130690
Wu, JH et al. 2025. Identification and fine-mapping of qNCLB3.04 resistant to Northern Corn Leaf Blight Mol Breed. 45:59.     Reference: July 14th, 2025
Variation: September 25th, 2007
4 months agomate4 multidrug and toxic compound extrusion4:
3.04
GRMZM2G080450
Zm00001d040665
Zm00001eb130600
Wu, JH et al. 2025. Identification and fine-mapping of qNCLB3.04 resistant to Northern Corn Leaf Blight Mol Breed. 45:59.     Reference: July 14th, 2025
Gene Product: August 17th, 2015
4 months agoopr8 12-oxo-phytodienoic acid reductase8:
4.05
GRMZM2G082087
Zm00001d050107
Zm00001eb177330
Lin, Z et al. 2025. GT1 regulates maize sex determination by affecting the jasmonate pathway. Plant J. 123:e70306.     Reference: July 14th, 2025
Gene Product: September 3rd, 2010
Variation: December 16th, 2019
4 months agosrp30 serine/ariginine domain protein30:
 
GRMZM2G331811
Zm00001d040672
Zm00001eb130650
Wu, JH et al. 2025. Identification and fine-mapping of qNCLB3.04 resistant to Northern Corn Leaf Blight Mol Breed. 45:59.     Reference: July 14th, 2025
Gene Product: October 18th, 2023
4 months agolea16 late embryogenesis abundant protein16:
 
GRMZM2G099003
Zm00001d040659
Zm00001eb130570
Wu, JH et al. 2025. Identification and fine-mapping of qNCLB3.04 resistant to Northern Corn Leaf Blight Mol Breed. 45:59.     Reference: July 14th, 2025
Gene Product: January 31st, 2019
4 months agoereb202 AP2-EREBP-transcription factor 202:
 
GRMZM2G148333
Zm00001d005798
Zm00001eb099980
Su, B et al. 2025. Disease-Resistance Functional Analysis and Screening of Interacting Proteins of ZmCpn60-3, a Chaperonin 60 Protein from Maize. Plants. 14:1993.     Reference: July 13th, 2025
Variation: January 22nd, 2021
4 months agoburp7 BURP domain-containing protein-RD22-like7:
 
GRMZM2G146665
Zm00001d020122
Zm00001eb310130
Su, B et al. 2025. Disease-Resistance Functional Analysis and Screening of Interacting Proteins of ZmCpn60-3, a Chaperonin 60 Protein from Maize. Plants. 14:1993.     Reference: July 13th, 2025
Gene Product: August 18th, 2017
4 months agoacc2 acetyl-CoA carboxylase2:
2.04
GRMZM5G858094
Zm00001d004125
Zm00001eb086560
Xiao Fu et al. 2025. Development of cytosine and adenine base editors for maize precision breeding. J Integr Plant Biol. :doi: 10.1111/jipb.13964.     Reference: July 11th, 2025
Gene Product: September 29th, 2020
Variation: July 7th, 2012
4 months agobhlh43 bHLH-transcription factor 43:
1.08
GRMZM2G165042
Zm00001d033267
Zm00001eb050790
Xie, FG et al. 2025. The ZmPIF4.1-ZmPTI1c-ZmMYB31 module regulates maize immunity to Gibberella stalk rot caused by Fusarium graminearum Crop J. :doi: 10.1016/j.cj.2025.06.009.     Reference: July 11th, 2025
Variation: September 1st, 2003
4 months agolimtf5 LIM-transcription factor 5:
 
GRMZM2G342105
Zm00001d033297
Zm00001eb051170
Xiao Fu et al. 2025. Development of cytosine and adenine base editors for maize precision breeding. J Integr Plant Biol. :doi: 10.1111/jipb.13964.     Reference: July 11th, 2025
Gene Product: December 16th, 2019
4 months agoumc1789  :
9.06
GRMZM2G008638
Zm00001d048147
Zm00001eb400730
Xiao Fu et al. 2025. Development of cytosine and adenine base editors for maize precision breeding. J Integr Plant Biol. :doi: 10.1111/jipb.13964.     Reference: July 11th, 2025
Variation: September 1st, 2003
4 months agodhar4 glutathione dehydroascorbate reductase4:
6.04
GRMZM5G826194
Zm00001d037240
Zm00001eb279790
Sezgin Muslu, A et al. 2025. Lipoic acid and 24-epibrassinolide collaborate synergistically to boost maize seedlings resilience to osmotic stress via modulating antioxidant and glyoxalase systems Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01620-3.     Reference: July 11th, 2025
Gene Product: March 28th, 2013
4 months agodar1 monodehydroascorbate reductase homolog1:
2.06
GRMZM2G084881
Zm00001d005347
Zm00001eb096070
Sezgin Muslu, A et al. 2025. Lipoic acid and 24-epibrassinolide collaborate synergistically to boost maize seedlings resilience to osmotic stress via modulating antioxidant and glyoxalase systems Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01620-3.     Reference: July 11th, 2025
Gene Product: September 1st, 2003
Variation: November 17th, 2012
4 months agolimtf11 LIM-transcription factor 11:
 
GRMZM2G017845
Zm00001d035844
Zm00001eb268250
Xiao Fu et al. 2025. Development of cytosine and adenine base editors for maize precision breeding. J Integr Plant Biol. :doi: 10.1111/jipb.13964.     Reference: July 11th, 2025
Gene Product: June 24th, 2019
Variation: June 24th, 2019
4 months agopti4 pto-interacting4:
 
GRMZM2G001668
Zm00001d005450
Zm00001eb096890
Xie, FG et al. 2025. The ZmPIF4.1-ZmPTI1c-ZmMYB31 module regulates maize immunity to Gibberella stalk rot caused by Fusarium graminearum Crop J. :doi: 10.1016/j.cj.2025.06.009.     Reference: July 11th, 2025
Gene Product: May 13th, 2014
4 months agoglpx7 glutathione peroxidase7:
 
GRMZM5G884600
Zm00001d026154
Zm00001eb429430
Sezgin Muslu, A et al. 2025. Lipoic acid and 24-epibrassinolide collaborate synergistically to boost maize seedlings resilience to osmotic stress via modulating antioxidant and glyoxalase systems Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01620-3.     Reference: July 11th, 2025
Gene Product: March 4th, 2022
4 months agopti2 pto-interacting2:
10.03
GRMZM2G061447
Zm00001d024755
Zm00001eb417380
Xie, FG et al. 2025. The ZmPIF4.1-ZmPTI1c-ZmMYB31 module regulates maize immunity to Gibberella stalk rot caused by Fusarium graminearum Crop J. :doi: 10.1016/j.cj.2025.06.009.     Reference: July 11th, 2025
Gene Product: May 13th, 2014
4 months agoIDP1448  :
10.01
GRMZM2G031317
Zm00001d023384
Zm00001eb406460
Xiao Fu et al. 2025. Development of cytosine and adenine base editors for maize precision breeding. J Integr Plant Biol. :doi: 10.1111/jipb.13964.     Reference: July 11th, 2025
Variation: March 31st, 2005
4 months agogsr2 glutathione reductase2:
5.08
GRMZM5G806449
Zm00001d018454
Zm00001eb258600
Sezgin Muslu, A et al. 2025. Lipoic acid and 24-epibrassinolide collaborate synergistically to boost maize seedlings resilience to osmotic stress via modulating antioxidant and glyoxalase systems Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01620-3.     Reference: July 11th, 2025
Gene Product: September 1st, 2003
4 months agorad17 RAD17 DNA repair protein homolog:
9.06
GRMZM2G051138
Zm00001d047946
Zm00001eb398900
Xiao Fu et al. 2025. Development of cytosine and adenine base editors for maize precision breeding. J Integr Plant Biol. :doi: 10.1111/jipb.13964.   LOC_Os03g13850 (MSU/TIGR) Reference: July 11th, 2025
Gene Product: February 27th, 2021
Variation: February 27th, 2021
4 months agoglx1 glyoxylase1:
10.03
GRMZM2G181192
Zm00001d024245
Zm00001eb413370
Sezgin Muslu, A et al. 2025. Lipoic acid and 24-epibrassinolide collaborate synergistically to boost maize seedlings resilience to osmotic stress via modulating antioxidant and glyoxalase systems Physiol Mol Biol Plants. :doi: 10.1007/s12298-025-01620-3.     Reference: July 11th, 2025
Gene Product: February 13th, 2023
Variation: March 5th, 2008
4 months agolimtf4 LIM-transcription factor 4:
1.05
GRMZM2G099328
Zm00001d030953
Zm00001eb030870
Xiao Fu et al. 2025. Development of cytosine and adenine base editors for maize precision breeding. J Integr Plant Biol. :doi: 10.1111/jipb.13964.   AT4G36860 (TAIR) Reference: July 11th, 2025
Gene Product: December 16th, 2019
Variation: May 31st, 2017
4 months agosaur7 small auxin up RNA7:
1.07
GRMZM2G414727
Zm00001d032475
Zm00001eb043760
Xiaoping Yang et al. 2025. Unraveling the genetic basis of maize ear diameter in a multi-parent RIL population derived from tropical and temperate germplasms. Theor Appl Genet. 138:181.     Reference: July 10th, 2025
Gene Product: November 26th, 2021
4 months agopum4 pumilio4:
1.06
GRMZM2G449123
Zm00001d031529
Zm00001eb035700
Xiaoping Yang et al. 2025. Unraveling the genetic basis of maize ear diameter in a multi-parent RIL population derived from tropical and temperate germplasms. Theor Appl Genet. 138:181.     Reference: July 10th, 2025
Gene Product: September 13th, 2023
4 months agokcs3 3-ketoacyl-CoA synthase3:
 
GRMZM2G075140
Zm00001d048953
Zm00001eb167740
Jia-Long Liu et al. 2025. Comparative transcriptome profiling and co-expression network analysis reveals important genes regulating maize response to Southern corn rust BMC Plant Biology. 24:896.     Reference: July 10th, 2025
Gene Product: November 1st, 2018
4 months agokcs22 3-ketoacyl-CoA synthase22:
 
GRMZM2G168956
Zm00001d045660
Zm00001eb379940
Jia-Long Liu et al. 2025. Comparative transcriptome profiling and co-expression network analysis reveals important genes regulating maize response to Southern corn rust BMC Plant Biology. 24:896.     Reference: July 10th, 2025
Gene Product: November 1st, 2018
4 months agosaur70 small auxin up RNA70:
 
GRMZM2G431066
Zm00001d012222
Zm00001eb366210
Xiaoping Yang et al. 2025. Unraveling the genetic basis of maize ear diameter in a multi-parent RIL population derived from tropical and temperate germplasms. Theor Appl Genet. 138:181.     Reference: July 10th, 2025
Gene Product: November 26th, 2021
4 months agokcs39 3-ketoacyl-CoA synthase39:
 
GRMZM2G003138
Zm00001d029350
Zm00001eb018600
Jia-Long Liu et al. 2025. Comparative transcriptome profiling and co-expression network analysis reveals important genes regulating maize response to Southern corn rust BMC Plant Biology. 24:896.     Reference: July 10th, 2025
Gene Product: November 1st, 2018
4 months agoccl30 coumarate-CoA ligase30:
 
GRMZM2G096020
Zm00001d027519
Zm00001eb002570
Gray, J et al. 2025. Decoding complexity: tackling the challenge of how many transcription factors regulate a plant gene Transcription. :doi: 10.1080/21541264.2025.2521767.     Reference: July 9th, 2025
Gene Product: April 30th, 2025
4 months agopub19 plant U-box type E3 ubiquitin ligase19:
 
GRMZM2G046848
Zm00001d029829
Zm00001eb022810
Li, SN et al. 2025. Functional Analysis of Zinc Finger Protein Transcription Factor ZmZFP69 Under Low-Temperature Stress at Maize Seedling Stage Plants. 14:2114.     Reference: July 9th, 2025
Gene Product: February 1st, 2024
4 months agobag20 B-cell lymphoma-2 (Bcl-2) associated athanogene20:
 
   Li, SN et al. 2025. Functional Analysis of Zinc Finger Protein Transcription Factor ZmZFP69 Under Low-Temperature Stress at Maize Seedling Stage Plants. 14:2114.     Reference: July 9th, 2025
Gene Product: January 4th, 2025
4 months agoLOC103654660  :
 
   Li, SN et al. 2025. Functional Analysis of Zinc Finger Protein Transcription Factor ZmZFP69 Under Low-Temperature Stress at Maize Seedling Stage Plants. 14:2114.     Reference: July 9th, 2025
Gene Product: January 22nd, 2025
4 months agoeno3 enolase3:
 
   Sina-Elisabeth Ben Ali et al. 2020. Analysis of transcriptomic differences between NK603 maize and near-isogenic varieties using RNA sequencing and RT-qPCR Environ Sci Eur. 32:132.     Reference: July 9th, 2025
Gene Product: September 1st, 2003
4 months agopor2 porin2:
10.06
GRMZM2G125023
Zm00001d026177
Zm00001eb429750
Ariel Tasca et al. 2025. The role of maize (Zea mays L.) radicle root hairs in seedling establishment under adverse phosphorus and water seedbed conditions. Ann Bot. :doi: 10.1093/aob/mcaf142.     Reference: July 9th, 2025
Gene Product: January 27th, 2022
Variation: April 10th, 2024
4 months agotip2a tonoplast intrinsic protein2:
4.06
GRMZM2G027098
Zm00001d051362
Zm00001eb186570
Ariel Tasca et al. 2025. The role of maize (Zea mays L.) radicle root hairs in seedling establishment under adverse phosphorus and water seedbed conditions. Ann Bot. :doi: 10.1093/aob/mcaf142.     Reference: July 9th, 2025
Gene Product: January 27th, 2022
Variation: September 1st, 2003
4 months agohmt4 homocysteine S-methyltransferase4:
3.07
GRMZM2G039166
Zm00001d043302
Zm00001eb151780
Sina-Elisabeth Ben Ali et al. 2020. Analysis of transcriptomic differences between NK603 maize and near-isogenic varieties using RNA sequencing and RT-qPCR Environ Sci Eur. 32:132.     Reference: July 9th, 2025
Gene Product: July 19th, 2004
Variation: September 25th, 2007
4 months agopht12 phosphate transporter protein12:
 
GRMZM2G009800
Zm00001d004308
Zm00001eb087740
Ariel Tasca et al. 2025. The role of maize (Zea mays L.) radicle root hairs in seedling establishment under adverse phosphorus and water seedbed conditions. Ann Bot. :doi: 10.1093/aob/mcaf142.     Reference: July 9th, 2025
Gene Product: June 16th, 2016
4 months agoaas1 auxin amido synthetase1:
 
GRMZM2G068701
Zm00001d029577
Zm00001eb020510
Li, SN et al. 2025. Functional Analysis of Zinc Finger Protein Transcription Factor ZmZFP69 Under Low-Temperature Stress at Maize Seedling Stage Plants. 14:2114.     Reference: July 9th, 2025
Gene Product: October 21st, 2019
4 months agoproh4 prolyl 4-hydroxylase 4:
 
GRMZM5G843555
Zm00001d007765
Zm00001eb116380
Sina-Elisabeth Ben Ali et al. 2020. Analysis of transcriptomic differences between NK603 maize and near-isogenic varieties using RNA sequencing and RT-qPCR Environ Sci Eur. 32:132.     Reference: July 9th, 2025
Gene Product: June 18th, 2021
4 months agoacco5 1-aminocyclopropane-1-carboxylate oxidase5:
 
GRMZM2G013448
Zm00001d011208
Zm00001eb357070
Sina-Elisabeth Ben Ali et al. 2020. Analysis of transcriptomic differences between NK603 maize and near-isogenic varieties using RNA sequencing and RT-qPCR Environ Sci Eur. 32:132.     Reference: July 9th, 2025
Gene Product: May 16th, 2016
4 months agoproh6 prolyl 4-hydroxylase 6:
 
GRMZM2G054224
Zm00001d013053
Zm00001eb212670
Sina-Elisabeth Ben Ali et al. 2020. Analysis of transcriptomic differences between NK603 maize and near-isogenic varieties using RNA sequencing and RT-qPCR Environ Sci Eur. 32:132.     Reference: July 9th, 2025
Gene Product: June 18th, 2021
4 months agogbf1 G-box binding factor1:
6.07
GRMZM2G011932
Zm00001d039065
Zm00001eb296340
Ma, L et al. 2025. Manipulation of the central autophagy component ZmATG8c affects thermotolerance in maize. Plant Physiol. :doi: 10.1093/plphys/kiaf299.     Reference: July 8th, 2025
Gene Product: September 1st, 2003
Variation: December 7th, 2012
4 months agolaz1 lazarus ortholog1:
7.03
GRMZM2G025242
Zm00001d021574
Zm00001eb322290
Fu Qian et al. 2025. Mining candidate genes for maize plant height based on a GWAS, Meta-QTL, and WGCNA. Frontiers in Plant Science. 16:1587217.     Reference: July 8th, 2025
Gene Product: July 27th, 2019
4 months agoatg8b autophagy8b:
10.06
GRMZM2G419694
Zm00001d026335
Zm00001eb431210
Ma, L et al. 2025. Manipulation of the central autophagy component ZmATG8c affects thermotolerance in maize. Plant Physiol. :doi: 10.1093/plphys/kiaf299.     Reference: July 8th, 2025
Variation: March 31st, 2005
4 months agomkkk19 MAP kinase kinase kinase19:
 
GRMZM2G165099
Zm00001d043741
Zm00001eb155720
Hemangini Parmar et al. 2025. Enhancing drought resilience in crops: mechanistic approaches in the face of climate challenge Plant Mol Biol. 115:82.     Reference: July 7th, 2025
Gene Product: March 14th, 2022
4 months agomkkk56 MAP kinase kinase kinase56:
 
GRMZM2G063069
Zm00001d009660
Zm00001eb344490
Hemangini Parmar et al. 2025. Enhancing drought resilience in crops: mechanistic approaches in the face of climate challenge Plant Mol Biol. 115:82.     Reference: July 7th, 2025
Gene Product: March 14th, 2022
4 months agomkkk18 MAP kinase kinase kinase18:
 
GRMZM2G305066
Zm00001d011655
Zm00001eb360940
Hemangini Parmar et al. 2025. Enhancing drought resilience in crops: mechanistic approaches in the face of climate challenge Plant Mol Biol. 115:82.     Reference: July 7th, 2025
Gene Product: March 14th, 2022
4 months agompk15 MAP kinase15:
6.01
GRMZM2G306028
Zm00001d036448
Zm00001eb272710
Hemangini Parmar et al. 2025. Enhancing drought resilience in crops: mechanistic approaches in the face of climate challenge Plant Mol Biol. 115:82.     Reference: July 7th, 2025
Gene Product: July 12th, 2013
4 months agohsp17.2 heat shock protein17.2:
3.04
GRMZM2G422240
Zm00001d039935
Zm00001eb124950
Wang, J et al. 2025. Alternative splicing of ZmHsf23 modulates maize heat tolerance by regulating sHSPs and TIL1 expression Crop J. :doi: 10.1016/j.cj.2025.06.001.     Reference: July 6th, 2025
Gene Product: September 1st, 2003
Variation: September 1st, 2003
4 months agovdac1a voltage-dependent anion channel protein1a:
2.06
GRMZM2G150616
Zm00001d005649
Zm00001eb098580
Sheng-Kai Hsu et al. 2025. Contrasting rhizosphere nitrogen dynamics in Andropogoneae grasses. Plant J. 123:e70319.     Reference: July 6th, 2025
Gene Product: January 24th, 2014
Variation: July 14th, 2009
4 months agoamt5 ammonium transporter5:
10.04
GRMZM2G164743
Zm00001d025894
Zm00001eb427000
Sheng-Kai Hsu et al. 2025. Contrasting rhizosphere nitrogen dynamics in Andropogoneae grasses. Plant J. 123:e70319.     Reference: July 6th, 2025
Gene Product: July 8th, 2013
4 months agomrpa9 multidrug resistance associated protein9:
 
GRMZM2G365957
Zm00001d004361
Zm00001eb088090
Sheng-Kai Hsu et al. 2025. Contrasting rhizosphere nitrogen dynamics in Andropogoneae grasses. Plant J. 123:e70319.     Reference: July 6th, 2025
Gene Product: July 11th, 2019
4 months agosweet2a sugars will eventually be exported transporter2a:
3.07
GRMZM6G056015
Zm00001d043735
Zm00001eb155660
Sheng-Kai Hsu et al. 2025. Contrasting rhizosphere nitrogen dynamics in Andropogoneae grasses. Plant J. 123:e70319.     Reference: July 6th, 2025
Gene Product: November 4th, 2015
Variation: May 17th, 2021
4 months agotil1 temperature-induced lipocalin1:
5.05
GRMZM2G072034
Zm00001d017199
Zm00001eb247000
Wang, J et al. 2025. Alternative splicing of ZmHsf23 modulates maize heat tolerance by regulating sHSPs and TIL1 expression Crop J. :doi: 10.1016/j.cj.2025.06.001.     Reference: July 6th, 2025
Gene Product: May 20th, 2020
4 months agoarftf27 ARF-transcription factor 27:
 
GRMZM2G160005
Zm00001d045026
Zm00001eb373970
Khan, M et al. 2025. Pathogenic fungus exploits the lateral root regulators to induce pluripotency in maize shoots bioRxiv preprint. :doi: 10.1101/2025.06.30.662278.     Reference: July 5th, 2025
Gene Product: January 29th, 2022
4 months agorlck1 receptor-like cytoplasmic kinase1:
 
   Li, H et al. 2025. ZmRLCK1 modulates secondary cell wall deposition in maize Plant J. 123:e70313.     Reference: July 4th, 2025
Gene Product: July 4th, 2025
Variation: July 4th, 2025
4 months agobnlg565  :
5.01
GRMZM5G840435
Zm00001d013334
Zm00001eb215470
Chenglin Zou et al. 2025. Genome and transcriptome wide association study identify candidate genes regulating folate levels in maize Frontiers in Plant Science. 16:1606220.     Reference: July 4th, 2025
Variation: September 1st, 2003
4 months agodrts4 bifunctional dihydrofolate reductase-thymidylate synthase4:
4.03
GRMZM2G139880
Zm00001d049188
Zm00001eb169580
Chenglin Zou et al. 2025. Genome and transcriptome wide association study identify candidate genes regulating folate levels in maize Frontiers in Plant Science. 16:1606220.     Reference: July 4th, 2025
Gene Product: February 26th, 2025
Variation: September 1st, 2003
4 months agodrts3 bifunctional dihydrofolate reductase-thymidylate synthase3:
2.08
GRMZM2G005990
Zm00001d007318
Zm00001eb112740
Chenglin Zou et al. 2025. Genome and transcriptome wide association study identify candidate genes regulating folate levels in maize Frontiers in Plant Science. 16:1606220.     Reference: July 4th, 2025
Gene Product: February 26th, 2025
4 months agobm6 brown midrib6:
 
GRMZM2G062420
Zm00001d001959
Zm00001eb067370
Chenglin Zou et al. 2025. Genome and transcriptome wide association study identify candidate genes regulating folate levels in maize Frontiers in Plant Science. 16:1606220.   AT3G07270 (TAIR) Reference: July 4th, 2025
Gene Product: January 14th, 2021
Variation: September 1st, 2023
4 months agogch2 GTP cyclohydrolase2:
 
GRMZM2G106376
Zm00001d026531
Zm00001eb432940
Chenglin Zou et al. 2025. Genome and transcriptome wide association study identify candidate genes regulating folate levels in maize Frontiers in Plant Science. 16:1606220.     Reference: July 4th, 2025
Gene Product: January 14th, 2021
4 months agohppk1 hydroxymethyldihydropterin pyrophosphokinase1:
 
GRMZM2G095806
Zm00001d021338
Zm00001eb319990
Chenglin Zou et al. 2025. Genome and transcriptome wide association study identify candidate genes regulating folate levels in maize Frontiers in Plant Science. 16:1606220.     Reference: July 4th, 2025
Gene Product: January 14th, 2021
4 months agoftd1 formyltetrahydrofolate deformylase1:
 
GRMZM2G168281
Zm00001d048550
Zm00001eb404490
Chenglin Zou et al. 2025. Genome and transcriptome wide association study identify candidate genes regulating folate levels in maize Frontiers in Plant Science. 16:1606220.     Reference: July 4th, 2025
Gene Product: January 14th, 2021
4 months agoftcl2 5-formyltetrahydrofolate cyclo-ligase2:
 
GRMZM5G807835
Zm00001d006676
Zm00001eb107660
Chenglin Zou et al. 2025. Genome and transcriptome wide association study identify candidate genes regulating folate levels in maize Frontiers in Plant Science. 16:1606220.     Reference: July 4th, 2025
Gene Product: August 20th, 2014
4 months agomkkk68 MAP kinase kinase kinase68:
 
GRMZM2G018280
Zm00001d036771
Zm00001eb275520
Jingyi Wang et al. 2025. Genetic analysis and identification of the candidate genes of maize resistance to Ustilago maydis by BSA-Seq and RNA-Seq. BMC Plant Biology. 25:831.   AT1G62400 (TAIR) Reference: July 3rd, 2025
Gene Product: March 14th, 2022
4 months agonad4 NADH-ubiquinone oxidoreductase B18 subunit4:
1.01
GRMZM2G137312
Zm00001d027493
Zm00001eb002320
Chen, B-Y et al. 2025. Mitochondrial complex I assembles via a distal-pump module (PD)-early and PD-late pathway in maize. J Integr Plant Biol. :doi: 10.1111/jipb.13958.     Reference: July 3rd, 2025
Variation: March 4th, 2016
4 months agoumc1404  :
3.07
GRMZM2G069061
Zm00001d043619
Zm00001d043620
Zm00001eb154640
Chen, B-Y et al. 2025. Mitochondrial complex I assembles via a distal-pump module (PD)-early and PD-late pathway in maize. J Integr Plant Biol. :doi: 10.1111/jipb.13958.     Reference: July 3rd, 2025
Variation: September 1st, 2003
4 months agonad5 (homolog) NADH ubiquinone oxidoreductase B14 subunit5 (homolog):
1.01 - 1.01
GRMZM2G014382
Zm00001d027389
Zm00001eb001400
Chen, B-Y et al. 2025. Mitochondrial complex I assembles via a distal-pump module (PD)-early and PD-late pathway in maize. J Integr Plant Biol. :doi: 10.1111/jipb.13958.     Reference: July 3rd, 2025
Variation: April 26th, 2016
4 months agonpi114b  :
3.04
GRMZM2G046924
Zm00001d040515
Zm00001eb129380
Chen, B-Y et al. 2025. Mitochondrial complex I assembles via a distal-pump module (PD)-early and PD-late pathway in maize. J Integr Plant Biol. :doi: 10.1111/jipb.13958.     Reference: July 3rd, 2025
Variation: September 1st, 2003
4 months agonad3(mtNB) NADH dehydrogenase subunit 3:
 
   Chen, B-Y et al. 2025. Mitochondrial complex I assembles via a distal-pump module (PD)-early and PD-late pathway in maize. J Integr Plant Biol. :doi: 10.1111/jipb.13958.     Reference: July 3rd, 2025
Gene Product: September 1st, 2003
4 months agonad1 NADH ubiquinone oxidoreductase1:
1.03
GRMZM2G018941
Zm00001d028918
Zm00001eb015010
Chen, B-Y et al. 2025. Mitochondrial complex I assembles via a distal-pump module (PD)-early and PD-late pathway in maize. J Integr Plant Biol. :doi: 10.1111/jipb.13958.     Reference: July 3rd, 2025
Gene Product: September 1st, 2003
Variation: September 1st, 2003
4 months agogldh1 galactono lactone dehydrogenase1:
2.05
GRMZM2G469969
Zm00001d004956
Zm00001eb093120
Chen, B-Y et al. 2025. Mitochondrial complex I assembles via a distal-pump module (PD)-early and PD-late pathway in maize. J Integr Plant Biol. :doi: 10.1111/jipb.13958.     Reference: July 3rd, 2025
Gene Product: March 29th, 2013
4 months agonad3 NADH-ubiquinone oxidorectase3:
 
GRMZM2G008464
Zm00001d009803
Zm00001eb345800
Chen, B-Y et al. 2025. Mitochondrial complex I assembles via a distal-pump module (PD)-early and PD-late pathway in maize. J Integr Plant Biol. :doi: 10.1111/jipb.13958.     Reference: July 3rd, 2025
Gene Product: September 1st, 2003
4 months agonad5 (mito) NADH dehydrogenase subunit 5:
 
   Chen, B-Y et al. 2025. Mitochondrial complex I assembles via a distal-pump module (PD)-early and PD-late pathway in maize. J Integr Plant Biol. :doi: 10.1111/jipb.13958.     Reference: July 3rd, 2025
Gene Product: September 1st, 2003
4 months agoaomt6 anthranilate O-methyltransferase6:
 
GRMZM2G050307
Zm00001d052827
Zm00001eb199360
Jingyi Wang et al. 2025. Genetic analysis and identification of the candidate genes of maize resistance to Ustilago maydis by BSA-Seq and RNA-Seq. BMC Plant Biology. 25:831.     Reference: July 3rd, 2025
Gene Product: December 23rd, 2020
4 months agoena1 efflux transporter of Na1:
 
Zm00001d052532
Zm00001eb196970
Jingyi Wang et al. 2025. Genetic analysis and identification of the candidate genes of maize resistance to Ustilago maydis by BSA-Seq and RNA-Seq. BMC Plant Biology. 25:831.     Reference: July 3rd, 2025
Gene Product: January 18th, 2022
4 months agonad6(mtNB) NADH dehydrogenase subunit 6:
 
   Chen, B-Y et al. 2025. Mitochondrial complex I assembles via a distal-pump module (PD)-early and PD-late pathway in maize. J Integr Plant Biol. :doi: 10.1111/jipb.13958.     Reference: July 3rd, 2025
Gene Product: March 22nd, 2022
4 months agoIDP683  :
6.06
GRMZM2G163468
Zm00001d038508
Zm00001eb290920
Chen, B-Y et al. 2025. Mitochondrial complex I assembles via a distal-pump module (PD)-early and PD-late pathway in maize. J Integr Plant Biol. :doi: 10.1111/jipb.13958.     Reference: July 3rd, 2025
Variation: March 31st, 2005
4 months agoIDP771  :
8.06
GRMZM2G112079
Zm00001d012127
Zm00001eb365410
Chen, B-Y et al. 2025. Mitochondrial complex I assembles via a distal-pump module (PD)-early and PD-late pathway in maize. J Integr Plant Biol. :doi: 10.1111/jipb.13958.     Reference: July 3rd, 2025
Variation: March 31st, 2005
4 months agohppd2 4-hydroxyphenylpyruvate dioxygenase 2:
 
GRMZM2G374213
Zm00001d019365
Zm00001eb304950
Zhao, BB et al. 2025. Identification and application of herbicide-resistant 4-hydroxyphenylpyruvate dioxygenase (HPPD) alleles via directed evolution. Plant Biotechnol J. :doi: 10.1111/pbi.70160.     Reference: July 2nd, 2025
Gene Product: June 2nd, 2005
4 months agoring141 RING-type E3 ligase141:
 
GRMZM2G140160
Zm00001d005795
Zm00001eb099970
Yifei Xiao et al. 2025. Cloning and function analysis of ZmICE1a, a contributor to the melioration of maize kernel traits. Plant Signal Behav. 20:2521320.     Reference: July 2nd, 2025
Gene Product: May 22nd, 2025
4 months agoLOC100383650  :
 
   Xiaofang Wang et al. 2025. Genome-wide identification, evolution, and expression and metabolic regulation of the maize CHS gene family under abiotic stress. BMC Genomics. 26:581.     Reference: July 2nd, 2025
Gene Product: January 17th, 2022
4 months agogrf5 general regulatory factor5:
4.09
GRMZM2G106424
Zm00001d053090
Zm00001eb201570
Liu, YP et al. 2025. Integrating proteomic and phosphoproteomic profiles provide new insights into ABA-dependent signal regulation network in maize response to heat stress. BMC Plant Biology. 25:792.     Reference: July 2nd, 2025
Gene Product: March 6th, 2023
4 months agoga2ox6 gibberellin 2-oxidase6:
6.05
GRMZM2G051619
Zm00001d037724
Zm00001eb283860
Weijian Qi et al. 2025. Comprehensive analysis of ZmGAox gene family in maize (Zea mays L.) reveals novel structural features and evolutionary patterns under positive selection Genet Resour Crop Evol. :doi: 10.1007/s10722-025-02478-w.     Reference: July 2nd, 2025
Gene Product: October 27th, 2014
4 months agopub30 plant U-box type E3 ubiquitin ligase30:
9.04
GRMZM2G075104
Zm00001d047306
Zm00001eb393280
Shaoqi Ren et al. 2025. Molecular Mechanisms Underlying Salt Tolerance in Maize: A Combined Transcriptome and Metabolome Analysis Plants. 14:2031.     Reference: July 2nd, 2025
Gene Product: February 1st, 2024
4 months agoga2ox1 gibberellin 2-oxidase1:
 
GRMZM2G078798
Zm00001d037565
Zm00001eb282550
Weijian Qi et al. 2025. Comprehensive analysis of ZmGAox gene family in maize (Zea mays L.) reveals novel structural features and evolutionary patterns under positive selection Genet Resour Crop Evol. :doi: 10.1007/s10722-025-02478-w.     Reference: July 2nd, 2025
Gene Product: October 27th, 2014
Variation: November 20th, 2012
4 months agothx43 Trihelix-transcription factor 43:
10.03
GRMZM2G110145
Zm00001d024531
Zm00001eb415630
Yao He et al. 2025. Transcriptome and co-expression network analysis reveal the genetic basis of cell wall components in maize stalks. BMC Genomics. 26:620.     Reference: July 2nd, 2025
Gene Product: November 9th, 2021
Variation: September 1st, 2003
4 months agokcs31 3-ketoacyl-CoA synthase31:
5.03
GRMZM2G137694
Zm00001d014168
Zm00001eb222980
Xiaofang Wang et al. 2025. Genome-wide identification, evolution, and expression and metabolic regulation of the maize CHS gene family under abiotic stress. BMC Genomics. 26:581.     Reference: July 2nd, 2025
Gene Product: November 1st, 2018
Variation: September 1st, 2003
4 months agozim4 ZIM-transcription factor 4:
 
GRMZM2G036351
Zm00001d048263
Zm00001eb401740
Shaoqi Ren et al. 2025. Molecular Mechanisms Underlying Salt Tolerance in Maize: A Combined Transcriptome and Metabolome Analysis Plants. 14:2031.     Reference: July 2nd, 2025
Gene Product: February 24th, 2021
4 months agowrky43 WRKY-transcription factor 43:
3.06
GRMZM2G148087
Zm00001d043025
Zm00001eb149300
Shaoqi Ren et al. 2025. Molecular Mechanisms Underlying Salt Tolerance in Maize: A Combined Transcriptome and Metabolome Analysis Plants. 14:2031.     Reference: July 2nd, 2025
Variation: April 16th, 2025
4 months agopyk2 pyruvate kinase2:
10.01
GRMZM2G004534
Zm00001d023379
Zm00001eb406450
Shaoqi Ren et al. 2025. Molecular Mechanisms Underlying Salt Tolerance in Maize: A Combined Transcriptome and Metabolome Analysis Plants. 14:2031.     Reference: July 2nd, 2025
Gene Product: April 8th, 2011
Variation: April 6th, 2007
4 months agonbs25 nucleotide-binding site25:
4.08
GRMZM2G050959
Zm00001d052581
Zm00001eb197290
Xiaofang Wang et al. 2025. Genome-wide identification, evolution, and expression and metabolic regulation of the maize CHS gene family under abiotic stress. BMC Genomics. 26:581.     Reference: July 2nd, 2025
Gene Product: January 17th, 2022
4 months agoufg71  :
9.03
GRMZM5G870176
Zm00001d045557
Zm00001eb379070
Yao He et al. 2025. Transcriptome and co-expression network analysis reveal the genetic basis of cell wall components in maize stalks. BMC Genomics. 26:620.     Reference: July 2nd, 2025
Gene Product: October 7th, 2016
4 months agochn3 chitinase3:
5.03
GRMZM2G389582
Zm00001d014842
Zm00001eb228510
Shaoqi Ren et al. 2025. Molecular Mechanisms Underlying Salt Tolerance in Maize: A Combined Transcriptome and Metabolome Analysis Plants. 14:2031.     Reference: July 2nd, 2025
Gene Product: May 31st, 2021
Variation: September 1st, 2003
4 months agoxth31 xyloglucan endotransglucosylase/hydrolase31:
 
GRMZM2G388684
Zm00001d027313
Zm00001eb000660
Yao He et al. 2025. Transcriptome and co-expression network analysis reveal the genetic basis of cell wall components in maize stalks. BMC Genomics. 26:620.     Reference: July 2nd, 2025
Gene Product: March 23rd, 2024
4 months agokcs35 3-ketoacyl-CoA synthase35:
3.09
GRMZM2G409312
Zm00001d044580
Zm00001eb162970
Zm00014a004344
Xiaofang Wang et al. 2025. Genome-wide identification, evolution, and expression and metabolic regulation of the maize CHS gene family under abiotic stress. BMC Genomics. 26:581.     Reference: July 2nd, 2025
Gene Product: November 1st, 2018
4 months agoalgt1 alanine--glyoxylate aminotransferase1:
1.04
GRMZM2G030571
Zm00001d029083
Zm00001eb016230
Zhao, XQ et al. 2025. Organic fertilizer substitution altered the waxy maize grain quality and aroma volatiles formation by the integrated transcriptomic and metabolomic analyses. Frontiers in Plant Science. 16:1581728.     Reference: July 2nd, 2025
Gene Product: July 25th, 2014
4 months agoga3ox1 gibberellin 3-oxidase1:
 
GRMZM2G044358
Zm00001d037627
Zm00001eb283020
Weijian Qi et al. 2025. Comprehensive analysis of ZmGAox gene family in maize (Zea mays L.) reveals novel structural features and evolutionary patterns under positive selection Genet Resour Crop Evol. :doi: 10.1007/s10722-025-02478-w.     Reference: July 2nd, 2025
Gene Product: October 25th, 2014
Variation: October 25th, 2014
4 months agoga2ox2 gibberellin 2-oxidase2:
 
GRMZM2G006964
Zm00001d002999
Zm00001eb077080
Weijian Qi et al. 2025. Comprehensive analysis of ZmGAox gene family in maize (Zea mays L.) reveals novel structural features and evolutionary patterns under positive selection Genet Resour Crop Evol. :doi: 10.1007/s10722-025-02478-w.     Reference: July 2nd, 2025
Gene Product: October 27th, 2014
4 months agoga2ox7 gibberellin 2-oxidase7:
 
GRMZM2G427618
Zm00001d038695
Zm00001eb292800
Weijian Qi et al. 2025. Comprehensive analysis of ZmGAox gene family in maize (Zea mays L.) reveals novel structural features and evolutionary patterns under positive selection Genet Resour Crop Evol. :doi: 10.1007/s10722-025-02478-w.     Reference: July 2nd, 2025
Gene Product: October 27th, 2014
4 months agoga2ox8 gibberellin 2-oxidase8:
 
GRMZM2G155686
Zm00001d038996
Zm00001eb295720
Weijian Qi et al. 2025. Comprehensive analysis of ZmGAox gene family in maize (Zea mays L.) reveals novel structural features and evolutionary patterns under positive selection Genet Resour Crop Evol. :doi: 10.1007/s10722-025-02478-w.     Reference: July 2nd, 2025
Gene Product: October 27th, 2014
4 months agoga2ox9 gibberellin 2-oxidase9:
 
GRMZM2G152354
Zm00001d008909
Zm00001eb338340
Weijian Qi et al. 2025. Comprehensive analysis of ZmGAox gene family in maize (Zea mays L.) reveals novel structural features and evolutionary patterns under positive selection Genet Resour Crop Evol. :doi: 10.1007/s10722-025-02478-w.     Reference: July 2nd, 2025
Gene Product: October 27th, 2014
4 months agoga2ox11 gibberellin 2-oxidase11:
 
GRMZM2G127757
Weijian Qi et al. 2025. Comprehensive analysis of ZmGAox gene family in maize (Zea mays L.) reveals novel structural features and evolutionary patterns under positive selection Genet Resour Crop Evol. :doi: 10.1007/s10722-025-02478-w.     Reference: July 2nd, 2025
Gene Product: October 27th, 2014
4 months agonbs42 nucleotide-binding site42:
 
GRMZM2G180244
Zm00001d023265
Zm00001eb405270
Xiaofang Wang et al. 2025. Genome-wide identification, evolution, and expression and metabolic regulation of the maize CHS gene family under abiotic stress. BMC Genomics. 26:581.   AT1G58602 (TAIR) Reference: July 2nd, 2025
Gene Product: January 17th, 2022
4 months agogpat13 glycerol-3-phosphate acyltransferase13:
 
GRMZM2G177150
Zm00001d011430
Zm00001eb358940
Shaoqi Ren et al. 2025. Molecular Mechanisms Underlying Salt Tolerance in Maize: A Combined Transcriptome and Metabolome Analysis Plants. 14:2031.     Reference: July 2nd, 2025
Gene Product: March 25th, 2019
4 months agordr3 RNA-dependent RNA polymerase3:
 
GRMZM2G347931
Zm00001d046875
Zm00001eb389110
Xiaofang Wang et al. 2025. Genome-wide identification, evolution, and expression and metabolic regulation of the maize CHS gene family under abiotic stress. BMC Genomics. 26:581.     Reference: July 2nd, 2025
Gene Product: August 8th, 2006
4 months agoaldh20 aldehyde dehydrogenase20:
 
GRMZM2G130440
Zm00001d005818
Zm00001eb100180
Shaoqi Ren et al. 2025. Molecular Mechanisms Underlying Salt Tolerance in Maize: A Combined Transcriptome and Metabolome Analysis Plants. 14:2031.     Reference: July 2nd, 2025
Gene Product: January 5th, 2024
4 months agoncp2 nine complex protein2:
 
GRMZM5G831577
Zm00001d022069
Zm00001eb326900
Sahar Ghahramani Ghahramanloo et al. 2025. Meta-Analysis of Maize Adaptation to Salt Stress: Key Gene Expressions and Regulatory Pathways J Plant Growth Reg. :doi: 10.1007/s00344-025-11774-9.     Reference: July 2nd, 2025
Gene Product: January 2nd, 2020
4 months agokcs19 3-ketoacyl-CoA synthase19:
 
GRMZM2G062718
Zm00001d044579
Zm00001eb162960
Xiaofang Wang et al. 2025. Genome-wide identification, evolution, and expression and metabolic regulation of the maize CHS gene family under abiotic stress. BMC Genomics. 26:581.     Reference: July 2nd, 2025
Gene Product: November 1st, 2018
4 months agokcs18 3-ketoacyl-CoA synthase18:
 
GRMZM2G156620
Zm00001d039094
Zm00001eb296590
Xiaofang Wang et al. 2025. Genome-wide identification, evolution, and expression and metabolic regulation of the maize CHS gene family under abiotic stress. BMC Genomics. 26:581.     Reference: July 2nd, 2025
Gene Product: November 1st, 2018
4 months agokcs24 3-ketoacyl-CoA synthase24:
 
GRMZM5G894016
Zm00001d018455
Zm00001eb258610
Xiaofang Wang et al. 2025. Genome-wide identification, evolution, and expression and metabolic regulation of the maize CHS gene family under abiotic stress. BMC Genomics. 26:581.     Reference: July 2nd, 2025
Gene Product: November 1st, 2018
Variation: January 11th, 2024
4 months agoZm00001d033937  :
 
Zm00001d033937
Zhao, XQ et al. 2025. Organic fertilizer substitution altered the waxy maize grain quality and aroma volatiles formation by the integrated transcriptomic and metabolomic analyses. Frontiers in Plant Science. 16:1581728.     Reference: July 2nd, 2025
Gene Product: June 4th, 2008
4 months agokcs34 3-ketoacyl-CoA synthase34:
 
GRMZM2G060481
Zm00001d009354
Zm00001eb341960
Xiaofang Wang et al. 2025. Genome-wide identification, evolution, and expression and metabolic regulation of the maize CHS gene family under abiotic stress. BMC Genomics. 26:581.     Reference: July 2nd, 2025
Gene Product: November 1st, 2018
4 months agoga20ox6 gibberellin 20-oxidase6:
 
GRMZM2G127232
Zm00001d032223
Zm00001eb041710
Weijian Qi et al. 2025. Comprehensive analysis of ZmGAox gene family in maize (Zea mays L.) reveals novel structural features and evolutionary patterns under positive selection Genet Resour Crop Evol. :doi: 10.1007/s10722-025-02478-w.     Reference: July 2nd, 2025
Gene Product: October 28th, 2014
4 months agoamya2 alpha amylase2:
 
GRMZM2G070172
Zm00001d031794
Zm00001eb038060
Zhao, XQ et al. 2025. Organic fertilizer substitution altered the waxy maize grain quality and aroma volatiles formation by the integrated transcriptomic and metabolomic analyses. Frontiers in Plant Science. 16:1581728.     Reference: July 2nd, 2025
Gene Product: September 1st, 2003
4 months agopx18 peroxidase18:
 
GRMZM2G108153
Zm00001d002899
Zm00001eb076190
Shaoqi Ren et al. 2025. Molecular Mechanisms Underlying Salt Tolerance in Maize: A Combined Transcriptome and Metabolome Analysis Plants. 14:2031.     Reference: July 2nd, 2025
Gene Product: January 20th, 2025
4 months agochls3 chalcone synthase3:
 
GRMZM2G175812
Zm00001d000438
Zm00001eb322090
Xiaofang Wang et al. 2025. Genome-wide identification, evolution, and expression and metabolic regulation of the maize CHS gene family under abiotic stress. BMC Genomics. 26:581.     Reference: July 2nd, 2025
Gene Product: September 1st, 2003
4 months agochls4 chalcone synthase4:
 
AC191551.3_FG003
Zm00001d040497
Zm00001eb129240
Xiaofang Wang et al. 2025. Genome-wide identification, evolution, and expression and metabolic regulation of the maize CHS gene family under abiotic stress. BMC Genomics. 26:581.     Reference: July 2nd, 2025
Gene Product: September 1st, 2003
4 months agochls5 chalcone synthase5:
 
GRMZM2G435393
Zm00001d040479
Zm00001eb129120
Xiaofang Wang et al. 2025. Genome-wide identification, evolution, and expression and metabolic regulation of the maize CHS gene family under abiotic stress. BMC Genomics. 26:581.     Reference: July 2nd, 2025
Gene Product: September 1st, 2003
4 months agochls6 chalcone synthase6:
 
GRMZM2G346095
Zm00001d016014
Zm00001eb237560
Xiaofang Wang et al. 2025. Genome-wide identification, evolution, and expression and metabolic regulation of the maize CHS gene family under abiotic stress. BMC Genomics. 26:581.     Reference: July 2nd, 2025
Gene Product: September 1st, 2003
4 months agochls7 chalcone synthase7:
 
GRMZM2G009348
Zm00001d052676
Zm00001eb198080
Xiaofang Wang et al. 2025. Genome-wide identification, evolution, and expression and metabolic regulation of the maize CHS gene family under abiotic stress. BMC Genomics. 26:581.     Reference: July 2nd, 2025
Gene Product: September 1st, 2003
4 months agochls8 chalcone synthase8:
 
GRMZM2G009510
Zm00001eb198050
Xiaofang Wang et al. 2025. Genome-wide identification, evolution, and expression and metabolic regulation of the maize CHS gene family under abiotic stress. BMC Genomics. 26:581.     Reference: July 2nd, 2025
Gene Product: September 1st, 2003
4 months agochls9 chalcone synthase9:
 
GRMZM2G027130
Zm00001d007400
Zm00001eb113410
Xiaofang Wang et al. 2025. Genome-wide identification, evolution, and expression and metabolic regulation of the maize CHS gene family under abiotic stress. BMC Genomics. 26:581.     Reference: July 2nd, 2025
Gene Product: September 1st, 2003
4 months agochls10 chalcone synthase10:
 
GRMZM2G114471
Zm00001d052916
Zm00001eb200040
Xiaofang Wang et al. 2025. Genome-wide identification, evolution, and expression and metabolic regulation of the maize CHS gene family under abiotic stress. BMC Genomics. 26:581.     Reference: July 2nd, 2025
Gene Product: September 1st, 2003
4 months agochls11 chalcone synthase11:
 
GRMZM2G477683
Zm00001d013991
Zm00001eb221390
Xiaofang Wang et al. 2025. Genome-wide identification, evolution, and expression and metabolic regulation of the maize CHS gene family under abiotic stress. BMC Genomics. 26:581.     Reference: July 2nd, 2025
Gene Product: September 1st, 2003
4 months agochls2 chalcone synthase2:
 
GRMZM2G380650
Zm00001d032662
Zm00001eb045460
Xiaofang Wang et al. 2025. Genome-wide identification, evolution, and expression and metabolic regulation of the maize CHS gene family under abiotic stress. BMC Genomics. 26:581.     Reference: July 2nd, 2025
Gene Product: September 1st, 2003
4 months agoga2ox14 gibberellin 2-oxidase14:
 
GRMZM2G320167
Zm00001d035994
Zm00001eb269370
Weijian Qi et al. 2025. Comprehensive analysis of ZmGAox gene family in maize (Zea mays L.) reveals novel structural features and evolutionary patterns under positive selection Genet Resour Crop Evol. :doi: 10.1007/s10722-025-02478-w.     Reference: July 2nd, 2025
Gene Product: October 27th, 2014
4 months agoga2ox15 gibberellin 2-oxidase15:
 
AC215639.3_FG002
Zm00001d024175
Zm00001eb412670
Weijian Qi et al. 2025. Comprehensive analysis of ZmGAox gene family in maize (Zea mays L.) reveals novel structural features and evolutionary patterns under positive selection Genet Resour Crop Evol. :doi: 10.1007/s10722-025-02478-w.     Reference: July 2nd, 2025
Gene Product: October 27th, 2014
4 months agoga20ox9 gibberellin 20-oxidase9:
 
GRMZM2G127668
Zm00001d026431
Zm00001eb431960
Weijian Qi et al. 2025. Comprehensive analysis of ZmGAox gene family in maize (Zea mays L.) reveals novel structural features and evolutionary patterns under positive selection Genet Resour Crop Evol. :doi: 10.1007/s10722-025-02478-w.     Reference: July 2nd, 2025
Gene Product: October 28th, 2014
4 months agocesa16 cellulose synthase16:
 
GRMZM2G405567
Zm00001d018032
Zm00001eb254480
Yao He et al. 2025. Transcriptome and co-expression network analysis reveal the genetic basis of cell wall components in maize stalks. BMC Genomics. 26:620.     Reference: July 2nd, 2025
Gene Product: October 7th, 2016
4 months agomkkk21 MAP kinase kinase kinase21:
 
GRMZM2G173965
Zm00001d011656
Zm00001eb360950
Shaoqi Ren et al. 2025. Molecular Mechanisms Underlying Salt Tolerance in Maize: A Combined Transcriptome and Metabolome Analysis Plants. 14:2031.     Reference: July 2nd, 2025
Gene Product: March 14th, 2022
4 months agokcs29 3-ketoacyl-CoA synthase29:
 
GRMZM2G569948
Zm00001d016438
Zm00001eb240620
Xiaofang Wang et al. 2025. Genome-wide identification, evolution, and expression and metabolic regulation of the maize CHS gene family under abiotic stress. BMC Genomics. 26:581.     Reference: July 2nd, 2025
Gene Product: November 1st, 2018
4 months agokcs37 3-ketoacyl-CoA synthase37:
 
GRMZM2G032095
Zm00001d020206
Zm00001eb310760
Xiaofang Wang et al. 2025. Genome-wide identification, evolution, and expression and metabolic regulation of the maize CHS gene family under abiotic stress. BMC Genomics. 26:581.     Reference: July 2nd, 2025
Gene Product: November 1st, 2018
Variation: January 11th, 2024
4 months agokcs17 3-ketoacyl-CoA synthase17:
 
GRMZM2G340383
Zm00001d005430
Zm00001eb096730
Xiaofang Wang et al. 2025. Genome-wide identification, evolution, and expression and metabolic regulation of the maize CHS gene family under abiotic stress. BMC Genomics. 26:581.     Reference: July 2nd, 2025
Gene Product: November 1st, 2018
4 months agokcs20 3-ketoacyl-CoA synthase20:
 
GRMZM2G059012
Zm00001d031405
Zm00001eb034600
Xiaofang Wang et al. 2025. Genome-wide identification, evolution, and expression and metabolic regulation of the maize CHS gene family under abiotic stress. BMC Genomics. 26:581.     Reference: July 2nd, 2025
Gene Product: November 1st, 2018
4 months agobxs1 beta-D-xylosidase1:
10.07
GRMZM2G136895
Zm00001d026415
Zm00001eb431850
Yao He et al. 2025. Transcriptome and co-expression network analysis reveal the genetic basis of cell wall components in maize stalks. BMC Genomics. 26:620.   LOC_Os04g54810 (MSU/TIGR) Reference: July 2nd, 2025
Gene Product: May 6th, 2021
4 months agopco142704  :
10.07
GRMZM2G003190
Zm00001d026429
Zm00001eb431950
Xiaofang Wang et al. 2025. Genome-wide identification, evolution, and expression and metabolic regulation of the maize CHS gene family under abiotic stress. BMC Genomics. 26:581.     Reference: July 2nd, 2025
Variation: September 25th, 2007
4 months agoIDP1450  :
2.08
GRMZM5G837251
Zm00001d007323
Zm00001eb112770
Xiaofang Wang et al. 2025. Genome-wide identification, evolution, and expression and metabolic regulation of the maize CHS gene family under abiotic stress. BMC Genomics. 26:581.     Reference: July 2nd, 2025
Variation: March 31st, 2005
4 months agoIDP4025  :
2.05
GRMZM2G065692
Zm00001d004771
Zm00001eb091490
Xiaofang Wang et al. 2025. Genome-wide identification, evolution, and expression and metabolic regulation of the maize CHS gene family under abiotic stress. BMC Genomics. 26:581.     Reference: July 2nd, 2025
Variation: March 31st, 2005
4 months agohppd1 4-hydroxyphenylpyruvate dioxygenase 1:
5.04
GRMZM2G088396
Zm00001d015356
Zm00001eb232960
Zhao, BB et al. 2025. Identification and application of herbicide-resistant 4-hydroxyphenylpyruvate dioxygenase (HPPD) alleles via directed evolution. Plant Biotechnol J. :doi: 10.1111/pbi.70160.     Reference: July 2nd, 2025
Gene Product: June 2nd, 2005
Variation: July 2nd, 2025
4 months agocel14 cellulase14:
2.07
GRMZM2G110735
Zm00001d013319
Zm00001eb215310
Yao He et al. 2025. Transcriptome and co-expression network analysis reveal the genetic basis of cell wall components in maize stalks. BMC Genomics. 26:620.     Reference: July 2nd, 2025
Gene Product: March 20th, 2023
4 months agozim18 ZIM-transcription factor 18:
1.08
GRMZM2G145412
Zm00001d033050
Zm00001eb048780
Shaoqi Ren et al. 2025. Molecular Mechanisms Underlying Salt Tolerance in Maize: A Combined Transcriptome and Metabolome Analysis Plants. 14:2031.     Reference: July 2nd, 2025
Gene Product: February 24th, 2021
4 months agokcs32 3-ketoacyl-CoA synthase32:
1.05
GRMZM2G063024
Zm00001d030343
Zm00001eb026670
Xiaofang Wang et al. 2025. Genome-wide identification, evolution, and expression and metabolic regulation of the maize CHS gene family under abiotic stress. BMC Genomics. 26:581.     Reference: July 2nd, 2025
Gene Product: November 1st, 2018
5 months agozip5 zinc-regulated, iron-regulated transporter-like protein5:
6.04
GRMZM2G064382
Zm00001d036965
Zm00001eb277370
Changkun Ma et al. 2025. Seaweed biostimulant supplementation improves maize resilience to saline-alkaline Plant Stress. :doi: 10.1016/j.stress.2025.100933.     Reference: July 1st, 2025
Gene Product: June 5th, 2019
Variation: September 1st, 2003
5 months agohak1 potassium high-affinity transporter1:
2.04
GRMZM2G093826
Zm00001d003861
Zm00001eb084630
Changkun Ma et al. 2025. Seaweed biostimulant supplementation improves maize resilience to saline-alkaline Plant Stress. :doi: 10.1016/j.stress.2025.100933.     Reference: July 1st, 2025
Gene Product: March 12th, 2020
5 months agonas9 nicotianamine synthase9:
 
GRMZM2G124785
Zm00001d028887
Zm00001eb014680
Changkun Ma et al. 2025. Seaweed biostimulant supplementation improves maize resilience to saline-alkaline Plant Stress. :doi: 10.1016/j.stress.2025.100933.     Reference: July 1st, 2025
Gene Product: July 26th, 2013
5 months agomgt10 magnesium transporter10:
 
GRMZM2G018706
Zm00001d027582
Zm00001eb003090
Changkun Ma et al. 2025. Seaweed biostimulant supplementation improves maize resilience to saline-alkaline Plant Stress. :doi: 10.1016/j.stress.2025.100933.     Reference: July 1st, 2025
Gene Product: April 18th, 2016
5 months agozip1 zinc-regulated, iron-regulated transporter-like protein1:
 
GRMZM2G001803
Zm00001d031764
Zm00001eb037820
Changkun Ma et al. 2025. Seaweed biostimulant supplementation improves maize resilience to saline-alkaline Plant Stress. :doi: 10.1016/j.stress.2025.100933.     Reference: July 1st, 2025
Gene Product: June 5th, 2019
5 months agozip4 zinc-regulated, iron-regulated transporter-like protein4:
 
GRMZM2G111300
Zm00001d049375
Zm00001eb171120
Changkun Ma et al. 2025. Seaweed biostimulant supplementation improves maize resilience to saline-alkaline Plant Stress. :doi: 10.1016/j.stress.2025.100933.     Reference: July 1st, 2025
Gene Product: June 5th, 2019
5 months agozip6 zinc-regulated, iron-regulated transporter-like protein6:
 
GRMZM2G034551
Zm00001d010838
Zm00001eb353960
Changkun Ma et al. 2025. Seaweed biostimulant supplementation improves maize resilience to saline-alkaline Plant Stress. :doi: 10.1016/j.stress.2025.100933.     Reference: July 1st, 2025
Gene Product: June 5th, 2019
5 months agozip7 zinc-regulated, iron-regulated transporter-like protein7:
 
GRMZM2G015955
Zm00001d037756
Zm00001eb284160
Changkun Ma et al. 2025. Seaweed biostimulant supplementation improves maize resilience to saline-alkaline Plant Stress. :doi: 10.1016/j.stress.2025.100933.     Reference: July 1st, 2025
Gene Product: June 5th, 2019
5 months agoirt1 iron-regulated transporter1:
 
GRMZM2G118821
Zm00001d033446
Zm00001eb052440
Changkun Ma et al. 2025. Seaweed biostimulant supplementation improves maize resilience to saline-alkaline Plant Stress. :doi: 10.1016/j.stress.2025.100933.     Reference: July 1st, 2025
Gene Product: June 5th, 2019
5 months agozip9 zinc-regulated, iron-regulated transporter-like protein9:
 
GRMZM2G050484
Zm00001d053665
Zm00001eb205960
Changkun Ma et al. 2025. Seaweed biostimulant supplementation improves maize resilience to saline-alkaline Plant Stress. :doi: 10.1016/j.stress.2025.100933.     Reference: July 1st, 2025
Gene Product: June 5th, 2019
5 months agoirt2 iron-regulated transporter2:
 
GRMZM2G115190
Zm00001eb065410
Changkun Ma et al. 2025. Seaweed biostimulant supplementation improves maize resilience to saline-alkaline Plant Stress. :doi: 10.1016/j.stress.2025.100933.     Reference: July 1st, 2025
Gene Product: June 5th, 2019
5 months agonhx1 Na+/H+ antiporter 1:
 
GRMZM2G037342
Zm00001d048732
Zm00001eb165870
Changkun Ma et al. 2025. Seaweed biostimulant supplementation improves maize resilience to saline-alkaline Plant Stress. :doi: 10.1016/j.stress.2025.100933.     Reference: July 1st, 2025
Gene Product: April 26th, 2021
5 months agohipp61 heavy metal-associated isoprenylated plant protein61:
 
GRMZM2G122437
Zm00001d025241
Zm00001eb421180
Chunyan Gao et al. 2025. Genome-Wide Analysis of HIPP Gene Family in Maize Reveals Its Role in the Cadmium Stress Response Genes. 16:770.     Reference: June 30th, 2025
Gene Product: February 12th, 2022
5 months agohipp35 heavy metal-associated isoprenylated plant protein35:
 
GRMZM2G371486
Zm00001d051472
Zm00001eb187380
Chunyan Gao et al. 2025. Genome-Wide Analysis of HIPP Gene Family in Maize Reveals Its Role in the Cadmium Stress Response Genes. 16:770.     Reference: June 30th, 2025
Gene Product: February 12th, 2022
5 months agohipp15 heavy metal-associated isoprenylated plant protein15:
 
   Chunyan Gao et al. 2025. Genome-Wide Analysis of HIPP Gene Family in Maize Reveals Its Role in the Cadmium Stress Response Genes. 16:770.     Reference: June 30th, 2025
Gene Product: February 12th, 2022
5 months agohipp51 heavy metal-associated isoprenylated plant protein51:
 
   Chunyan Gao et al. 2025. Genome-Wide Analysis of HIPP Gene Family in Maize Reveals Its Role in the Cadmium Stress Response Genes. 16:770.     Reference: June 30th, 2025
Gene Product: February 12th, 2022
5 months agohipp24 heavy metal-associated isoprenylated plant protein24:
 
   Chunyan Gao et al. 2025. Genome-Wide Analysis of HIPP Gene Family in Maize Reveals Its Role in the Cadmium Stress Response Genes. 16:770.     Reference: June 30th, 2025
Gene Product: February 12th, 2022
5 months agohipp2 heavy metal-associated isoprenylated plant protein2:
 
   Chunyan Gao et al. 2025. Genome-Wide Analysis of HIPP Gene Family in Maize Reveals Its Role in the Cadmium Stress Response Genes. 16:770.     Reference: June 30th, 2025
Gene Product: February 12th, 2022
5 months agohipp4 heavy metal-associated isoprenylated plant protein4:
 
   Chunyan Gao et al. 2025. Genome-Wide Analysis of HIPP Gene Family in Maize Reveals Its Role in the Cadmium Stress Response Genes. 16:770.     Reference: June 30th, 2025
Gene Product: February 12th, 2022
5 months agohipp7 heavy metal-associated isoprenylated plant protein7:
 
   Chunyan Gao et al. 2025. Genome-Wide Analysis of HIPP Gene Family in Maize Reveals Its Role in the Cadmium Stress Response Genes. 16:770.     Reference: June 30th, 2025
Gene Product: February 12th, 2022
5 months agohipp8 heavy metal-associated isoprenylated plant protein8:
 
   Chunyan Gao et al. 2025. Genome-Wide Analysis of HIPP Gene Family in Maize Reveals Its Role in the Cadmium Stress Response Genes. 16:770.     Reference: June 30th, 2025
Gene Product: February 12th, 2022
5 months agohipp13 heavy metal-associated isoprenylated plant protein13:
 
   Chunyan Gao et al. 2025. Genome-Wide Analysis of HIPP Gene Family in Maize Reveals Its Role in the Cadmium Stress Response Genes. 16:770.     Reference: June 30th, 2025
Gene Product: February 12th, 2022
5 months agohipp14 heavy metal-associated isoprenylated plant protein14:
 
   Chunyan Gao et al. 2025. Genome-Wide Analysis of HIPP Gene Family in Maize Reveals Its Role in the Cadmium Stress Response Genes. 16:770.     Reference: June 30th, 2025
Gene Product: February 12th, 2022
5 months agohipp17 heavy metal-associated isoprenylated plant protein17:
 
   Chunyan Gao et al. 2025. Genome-Wide Analysis of HIPP Gene Family in Maize Reveals Its Role in the Cadmium Stress Response Genes. 16:770.     Reference: June 30th, 2025
Gene Product: February 12th, 2022
5 months agohipp18 heavy metal-associated isoprenylated plant protein18:
 
   Chunyan Gao et al. 2025. Genome-Wide Analysis of HIPP Gene Family in Maize Reveals Its Role in the Cadmium Stress Response Genes. 16:770.     Reference: June 30th, 2025
Gene Product: February 12th, 2022
5 months agohipp23 heavy metal-associated isoprenylated plant protein23:
 
   Chunyan Gao et al. 2025. Genome-Wide Analysis of HIPP Gene Family in Maize Reveals Its Role in the Cadmium Stress Response Genes. 16:770.     Reference: June 30th, 2025
Gene Product: February 12th, 2022
5 months agohipp25 heavy metal-associated isoprenylated plant protein25:
 
   Chunyan Gao et al. 2025. Genome-Wide Analysis of HIPP Gene Family in Maize Reveals Its Role in the Cadmium Stress Response Genes. 16:770.     Reference: June 30th, 2025
Gene Product: February 12th, 2022
5 months agohipp27 heavy metal-associated isoprenylated plant protein27:
 
   Chunyan Gao et al. 2025. Genome-Wide Analysis of HIPP Gene Family in Maize Reveals Its Role in the Cadmium Stress Response Genes. 16:770.     Reference: June 30th, 2025
Gene Product: February 12th, 2022
5 months agohipp28 heavy metal-associated isoprenylated plant protein28:
 
   Chunyan Gao et al. 2025. Genome-Wide Analysis of HIPP Gene Family in Maize Reveals Its Role in the Cadmium Stress Response Genes. 16:770.     Reference: June 30th, 2025
Gene Product: February 12th, 2022
5 months agohipp29 heavy metal-associated isoprenylated plant protein29:
 
   Chunyan Gao et al. 2025. Genome-Wide Analysis of HIPP Gene Family in Maize Reveals Its Role in the Cadmium Stress Response Genes. 16:770.     Reference: June 30th, 2025
Gene Product: February 12th, 2022
5 months agohipp31 heavy metal-associated isoprenylated plant protein31:
 
   Chunyan Gao et al. 2025. Genome-Wide Analysis of HIPP Gene Family in Maize Reveals Its Role in the Cadmium Stress Response Genes. 16:770.     Reference: June 30th, 2025
Gene Product: February 12th, 2022
5 months agohipp32 heavy metal-associated isoprenylated plant protein32:
 
   Chunyan Gao et al. 2025. Genome-Wide Analysis of HIPP Gene Family in Maize Reveals Its Role in the Cadmium Stress Response Genes. 16:770.     Reference: June 30th, 2025
Gene Product: February 12th, 2022
5 months agohipp34 heavy metal-associated isoprenylated plant protein34:
 
   Chunyan Gao et al. 2025. Genome-Wide Analysis of HIPP Gene Family in Maize Reveals Its Role in the Cadmium Stress Response Genes. 16:770.     Reference: June 30th, 2025
Gene Product: February 12th, 2022
5 months agohipp38 heavy metal-associated isoprenylated plant protein38:
 
   Chunyan Gao et al. 2025. Genome-Wide Analysis of HIPP Gene Family in Maize Reveals Its Role in the Cadmium Stress Response Genes. 16:770.     Reference: June 30th, 2025
Gene Product: February 12th, 2022
5 months agohipp39 heavy metal-associated isoprenylated plant protein39:
 
   Chunyan Gao et al. 2025. Genome-Wide Analysis of HIPP Gene Family in Maize Reveals Its Role in the Cadmium Stress Response Genes. 16:770.     Reference: June 30th, 2025
Gene Product: February 12th, 2022
5 months agohipp40 heavy metal-associated isoprenylated plant protein40:
 
   Chunyan Gao et al. 2025. Genome-Wide Analysis of HIPP Gene Family in Maize Reveals Its Role in the Cadmium Stress Response Genes. 16:770.     Reference: June 30th, 2025
Gene Product: February 12th, 2022
5 months agohipp41 heavy metal-associated isoprenylated plant protein41:
 
   Chunyan Gao et al. 2025. Genome-Wide Analysis of HIPP Gene Family in Maize Reveals Its Role in the Cadmium Stress Response Genes. 16:770.     Reference: June 30th, 2025
Gene Product: February 12th, 2022
5 months agohipp42 heavy metal-associated isoprenylated plant protein42:
 
   Chunyan Gao et al. 2025. Genome-Wide Analysis of HIPP Gene Family in Maize Reveals Its Role in the Cadmium Stress Response Genes. 16:770.     Reference: June 30th, 2025
Gene Product: February 12th, 2022
5 months agohipp43 heavy metal-associated isoprenylated plant protein43:
 
   Chunyan Gao et al. 2025. Genome-Wide Analysis of HIPP Gene Family in Maize Reveals Its Role in the Cadmium Stress Response Genes. 16:770.     Reference: June 30th, 2025
Gene Product: February 12th, 2022
5 months agohipp44 heavy metal-associated isoprenylated plant protein44:
 
   Chunyan Gao et al. 2025. Genome-Wide Analysis of HIPP Gene Family in Maize Reveals Its Role in the Cadmium Stress Response Genes. 16:770.     Reference: June 30th, 2025
Gene Product: February 12th, 2022
5 months agohipp46 heavy metal-associated isoprenylated plant protein46:
 
   Chunyan Gao et al. 2025. Genome-Wide Analysis of HIPP Gene Family in Maize Reveals Its Role in the Cadmium Stress Response Genes. 16:770.     Reference: June 30th, 2025
Gene Product: February 12th, 2022
5 months agohipp49 heavy metal-associated isoprenylated plant protein49:
 
   Chunyan Gao et al. 2025. Genome-Wide Analysis of HIPP Gene Family in Maize Reveals Its Role in the Cadmium Stress Response Genes. 16:770.     Reference: June 30th, 2025
Gene Product: February 12th, 2022
5 months agohipp50 heavy metal-associated isoprenylated plant protein50:
 
   Chunyan Gao et al. 2025. Genome-Wide Analysis of HIPP Gene Family in Maize Reveals Its Role in the Cadmium Stress Response Genes. 16:770.     Reference: June 30th, 2025
Gene Product: February 12th, 2022
5 months agohipp52 heavy metal-associated isoprenylated plant protein52:
 
   Chunyan Gao et al. 2025. Genome-Wide Analysis of HIPP Gene Family in Maize Reveals Its Role in the Cadmium Stress Response Genes. 16:770.     Reference: June 30th, 2025
Gene Product: February 12th, 2022
5 months agohipp53 heavy metal-associated isoprenylated plant protein53:
 
   Chunyan Gao et al. 2025. Genome-Wide Analysis of HIPP Gene Family in Maize Reveals Its Role in the Cadmium Stress Response Genes. 16:770.     Reference: June 30th, 2025
Gene Product: February 12th, 2022
5 months agohipp54 heavy metal-associated isoprenylated plant protein54:
 
   Chunyan Gao et al. 2025. Genome-Wide Analysis of HIPP Gene Family in Maize Reveals Its Role in the Cadmium Stress Response Genes. 16:770.     Reference: June 30th, 2025
Gene Product: February 12th, 2022
5 months agohipp57 heavy metal-associated isoprenylated plant protein57:
 
   Chunyan Gao et al. 2025. Genome-Wide Analysis of HIPP Gene Family in Maize Reveals Its Role in the Cadmium Stress Response Genes. 16:770.     Reference: June 30th, 2025
Gene Product: February 12th, 2022
5 months agohipp59 heavy metal-associated isoprenylated plant protein59:
 
   Chunyan Gao et al. 2025. Genome-Wide Analysis of HIPP Gene Family in Maize Reveals Its Role in the Cadmium Stress Response Genes. 16:770.     Reference: June 30th, 2025
Gene Product: February 12th, 2022
5 months agohipp62 heavy metal-associated isoprenylated plant protein62:
 
   Chunyan Gao et al. 2025. Genome-Wide Analysis of HIPP Gene Family in Maize Reveals Its Role in the Cadmium Stress Response Genes. 16:770.     Reference: June 30th, 2025
Gene Product: February 12th, 2022
5 months agohipp64 heavy metal-associated isoprenylated plant protein64:
 
   Chunyan Gao et al. 2025. Genome-Wide Analysis of HIPP Gene Family in Maize Reveals Its Role in the Cadmium Stress Response Genes. 16:770.     Reference: June 30th, 2025
Gene Product: February 12th, 2022
5 months agohipp66 heavy metal-associated isoprenylated plant protein66:
 
   Chunyan Gao et al. 2025. Genome-Wide Analysis of HIPP Gene Family in Maize Reveals Its Role in the Cadmium Stress Response Genes. 16:770.     Reference: June 30th, 2025
Gene Product: February 12th, 2022
5 months agohipp36 heavy metal-associated isoprenylated plant protein36:
4.08
GRMZM2G104041
Zm00001d052760
Zm00001eb198790
Chunyan Gao et al. 2025. Genome-Wide Analysis of HIPP Gene Family in Maize Reveals Its Role in the Cadmium Stress Response Genes. 16:770.     Reference: June 30th, 2025
Gene Product: February 12th, 2022
5 months agohipp45 heavy metal-associated isoprenylated plant protein45:
5.05
GRMZM5G882364
Zm00001d017014
Zm00001eb245490
Chunyan Gao et al. 2025. Genome-Wide Analysis of HIPP Gene Family in Maize Reveals Its Role in the Cadmium Stress Response Genes. 16:770.     Reference: June 30th, 2025
Gene Product: February 12th, 2022
5 months agohipp33 heavy metal-associated isoprenylated plant protein33:
3.08
GRMZM2G092867
Zm00001d043868
Zm00001eb156800
Chunyan Gao et al. 2025. Genome-Wide Analysis of HIPP Gene Family in Maize Reveals Its Role in the Cadmium Stress Response Genes. 16:770.     Reference: June 30th, 2025
Gene Product: February 12th, 2022
5 months agohipp3 heavy metal-associated isoprenylated plant protein3:
1.04
GRMZM2G075502
Zm00001d029126
Zm00001eb016620
Chunyan Gao et al. 2025. Genome-Wide Analysis of HIPP Gene Family in Maize Reveals Its Role in the Cadmium Stress Response Genes. 16:770.     Reference: June 30th, 2025
Gene Product: February 12th, 2022
5 months agohipp60 heavy metal-associated isoprenylated plant protein60:
10.01 - 10.02
GRMZM2G022318
Zm00001d023372
Zm00001eb406350
Chunyan Gao et al. 2025. Genome-Wide Analysis of HIPP Gene Family in Maize Reveals Its Role in the Cadmium Stress Response Genes. 16:770.     Reference: June 30th, 2025
Gene Product: February 12th, 2022
Variation: September 1st, 2003
5 months agohipp11 heavy metal-associated isoprenylated plant protein11:
2.01
GRMZM2G043932
Zm00001d001915
Zm00001eb066960
Chunyan Gao et al. 2025. Genome-Wide Analysis of HIPP Gene Family in Maize Reveals Its Role in the Cadmium Stress Response Genes. 16:770.     Reference: June 30th, 2025
Gene Product: February 12th, 2022
5 months agohipp1 heavy metal-associated isoprenylated plant protein1:
2.05
GRMZM2G092581
Zm00001d004931
Zm00001eb092880
Chunyan Gao et al. 2025. Genome-Wide Analysis of HIPP Gene Family in Maize Reveals Its Role in the Cadmium Stress Response Genes. 16:770.     Reference: June 30th, 2025
Gene Product: February 12th, 2022
Variation: February 12th, 2022
5 months agohipp21 heavy metal-associated isoprenylated plant protein21:
2.05
GRMZM2G085086
Zm00001d004138
Zm00001eb086700
Chunyan Gao et al. 2025. Genome-Wide Analysis of HIPP Gene Family in Maize Reveals Its Role in the Cadmium Stress Response Genes. 16:770.     Reference: June 30th, 2025
Gene Product: February 12th, 2022
Variation: November 3rd, 2017
5 months agohipp55 heavy metal-associated isoprenylated plant protein55:
8.01
GRMZM2G049781
Zm00001d008515
Zm00001eb334940
Chunyan Gao et al. 2025. Genome-Wide Analysis of HIPP Gene Family in Maize Reveals Its Role in the Cadmium Stress Response Genes. 16:770.     Reference: June 30th, 2025
Gene Product: February 12th, 2022
Variation: September 1st, 2003
5 months agohipp9 heavy metal-associated isoprenylated plant protein9:
1.08
GRMZM2G008290
Zm00001d032873
Zm00001eb047280
Chunyan Gao et al. 2025. Genome-Wide Analysis of HIPP Gene Family in Maize Reveals Its Role in the Cadmium Stress Response Genes. 16:770.     Reference: June 30th, 2025
Gene Product: February 12th, 2022
Variation: January 4th, 2017
5 months agohipp48 heavy metal-associated isoprenylated plant protein48:
6.00
GRMZM2G059836
Zm00001d034978
Zm00001eb259960
Chunyan Gao et al. 2025. Genome-Wide Analysis of HIPP Gene Family in Maize Reveals Its Role in the Cadmium Stress Response Genes. 16:770.     Reference: June 30th, 2025
Gene Product: February 12th, 2022
5 months agohipp56 heavy metal-associated isoprenylated plant protein56:
8.06
GRMZM2G054341
Zm00001d011955
Zm00001eb363820
Chunyan Gao et al. 2025. Genome-Wide Analysis of HIPP Gene Family in Maize Reveals Its Role in the Cadmium Stress Response Genes. 16:770.     Reference: June 30th, 2025
Gene Product: February 12th, 2022
Variation: September 23rd, 2018
5 months agomde1 mouse DNA EBV homolog1:
2.04
GRMZM2G155281
Zm00001d003945
Zm00001eb085330
Chunyan Gao et al. 2025. Genome-Wide Analysis of HIPP Gene Family in Maize Reveals Its Role in the Cadmium Stress Response Genes. 16:770.     Reference: June 30th, 2025
Gene Product: February 12th, 2022
Variation: August 23rd, 2014
5 months agomib1 metal ion binding1:
1.01
GRMZM2G136859
Zm00001d027405
Zm00001eb001530
Chunyan Gao et al. 2025. Genome-Wide Analysis of HIPP Gene Family in Maize Reveals Its Role in the Cadmium Stress Response Genes. 16:770.     Reference: June 30th, 2025
Gene Product: February 12th, 2022
Variation: May 5th, 2011
5 months agohipp10 heavy metal-associated isoprenylated plant protein10:
1.10
GRMZM2G058032
Zm00001d034037
Zm00001eb057470
Chunyan Gao et al. 2025. Genome-Wide Analysis of HIPP Gene Family in Maize Reveals Its Role in the Cadmium Stress Response Genes. 16:770.     Reference: June 30th, 2025
Gene Product: February 12th, 2022
5 months agohipp26 heavy metal-associated isoprenylated plant protein26:
3.04
GRMZM2G055999
Zm00001d040040
Zm00001eb125730
Chunyan Gao et al. 2025. Genome-Wide Analysis of HIPP Gene Family in Maize Reveals Its Role in the Cadmium Stress Response Genes. 16:770.     Reference: June 30th, 2025
Gene Product: February 12th, 2022
5 months agohipp16 heavy metal-associated isoprenylated plant protein16:
 
GRMZM2G022637
Zm00001d003363
Zm00001eb080210
Chunyan Gao et al. 2025. Genome-Wide Analysis of HIPP Gene Family in Maize Reveals Its Role in the Cadmium Stress Response Genes. 16:770.     Reference: June 30th, 2025
Gene Product: February 12th, 2022
5 months agohipp63 heavy metal-associated isoprenylated plant protein63:
 
GRMZM2G169726
Zm00001d025654
Zm00001eb424580
Chunyan Gao et al. 2025. Genome-Wide Analysis of HIPP Gene Family in Maize Reveals Its Role in the Cadmium Stress Response Genes. 16:770.     Reference: June 30th, 2025
Gene Product: February 12th, 2022
5 months agohipp30 heavy metal-associated isoprenylated plant protein30:
3.05
GRMZM5G822137
Zm00001d042225
Zm00001eb142250
Chunyan Gao et al. 2025. Genome-Wide Analysis of HIPP Gene Family in Maize Reveals Its Role in the Cadmium Stress Response Genes. 16:770.     Reference: June 30th, 2025
Gene Product: February 12th, 2022
Variation: March 31st, 2005
5 months agohipp37 heavy metal-associated isoprenylated plant protein37:
4.09
GRMZM2G174673
Zm00001d053438
Zm00001eb204480
Chunyan Gao et al. 2025. Genome-Wide Analysis of HIPP Gene Family in Maize Reveals Its Role in the Cadmium Stress Response Genes. 16:770.     Reference: June 30th, 2025
Gene Product: February 12th, 2022
5 months agohipp58 heavy metal-associated isoprenylated plant protein58:
9.05
GRMZM2G121360
Zm00001d047492
Zm00001eb394840
Chunyan Gao et al. 2025. Genome-Wide Analysis of HIPP Gene Family in Maize Reveals Its Role in the Cadmium Stress Response Genes. 16:770.     Reference: June 30th, 2025
Gene Product: February 12th, 2022
5 months agoconr1 concentric ring1:
2.04
GRMZM2G014695
Zm00001d003866
Zm00001eb084690
Chunyan Gao et al. 2025. Genome-Wide Analysis of HIPP Gene Family in Maize Reveals Its Role in the Cadmium Stress Response Genes. 16:770.     Reference: June 30th, 2025
Gene Product: February 12th, 2022
Variation: August 4th, 2020
5 months agohipp5 heavy metal-associated isoprenylated plant protein5:
1.04
GRMZM2G313009
Zm00001d029499
Zm00001eb019850
Zm00001eb019860
Chunyan Gao et al. 2025. Genome-Wide Analysis of HIPP Gene Family in Maize Reveals Its Role in the Cadmium Stress Response Genes. 16:770.     Reference: June 30th, 2025
Gene Product: February 12th, 2022
5 months agobrk3 brick3:
10.01 - 10.02
GRMZM2G180150
GRMZM5G886363
Zm00001d023262
Zm00001eb405230
Ronglan Li et al. 2025. Genetic Dissection of Drought Tolerance in Maize Through GWAS of Agronomic Traits, Stress Tolerance Indices, and Phenotypic Plasticity Int J Mol Sci. 26:6285.   AT2G35110 (TAIR)
Os08G0544500 (Gramene)
Reference: June 29th, 2025
Gene Product: August 12th, 2015
Variation: March 6th, 2024
5 months agowrky87 WRKY-transcription factor 87:
 
GRMZM2G027972
Zm00001d052847
Zm00001eb199530
Ronglan Li et al. 2025. Genetic Dissection of Drought Tolerance in Maize Through GWAS of Agronomic Traits, Stress Tolerance Indices, and Phenotypic Plasticity Int J Mol Sci. 26:6285.     Reference: June 29th, 2025
Variation: November 21st, 2024
5 months agopyl10 pyrabactin resistance-like protein10:
 
GRMZM2G063882
Zm00001d016105
Zm00001eb238230
Ronglan Li et al. 2025. Genetic Dissection of Drought Tolerance in Maize Through GWAS of Agronomic Traits, Stress Tolerance Indices, and Phenotypic Plasticity Int J Mol Sci. 26:6285.     Reference: June 29th, 2025
Gene Product: January 31st, 2021
5 months agodrg10 dark response gene10:
 
GRMZM2G107199
Zm00001d003349
Zm00001eb080110
Sandhu, J et al. 2025. A core genetic mechanism integrates growth hormone signals to control meristem fate and inflorescence architecture in setaria and maize bioRxiv preprint. :doi: 10.1101/2025.06.27.660957.     Reference: June 29th, 2025
Variation: January 25th, 2021
5 months agoereb237 AP2-EREBP-transcription factor 237:
9.03
Zm00001d046501
Zm00001eb386280
Ronglan Li et al. 2025. Genetic Dissection of Drought Tolerance in Maize Through GWAS of Agronomic Traits, Stress Tolerance Indices, and Phenotypic Plasticity Int J Mol Sci. 26:6285.   AT5G25390 (TAIR) Reference: June 29th, 2025
Gene Product: July 5th, 2019
5 months agotip4c tonoplast intrinsic protein4:
3.04
GRMZM2G146627
Zm00001d039713
Zm00001eb123230
Adrienne HK Roeder et al. 2025. Translational Insights into Abiotic Interactions: From Arabidopsis to Crop Plants. Plant Cell. :doi: 10.1093/plcell/koaf140.     Reference: June 28th, 2025
Gene Product: January 27th, 2022
Variation: July 18th, 2024
5 months agodof1 DNA-binding with one finger1:
1.06
Zm00001d031278
Zm00001eb033670
Adrienne HK Roeder et al. 2025. Translational Insights into Abiotic Interactions: From Arabidopsis to Crop Plants. Plant Cell. :doi: 10.1093/plcell/koaf140.     Reference: June 28th, 2025
Gene Product: September 1st, 2003
Variation: September 1st, 2003
5 months agomdh11 malate dehydrogenase11:
 
GRMZM2G035767
Zm00001d019330
Zm00001eb304640
Muhammad Umair Yasin et al. 2025. Nano-engineered biochar enhances soil microbial interactions and maize transcriptomic pathways for cadmium detoxification. J Hazard Mater. 495:139029.     Reference: June 27th, 2025
Gene Product: September 1st, 2003
5 months agopdcb42 plasmodesmata callose binding protein42:
 
GRMZM2G431039
Zm00001d021695
Zm00001eb323370
Muhammad Umair Yasin et al. 2025. Nano-engineered biochar enhances soil microbial interactions and maize transcriptomic pathways for cadmium detoxification. J Hazard Mater. 495:139029.     Reference: June 27th, 2025
Gene Product: August 21st, 2024
5 months agoZm00001eb073500  :
 
GRMZM2G086210
Zm00001d002613
Zm00001eb073500
An, XL et al. 2023. CRISPR/Cas9-based genome editing of 14 lipid metabolic genes reveals a sporopollenin metabolon ZmPKSB-ZmTKPR1-1/-2 required for pollen exine formation in maize. Plant Biotechnol J. :doi: 10.1111/pbi.14181.   AT1G12570 (TAIR) Reference: April 26th, 2024
Gene Product: June 27th, 2025
5 months agoZm00001eb250600  :
 
GRMZM2G166906
Zm00001d017598
Zm00001eb250600
Zhongtian Zheng et al. 2024. Integrative transcriptome analysis uncovers common components containing CPS2 regulated by maize lncRNA GARR2 in gibberellin response. Planta. 259:146.   AT1G12570 (TAIR) Reference: May 7th, 2024
Gene Product: June 27th, 2025
5 months agohth2 hothead2:
 
   Castorina, G et al. 2025. Genetic interaction between GL15 and FDL1 modulates juvenile cuticle deposition and leaf permeability in maize. J Exp Bot. :doi: 10.1093/jxb/eraf265.   AT1G72970 (TAIR)
LOC_Os08g31030 (MSU/TIGR)
Os08g0401500 (Gramene)
Reference: June 27th, 2025
Gene Product: June 27th, 2025
5 months agohct22 hydroxycinnamoyltransferase22:
 
   Wang, P-X et al. 2025. Integrative Transcriptome and Metabolome Analysis Identifies Potential Pathways Associated with Cadmium Tolerance in Two Maize Inbred Lines. Plants. 14:1853.     Reference: June 27th, 2025
Gene Product: November 7th, 2015
5 months agohth1 hothead1:
 
   Castorina, G et al. 2025. Genetic interaction between GL15 and FDL1 modulates juvenile cuticle deposition and leaf permeability in maize. J Exp Bot. :doi: 10.1093/jxb/eraf265.   AT1G72970 (TAIR)
LOC_Os08g31030 (MSU/TIGR)
Os08g0401500 (Gramene)
Reference: June 27th, 2025
Gene Product: June 27th, 2025
5 months agocipk44 calcineurin B-like-interacting protein kinase44:
3.09
GRMZM2G181081
Zm00001d044642
Zm00001d044644
Zm00001eb163480
Muhammad Umair Yasin et al. 2025. Nano-engineered biochar enhances soil microbial interactions and maize transcriptomic pathways for cadmium detoxification. J Hazard Mater. 495:139029.     Reference: June 27th, 2025
Gene Product: August 25th, 2018
5 months agody1 desynaptic1:
 
   Maguire, MP and Jackson, J. 1998. Two well-known mutants of chiasma maintenance function in maize are allelic. Genome 41:417-421     Reference: June 27th, 2025
Variation: June 21st, 2012
5 months agogl3 glossy3:
4.08
GRMZM2G162434
Zm00001d052397
Zm00001eb195850
Castorina, G et al. 2025. Genetic interaction between GL15 and FDL1 modulates juvenile cuticle deposition and leaf permeability in maize. J Exp Bot. :doi: 10.1093/jxb/eraf265.     Reference: June 27th, 2025
Gene Product: June 2nd, 2012
Variation: June 2nd, 2012
5 months agobnlg2271  :
7.03
GRMZM2G313643
Zm00001d021535
Zm00001eb321900
Muhammad Umair Yasin et al. 2025. Nano-engineered biochar enhances soil microbial interactions and maize transcriptomic pathways for cadmium detoxification. J Hazard Mater. 495:139029.     Reference: June 27th, 2025
Gene Product: April 25th, 2025
Variation: September 1st, 2003
5 months agogeb1 glucan endo-1,3-beta-glucosidase homolog1:
3.05
GRMZM2G065585
Zm00001d042143
Zm00001eb141540
Muhammad Umair Yasin et al. 2025. Nano-engineered biochar enhances soil microbial interactions and maize transcriptomic pathways for cadmium detoxification. J Hazard Mater. 495:139029.     Reference: June 27th, 2025
Gene Product: September 1st, 2003
Variation: September 1st, 2003
5 months agoltpg1 glycosylphosphatidylinositol-anchored lipid protein transfer1:
1.06
GRMZM2G083725
Zm00001d031636
Zm00001eb036750
Liu, X et al. 2020. New Phytol 229:388-402     Reference: June 27th, 2025
Gene Product: September 1st, 2003
Variation: December 2nd, 2016
5 months agoczog1 cis-zeatin O-glucosyltransferase1:
2.03
GRMZM2G168474
Zm00001d000237
Zm00001eb074330
Wang, P-X et al. 2025. Integrative Transcriptome and Metabolome Analysis Identifies Potential Pathways Associated with Cadmium Tolerance in Two Maize Inbred Lines. Plants. 14:1853.     Reference: June 27th, 2025
Gene Product: March 20th, 2014
Variation: October 25th, 2012
5 months agoipt5 isopentenyl transferase5:
5.01
AC210013.4_FG005
Zm00001d013021
Zm00001eb212350
Wang, P-X et al. 2025. Integrative Transcriptome and Metabolome Analysis Identifies Potential Pathways Associated with Cadmium Tolerance in Two Maize Inbred Lines. Plants. 14:1853.     Reference: June 27th, 2025
Gene Product: April 4th, 2025
Variation: September 1st, 2003
5 months agowsd1 wax ester synthase/diacylglycerol acyltransferase1:
3.08
GRMZM2G077375
Zm00001d043853
Zm00001eb156680
Liu, X et al. 2020. New Phytol 229:388-402     Reference: June 27th, 2025
Gene Product: July 23rd, 2018
Variation: September 1st, 2003
5 months agomsh1 male sterile protein homolog1:
4.08
GRMZM2G036217
Zm00001d049950
Zm00001eb176110
Castorina, G et al. 2025. Genetic interaction between GL15 and FDL1 modulates juvenile cuticle deposition and leaf permeability in maize. J Exp Bot. :doi: 10.1093/jxb/eraf265.     Reference: June 27th, 2025
Gene Product: September 1st, 2003
Variation: September 1st, 2003
5 months agosun1 SUN domain protein1:
 
GRMZM2G109818
Zm00001d015450
Zm00001eb233650
Murphy, S et al. 2010. BMC Plant Biology 20:269     Reference: June 27th, 2025
Gene Product: June 27th, 2025
Variation: April 20th, 2011
5 months agosun2 SUN domain protein2:
 
GRMZM2G440614
Zm00001d040331
Zm00001eb128110
Murphy, S et al. 2010. BMC Plant Biology 20:269     Reference: June 27th, 2025
Gene Product: June 27th, 2025
Variation: April 20th, 2011
5 months agosun3 SUN domain protein3:
 
GRMZM2G120262
Zm00001d042643
Zm00001eb145970
Murphy, S et al. 2010. BMC Plant Biology 20:269     Reference: June 27th, 2025
Gene Product: June 27th, 2025
5 months agosun4 SUN domain protein4:
 
GRMZM2G005483
Zm00001d012240
Zm00001eb366390
Murphy, S et al. 2010. BMC Plant Biology 20:269     Reference: June 27th, 2025
Gene Product: June 27th, 2025
Variation: April 20th, 2011
5 months agosun5 SUN domain protein5:
 
AC194341.4_FG003
Zm00001d011277
Zm00001eb357660
Murphy, S et al. 2010. BMC Plant Biology 20:269     Reference: June 27th, 2025
Gene Product: June 27th, 2025
Variation: April 20th, 2011
5 months agogeb2 glucan endo-1,3-beta-glucosidase homolog2:
 
GRMZM2G125032
Zm00001d042140
Zm00001eb141500
Muhammad Umair Yasin et al. 2025. Nano-engineered biochar enhances soil microbial interactions and maize transcriptomic pathways for cadmium detoxification. J Hazard Mater. 495:139029.     Reference: June 27th, 2025
Gene Product: September 1st, 2003
5 months agocer1 eceriferum1:
 
GRMZM2G075255
Zm00001d017251
Zm00001eb247450
Liu, X et al. 2020. New Phytol 229:388-402   AT1G02205 (TAIR) Reference: June 27th, 2025
Gene Product: February 13th, 2020
Variation: May 29th, 2024
5 months agocer2 eceriferum2:
 
GRMZM2G029912
Zm00001d046865
Zm00001eb389050
Liu, X et al. 2020. New Phytol 229:388-402     Reference: June 27th, 2025
Gene Product: February 13th, 2020
5 months agolacs2 long chain acyl-CoA synthetase2:
 
GRMZM2G104847
Zm00001d053127
Zm00001eb201940
Liu, X et al. 2020. New Phytol 229:388-402     Reference: June 27th, 2025
Gene Product: October 31st, 2018
5 months agosaur53 small auxin up RNA53:
 
GRMZM2G379490
Zm00001d015661
Zm00001eb234990
Muhammad Umair Yasin et al. 2025. Nano-engineered biochar enhances soil microbial interactions and maize transcriptomic pathways for cadmium detoxification. J Hazard Mater. 495:139029.     Reference: June 27th, 2025
Gene Product: November 26th, 2021
5 months agoiqd28 IQ-domain 28:
8.06
GRMZM2G024799
Zm00001d012167
Zm00001eb365750
Zhang, X et al. 2025. ZmMYB92 modulates secondary wall cellulose synthesis in maize. Plant J. 122:e70296.     Reference: June 27th, 2025
Gene Product: May 23rd, 2021
Variation: July 5th, 2023
5 months agoplt21 phospholipid transfer protein21:
2.05
GRMZM2G099867
Zm00001d004700
Zm00001eb090910
Muhammad Umair Yasin et al. 2025. Nano-engineered biochar enhances soil microbial interactions and maize transcriptomic pathways for cadmium detoxification. J Hazard Mater. 495:139029.     Reference: June 27th, 2025
Gene Product: September 1st, 2003
5 months agoba2 barren stalk2:
2.04 - 2.05
GRMZM2G399641
Zm00001d003897
Zm00001eb084940
Dresselhaus, T et al. 2025. How meristems shape plant architecture in cereal Plant Cell. :doi: 10.1093/plcell/koaf150.     Reference: June 25th, 2025
Gene Product: January 26th, 2019
Variation: January 26th, 2019
5 months agobaf1 barren stalk fastigiate1:
9.02
GRMZM2G072274
Zm00001d045427
Zm00001eb377840
Dresselhaus, T et al. 2025. How meristems shape plant architecture in cereal Plant Cell. :doi: 10.1093/plcell/koaf150.   LOC_Os06g04540 (MSU/TIGR)
Os06g0136900 (Gramene)
Reference: June 25th, 2025
Gene Product: November 11th, 2017
Variation: August 15th, 2011
5 months agobd1 branched silkless1:
7.05
GRMZM2G307119
Zm00001d022488
Zm00001eb330200
Dresselhaus, T et al. 2025. How meristems shape plant architecture in cereal Plant Cell. :doi: 10.1093/plcell/koaf150.   At5g18560 (TAIR)
LOC_Os01g21820 (MSU/TIGR)
Os07g0669500 (Gramene)
Reference: June 25th, 2025
Gene Product: July 27th, 2009
Variation: August 13th, 2011
5 months agocrr2 cytokinin response regulator2:
10.07
GRMZM2G392101
Zm00001d026594
Zm00001eb433500
Mengfan Qin et al. 2025. Comparative Analysis of Differentially Expressed Genes and Metabolites in Waxy Maize Inbred Lines with Distinct Twin-Shoot Phenotypes Plants. 14:1951.     Reference: June 25th, 2025
Gene Product: June 30th, 2017
Variation: October 1st, 2015
5 months agosbp3 SBP-domain protein3:
6.02
GRMZM2G101499
Zm00001d036692
Zm00001eb274800
Dresselhaus, T et al. 2025. How meristems shape plant architecture in cereal Plant Cell. :doi: 10.1093/plcell/koaf150.     Reference: June 25th, 2025
Gene Product: July 5th, 2019
Variation: September 1st, 2003
5 months agoereb61 AP2-EREBP-transcription factor 61:
 
GRMZM2G475678
Zm00001d002760
Zm00001eb074900
Mengfan Qin et al. 2025. Comparative Analysis of Differentially Expressed Genes and Metabolites in Waxy Maize Inbred Lines with Distinct Twin-Shoot Phenotypes Plants. 14:1951.     Reference: June 25th, 2025
Variation: March 29th, 2021
5 months agowox5a WUSCHEL-homeobox-transcription factor 5A:
 
GRMZM2G478396
Zm00001d012330
Zm00001eb367200
Dresselhaus, T et al. 2025. How meristems shape plant architecture in cereal Plant Cell. :doi: 10.1093/plcell/koaf150.     Reference: June 25th, 2025
Gene Product: August 25th, 2017
5 months agojmj17 JUMONJI-transcription factor 17:
 
GRMZM2G152877
Zm00001d029392
Zm00001eb018970
Yantao Wang et al. 2025. The Structural Deciphering of the α3 Helix Within ZmHsfA2’S DNA-Binding Domain for the Recognition of Heat Shock Elements in Maize Plants. 14:1950.     Reference: June 25th, 2025
Gene Product: April 3rd, 2019
5 months agoaic1 auxin import carrier1:
1.05
GRMZM2G129413
Zm00001d030310
Zm00001eb026490
Mengfan Qin et al. 2025. Comparative Analysis of Differentially Expressed Genes and Metabolites in Waxy Maize Inbred Lines with Distinct Twin-Shoot Phenotypes Plants. 14:1951.   AT2G21050 (TAIR) Reference: June 25th, 2025
Gene Product: September 1st, 2003
Variation: September 1st, 2003
5 months agorrb1 related to retinoblastoma1:
2.09
GRMZM2G003043
Zm00001d007407
Zm00001eb113470
Dresselhaus, T et al. 2025. How meristems shape plant architecture in cereal Plant Cell. :doi: 10.1093/plcell/koaf150.     Reference: June 25th, 2025
Gene Product: September 1st, 2003
Variation: May 19th, 2005
5 months agowox9a WUSCHEL related homeobox 9a:
 
GRMZM2G133972
Zm00001d011537
Zm00001eb359810
Dresselhaus, T et al. 2025. How meristems shape plant architecture in cereal Plant Cell. :doi: 10.1093/plcell/koaf150.     Reference: June 25th, 2025
Gene Product: August 25th, 2017
Variation: January 31st, 2011
5 months agocrr7 cytokinin response regulator7:
 
GRMZM2G096171
Zm00001d050768
Zm00001eb182130
Mengfan Qin et al. 2025. Comparative Analysis of Differentially Expressed Genes and Metabolites in Waxy Maize Inbred Lines with Distinct Twin-Shoot Phenotypes Plants. 14:1951.     Reference: June 25th, 2025
Gene Product: June 30th, 2017
5 months agodlr2 defective in lateral root2:
4.07
GRMZM2G472023
Zm00001d052083
Zm00001eb192940
Daojun Li et al. 2025. Maize ZmDLR2/BRU1 Is Required for Lateral Root Primordium Emergence by Participating in DNA Repair. Plant Cell Environ. :doi: 10.1111/pce.70037.   AT3G18730 (TAIR) Reference: June 25th, 2025
Variation: June 25th, 2025
5 months agoaas13 auxin amido synthetase13:
 
GRMZM2G091276
Zm00001d011377
Zm00001eb358430
Mengfan Qin et al. 2025. Comparative Analysis of Differentially Expressed Genes and Metabolites in Waxy Maize Inbred Lines with Distinct Twin-Shoot Phenotypes Plants. 14:1951.     Reference: June 25th, 2025
Gene Product: October 21st, 2019
5 months agocrr9 cytokinin response regulator9:
 
GRMZM2G129954
Zm00001d023242
Zm00001eb405030
Mengfan Qin et al. 2025. Comparative Analysis of Differentially Expressed Genes and Metabolites in Waxy Maize Inbred Lines with Distinct Twin-Shoot Phenotypes Plants. 14:1951.     Reference: June 25th, 2025
Gene Product: June 30th, 2017
5 months agocnr7 Cell Number Regulator7:
1.11
GRMZM2G119755
Zm00001d034745
Zm00001eb063530
Mengfan Qin et al. 2025. Comparative Analysis of Differentially Expressed Genes and Metabolites in Waxy Maize Inbred Lines with Distinct Twin-Shoot Phenotypes Plants. 14:1951.     Reference: June 25th, 2025
Gene Product: August 10th, 2022
5 months agoereb238 AP2-EREBP-transcription factor 238:
 
GRMZM2G319786
Zm00001d051340
Zm00001eb186380
Li, X et al. 2025. Meta-QTL Analysis and Genes Responsible for Plant and Ear Height in Maize (Zea mays L.) Plants. 14:1943.     Reference: June 24th, 2025
Gene Product: July 5th, 2019
5 months agoexpb18 beta expansin18:
 
GRMZM2G127106
Zm00001d017732
Zm00001eb251730
Li, X et al. 2025. Meta-QTL Analysis and Genes Responsible for Plant and Ear Height in Maize (Zea mays L.) Plants. 14:1943.     Reference: June 24th, 2025
Gene Product: April 24th, 2008
5 months agopin16 PIN-formed protein16:
 
Zm00001d046893
Zm00001eb389260
Li, X et al. 2025. Meta-QTL Analysis and Genes Responsible for Plant and Ear Height in Maize (Zea mays L.) Plants. 14:1943.   AT5G57090 (TAIR) Reference: June 24th, 2025
Gene Product: April 3rd, 2024
5 months agoxth23 xyloglucan endotransglucosylase/hydrolase23:
 
GRMZM2G076157
Zm00001d024392
Zm00001eb414450
Li, X et al. 2025. Meta-QTL Analysis and Genes Responsible for Plant and Ear Height in Maize (Zea mays L.) Plants. 14:1943.     Reference: June 24th, 2025
Gene Product: March 23rd, 2024
5 months agoxth22 xyloglucan endotransglucosylase/hydrolase22:
 
GRMZM2G112619
Zm00001d053320
Zm00001eb203620
Li, X et al. 2025. Meta-QTL Analysis and Genes Responsible for Plant and Ear Height in Maize (Zea mays L.) Plants. 14:1943.     Reference: June 24th, 2025
Gene Product: March 23rd, 2024
5 months agoring350 RING-type E3 ligase350:
 
   Li, X et al. 2025. Meta-QTL Analysis and Genes Responsible for Plant and Ear Height in Maize (Zea mays L.) Plants. 14:1943.     Reference: June 24th, 2025
Gene Product: May 22nd, 2025
5 months agocyc41 cyclin41:
 
   Li, X et al. 2025. Meta-QTL Analysis and Genes Responsible for Plant and Ear Height in Maize (Zea mays L.) Plants. 14:1943.     Reference: June 24th, 2025
Gene Product: February 17th, 2025
5 months agocyp57 cytochrome P450 57:
 
   Li, X et al. 2025. Meta-QTL Analysis and Genes Responsible for Plant and Ear Height in Maize (Zea mays L.) Plants. 14:1943.     Reference: June 24th, 2025
Gene Product: December 30th, 2022
5 months agoZm00001d010247  :
 
   Li, X et al. 2025. Meta-QTL Analysis and Genes Responsible for Plant and Ear Height in Maize (Zea mays L.) Plants. 14:1943.     Reference: June 24th, 2025
Gene Product: August 13th, 2022
5 months agouaz233a(act)  :
8.05
GRMZM2G067985
Zm00001d011086
Zm00001eb356050
Li, X et al. 2025. Meta-QTL Analysis and Genes Responsible for Plant and Ear Height in Maize (Zea mays L.) Plants. 14:1943.     Reference: June 24th, 2025
Gene Product: September 1st, 2003
5 months agoadf1 actin depolymerizing factor1:
7.03
GRMZM2G117603
Zm00001d021497
Zm00001eb321460
Li, X et al. 2025. Meta-QTL Analysis and Genes Responsible for Plant and Ear Height in Maize (Zea mays L.) Plants. 14:1943.     Reference: June 24th, 2025
Gene Product: September 1st, 2003
Variation: July 22nd, 2015
5 months agotub2 beta tubulin2:
8.03
GRMZM2G334899
Zm00001d010275
Zm00001eb349430
Li, X et al. 2025. Meta-QTL Analysis and Genes Responsible for Plant and Ear Height in Maize (Zea mays L.) Plants. 14:1943.     Reference: June 24th, 2025
Gene Product: September 1st, 2003
Variation: January 15th, 2015
5 months agocyc53 cyclin53:
1.05
GRMZM2G329655
Zm00001d030894
Zm00001eb030430
Li, X et al. 2025. Meta-QTL Analysis and Genes Responsible for Plant and Ear Height in Maize (Zea mays L.) Plants. 14:1943.     Reference: June 24th, 2025
Gene Product: February 17th, 2025
Variation: September 1st, 2003
5 months agopet2 photosynthetic electron transport2:
 
GRMZM2G087063
Zm00001d029674
Zm00001eb021390
Li, X et al. 2025. Meta-QTL Analysis and Genes Responsible for Plant and Ear Height in Maize (Zea mays L.) Plants. 14:1943.   At5g52110 (TAIR)
LOC_Os10g37840 (MSU/TIGR)
Os10g0522500 (Gramene)
Reference: June 24th, 2025
Gene Product: May 11th, 2021
Variation: August 19th, 2020
5 months agoarftf2 ARF-transcription factor 2:
 
GRMZM2G153233
Zm00001d032683
Zm00001eb045640
Li, X et al. 2025. Meta-QTL Analysis and Genes Responsible for Plant and Ear Height in Maize (Zea mays L.) Plants. 14:1943.     Reference: June 24th, 2025
Gene Product: January 29th, 2022
5 months agoarftf34 ARF-transcription factor 34:
 
GRMZM2G081158
Zm00001d031064
Zm00001eb031700
Li, X et al. 2025. Meta-QTL Analysis and Genes Responsible for Plant and Ear Height in Maize (Zea mays L.) Plants. 14:1943.     Reference: June 24th, 2025
Gene Product: January 29th, 2022
5 months agobzr6 BZR-transcription factor 6:
 
GRMZM5G868061
Zm00001d039635
Zm00001eb122520
Li, X et al. 2025. Meta-QTL Analysis and Genes Responsible for Plant and Ear Height in Maize (Zea mays L.) Plants. 14:1943.     Reference: June 24th, 2025
Gene Product: May 4th, 2022
5 months agofarl1 FAR1-like-transcription factor 1:
 
GRMZM2G001663
Zm00001d028472
Zm00001eb011070
Li, X et al. 2025. Meta-QTL Analysis and Genes Responsible for Plant and Ear Height in Maize (Zea mays L.) Plants. 14:1943.     Reference: June 24th, 2025
Gene Product: June 28th, 2019
5 months agogar3 gibberellin responsive3:
8.05
GRMZM2G142705
Zm00001d011225
Zm00001eb357250
Li, X et al. 2025. Meta-QTL Analysis and Genes Responsible for Plant and Ear Height in Maize (Zea mays L.) Plants. 14:1943.     Reference: June 24th, 2025
Variation: March 20th, 2021
5 months agocki1 cyclin-dependent kinase inhibitor1:
1.08
GRMZM2G116885
Zm00001d032732
Zm00001eb046080
Li, X et al. 2025. Meta-QTL Analysis and Genes Responsible for Plant and Ear Height in Maize (Zea mays L.) Plants. 14:1943.     Reference: June 24th, 2025
Gene Product: March 8th, 2017
Variation: December 6th, 2016
5 months agotub5 beta tubulin5:
 
GRMZM2G133802
Zm00001d040509
Zm00001eb129360
Li, X et al. 2025. Meta-QTL Analysis and Genes Responsible for Plant and Ear Height in Maize (Zea mays L.) Plants. 14:1943.     Reference: June 24th, 2025
Gene Product: September 1st, 2003
Variation: January 29th, 2011
5 months agosaur67 small auxin up RNA67:
7.03
GRMZM5G835903
Zm00001d021456
Zm00001eb321100
Li, X et al. 2025. Meta-QTL Analysis and Genes Responsible for Plant and Ear Height in Maize (Zea mays L.) Plants. 14:1943.     Reference: June 24th, 2025
Gene Product: November 26th, 2021
5 months agocdc2 cell division control protein homolog2:
1.01
GRMZM2G008327
Zm00001d027373
Zm00001eb001260
Li, X et al. 2025. Meta-QTL Analysis and Genes Responsible for Plant and Ear Height in Maize (Zea mays L.) Plants. 14:1943.   AT3G48750 (TAIR) Reference: June 24th, 2025
Gene Product: October 19th, 2022
Variation: April 23rd, 2010
5 months agochs1 chitin synthase homolog1:
10.03
GRMZM6G007923
Zm00001d023760
Zm00001eb409620
Li, X et al. 2025. Meta-QTL Analysis and Genes Responsible for Plant and Ear Height in Maize (Zea mays L.) Plants. 14:1943.     Reference: June 24th, 2025
Gene Product: September 1st, 2003
Variation: September 1st, 2003
5 months agocyp44 cytochrome P450 44:
 
GRMZM2G162758
Zm00001d032651
Zm00001eb045340
Li, X et al. 2025. Meta-QTL Analysis and Genes Responsible for Plant and Ear Height in Maize (Zea mays L.) Plants. 14:1943.     Reference: June 24th, 2025
Gene Product: December 30th, 2022
5 months agoaic3 auxin import carrier3:
1.03
GRMZM2G149481
Zm00001d028401
Zm00001eb010460
Li, X et al. 2025. Meta-QTL Analysis and Genes Responsible for Plant and Ear Height in Maize (Zea mays L.) Plants. 14:1943.     Reference: June 24th, 2025
Gene Product: April 19th, 2017
5 months agoetr2 ethylene receptor homolog2:
10.04
GRMZM2G420801
Zm00001d025050
Zm00001eb419810
Li, X et al. 2025. Meta-QTL Analysis and Genes Responsible for Plant and Ear Height in Maize (Zea mays L.) Plants. 14:1943.     Reference: June 24th, 2025
Variation: October 2nd, 2015
5 months agoexpb11 beta expansin11:
5.06
GRMZM2G127106
Zm00001d017733
Zm00001eb251740
Li, X et al. 2025. Meta-QTL Analysis and Genes Responsible for Plant and Ear Height in Maize (Zea mays L.) Plants. 14:1943.     Reference: June 24th, 2025
Gene Product: April 24th, 2008
Variation: May 22nd, 2014
5 months agoigps3 indole-3-glycerolphosphate synthase3:
 
GRMZM2G145870
Zm00001d024393
Zm00001eb414460
Li, X et al. 2025. Meta-QTL Analysis and Genes Responsible for Plant and Ear Height in Maize (Zea mays L.) Plants. 14:1943.     Reference: June 24th, 2025
Gene Product: March 29th, 2018
Variation: January 18th, 2021
5 months agoadf7 actin depolymerizing factor7:
 
GRMZM2G463471
Zm00001d051388
Zm00001eb186790
Li, X et al. 2025. Meta-QTL Analysis and Genes Responsible for Plant and Ear Height in Maize (Zea mays L.) Plants. 14:1943.     Reference: June 24th, 2025
Gene Product: March 4th, 2020
5 months agoadf11 actin depolymerizing factor11:
 
GRMZM2G064875
Zm00001d029656
Zm00001eb021290
Li, X et al. 2025. Meta-QTL Analysis and Genes Responsible for Plant and Ear Height in Maize (Zea mays L.) Plants. 14:1943.     Reference: June 24th, 2025
Gene Product: March 4th, 2020
5 months agoadf13 actin depolymerizing factor13:
 
GRMZM2G015127
Zm00001d017516
Zm00001eb249860
Li, X et al. 2025. Meta-QTL Analysis and Genes Responsible for Plant and Ear Height in Maize (Zea mays L.) Plants. 14:1943.     Reference: June 24th, 2025
Gene Product: March 4th, 2020
5 months agoxt2 beta-1,4-xylosyltransferase2:
 
GRMZM2G448834
Zm00001d042281
Zm00001eb142720
Li, X et al. 2025. Meta-QTL Analysis and Genes Responsible for Plant and Ear Height in Maize (Zea mays L.) Plants. 14:1943.     Reference: June 24th, 2025
Gene Product: August 12th, 2022
5 months agoxt5 beta-1,4-xylosyltransferase5:
 
GRMZM5G898668
Zm00001d042276
Zm00001eb142640
Li, X et al. 2025. Meta-QTL Analysis and Genes Responsible for Plant and Ear Height in Maize (Zea mays L.) Plants. 14:1943.     Reference: June 24th, 2025
Gene Product: August 12th, 2022
5 months agopyl13 pyrabactin resistance-like protein13:
 
GRMZM2G048733
Zm00001d053396
Zm00001eb204180
Li, X et al. 2025. Meta-QTL Analysis and Genes Responsible for Plant and Ear Height in Maize (Zea mays L.) Plants. 14:1943.     Reference: June 24th, 2025
Gene Product: January 31st, 2021
5 months agoact11 actin11:
 
GRMZM2G549274
Zm00001d011087
Zm00001eb356050
Li, X et al. 2025. Meta-QTL Analysis and Genes Responsible for Plant and Ear Height in Maize (Zea mays L.) Plants. 14:1943.     Reference: June 24th, 2025
Gene Product: September 1st, 2003
5 months agopgl16 polygalacturonase16:
 
GRMZM2G174598
Zm00001d053395
Zm00001eb204160
Li, X et al. 2025. Meta-QTL Analysis and Genes Responsible for Plant and Ear Height in Maize (Zea mays L.) Plants. 14:1943.     Reference: June 24th, 2025
Gene Product: October 4th, 2021
5 months agosaur68 small auxin up RNA68:
 
GRMZM2G105419
Zm00001d021457
Zm00001eb321110
Li, X et al. 2025. Meta-QTL Analysis and Genes Responsible for Plant and Ear Height in Maize (Zea mays L.) Plants. 14:1943.     Reference: June 24th, 2025
Gene Product: November 26th, 2021
5 months agocyc50 cyclin50:
7.02
GRMZM2G058343
Zm00001d019681
Zm00001eb307170
Li, X et al. 2025. Meta-QTL Analysis and Genes Responsible for Plant and Ear Height in Maize (Zea mays L.) Plants. 14:1943.     Reference: June 24th, 2025
Gene Product: February 17th, 2025
5 months agoIDP851  :
4.06
GRMZM2G119258
Zm00001d051584
Zm00001eb188520
Li, X et al. 2025. Meta-QTL Analysis and Genes Responsible for Plant and Ear Height in Maize (Zea mays L.) Plants. 14:1943.     Reference: June 24th, 2025
Gene Product: May 27th, 2024
Variation: March 31st, 2005
5 months agoaldr9 aldose reductase9:
 
GRMZM2G059285
Zm00001d038363
Zm00001eb289560
de Sousa Tinoco, SM et al. 2025. Functional Genomics and Structural Insights into Maize Aldo-Keto Reductase-4 Family: Stress Metabolism and Substrate Specificity in Embryos. J Biol Chem. :110404.     Reference: June 23rd, 2025
Gene Product: June 23rd, 2025
5 months agoprx31 peroxidase31:
 
AC230013.2_FG002
Zm00001d043938
Zm00001eb157370
Ma, HZ et al. 2025. Poly-γ-glutamic acid could enhance the salt resistance of maize by collectively increasing the osmotic, ion, and oxidative stresses resistance and enriching the salt-tolerant PGPBs in rhizosphere soil Plant Soil. :: 10.1007/s11104-025-07643-9.     Reference: June 23rd, 2025
Gene Product: January 20th, 2025
5 months agoprx41 peroxidase41:
 
AC205154.3_FG005
Zm00001d050572
Zm00001eb180880
Ma, HZ et al. 2025. Poly-γ-glutamic acid could enhance the salt resistance of maize by collectively increasing the osmotic, ion, and oxidative stresses resistance and enriching the salt-tolerant PGPBs in rhizosphere soil Plant Soil. :: 10.1007/s11104-025-07643-9.     Reference: June 23rd, 2025
Gene Product: January 20th, 2025
5 months agoprx50 peroxidase50:
 
GRMZM2G061776
Zm00001d014603
Zm00001eb226360
Ma, HZ et al. 2025. Poly-γ-glutamic acid could enhance the salt resistance of maize by collectively increasing the osmotic, ion, and oxidative stresses resistance and enriching the salt-tolerant PGPBs in rhizosphere soil Plant Soil. :: 10.1007/s11104-025-07643-9.     Reference: June 23rd, 2025
Gene Product: January 20th, 2025
5 months agoprx80 peroxidase80:
 
GRMZM2G138450
Zm00001d018619
Zm00001eb298220
Ma, HZ et al. 2025. Poly-γ-glutamic acid could enhance the salt resistance of maize by collectively increasing the osmotic, ion, and oxidative stresses resistance and enriching the salt-tolerant PGPBs in rhizosphere soil Plant Soil. :: 10.1007/s11104-025-07643-9.     Reference: June 23rd, 2025
Gene Product: January 20th, 2025
5 months agoprx118 peroxidase118:
 
GRMZM2G407740
Zm00001d025402
Zm00001eb422410
Ma, HZ et al. 2025. Poly-γ-glutamic acid could enhance the salt resistance of maize by collectively increasing the osmotic, ion, and oxidative stresses resistance and enriching the salt-tolerant PGPBs in rhizosphere soil Plant Soil. :: 10.1007/s11104-025-07643-9.     Reference: June 23rd, 2025
Gene Product: January 20th, 2025
5 months agoZm00001d022284  :
 
GRMZM2G504757
Zm00001d022284
Zm00001eb328830
Ma, HZ et al. 2025. Poly-γ-glutamic acid could enhance the salt resistance of maize by collectively increasing the osmotic, ion, and oxidative stresses resistance and enriching the salt-tolerant PGPBs in rhizosphere soil Plant Soil. :: 10.1007/s11104-025-07643-9.     Reference: June 23rd, 2025
Gene Product: January 20th, 2025
5 months agoidd30 indeterminate domain30:
 
GRMZM2G445684
Zm00001d031416
Zm00001eb034700
Jim Renema et al. 2025. Gene regulatory network analysis of somatic embryogenesis identifies morphogenic genes that increase maize transformation frequency bioRxiv preprint. :doi: 10.1101/2025.06.22.659756.     Reference: June 23rd, 2025
Gene Product: May 31st, 2024
5 months agoZm00001eb298210  :
 
   Ma, HZ et al. 2025. Poly-γ-glutamic acid could enhance the salt resistance of maize by collectively increasing the osmotic, ion, and oxidative stresses resistance and enriching the salt-tolerant PGPBs in rhizosphere soil Plant Soil. :: 10.1007/s11104-025-07643-9.     Reference: June 23rd, 2025
Gene Product: January 20th, 2025
5 months agoprx85 peroxidase85:
7.05
GRMZM2G427954
Zm00001d022281
Zm00001eb328800
Ma, HZ et al. 2025. Poly-γ-glutamic acid could enhance the salt resistance of maize by collectively increasing the osmotic, ion, and oxidative stresses resistance and enriching the salt-tolerant PGPBs in rhizosphere soil Plant Soil. :: 10.1007/s11104-025-07643-9.     Reference: June 23rd, 2025
Gene Product: January 20th, 2025
5 months agodmas4 deoxymugineic acid synthase4:
2.04
GRMZM2G126062
Zm00001d003524
Zm00001eb081570
de Sousa Tinoco, SM et al. 2025. Functional Genomics and Structural Insights into Maize Aldo-Keto Reductase-4 Family: Stress Metabolism and Substrate Specificity in Embryos. J Biol Chem. :110404.     Reference: June 23rd, 2025
Gene Product: April 27th, 2021
5 months agoprx16 peroxidase16:
2.01
AC210003.2_FG004
Zm00001d002004
Zm00001eb067730
Ma, HZ et al. 2025. Poly-γ-glutamic acid could enhance the salt resistance of maize by collectively increasing the osmotic, ion, and oxidative stresses resistance and enriching the salt-tolerant PGPBs in rhizosphere soil Plant Soil. :: 10.1007/s11104-025-07643-9.     Reference: June 23rd, 2025
Gene Product: January 20th, 2025
5 months agohak2 potassium high-affinity transporter2:
 
AC233953.1_FG005
Zm00001d011913
Zm00001eb363430
Ma, HZ et al. 2025. Poly-γ-glutamic acid could enhance the salt resistance of maize by collectively increasing the osmotic, ion, and oxidative stresses resistance and enriching the salt-tolerant PGPBs in rhizosphere soil Plant Soil. :: 10.1007/s11104-025-07643-9.     Reference: June 23rd, 2025
Gene Product: March 12th, 2020
5 months agohak3 potassium high-affinity transporter3:
 
GRMZM2G477457
Zm00001d009295
Zm00001eb341570
Ma, HZ et al. 2025. Poly-γ-glutamic acid could enhance the salt resistance of maize by collectively increasing the osmotic, ion, and oxidative stresses resistance and enriching the salt-tolerant PGPBs in rhizosphere soil Plant Soil. :: 10.1007/s11104-025-07643-9.     Reference: June 23rd, 2025
Gene Product: March 12th, 2020
5 months agohak9 potassium high-affinity transporter9:
 
GRMZM2G166738
Zm00001d022449
Zm00001eb330610
Ma, HZ et al. 2025. Poly-γ-glutamic acid could enhance the salt resistance of maize by collectively increasing the osmotic, ion, and oxidative stresses resistance and enriching the salt-tolerant PGPBs in rhizosphere soil Plant Soil. :: 10.1007/s11104-025-07643-9.     Reference: June 23rd, 2025
Gene Product: March 12th, 2020
5 months agonhx15 Na+/H+ antiporter 15:
 
GRMZM2G090149
Zm00001d020892
Zm00001eb316390
Ma, HZ et al. 2025. Poly-γ-glutamic acid could enhance the salt resistance of maize by collectively increasing the osmotic, ion, and oxidative stresses resistance and enriching the salt-tolerant PGPBs in rhizosphere soil Plant Soil. :: 10.1007/s11104-025-07643-9.     Reference: June 23rd, 2025
Gene Product: April 26th, 2021
5 months agoaldr3 aldose reductase3:
 
GRMZM2G169943
Zm00001d038449
Zm00001eb290330
de Sousa Tinoco, SM et al. 2025. Functional Genomics and Structural Insights into Maize Aldo-Keto Reductase-4 Family: Stress Metabolism and Substrate Specificity in Embryos. J Biol Chem. :110404.     Reference: June 23rd, 2025
Gene Product: June 23rd, 2025
5 months agodmas3 deoxymugineic acid synthase3:
 
GRMZM2G087507
Zm00001d005932
Zm00001eb101150
de Sousa Tinoco, SM et al. 2025. Functional Genomics and Structural Insights into Maize Aldo-Keto Reductase-4 Family: Stress Metabolism and Substrate Specificity in Embryos. J Biol Chem. :110404.     Reference: June 23rd, 2025
Gene Product: April 27th, 2021
5 months agodmas8 deoxymugineic acid synthase8:
 
GRMZM2G132875
Zm00001d025533
Zm00001eb423470
de Sousa Tinoco, SM et al. 2025. Functional Genomics and Structural Insights into Maize Aldo-Keto Reductase-4 Family: Stress Metabolism and Substrate Specificity in Embryos. J Biol Chem. :110404.     Reference: June 23rd, 2025
Gene Product: April 27th, 2021
5 months agoprx59 peroxidase59:
 
GRMZM2G130904
Zm00001d032854
Zm00001eb047120
Ma, HZ et al. 2025. Poly-γ-glutamic acid could enhance the salt resistance of maize by collectively increasing the osmotic, ion, and oxidative stresses resistance and enriching the salt-tolerant PGPBs in rhizosphere soil Plant Soil. :: 10.1007/s11104-025-07643-9.     Reference: June 23rd, 2025
Gene Product: January 20th, 2025
5 months agodmas5 deoxymugineic acid synthase5:
 
GRMZM2G048121
Zm00001d000060
Zm00001eb025990
de Sousa Tinoco, SM et al. 2025. Functional Genomics and Structural Insights into Maize Aldo-Keto Reductase-4 Family: Stress Metabolism and Substrate Specificity in Embryos. J Biol Chem. :110404.     Reference: June 23rd, 2025
Gene Product: April 27th, 2021
5 months agodmas6 deoxymugineic acid synthase6:
 
GRMZM2G415579
Zm00001d025057
Zm00001eb419890
de Sousa Tinoco, SM et al. 2025. Functional Genomics and Structural Insights into Maize Aldo-Keto Reductase-4 Family: Stress Metabolism and Substrate Specificity in Embryos. J Biol Chem. :110404.     Reference: June 23rd, 2025
Gene Product: April 27th, 2021
5 months agodmas7 deoxymugineic acid synthase7:
 
GRMZM2G000268
Zm00001d025528
Zm00001eb423450
de Sousa Tinoco, SM et al. 2025. Functional Genomics and Structural Insights into Maize Aldo-Keto Reductase-4 Family: Stress Metabolism and Substrate Specificity in Embryos. J Biol Chem. :110404.     Reference: June 23rd, 2025
Gene Product: April 27th, 2021
5 months agoaldr10 aldose reductase10:
8.03
GRMZM2G087206
Zm00001d010054
Zm00001eb347660
de Sousa Tinoco, SM et al. 2025. Functional Genomics and Structural Insights into Maize Aldo-Keto Reductase-4 Family: Stress Metabolism and Substrate Specificity in Embryos. J Biol Chem. :110404.     Reference: June 23rd, 2025
Gene Product: June 23rd, 2025
5 months agoaldr2 aldose reductase2:
9.07
GRMZM2G059306
GRMZM2G059314
Zm00001d038365
Zm00001eb289570
de Sousa Tinoco, SM et al. 2025. Functional Genomics and Structural Insights into Maize Aldo-Keto Reductase-4 Family: Stress Metabolism and Substrate Specificity in Embryos. J Biol Chem. :110404.     Reference: June 23rd, 2025
Gene Product: June 23rd, 2025
5 months agonhx14 Na+/H+ antiporter 14:
9.03
GRMZM2G118019
GRMZM2G420979
Zm00001d045883
Zm00001eb381570
Ma, HZ et al. 2025. Poly-γ-glutamic acid could enhance the salt resistance of maize by collectively increasing the osmotic, ion, and oxidative stresses resistance and enriching the salt-tolerant PGPBs in rhizosphere soil Plant Soil. :: 10.1007/s11104-025-07643-9.     Reference: June 23rd, 2025
Gene Product: April 26th, 2021
Variation: September 25th, 2007
5 months agoaldr8 aldose reductase8:
10.05
AF466202.2_FG007
Zm00001d026151
Zm00001eb429390
de Sousa Tinoco, SM et al. 2025. Functional Genomics and Structural Insights into Maize Aldo-Keto Reductase-4 Family: Stress Metabolism and Substrate Specificity in Embryos. J Biol Chem. :110404.     Reference: June 23rd, 2025
Gene Product: June 23rd, 2025
5 months agodmas2 deoxymugineic acid synthase2:
2.04
GRMZM2G051355
Zm00001d003525
Zm00001eb081580
de Sousa Tinoco, SM et al. 2025. Functional Genomics and Structural Insights into Maize Aldo-Keto Reductase-4 Family: Stress Metabolism and Substrate Specificity in Embryos. J Biol Chem. :110404.     Reference: June 23rd, 2025
Gene Product: April 27th, 2021
Variation: March 31st, 2005
5 months agovpe4 vacuolar processing enzyme4:
 
AC203862.4_FG001
Zm00001d009759
Zm00001eb345400
Doll, NM et al. 2025. KIL transcription factors facilitate embryo growth in maize by promoting endosperm elimination via lytic cell death Plant Cell. :doi: 10.1093/plcell/koaf162.     Reference: June 22nd, 2025
Gene Product: September 29th, 2022
5 months agoring142 RING-type E3 ligase142:
 
   Doll, NM et al. 2025. KIL transcription factors facilitate embryo growth in maize by promoting endosperm elimination via lytic cell death Plant Cell. :doi: 10.1093/plcell/koaf162.     Reference: June 22nd, 2025
Gene Product: May 22nd, 2025
5 months agoZm00001d007789  :
 
   Doll, NM et al. 2025. KIL transcription factors facilitate embryo growth in maize by promoting endosperm elimination via lytic cell death Plant Cell. :doi: 10.1093/plcell/koaf162.     Reference: June 22nd, 2025
Gene Product: January 27th, 2025
5 months agocyp7 cytochrome P450 7:
3.05
GRMZM2G021436
Zm00001d011419
Zm00001eb358780
Doll, NM et al. 2025. KIL transcription factors facilitate embryo growth in maize by promoting endosperm elimination via lytic cell death Plant Cell. :doi: 10.1093/plcell/koaf162.     Reference: June 22nd, 2025
Gene Product: September 26th, 2016
Variation: February 15th, 2014
5 months agomyb73 MYB-transcription factor 73:
 
GRMZM2G121570
Zm00001d033265
Zm00001eb050770
Doll, NM et al. 2025. KIL transcription factors facilitate embryo growth in maize by promoting endosperm elimination via lytic cell death Plant Cell. :doi: 10.1093/plcell/koaf162.     Reference: June 22nd, 2025
Gene Product: July 25th, 2017
Variation: September 28th, 2021
5 months agoaasr8 abscisic acid stress ripening8:
 
GRMZM2G314075
Zm00001d040785
Zm00001eb131480
Doll, NM et al. 2025. KIL transcription factors facilitate embryo growth in maize by promoting endosperm elimination via lytic cell death Plant Cell. :doi: 10.1093/plcell/koaf162.     Reference: June 22nd, 2025
Gene Product: January 2nd, 2019
5 months agomca9 metacaspase9:
 
GRMZM2G047274
Zm00001d043195
Zm00001eb150730
Doll, NM et al. 2025. KIL transcription factors facilitate embryo growth in maize by promoting endosperm elimination via lytic cell death Plant Cell. :doi: 10.1093/plcell/koaf162.     Reference: June 22nd, 2025
Gene Product: October 27th, 2020
5 months agomca11 metacaspase11:
 
GRMZM2G022799
Zm00001d052433
Zm00001eb196150
Doll, NM et al. 2025. KIL transcription factors facilitate embryo growth in maize by promoting endosperm elimination via lytic cell death Plant Cell. :doi: 10.1093/plcell/koaf162.     Reference: June 22nd, 2025
Gene Product: October 27th, 2020
5 months agoGRMZM5G812126  :
 
GRMZM5G812126
Zm00001d046149
Zm00001eb383510
Doll, NM et al. 2025. KIL transcription factors facilitate embryo growth in maize by promoting endosperm elimination via lytic cell death Plant Cell. :doi: 10.1093/plcell/koaf162.   At4g18425 (TAIR) Reference: June 22nd, 2025
Gene Product: March 5th, 2025
5 months agoIDP781  :
5.03
GRMZM2G020146
Zm00001d014983
Zm00001eb229790
Doll, NM et al. 2025. KIL transcription factors facilitate embryo growth in maize by promoting endosperm elimination via lytic cell death Plant Cell. :doi: 10.1093/plcell/koaf162.     Reference: June 22nd, 2025
Variation: March 31st, 2005
5 months agoago101 argonaute101:
9.03
AC189879.3_FG003
Zm00001d046438
Zm00001eb385810
Doll, NM et al. 2025. KIL transcription factors facilitate embryo growth in maize by promoting endosperm elimination via lytic cell death Plant Cell. :doi: 10.1093/plcell/koaf162.     Reference: June 22nd, 2025
Gene Product: August 12th, 2016
Variation: September 11th, 2007
5 months agoprx21 peroxidase21:
 
GRMZM2G067096
Zm00001d004459
Zm00001eb088870
Ke Feng et al. 2025. Chitosan nanoparticles alleviate nanoplastics toxicity by modulating polyamine metabolism and re-establishing redox homeostasis in maize seedlings. Int J Biol Macromol. :145384.     Reference: June 21st, 2025
Gene Product: January 20th, 2025
5 months agoapx11 ascorbate peroxidase11:
10.02
GRMZM2G014397
Zm00001d023582
Zm00001eb408280
Ke Feng et al. 2025. Chitosan nanoparticles alleviate nanoplastics toxicity by modulating polyamine metabolism and re-establishing redox homeostasis in maize seedlings. Int J Biol Macromol. :145384.     Reference: June 21st, 2025
Gene Product: January 20th, 2025
5 months agod5 dwarf plant5:
2.02
   Miao Lin 2025. The Hormonal 'Code' for the Number of Maize Tassel Branches Chinese Bulletin of Botany. :Doi: 10.11983/CBB25003.     Reference: June 21st, 2025
Gene Product: September 1st, 2003
Variation: February 10th, 2025
5 months agomyb3  :
5.04
GRMZM2G099334
Zm00001d016653
Zm00001eb242340
Carey, C; Strahle, JT; Selinger, D; Chandler, V. 2004. Plant Cell. 16:450-464     Reference: June 21st, 2025
Gene Product: July 25th, 2017
Variation: May 28th, 2015
5 months agoumc1346  :
4.05
GRMZM2G366392
Zm00001d051056
Zm00001eb184470
Ke Feng et al. 2025. Chitosan nanoparticles alleviate nanoplastics toxicity by modulating polyamine metabolism and re-establishing redox homeostasis in maize seedlings. Int J Biol Macromol. :145384.     Reference: June 21st, 2025
Variation: September 1st, 2003
5 months agosam1 S-adenosylmethionine decarboxylase1:
10.04 - 10.05
GRMZM2G125635
Zm00001d025773
Zm00001eb425830
Ke Feng et al. 2025. Chitosan nanoparticles alleviate nanoplastics toxicity by modulating polyamine metabolism and re-establishing redox homeostasis in maize seedlings. Int J Biol Macromol. :145384.     Reference: June 21st, 2025
Gene Product: September 1st, 2003
Variation: September 1st, 2003
5 months agospds1 spermidine synthase1:
2.06
GRMZM2G064163
Zm00001d005159
Zm00001eb094730
Ke Feng et al. 2025. Chitosan nanoparticles alleviate nanoplastics toxicity by modulating polyamine metabolism and re-establishing redox homeostasis in maize seedlings. Int J Biol Macromol. :145384.     Reference: June 21st, 2025
Gene Product: June 19th, 2020
5 months agod11 dwarf11:
 
   Miao Lin 2025. The Hormonal 'Code' for the Number of Maize Tassel Branches Chinese Bulletin of Botany. :Doi: 10.11983/CBB25003.     Reference: June 21st, 2025
Variation: June 18th, 2013
5 months agosam3 S-adenosylmethionine decarboxylase3:
 
GRMZM2G060369
Zm00001d020543
Zm00001eb313390
Ke Feng et al. 2025. Chitosan nanoparticles alleviate nanoplastics toxicity by modulating polyamine metabolism and re-establishing redox homeostasis in maize seedlings. Int J Biol Macromol. :145384.     Reference: June 21st, 2025
Gene Product: September 1st, 2003
5 months agotbn1 tassel branch number1:
 
GRMZM2G003663
Zm00001d053358
Zm00001eb203860
Miao Lin 2025. The Hormonal 'Code' for the Number of Maize Tassel Branches Chinese Bulletin of Botany. :Doi: 10.11983/CBB25003.     Reference: June 21st, 2025
Gene Product: April 27th, 2022
Variation: January 1st, 2021
5 months agosod15 superoxide dismutase15:
 
GRMZM2G005526
Zm00001d014632
Zm00001eb226600
Ke Feng et al. 2025. Chitosan nanoparticles alleviate nanoplastics toxicity by modulating polyamine metabolism and re-establishing redox homeostasis in maize seedlings. Int J Biol Macromol. :145384.     Reference: June 21st, 2025
Gene Product: October 4th, 2021
5 months agoIDP754  :
7.02
GRMZM2G461159
Zm00001d020544
Zm00001eb313400
Ke Feng et al. 2025. Chitosan nanoparticles alleviate nanoplastics toxicity by modulating polyamine metabolism and re-establishing redox homeostasis in maize seedlings. Int J Biol Macromol. :145384.     Reference: June 21st, 2025
Variation: March 31st, 2005
5 months agoodc1 ornithine decarboxylase 1:
 
GRMZM2G140824
Zm00001d022593
Zm00001eb331690
Ke Feng et al. 2025. Chitosan nanoparticles alleviate nanoplastics toxicity by modulating polyamine metabolism and re-establishing redox homeostasis in maize seedlings. Int J Biol Macromol. :145384.     Reference: June 21st, 2025
Gene Product: March 19th, 2008
Variation: March 19th, 2008
5 months agoccl7 coumarate-CoA ligase7:
 
GRMZM2G433624
Zm00001d030132
Zm00001eb025180
Li, TC et al. 2019. Comparative transcriptome analysis reveals differentially expressed genes related to the tissue-specific accumulation of anthocyanins in pericarp and aleurone layer for maize. Sci. Rep.. 9:2485.     Reference: June 20th, 2025
Gene Product: April 30th, 2025
5 months agocyp83 cytochrome P-450 83:
 
GRMZM2G130755
Zm00001d030845
Zm00001eb030030
Li, TC et al. 2019. Comparative transcriptome analysis reveals differentially expressed genes related to the tissue-specific accumulation of anthocyanins in pericarp and aleurone layer for maize. Sci. Rep.. 9:2485.     Reference: June 20th, 2025
Gene Product: December 30th, 2022
5 months agomyb54 MYB-transcription factor 54:
2.03
GRMZM2G123202
Zm00001d002843
Zm00001eb075640
Li, TC et al. 2019. Comparative transcriptome analysis reveals differentially expressed genes related to the tissue-specific accumulation of anthocyanins in pericarp and aleurone layer for maize. Sci. Rep.. 9:2485.     Reference: June 20th, 2025
Gene Product: July 25th, 2017
Variation: September 25th, 2007
5 months agomyb75 MYB-transcription factor 75:
1.04
GRMZM2G070849
Zm00001d028930
Zm00001eb015120
Li, TC et al. 2019. Comparative transcriptome analysis reveals differentially expressed genes related to the tissue-specific accumulation of anthocyanins in pericarp and aleurone layer for maize. Sci. Rep.. 9:2485.     Reference: June 20th, 2025
Variation: September 25th, 2007
5 months agoadh2 alcohol dehydrogenase2:
4.03
GRMZM2G098346
Zm00001d049059
Zm00001eb168550
Stroud, LK; McGinnis, K. 2017. Plant Direct. DOI: 10.1002/pld3.19     Reference: June 20th, 2025
Gene Product: July 8th, 2009
Variation: September 1st, 2003
5 months agoglb2 globulin2:
1.11
GRMZM2G026703
Zm00001d034413
Zm00001eb060460
Stroud, LK; McGinnis, K. 2017. Plant Direct. DOI: 10.1002/pld3.19     Reference: June 20th, 2025
Gene Product: September 1st, 2003
Variation: March 30th, 2009
5 months agogpc1 glyceraldehyde-3-phosphate dehydrogenase1:
4.05
GRMZM2G046804
Zm00001d049641
Zm00001eb173410
Stroud, LK; McGinnis, K. 2017. Plant Direct. DOI: 10.1002/pld3.19     Reference: June 20th, 2025
Gene Product: September 1st, 2003
Variation: September 1st, 2003
5 months agohm1 Helminthosporium carbonum susceptibility1:
1.06
GRMZM5G881887
Zm00001d031802
Zm00001eb038160
Stroud, LK; McGinnis, K. 2017. Plant Direct. DOI: 10.1002/pld3.19     Reference: June 20th, 2025
Gene Product: May 23rd, 2014
Variation: September 1st, 2003
5 months agotpi3 triose phosphate isomerase3:
8.02
GRMZM2G018177
Zm00001d008619
Zm00001eb335870
Stroud, LK; McGinnis, K. 2017. Plant Direct. DOI: 10.1002/pld3.19     Reference: June 20th, 2025
Gene Product: September 1st, 2003
Variation: January 15th, 2015
5 months agoy9 pale yellow9:
10.03 - 10.03
GRMZM2G011746
Zm00001d023655
Zm00001eb408760
Cao, LR et al. 2024. Analysis of Maize Phenylalanine Ammonia-Lyase (PAL) Family Genes and Functional Study of ZmPAL5 Sci Agric Sin. 57:2265-2281.     Reference: June 20th, 2025
Gene Product: December 10th, 2011
Variation: September 28th, 2011
5 months agopdc2 pyruvate decarboxylase2:
8.02
GRMZM2G038821
Zm00001d008651
Zm00001eb336190
Stroud, LK; McGinnis, K. 2017. Plant Direct. DOI: 10.1002/pld3.19     Reference: June 20th, 2025
Gene Product: September 1st, 2003
Variation: March 30th, 2007
5 months agoabi33 ABI3-VP1-transcription factor 33:
 
GRMZM2G065538
Zm00001d011639
Zm00001eb360750
Friero, I et al. 2022. Transcriptomic and hormonal analysis of the roots of maize seedlings grown hydroponically at low temperature Plant Sci. :doi: 10.1016/j.plantsci.2022.111525.     Reference: June 20th, 2025
Gene Product: January 29th, 2022
5 months agoereb148 AP2-EREBP-transcription factor 148:
 
GRMZM2G053503
Zm00001d009103
Zm00001eb340140
Friero, I et al. 2022. Transcriptomic and hormonal analysis of the roots of maize seedlings grown hydroponically at low temperature Plant Sci. :doi: 10.1016/j.plantsci.2022.111525.     Reference: June 20th, 2025
Variation: May 4th, 2016
5 months agonactf78 NAC-transcription factor 78:
 
GRMZM2G406204
Zm00001d027395
Zm00001eb001460
Yu Lei Liang et al. 2025. Bridging Genomic Insights to Agricultural Practice: GWAS Applications in Mining Nutrient Utilization Efficiency Genes for Crop Improvement. Plant Cell Environ. :doi: 10.1111/pce.70027.     Reference: June 20th, 2025
Variation: December 7th, 2023
5 months agozim24 ZIM-transcription factor 24:
 
GRMZM2G117513
Zm00001d029448
Zm00001eb019470
Xiaomeng Sun et al. 2025. Comparative transcriptomics in B73-teosinte near-isogenic maize lines reveals key defense signaling and phytoalexins in response to Cercospora zeina infection. Frontiers in Plant Science. 16:1580016.     Reference: June 20th, 2025
Gene Product: February 24th, 2021
5 months agonactf53 NAC-transcription factor 53:
1.01
GRMZM2G059428
Zm00001d027530
Zm00001eb002660
Friero, I et al. 2022. Transcriptomic and hormonal analysis of the roots of maize seedlings grown hydroponically at low temperature Plant Sci. :doi: 10.1016/j.plantsci.2022.111525.     Reference: June 20th, 2025
Variation: May 6th, 2016
5 months agohdt104 histone deacetylase 104:
 
GRMZM5G898314
Zm00001d012092
Zm00001eb365080
Friero, I et al. 2022. Transcriptomic and hormonal analysis of the roots of maize seedlings grown hydroponically at low temperature Plant Sci. :doi: 10.1016/j.plantsci.2022.111525.     Reference: June 20th, 2025
Gene Product: February 12th, 2020
5 months agomyb38 myb transcription factor38:
 
GRMZM2G084583
Zm00001d032024
Zm00001eb040070
Li, TC et al. 2019. Comparative transcriptome analysis reveals differentially expressed genes related to the tissue-specific accumulation of anthocyanins in pericarp and aleurone layer for maize. Sci. Rep.. 9:2485.     Reference: June 20th, 2025
Gene Product: September 1st, 2003
Variation: October 20th, 2016
5 months agocyc7 cyclin7:
3.06
GRMZM2G073003
Zm00001d043164
Zm00001eb150450
Stroud, LK; McGinnis, K. 2017. Plant Direct. DOI: 10.1002/pld3.19     Reference: June 20th, 2025
Gene Product: February 17th, 2025
Variation: October 23rd, 2012
5 months agoftfh2 flavonoid 3′,5′-hydroxylase2:
1.07
GRMZM2G089528
Zm00001d032035
Zm00001eb040180
Li, TC et al. 2019. Comparative transcriptome analysis reveals differentially expressed genes related to the tissue-specific accumulation of anthocyanins in pericarp and aleurone layer for maize. Sci. Rep.. 9:2485.     Reference: June 20th, 2025
Gene Product: June 20th, 2018
5 months agotdy1 tie-dyed1:
6.07
GRMZM2G321778
Zm00001d039135
Zm00001eb297040
Stroud, LK; McGinnis, K. 2017. Plant Direct. DOI: 10.1002/pld3.19     Reference: June 20th, 2025
Variation: September 14th, 2011
5 months agosqsh1 squalene synthase homolog1:
 
GRMZM2G029396
Zm00001d034516
Zm00001eb061440
Xiaomeng Sun et al. 2025. Comparative transcriptomics in B73-teosinte near-isogenic maize lines reveals key defense signaling and phytoalexins in response to Cercospora zeina infection. Frontiers in Plant Science. 16:1580016.     Reference: June 20th, 2025
Variation: January 27th, 2011
5 months agopyg7 pale yellowgreen7:
 
GRMZM5G809292
Zm00001d021368
Zm00001eb320270
Cao, LR et al. 2024. Analysis of Maize Phenylalanine Ammonia-Lyase (PAL) Family Genes and Functional Study of ZmPAL5 Sci Agric Sin. 57:2265-2281.   AT1G22700 (TAIR) Reference: June 20th, 2025
Gene Product: May 20th, 2017
Variation: May 20th, 2017
5 months agopal10 phenylalanine ammonia lyase homolog10:
 
GRMZM2G326335
Zm00001d029015
Cao, LR et al. 2024. Analysis of Maize Phenylalanine Ammonia-Lyase (PAL) Family Genes and Functional Study of ZmPAL5 Sci Agric Sin. 57:2265-2281.     Reference: June 20th, 2025
Gene Product: August 13th, 2022
5 months agoaos5 allene oxide synthesis5:
 
GRMZM2G033098
Zm00001d013185
Zm00001eb214000
Xiaomeng Sun et al. 2025. Comparative transcriptomics in B73-teosinte near-isogenic maize lines reveals key defense signaling and phytoalexins in response to Cercospora zeina infection. Frontiers in Plant Science. 16:1580016.     Reference: June 20th, 2025
Gene Product: September 1st, 2003
5 months agohsftf30 HSF-transcription factor 30:
 
Zm00001d020704
Zm00001eb314790
Friero, I et al. 2022. Transcriptomic and hormonal analysis of the roots of maize seedlings grown hydroponically at low temperature Plant Sci. :doi: 10.1016/j.plantsci.2022.111525.     Reference: June 20th, 2025
Gene Product: May 15th, 2020
5 months agocki5 cyclin-dependent kinase inhibitor5:
5.07
GRMZM2G101613
Zm00001d018149
Zm00001eb255750
Friero, I et al. 2022. Transcriptomic and hormonal analysis of the roots of maize seedlings grown hydroponically at low temperature Plant Sci. :doi: 10.1016/j.plantsci.2022.111525.     Reference: June 20th, 2025
Gene Product: March 8th, 2017
5 months agogst46 glutathione transferase46:
 
GRMZM2G480439
Zm00001d029703
Zm00001eb021640
Li, TC et al. 2019. Comparative transcriptome analysis reveals differentially expressed genes related to the tissue-specific accumulation of anthocyanins in pericarp and aleurone layer for maize. Sci. Rep.. 9:2485.     Reference: June 20th, 2025
Gene Product: September 1st, 2003
5 months agofht3 flavanone 3-hydroxylase3:
 
GRMZM2G382569
Zm00001eb017400
Li, TC et al. 2019. Comparative transcriptome analysis reveals differentially expressed genes related to the tissue-specific accumulation of anthocyanins in pericarp and aleurone layer for maize. Sci. Rep.. 9:2485.     Reference: June 20th, 2025
Gene Product: June 12th, 2025
5 months agopas1 pale and small1:
 
GRMZM2G002754
Zm00001d013534
Zm00001eb217230
Cao, LR et al. 2024. Analysis of Maize Phenylalanine Ammonia-Lyase (PAL) Family Genes and Functional Study of ZmPAL5 Sci Agric Sin. 57:2265-2281.     Reference: June 20th, 2025
Gene Product: September 1st, 2003
Variation: May 11th, 2021
5 months agoapg1 albino or pale green mutant1:
1.05
GRMZM2G082998
Zm00001d031071
Zm00001eb031790
Cao, LR et al. 2024. Analysis of Maize Phenylalanine Ammonia-Lyase (PAL) Family Genes and Functional Study of ZmPAL5 Sci Agric Sin. 57:2265-2281.     Reference: June 20th, 2025
Variation: December 30th, 2015
5 months agopco137067b  :
2.06
GRMZM2G030312
Zm00001d005513
Zm00001eb097390
Anjan K Pradhan et al. 2025. Predictive prioritization of genes significantly associated with biotic and abiotic stresses in maize using machine learning algorithms Frontiers in Plant Science. 16:1611784.     Reference: June 19th, 2025
Variation: November 3rd, 2017
5 months agoacp1 acid phosphatase1:
9.03
AC211394.4_FG004
Zm00001d046593
Zm00001eb387030
Jie Zheng et al. 2025. Root-derived low molecular weight organic acids modulate keystone microbial taxa impacting plant phosphorus acquisition. J Adv Res. :doi: 10.1016/j.jare.2025.06.032.     Reference: June 19th, 2025
Gene Product: September 1st, 2003
Variation: September 1st, 2003
5 months agocmk1 cytidine methyl kinase1:
3.06
GRMZM5G859195
Zm00001d043182
Zm00001eb150630
Anjan K Pradhan et al. 2025. Predictive prioritization of genes significantly associated with biotic and abiotic stresses in maize using machine learning algorithms Frontiers in Plant Science. 16:1611784.     Reference: June 19th, 2025
Gene Product: October 9th, 2014
5 months agopap1 purple acid phosphatase1:
 
GRMZM2G093101
Zm00001d043291
Zm00001eb151650
Jie Zheng et al. 2025. Root-derived low molecular weight organic acids modulate keystone microbial taxa impacting plant phosphorus acquisition. J Adv Res. :doi: 10.1016/j.jare.2025.06.032.     Reference: June 19th, 2025
Gene Product: November 21st, 2018
5 months agopap3 purple acid phosphatase3:
 
GRMZM2G014193
Zm00001d050026
Zm00001eb176760
Jie Zheng et al. 2025. Root-derived low molecular weight organic acids modulate keystone microbial taxa impacting plant phosphorus acquisition. J Adv Res. :doi: 10.1016/j.jare.2025.06.032.     Reference: June 19th, 2025
Gene Product: November 21st, 2018
5 months agoaldh11 aldehyde dehydrogenase11:
 
GRMZM2G013214
GRMZM2G146754
Zm00001d050339
Zm00001eb179190
Anjan K Pradhan et al. 2025. Predictive prioritization of genes significantly associated with biotic and abiotic stresses in maize using machine learning algorithms Frontiers in Plant Science. 16:1611784.     Reference: June 19th, 2025
Gene Product: January 5th, 2024
5 months agoperk4 proline-rich extensin-like receptor kinase4:
 
GRMZM2G065214
Zm00001d034257
Zm00001eb059240
Maurice Koenig et al. 2025. Processing and release of the maize phytocytokine Zip1 bioRxiv preprint. :doi: 10.1101/2025.06.11.659102.     Reference: June 18th, 2025
Gene Product: September 7th, 2022
5 months agocel26 cellulase26:
4.07
GRMZM2G125991
Zm00001d051814
Zm00001eb190430
Letizia Ottaviani et al. 2025. A loss-of-function of ZmWRKY125 induced by CRISPR/Cas9 improves resistance against Fusarium verticillioides in maize kernels. Plant Cell Rep. 44:144.     Reference: June 18th, 2025
Gene Product: March 20th, 2023
5 months agoIDP8095  :
6.03
GRMZM2G162531
Zm00001d036775
Zm00001eb275550
Emily M. Roggenkamp et al. 2025. Survey of Maize Differential Gene Expression upon Environmental Exposure to the Tar Spot Pathogen, Phyllachora maydis PhytoFront. :doi: 10.1094/PHYTOFR-12-24-0136-R.     Reference: June 18th, 2025
Gene Product: April 25th, 2025
5 months agopdc1 pyruvate decarboxylase1:
8.04
AC197705.4_FG001
Zm00001d010588
Zm00001eb351810
Xiaoyu Tian et al. 2024. Effects of Aspergillus flavus infection on multi-scale structures and physicochemical properties of maize starch during storage Carbohydrate Polymers. 342:122322.     Reference: June 18th, 2025
Gene Product: September 1st, 2003
Variation: April 18th, 2005
5 months agohsftf3 HSF-transcription factor 3:
 
GRMZM2G005815
Zm00001d044259
Zm00001eb160080
Maurice Koenig et al. 2025. Processing and release of the maize phytocytokine Zip1 bioRxiv preprint. :doi: 10.1101/2025.06.11.659102.     Reference: June 18th, 2025
Gene Product: May 15th, 2020
5 months agowrky125 WRKY-transcription factor 125:
 
GRMZM2G163054
Zm00001d037607
Zm00001eb282840
Letizia Ottaviani et al. 2025. A loss-of-function of ZmWRKY125 induced by CRISPR/Cas9 improves resistance against Fusarium verticillioides in maize kernels. Plant Cell Rep. 44:144.     Reference: June 18th, 2025
Variation: June 18th, 2025
5 months agocel24 cellulase24:
5.04
GRMZM2G482256
Zm00001d015292
Zm00001eb232430
Letizia Ottaviani et al. 2025. A loss-of-function of ZmWRKY125 induced by CRISPR/Cas9 improves resistance against Fusarium verticillioides in maize kernels. Plant Cell Rep. 44:144.     Reference: June 18th, 2025
Gene Product: March 20th, 2023
Variation: September 1st, 2003
5 months agocl13108_1a  :
1.07
GRMZM2G108600
Zm00001d032188
Zm00001eb041410
Emily M. Roggenkamp et al. 2025. Survey of Maize Differential Gene Expression upon Environmental Exposure to the Tar Spot Pathogen, Phyllachora maydis PhytoFront. :doi: 10.1094/PHYTOFR-12-24-0136-R.     Reference: June 18th, 2025
Variation: September 25th, 2007
5 months agoopr3 12-oxo-phytodienoic acid reductase3:
 
GRMZM2G156712
Zm00001d037182
Zm00001eb279210
Letizia Ottaviani et al. 2025. A loss-of-function of ZmWRKY125 induced by CRISPR/Cas9 improves resistance against Fusarium verticillioides in maize kernels. Plant Cell Rep. 44:144.     Reference: June 18th, 2025
Gene Product: September 3rd, 2010
Variation: June 29th, 2012
5 months agoopr4 12-oxo-phytodienoic acid reductase4:
8.05
Zm00001d011097
Zm00001eb356160
Letizia Ottaviani et al. 2025. A loss-of-function of ZmWRKY125 induced by CRISPR/Cas9 improves resistance against Fusarium verticillioides in maize kernels. Plant Cell Rep. 44:144.     Reference: June 18th, 2025
Gene Product: September 3rd, 2010
Variation: November 5th, 2010
5 months agolox9 lipoxygenase9:
1.02
GRMZM2G017616
Zm00001d027893
Zm00001eb005920
Letizia Ottaviani et al. 2025. A loss-of-function of ZmWRKY125 induced by CRISPR/Cas9 improves resistance against Fusarium verticillioides in maize kernels. Plant Cell Rep. 44:144.     Reference: June 18th, 2025
Gene Product: January 3rd, 2018
Variation: June 12th, 2014
5 months agosbip1b small basic membrane intrinsic protein1b:
 
GRMZM2G060922
Zm00001d010325
Zm00001eb349840
Letizia Ottaviani et al. 2025. A loss-of-function of ZmWRKY125 induced by CRISPR/Cas9 improves resistance against Fusarium verticillioides in maize kernels. Plant Cell Rep. 44:144.     Reference: June 18th, 2025
Gene Product: January 27th, 2022
Variation: September 25th, 2015
5 months agoss4 starch synthase4:
 
GRMZM2G044744
Zm00001d010821
Zm00001eb353810
Xiaoyu Tian et al. 2024. Effects of Aspergillus flavus infection on multi-scale structures and physicochemical properties of maize starch during storage Carbohydrate Polymers. 342:122322.     Reference: June 18th, 2025
Gene Product: October 14th, 2016
5 months agodef2 defensin-like protein2:
 
GRMZM2G368861
Zm00001d024302
Zm00001eb413750
Letizia Ottaviani et al. 2025. A loss-of-function of ZmWRKY125 induced by CRISPR/Cas9 improves resistance against Fusarium verticillioides in maize kernels. Plant Cell Rep. 44:144.     Reference: June 18th, 2025
Gene Product: December 12th, 2022
5 months agolac14 laccase14:
 
AC234190.1_FG002
Zm00001d040248
Zm00001eb127360
Emily M. Roggenkamp et al. 2025. Survey of Maize Differential Gene Expression upon Environmental Exposure to the Tar Spot Pathogen, Phyllachora maydis PhytoFront. :doi: 10.1094/PHYTOFR-12-24-0136-R.     Reference: June 18th, 2025
Gene Product: March 31st, 2018
5 months agolac19 laccase19:
 
GRMZM2G320786
Zm00001d018064
Zm00001eb254960
Emily M. Roggenkamp et al. 2025. Survey of Maize Differential Gene Expression upon Environmental Exposure to the Tar Spot Pathogen, Phyllachora maydis PhytoFront. :doi: 10.1094/PHYTOFR-12-24-0136-R.     Reference: June 18th, 2025
Gene Product: March 31st, 2018
5 months agocyp31 cytochrome P450 CYP81A37:
 
GRMZM2G118809
Zm00001d034095
Zm00001eb058050
Emily M. Roggenkamp et al. 2025. Survey of Maize Differential Gene Expression upon Environmental Exposure to the Tar Spot Pathogen, Phyllachora maydis PhytoFront. :doi: 10.1094/PHYTOFR-12-24-0136-R.     Reference: June 18th, 2025
Gene Product: December 30th, 2022
5 months agomca10 metacaspase10:
 
GRMZM2G066041
Zm00001d010675
Zm00001eb352560
Maurice Koenig et al. 2025. Processing and release of the maize phytocytokine Zip1 bioRxiv preprint. :doi: 10.1101/2025.06.11.659102.     Reference: June 18th, 2025
Gene Product: October 27th, 2020
5 months agocel25 cellulase25:
 
GRMZM2G151257
Zm00001d017978
Zm00001eb253980
Letizia Ottaviani et al. 2025. A loss-of-function of ZmWRKY125 induced by CRISPR/Cas9 improves resistance against Fusarium verticillioides in maize kernels. Plant Cell Rep. 44:144.     Reference: June 18th, 2025
Gene Product: March 20th, 2023
5 months agocchh147 Cys2His2 Zinc Finger147:
 
GRMZM2G338056
Zm00001d045211
Zm00001eb375650
Pearl Abu et al. 2025. SeqSNP-based genic markers reveal genetic architecture and candidate genes for low nitrogen tolerance in tropical maize inbred lines. Frontiers in Plant Science. 16:1558741.     Reference: June 17th, 2025
Gene Product: November 14th, 2022
5 months agoglp3 germin-like protein3:
 
AC190772.4_FG011
Zm00001d049417
Zm00001eb171490
Jianhui Chun et al. 2025. Identification of the Maize GLP Family Genes and Their Expression in Response to Arbuscular Mycorrhizal Symbiosis Bull Bot Res. 45:406-418.     Reference: June 17th, 2025
Gene Product: December 24th, 2015
5 months agoglp4 germin-like protein4:
 
GRMZM2G030772
Zm00001d049418
Zm00001eb171500
Jianhui Chun et al. 2025. Identification of the Maize GLP Family Genes and Their Expression in Response to Arbuscular Mycorrhizal Symbiosis Bull Bot Res. 45:406-418.     Reference: June 17th, 2025
Gene Product: December 24th, 2015
5 months agoglp5 germin-like protein5:
 
GRMZM2G149714
Zm00001d049419
Zm00001eb171510
Jianhui Chun et al. 2025. Identification of the Maize GLP Family Genes and Their Expression in Response to Arbuscular Mycorrhizal Symbiosis Bull Bot Res. 45:406-418.     Reference: June 17th, 2025
Gene Product: December 24th, 2015
5 months agoglp6 germin-like protein6:
 
GRMZM2G093622
Zm00001d049420
Zm00001eb171520
Jianhui Chun et al. 2025. Identification of the Maize GLP Family Genes and Their Expression in Response to Arbuscular Mycorrhizal Symbiosis Bull Bot Res. 45:406-418.     Reference: June 17th, 2025
Gene Product: December 24th, 2015
5 months agoglp8 germin-like protein8:
 
GRMZM2G093554
Zm00001d049423
Zm00001eb171540
Jianhui Chun et al. 2025. Identification of the Maize GLP Family Genes and Their Expression in Response to Arbuscular Mycorrhizal Symbiosis Bull Bot Res. 45:406-418.     Reference: June 17th, 2025
Gene Product: December 24th, 2015
5 months agoglp9 germin-like protein9:
 
GRMZM2G157364
Zm00001d049427
Zm00001eb171570
Jianhui Chun et al. 2025. Identification of the Maize GLP Family Genes and Their Expression in Response to Arbuscular Mycorrhizal Symbiosis Bull Bot Res. 45:406-418.     Reference: June 17th, 2025
Gene Product: December 24th, 2015
5 months agoglp10 germin-like protein10:
 
GRMZM2G157298
Zm00001d049428
Zm00001eb171580
Jianhui Chun et al. 2025. Identification of the Maize GLP Family Genes and Their Expression in Response to Arbuscular Mycorrhizal Symbiosis Bull Bot Res. 45:406-418.     Reference: June 17th, 2025
Gene Product: December 24th, 2015
5 months agoglp11 germin-like protein11:
 
GRMZM2G148026
Zm00001d049424
Zm00001eb171550
Jianhui Chun et al. 2025. Identification of the Maize GLP Family Genes and Their Expression in Response to Arbuscular Mycorrhizal Symbiosis Bull Bot Res. 45:406-418.     Reference: June 17th, 2025
Gene Product: December 24th, 2015
5 months agoglp12 germin-like protein12:
 
GRMZM2G148014
Zm00001d049425
Zm00001eb171560
Jianhui Chun et al. 2025. Identification of the Maize GLP Family Genes and Their Expression in Response to Arbuscular Mycorrhizal Symbiosis Bull Bot Res. 45:406-418.     Reference: June 17th, 2025
Gene Product: December 24th, 2015
5 months agoglp13 germin-like protein13:
 
GRMZM2G155506
Zm00001d049434
Zm00001eb171620
Jianhui Chun et al. 2025. Identification of the Maize GLP Family Genes and Their Expression in Response to Arbuscular Mycorrhizal Symbiosis Bull Bot Res. 45:406-418.     Reference: June 17th, 2025
Gene Product: December 24th, 2015
5 months agoglp16 germin-like protein16:
 
GRMZM2G105940
Zm00001d049431
Zm00001eb171600
Jianhui Chun et al. 2025. Identification of the Maize GLP Family Genes and Their Expression in Response to Arbuscular Mycorrhizal Symbiosis Bull Bot Res. 45:406-418.     Reference: June 17th, 2025
Gene Product: December 24th, 2015
5 months agoglp18 germin-like protein18:
 
GRMZM2G072965
Zm00001d049435
Zm00001eb171630
Jianhui Chun et al. 2025. Identification of the Maize GLP Family Genes and Their Expression in Response to Arbuscular Mycorrhizal Symbiosis Bull Bot Res. 45:406-418.     Reference: June 17th, 2025
Gene Product: December 24th, 2015
5 months agoglp19 germin-like protein19:
 
GRMZM2G176798
Zm00001d049436
Zm00001eb171640
Jianhui Chun et al. 2025. Identification of the Maize GLP Family Genes and Their Expression in Response to Arbuscular Mycorrhizal Symbiosis Bull Bot Res. 45:406-418.     Reference: June 17th, 2025
Gene Product: December 24th, 2015
5 months agoglp21 germin-like protein21:
 
GRMZM2G170829
Zm00001d049437
Zm00001eb171650
Jianhui Chun et al. 2025. Identification of the Maize GLP Family Genes and Their Expression in Response to Arbuscular Mycorrhizal Symbiosis Bull Bot Res. 45:406-418.     Reference: June 17th, 2025
Gene Product: December 24th, 2015
5 months agoglp22 germin-like protein22:
 
GRMZM2G170857
Zm00001d049438
Zm00001eb171660
Jianhui Chun et al. 2025. Identification of the Maize GLP Family Genes and Their Expression in Response to Arbuscular Mycorrhizal Symbiosis Bull Bot Res. 45:406-418.     Reference: June 17th, 2025
Gene Product: December 24th, 2015
5 months agoglp23 germin-like protein23:
 
GRMZM2G178817
Zm00001d000018
Zm00001eb413180
Jianhui Chun et al. 2025. Identification of the Maize GLP Family Genes and Their Expression in Response to Arbuscular Mycorrhizal Symbiosis Bull Bot Res. 45:406-418.     Reference: June 17th, 2025
Gene Product: December 24th, 2015
5 months agoglp25 germin-like protein25:
 
GRMZM2G049930
Zm00001d000012
Zm00001eb413210
Jianhui Chun et al. 2025. Identification of the Maize GLP Family Genes and Their Expression in Response to Arbuscular Mycorrhizal Symbiosis Bull Bot Res. 45:406-418.     Reference: June 17th, 2025
Gene Product: December 24th, 2015
5 months agoglp26 germin-like protein26:
 
GRMZM2G012530
Zm00001d000008
Zm00001eb413250
Jianhui Chun et al. 2025. Identification of the Maize GLP Family Genes and Their Expression in Response to Arbuscular Mycorrhizal Symbiosis Bull Bot Res. 45:406-418.     Reference: June 17th, 2025
Gene Product: December 24th, 2015
5 months agoglp27 germin-like protein27:
 
GRMZM2G087111
Zm00001d000006
Zm00001eb413260
Jianhui Chun et al. 2025. Identification of the Maize GLP Family Genes and Their Expression in Response to Arbuscular Mycorrhizal Symbiosis Bull Bot Res. 45:406-418.     Reference: June 17th, 2025
Gene Product: December 24th, 2015
5 months agoglp46 germin-like protein46:
 
GRMZM2G387127
Zm00001d015347
Zm00001eb232890
Jianhui Chun et al. 2025. Identification of the Maize GLP Family Genes and Their Expression in Response to Arbuscular Mycorrhizal Symbiosis Bull Bot Res. 45:406-418.     Reference: June 17th, 2025
Gene Product: December 24th, 2015
5 months agoglp29 germin-like protein29:
 
   Jianhui Chun et al. 2025. Identification of the Maize GLP Family Genes and Their Expression in Response to Arbuscular Mycorrhizal Symbiosis Bull Bot Res. 45:406-418.     Reference: June 17th, 2025
Gene Product: December 24th, 2015
5 months agoglp36 germin-like protein36:
 
   Jianhui Chun et al. 2025. Identification of the Maize GLP Family Genes and Their Expression in Response to Arbuscular Mycorrhizal Symbiosis Bull Bot Res. 45:406-418.     Reference: June 17th, 2025
Gene Product: December 24th, 2015
5 months agoglp37 germin-like protein37:
 
   Jianhui Chun et al. 2025. Identification of the Maize GLP Family Genes and Their Expression in Response to Arbuscular Mycorrhizal Symbiosis Bull Bot Res. 45:406-418.     Reference: June 17th, 2025
Gene Product: December 24th, 2015
5 months agoglp38 germin-like protein38:
 
   Jianhui Chun et al. 2025. Identification of the Maize GLP Family Genes and Their Expression in Response to Arbuscular Mycorrhizal Symbiosis Bull Bot Res. 45:406-418.     Reference: June 17th, 2025
Gene Product: December 24th, 2015
5 months agoglp39 germin-like protein39:
 
   Jianhui Chun et al. 2025. Identification of the Maize GLP Family Genes and Their Expression in Response to Arbuscular Mycorrhizal Symbiosis Bull Bot Res. 45:406-418.     Reference: June 17th, 2025
Gene Product: December 24th, 2015
5 months agoglp40 germin-like protein40:
 
   Jianhui Chun et al. 2025. Identification of the Maize GLP Family Genes and Their Expression in Response to Arbuscular Mycorrhizal Symbiosis Bull Bot Res. 45:406-418.     Reference: June 17th, 2025
Gene Product: December 24th, 2015
5 months agoglp41 germin-like protein41:
 
   Jianhui Chun et al. 2025. Identification of the Maize GLP Family Genes and Their Expression in Response to Arbuscular Mycorrhizal Symbiosis Bull Bot Res. 45:406-418.     Reference: June 17th, 2025
Gene Product: December 24th, 2015
5 months agoglp42 germin-like protein42:
 
   Jianhui Chun et al. 2025. Identification of the Maize GLP Family Genes and Their Expression in Response to Arbuscular Mycorrhizal Symbiosis Bull Bot Res. 45:406-418.     Reference: June 17th, 2025
Gene Product: December 24th, 2015
5 months agoglp43 germin-like protein43:
 
   Jianhui Chun et al. 2025. Identification of the Maize GLP Family Genes and Their Expression in Response to Arbuscular Mycorrhizal Symbiosis Bull Bot Res. 45:406-418.     Reference: June 17th, 2025
Gene Product: December 24th, 2015
5 months agoglp44 germin-like protein44:
 
   Jianhui Chun et al. 2025. Identification of the Maize GLP Family Genes and Their Expression in Response to Arbuscular Mycorrhizal Symbiosis Bull Bot Res. 45:406-418.     Reference: June 17th, 2025
Gene Product: December 24th, 2015
5 months agoglp45 germin-like protein45:
 
   Jianhui Chun et al. 2025. Identification of the Maize GLP Family Genes and Their Expression in Response to Arbuscular Mycorrhizal Symbiosis Bull Bot Res. 45:406-418.     Reference: June 17th, 2025
Gene Product: December 24th, 2015
5 months agoglp47 germin-like protein47:
 
   Jianhui Chun et al. 2025. Identification of the Maize GLP Family Genes and Their Expression in Response to Arbuscular Mycorrhizal Symbiosis Bull Bot Res. 45:406-418.     Reference: June 17th, 2025
Gene Product: December 24th, 2015
5 months agoglp30 germin-like protein30:
1.07
GRMZM2G363004
Zm00001d032047
Zm00001eb040290
Jianhui Chun et al. 2025. Identification of the Maize GLP Family Genes and Their Expression in Response to Arbuscular Mycorrhizal Symbiosis Bull Bot Res. 45:406-418.     Reference: June 17th, 2025
Gene Product: December 24th, 2015
5 months agoglp34 germin-like protein34:
8.00
GRMZM2G103512
Zm00001d008210
Zm00001eb332460
Jianhui Chun et al. 2025. Identification of the Maize GLP Family Genes and Their Expression in Response to Arbuscular Mycorrhizal Symbiosis Bull Bot Res. 45:406-418.     Reference: June 17th, 2025
Gene Product: December 24th, 2015
5 months agoglp32 germin-like protein32:
7.01
GRMZM2G161097
Zm00001d018954
Zm00001eb301380
Jianhui Chun et al. 2025. Identification of the Maize GLP Family Genes and Their Expression in Response to Arbuscular Mycorrhizal Symbiosis Bull Bot Res. 45:406-418.     Reference: June 17th, 2025
Gene Product: December 24th, 2015
5 months agoyab12 C2C2-YABBY-transcription factor 12:
 
GRMZM2G085873
Zm00001d033508
Regina A Fairbanks et al. 2025. An ancient origin of the naked grains of maize Proc Natl Acad Sci, USA. :doi: 10.1073/pnas.2503748122.     Reference: June 17th, 2025
Gene Product: October 16th, 2015
5 months agosdg127 set domain gene127:
 
GRMZM2G473138
Zm00001d023333
Zm00001eb406010
Lynn, JS et al. 2025. Identification of Proteins Associated with Stably Integrated Maize b1 Tandem Repeat Transgene Chromatin Plants. 14:1863.     Reference: June 17th, 2025
Gene Product: June 30th, 2017
5 months agoglp28 germin-like protein28:
 
GRMZM2G386138
Zm00001d005333
Zm00001eb095950
Jianhui Chun et al. 2025. Identification of the Maize GLP Family Genes and Their Expression in Response to Arbuscular Mycorrhizal Symbiosis Bull Bot Res. 45:406-418.     Reference: June 17th, 2025
Gene Product: December 24th, 2015
5 months agosin2 sin homolog2:
 
GRMZM2G334457
Zm00001d008429
Zm00001eb334400
Lynn, JS et al. 2025. Identification of Proteins Associated with Stably Integrated Maize b1 Tandem Repeat Transgene Chromatin Plants. 14:1863.     Reference: June 17th, 2025
Gene Product: September 1st, 2003
5 months agoglp2 germin-like protein2:
 
GRMZM2G045809
Zm00001d004401
Zm00001eb088410
Jianhui Chun et al. 2025. Identification of the Maize GLP Family Genes and Their Expression in Response to Arbuscular Mycorrhizal Symbiosis Bull Bot Res. 45:406-418.     Reference: June 17th, 2025
Gene Product: December 24th, 2015
5 months agoglp33 germin-like protein33:
5.04
GRMZM2G115491
Zm00001d016697
Zm00001eb242750
Jianhui Chun et al. 2025. Identification of the Maize GLP Family Genes and Their Expression in Response to Arbuscular Mycorrhizal Symbiosis Bull Bot Res. 45:406-418.     Reference: June 17th, 2025
Gene Product: December 24th, 2015
5 months agocl48276_1  :
7.05
GRMZM2G010342
Zm00001d022405
Lynn, JS et al. 2025. Identification of Proteins Associated with Stably Integrated Maize b1 Tandem Repeat Transgene Chromatin Plants. 14:1863.     Reference: June 17th, 2025
Gene Product: September 9th, 2024
5 months agopco079267  :
8.02
GRMZM2G011213
Zm00001d008610
Zm00001eb335790
Pearl Abu et al. 2025. SeqSNP-based genic markers reveal genetic architecture and candidate genes for low nitrogen tolerance in tropical maize inbred lines. Frontiers in Plant Science. 16:1558741.     Reference: June 17th, 2025
Variation: September 25th, 2007
5 months agoglp24 germin-like protein24:
10.03
GRMZM2G071390
Zm00001d000017
Zm00001eb413190
Jianhui Chun et al. 2025. Identification of the Maize GLP Family Genes and Their Expression in Response to Arbuscular Mycorrhizal Symbiosis Bull Bot Res. 45:406-418.     Reference: June 17th, 2025
Gene Product: December 24th, 2015
5 months agoIDP1633  :
1.11
GRMZM2G004459
Zm00001d034590
Zm00001eb062070
Pearl Abu et al. 2025. SeqSNP-based genic markers reveal genetic architecture and candidate genes for low nitrogen tolerance in tropical maize inbred lines. Frontiers in Plant Science. 16:1558741.     Reference: June 17th, 2025
Variation: March 31st, 2005
5 months agoIDP2365  :
8.05
GRMZM2G176707
Zm00001d011130
Zm00001eb356410
Lynn, JS et al. 2025. Identification of Proteins Associated with Stably Integrated Maize b1 Tandem Repeat Transgene Chromatin Plants. 14:1863.     Reference: June 17th, 2025
Variation: March 31st, 2005
5 months agogpm332  :
3.04
GRMZM2G565140
Zm00001d041480
Zm00001eb135960
Lynn, JS et al. 2025. Identification of Proteins Associated with Stably Integrated Maize b1 Tandem Repeat Transgene Chromatin Plants. 14:1863.     Reference: June 17th, 2025
Gene Product: December 13th, 2022
5 months agodcl105 dicer-like 105:
 
GRMZM2G301405
Zm00001d013796
Zm00001eb219690
Mino, M et al. 2025. Overcoming reproductive barriers: genetic and molecular insights for enhanced crop breeding Euphytica. 221:110.   AT3G03300 (TAIR) Reference: June 16th, 2025
Gene Product: September 5th, 2006
Variation: July 28th, 2023
5 months agopme3 pectin methylesterase3:
 
   Mino, M et al. 2025. Overcoming reproductive barriers: genetic and molecular insights for enhanced crop breeding Euphytica. 221:110.     Reference: June 16th, 2025
Gene Product: September 10th, 2018
5 months agossrp1 starch synthesis regulating protein1:
 
GRMZM2G104501
Zm00001d033529
Zm00001eb053230
Chen, L et al. 2025. ZmSSRP1, transactivated by OPAQUE11, positively regulates starch biosynthesis in maize endosperm. Plant Biotechnol J. :doi: 10.1111/pbi.70191.   LOC_Os03g48170 (MSU/TIGR)
Os03g0686900 (Gramene)
Reference: June 16th, 2025
Gene Product: June 13th, 2022
5 months agossrp2 starch synthesis regulating protein2:
 
GRMZM2G122274
Zm00001d013530
Zm00001eb217200
Chen, L et al. 2025. ZmSSRP1, transactivated by OPAQUE11, positively regulates starch biosynthesis in maize endosperm. Plant Biotechnol J. :doi: 10.1111/pbi.70191.   LOC_Os03g48170 (MSU/TIGR)
Os03g0686900 (Gramene)
Reference: June 16th, 2025
Gene Product: June 13th, 2022
5 months agocct14 CO CO-LIKE TIMING OF CAB1 protein domain14:
 
GRMZM2G033962
Zm00001d007240
Zm00001eb112080
Liu, ZX et al. 2025. ZmPRR37-ZmYSL14 module enhances salt stress tolerance in maize. Theor Appl Genet. 138:153.     Reference: June 15th, 2025
Gene Product: January 11th, 2018
Variation: November 28th, 2023
5 months agoysl8 yellow stripe-like transporter8:
 
GRMZM2G018148
Zm00001d054041
Zm00001eb209500
Liu, ZX et al. 2025. ZmPRR37-ZmYSL14 module enhances salt stress tolerance in maize. Theor Appl Genet. 138:153.     Reference: June 15th, 2025
Gene Product: September 1st, 2003
Variation: June 15th, 2025
5 months agocct40 CO CO-LIKE TIMING OF CAB1 protein domain40:
 
GRMZM2G127426
Zm00001d039222
Zm00001eb297870
Liu, ZX et al. 2025. ZmPRR37-ZmYSL14 module enhances salt stress tolerance in maize. Theor Appl Genet. 138:153.     Reference: June 15th, 2025
Gene Product: June 18th, 2018
5 months agoring496 RING-type E3 ligase496:
 
GRMZM2G065893
Zm00001d012101
Zm00001eb365180
Doudou Sun et al. 2025. Genome-Wide Association Study and RNA-Seq Elucidate the Genetic Mechanisms Behind Aphid (Rhopalosiphum maidis F.) Resistance in Maize. Plants. 14:1614.     Reference: June 13th, 2025
Gene Product: May 22nd, 2025
5 months agoglx4 glyoxylase4:
 
   Huaijun Tang et al. 2025. Resilience of Maize to Environmental Stress: Insights into Drought and Heat Tolerance. Int J Mol Sci. 26:5274.     Reference: June 13th, 2025
Gene Product: February 13th, 2023
5 months agoppr197 pentatricopeptide repeat197:
 
   Doudou Sun et al. 2025. Genome-Wide Association Study and RNA-Seq Elucidate the Genetic Mechanisms Behind Aphid (Rhopalosiphum maidis F.) Resistance in Maize. Plants. 14:1614.     Reference: June 13th, 2025
Gene Product: December 27th, 2016
5 months agoIDP4955  :
10.06
GRMZM2G402027
Zm00001d026166
Zm00001eb429620
Huaijun Tang et al. 2025. Resilience of Maize to Environmental Stress: Insights into Drought and Heat Tolerance. Int J Mol Sci. 26:5274.     Reference: June 13th, 2025
Variation: January 2nd, 2024
5 months agohsp18 heat shock protein18:
9.06
GRMZM2G479260
Zm00001d047841
Zm00001eb397940
Huaijun Tang et al. 2025. Resilience of Maize to Environmental Stress: Insights into Drought and Heat Tolerance. Int J Mol Sci. 26:5274.     Reference: June 13th, 2025
Variation: November 6th, 2024
5 months agodnaJ96 DnaJ/Hsp40 96:
10.03
GRMZM5G856084
Zm00001d024635
Zm00001eb416450
Huaijun Tang et al. 2025. Resilience of Maize to Environmental Stress: Insights into Drought and Heat Tolerance. Int J Mol Sci. 26:5274.     Reference: June 13th, 2025
Gene Product: September 1st, 2003
5 months agoygl1 yellow-green leaf1:
1.01
GRMZM2G007441
Zm00001d027518
Zm00007a00019471
Huaijun Tang et al. 2025. Resilience of Maize to Environmental Stress: Insights into Drought and Heat Tolerance. Int J Mol Sci. 26:5274.     Reference: June 13th, 2025
Variation: June 24th, 2024
5 months agohagtf36 GNAT-transcription factor 36:
 
GRMZM2G096352
Zm00001d048194
Zm00001eb401150
Song, YF et al. 2025. Integrative Physiology, Transcriptome, and Metabolome Analysis Reveals Pathways and the Key Gene ZmARF27 Involved in Vigor Loss during Artificial Aging of Maize Seeds J Agric Food Chem. :doi: 10.1021/acs.jafc.5c04642.     Reference: June 13th, 2025
Gene Product: October 17th, 2024
5 months agohsftf28 HSF-transcription factor 28:
 
GRMZM2G118047
Zm00001d046299
Zm00001eb384760
Huaijun Tang et al. 2025. Resilience of Maize to Environmental Stress: Insights into Drought and Heat Tolerance. Int J Mol Sci. 26:5274.     Reference: June 13th, 2025
Gene Product: May 15th, 2020
5 months agojmj12 JUMONJI-transcription factor 12:
 
GRMZM2G054162
Zm00001d054070
Zm00001eb209780
Doudou Sun et al. 2025. Genome-Wide Association Study and RNA-Seq Elucidate the Genetic Mechanisms Behind Aphid (Rhopalosiphum maidis F.) Resistance in Maize. Plants. 14:1614.     Reference: June 13th, 2025
Gene Product: April 3rd, 2019
5 months agoumc1716  :
4.11
GRMZM2G119393
Zm00001d054033
Zm00001eb209440
Song, YF et al. 2025. Integrative Physiology, Transcriptome, and Metabolome Analysis Reveals Pathways and the Key Gene ZmARF27 Involved in Vigor Loss during Artificial Aging of Maize Seeds J Agric Food Chem. :doi: 10.1021/acs.jafc.5c04642.     Reference: June 13th, 2025
Variation: September 1st, 2003
5 months agoumc83a  :
1.08
GRMZM2G001812
Zm00001d032745
Zm00001eb046220
Huaijun Tang et al. 2025. Resilience of Maize to Environmental Stress: Insights into Drought and Heat Tolerance. Int J Mol Sci. 26:5274.   AT4G08850 (TAIR) Reference: June 13th, 2025
Gene Product: April 25th, 2025
5 months agokrp15 kinesin-related protein15:
10.04
GRMZM2G054418
Zm00001d025951
Zm00001eb427560
Doudou Sun et al. 2025. Genome-Wide Association Study and RNA-Seq Elucidate the Genetic Mechanisms Behind Aphid (Rhopalosiphum maidis F.) Resistance in Maize. Plants. 14:1614.     Reference: June 13th, 2025
Gene Product: September 18th, 2023
Variation: January 3rd, 2013
5 months agocybv1 cytochrome b5-1:
2.06
GRMZM2G152438
Zm00001d005188
Zm00001eb095000
Huaijun Tang et al. 2025. Resilience of Maize to Environmental Stress: Insights into Drought and Heat Tolerance. Int J Mol Sci. 26:5274.     Reference: June 13th, 2025
Gene Product: March 18th, 2025
5 months agopgip3 polygalacturonase-inhibiting protein3:
 
GRMZM2G025105
Zm00001d035753
Zm00001eb267480
Song, YF et al. 2025. Integrative Physiology, Transcriptome, and Metabolome Analysis Reveals Pathways and the Key Gene ZmARF27 Involved in Vigor Loss during Artificial Aging of Maize Seeds J Agric Food Chem. :doi: 10.1021/acs.jafc.5c04642.     Reference: June 13th, 2025
Gene Product: September 4th, 2019
5 months agouce15 ubiquitin-conjugating enzyme15:
 
GRMZM2G063931
Zm00001d048473
Zm00001eb403740
Huaijun Tang et al. 2025. Resilience of Maize to Environmental Stress: Insights into Drought and Heat Tolerance. Int J Mol Sci. 26:5274.     Reference: June 13th, 2025
Gene Product: December 19th, 2019
5 months agohsp70-1 heat shock protein70-1:
 
GRMZM2G056039
Zm00001d030725
Zm00001eb029200
Huaijun Tang et al. 2025. Resilience of Maize to Environmental Stress: Insights into Drought and Heat Tolerance. Int J Mol Sci. 26:5274.     Reference: June 13th, 2025
Gene Product: September 1st, 2003
5 months agoring110 RING-type E3 ligase110:
 
GRMZM2G171277
Zm00001d003497
Zm00001eb081320
Huaijun Tang et al. 2025. Resilience of Maize to Environmental Stress: Insights into Drought and Heat Tolerance. Int J Mol Sci. 26:5274.     Reference: June 13th, 2025
Gene Product: May 22nd, 2025
5 months agoGRMZM2G465999  :
 
GRMZM2G465999
Zm00001d021726
Zm00001eb323640
Doudou Sun et al. 2025. Genome-Wide Association Study and RNA-Seq Elucidate the Genetic Mechanisms Behind Aphid (Rhopalosiphum maidis F.) Resistance in Maize. Plants. 14:1614.     Reference: June 13th, 2025
Gene Product: January 27th, 2025
5 months agoIDP1468  :
1.08
GRMZM2G013600
Zm00001d033099
Zm00001eb049200
Song, YF et al. 2025. Integrative Physiology, Transcriptome, and Metabolome Analysis Reveals Pathways and the Key Gene ZmARF27 Involved in Vigor Loss during Artificial Aging of Maize Seeds J Agric Food Chem. :doi: 10.1021/acs.jafc.5c04642.     Reference: June 13th, 2025
Variation: March 31st, 2005
5 months agorpl33 50S ribosomal protein L33:
6.06
GRMZM2G176133
Zm00001d038686
Zm00001eb292720
Doudou Sun et al. 2025. Genome-Wide Association Study and RNA-Seq Elucidate the Genetic Mechanisms Behind Aphid (Rhopalosiphum maidis F.) Resistance in Maize. Plants. 14:1614.     Reference: June 13th, 2025
Variation: March 31st, 2005
5 months agoumi12 ustilago maydis induced12:
1.10
GRMZM2G149923
Zm00001d033980
Zm00001eb056900
Huaijun Tang et al. 2025. Resilience of Maize to Environmental Stress: Insights into Drought and Heat Tolerance. Int J Mol Sci. 26:5274.     Reference: June 13th, 2025
Gene Product: January 12th, 2015
Variation: April 17th, 2008
5 months agogst56 glutathione S-transferase56:
 
GRMZM2G423555
Zm00001d021469
Zm00001eb321210
Abdul Salam et al. 2025. Cerium Oxide Nanoparticle Protects Maize from Cobalt Stress: Insights from Transcriptomics and Oxidative Stress Response Analysis. ACS Appl Mater Interfaces. :doi: 10.1021/acsami.5c05835.     Reference: June 12th, 2025
Gene Product: September 1st, 2003
5 months agofht6 flavanone 3-hydroxylase6:
 
GRMZM2G122280
Zm00001d042980
Zm00001eb148960
Tongtong Xiao et al. 2025. Systematic analysis of the F3H family in maize reveals a role for ZmF3H6 in salt stress tolerance New Crops. :doi: 10.1016/j.ncrops.2025.100082.     Reference: June 12th, 2025
Gene Product: June 12th, 2025
5 months agofht15 flavanone 3-hydroxylase15:
 
GRMZM2G117246
Zm00001d047744
Zm00001eb397060
Tongtong Xiao et al. 2025. Systematic analysis of the F3H family in maize reveals a role for ZmF3H6 in salt stress tolerance New Crops. :doi: 10.1016/j.ncrops.2025.100082.     Reference: June 12th, 2025
Gene Product: June 12th, 2025
5 months agoLOC100217265  :
 
GRMZM2G354615
GRMZM2G354621
Zm00001d020185
Zm00001eb310570
Abdul Salam et al. 2025. Cerium Oxide Nanoparticle Protects Maize from Cobalt Stress: Insights from Transcriptomics and Oxidative Stress Response Analysis. ACS Appl Mater Interfaces. :doi: 10.1021/acsami.5c05835.     Reference: June 12th, 2025
Gene Product: July 10th, 2019
5 months agoprx81 peroxidase81:
 
GRMZM2G150731
Zm00001d022289
Zm00001eb328860
Abdul Salam et al. 2025. Cerium Oxide Nanoparticle Protects Maize from Cobalt Stress: Insights from Transcriptomics and Oxidative Stress Response Analysis. ACS Appl Mater Interfaces. :doi: 10.1021/acsami.5c05835.     Reference: June 12th, 2025
Gene Product: January 20th, 2025
5 months agoZm00001eb155880  :
 
AC233882.1_FG005
Zm00001d043765
Zm00001eb155880
Abdul Salam et al. 2025. Cerium Oxide Nanoparticle Protects Maize from Cobalt Stress: Insights from Transcriptomics and Oxidative Stress Response Analysis. ACS Appl Mater Interfaces. :doi: 10.1021/acsami.5c05835.     Reference: June 12th, 2025
Gene Product: November 27th, 2023
5 months agoppr49 pentatricopeptide repeat protein49:
 
GRMZM2G076257
Zm00001d031535
Zm00001eb035760
Jihong Zhang et al. 2025. Genetic dissection of maize kernel protein content through a multi-locus genome-wide association study J Integr Agric. :doi: 10.1016/j.jia.2025.06.016.   AT4G18750 (TAIR) Reference: June 12th, 2025
Gene Product: December 27th, 2016
5 months agoring263 RING-type E3 ligase263:
 
   Galli, M et al. 2025. Transcription factor binding divergence drives transcriptional and phenotypic variation in maize Nature Plants. :doi: 10.1038/s41477-025-02007-8.     Reference: June 12th, 2025
Gene Product: May 22nd, 2025
5 months agocyp58 cytochrome P450 58:
 
   Abdul Salam et al. 2025. Cerium Oxide Nanoparticle Protects Maize from Cobalt Stress: Insights from Transcriptomics and Oxidative Stress Response Analysis. ACS Appl Mater Interfaces. :doi: 10.1021/acsami.5c05835.     Reference: June 12th, 2025
Gene Product: December 30th, 2022
5 months agofht8 flavanone 3-hydroxylase8:
 
   Tongtong Xiao et al. 2025. Systematic analysis of the F3H family in maize reveals a role for ZmF3H6 in salt stress tolerance New Crops. :doi: 10.1016/j.ncrops.2025.100082.     Reference: June 12th, 2025
Gene Product: June 12th, 2025
5 months agoyige2 yige2:
9.04
GRMZM2G358238
Zm00001d047617
Zm00001eb395950
Wang, ZW et al. 2025. Mitigating drought-associated reproductive failure in maize: From physiological mechanisms to practical solutions Crop J. :doi: 10.1016/j.cj.2025.05.004.   AT3G15095 (TAIR) Reference: June 12th, 2025
Gene Product: May 28th, 2024
Variation: September 25th, 2007
5 months agocap1 calcium pump1:
8.05
GRMZM2G056014
Zm00001d011013
Zm00001eb355420
Abdul Salam et al. 2025. Cerium Oxide Nanoparticle Protects Maize from Cobalt Stress: Insights from Transcriptomics and Oxidative Stress Response Analysis. ACS Appl Mater Interfaces. :doi: 10.1021/acsami.5c05835.     Reference: June 12th, 2025
Gene Product: May 20th, 2015
Variation: September 1st, 2003
5 months agonrat5 nramp aluminum transporter5:
7.02
GRMZM2G147560
Zm00001d019327
Zm00001eb304610
Abdul Salam et al. 2025. Cerium Oxide Nanoparticle Protects Maize from Cobalt Stress: Insights from Transcriptomics and Oxidative Stress Response Analysis. ACS Appl Mater Interfaces. :doi: 10.1021/acsami.5c05835.     Reference: June 12th, 2025
Gene Product: August 17th, 2015
5 months agofht13 flavanone 3-hydroxylase13:
6.01
Zm00001d035462
Zm00001eb265150
Tongtong Xiao et al. 2025. Systematic analysis of the F3H family in maize reveals a role for ZmF3H6 in salt stress tolerance New Crops. :doi: 10.1016/j.ncrops.2025.100082.     Reference: June 12th, 2025
Gene Product: June 12th, 2025
Variation: September 1st, 2003
5 months agoumc1149  :
8.06
GRMZM2G105005
Zm00001d011958
Zm00001eb363840
Abdul Salam et al. 2025. Cerium Oxide Nanoparticle Protects Maize from Cobalt Stress: Insights from Transcriptomics and Oxidative Stress Response Analysis. ACS Appl Mater Interfaces. :doi: 10.1021/acsami.5c05835.     Reference: June 12th, 2025
Gene Product: September 1st, 2003
Variation: April 18th, 2017
5 months agothx26 Trihelix-transcription factor 26:
 
GRMZM2G002978
Zm00001d003836
Zm00001eb084300
Galli, M et al. 2025. Transcription factor binding divergence drives transcriptional and phenotypic variation in maize Nature Plants. :doi: 10.1038/s41477-025-02007-8.     Reference: June 12th, 2025
Gene Product: November 9th, 2021
5 months agobhlh85 bHLH-transcription factor 85:
 
GRMZM2G354618
Zm00001d049721
Zm00001eb174220
Galli, M et al. 2025. Transcription factor binding divergence drives transcriptional and phenotypic variation in maize Nature Plants. :doi: 10.1038/s41477-025-02007-8.     Reference: June 12th, 2025
Gene Product: September 14th, 2016
5 months agogst28 glutathione transferase28:
3.05
GRMZM2G146475
Zm00001d042102
Zm00001eb141060
Abdul Salam et al. 2025. Cerium Oxide Nanoparticle Protects Maize from Cobalt Stress: Insights from Transcriptomics and Oxidative Stress Response Analysis. ACS Appl Mater Interfaces. :doi: 10.1021/acsami.5c05835.     Reference: June 12th, 2025
Gene Product: September 1st, 2003
Variation: August 20th, 2010
5 months agogst35 glutathione transferase35:
9.08
GRMZM2G161891
Zm00001d048559
Zm00001eb404570
Abdul Salam et al. 2025. Cerium Oxide Nanoparticle Protects Maize from Cobalt Stress: Insights from Transcriptomics and Oxidative Stress Response Analysis. ACS Appl Mater Interfaces. :doi: 10.1021/acsami.5c05835.     Reference: June 12th, 2025
Gene Product: September 1st, 2003
5 months agogst23 glutathione transferase23:
7.02
GRMZM2G416632
Zm00001d020780
Zm00001eb315490
Abdul Salam et al. 2025. Cerium Oxide Nanoparticle Protects Maize from Cobalt Stress: Insights from Transcriptomics and Oxidative Stress Response Analysis. ACS Appl Mater Interfaces. :doi: 10.1021/acsami.5c05835.     Reference: June 12th, 2025
Gene Product: September 1st, 2003
Variation: August 20th, 2010
5 months agogst41 glutathione transferase41:
6.05
GRMZM2G097989
Zm00001d038192
Zm00001eb288100
Abdul Salam et al. 2025. Cerium Oxide Nanoparticle Protects Maize from Cobalt Stress: Insights from Transcriptomics and Oxidative Stress Response Analysis. ACS Appl Mater Interfaces. :doi: 10.1021/acsami.5c05835.     Reference: June 12th, 2025
Gene Product: September 1st, 2003
Variation: September 1st, 2010
5 months agotsh1 tassel sheath1:
6.07
GRMZM2G325850
Zm00001d039113
Zm00001eb296770
Galli, M et al. 2025. Transcription factor binding divergence drives transcriptional and phenotypic variation in maize Nature Plants. :doi: 10.1038/s41477-025-02007-8.     Reference: June 12th, 2025
Gene Product: November 14th, 2022
Variation: October 6th, 2011
5 months agoidc1 iron deficiency candidate1:
6.01
Zm00001d035308
Zm00001eb264660
Tongtong Xiao et al. 2025. Systematic analysis of the F3H family in maize reveals a role for ZmF3H6 in salt stress tolerance New Crops. :doi: 10.1016/j.ncrops.2025.100082.     Reference: June 12th, 2025
Gene Product: June 12th, 2025
Variation: September 1st, 2003
5 months agometp4 metal tolerance protein4:
1.03
GRMZM2G118497
Zm00001d028344
Zm00001eb009890
Abdul Salam et al. 2025. Cerium Oxide Nanoparticle Protects Maize from Cobalt Stress: Insights from Transcriptomics and Oxidative Stress Response Analysis. ACS Appl Mater Interfaces. :doi: 10.1021/acsami.5c05835.     Reference: June 12th, 2025
Gene Product: May 23rd, 2024
5 months agoect18 evolutionarily conserved C-terminal18:
2.02
GRMZM2G102069
Zm00001d002372
Zm00001eb071290
Abdul Salam et al. 2025. Cerium Oxide Nanoparticle Protects Maize from Cobalt Stress: Insights from Transcriptomics and Oxidative Stress Response Analysis. ACS Appl Mater Interfaces. :doi: 10.1021/acsami.5c05835.     Reference: June 12th, 2025
Gene Product: April 25th, 2024
5 months agoprdx7 peroxiredoxin7:
3.04
GRMZM2G145449
Zm00001d040341
Zm00001eb128160
Abdul Salam et al. 2025. Cerium Oxide Nanoparticle Protects Maize from Cobalt Stress: Insights from Transcriptomics and Oxidative Stress Response Analysis. ACS Appl Mater Interfaces. :doi: 10.1021/acsami.5c05835.     Reference: June 12th, 2025
Gene Product: February 4th, 2021
5 months agoago2a argonaute2a:
 
GRMZM2G007791
Zm00001d002316
Zm00001eb070760
Abdul Salam et al. 2025. Cerium Oxide Nanoparticle Protects Maize from Cobalt Stress: Insights from Transcriptomics and Oxidative Stress Response Analysis. ACS Appl Mater Interfaces. :doi: 10.1021/acsami.5c05835.     Reference: June 12th, 2025
Gene Product: August 12th, 2016
5 months agofht4 flavanone 3-hydroxylase14:
 
AC212219.3_FG005
Zm00001d028744
Zm00001eb013360
Tongtong Xiao et al. 2025. Systematic analysis of the F3H family in maize reveals a role for ZmF3H6 in salt stress tolerance New Crops. :doi: 10.1016/j.ncrops.2025.100082.     Reference: June 12th, 2025
Gene Product: June 12th, 2025
5 months agotrpp13 trehalose-6-phosphate phosphatase13:
 
GRMZM5G890599
Zm00001d006375
Zm00001eb105040
Abdul Salam et al. 2025. Cerium Oxide Nanoparticle Protects Maize from Cobalt Stress: Insights from Transcriptomics and Oxidative Stress Response Analysis. ACS Appl Mater Interfaces. :doi: 10.1021/acsami.5c05835.     Reference: June 12th, 2025
Gene Product: October 3rd, 2020
5 months agoldh2 lactate dehydrogenase2:
5.03
GRMZM2G173192
Zm00001d014945
Zm00001eb229440
Abdul Salam et al. 2025. Cerium Oxide Nanoparticle Protects Maize from Cobalt Stress: Insights from Transcriptomics and Oxidative Stress Response Analysis. ACS Appl Mater Interfaces. :doi: 10.1021/acsami.5c05835.     Reference: June 12th, 2025
Gene Product: September 1st, 2003
5 months agofht7 flavanone 3-hydroxylase17:
 
GRMZM2G050234
Zm00001d002564
Zm00001eb073030
Tongtong Xiao et al. 2025. Systematic analysis of the F3H family in maize reveals a role for ZmF3H6 in salt stress tolerance New Crops. :doi: 10.1016/j.ncrops.2025.100082.   AT4G10500 (TAIR)
LOC_Os04g49210 (MSU/TIGR)
Reference: June 12th, 2025
Gene Product: April 30th, 2024
5 months agofht5 flavanone 3-hydroxylase5:
 
GRMZM2G025536
Zm00001d001924
Zm00001eb067040
Tongtong Xiao et al. 2025. Systematic analysis of the F3H family in maize reveals a role for ZmF3H6 in salt stress tolerance New Crops. :doi: 10.1016/j.ncrops.2025.100082.     Reference: June 12th, 2025
Gene Product: June 12th, 2025
5 months agoaaap41 amino acid/auxin permease41:
 
GRMZM2G127294
Zm00001d035163
Zm00001eb261490
Abdul Salam et al. 2025. Cerium Oxide Nanoparticle Protects Maize from Cobalt Stress: Insights from Transcriptomics and Oxidative Stress Response Analysis. ACS Appl Mater Interfaces. :doi: 10.1021/acsami.5c05835.     Reference: June 12th, 2025
Gene Product: March 31st, 2021
5 months agombf2 multi-protein bridging factor homolog2:
 
GRMZM2G051135
Zm00001d046471
Zm00001eb386040
Abdul Salam et al. 2025. Cerium Oxide Nanoparticle Protects Maize from Cobalt Stress: Insights from Transcriptomics and Oxidative Stress Response Analysis. ACS Appl Mater Interfaces. :doi: 10.1021/acsami.5c05835.     Reference: June 12th, 2025
Gene Product: June 30th, 2021
5 months agofht11 flavanone 3-hydroxylase11:
 
GRMZM2G146234
Zm00001d051896
Zm00001eb191220
Tongtong Xiao et al. 2025. Systematic analysis of the F3H family in maize reveals a role for ZmF3H6 in salt stress tolerance New Crops. :doi: 10.1016/j.ncrops.2025.100082.     Reference: June 12th, 2025
Gene Product: June 12th, 2025
5 months agogrx15 glutaredoxin15:
 
GRMZM2G413315
Zm00001d027695
Zm00001eb004060
Abdul Salam et al. 2025. Cerium Oxide Nanoparticle Protects Maize from Cobalt Stress: Insights from Transcriptomics and Oxidative Stress Response Analysis. ACS Appl Mater Interfaces. :doi: 10.1021/acsami.5c05835.     Reference: June 12th, 2025
Gene Product: January 21st, 2021
5 months agoadh3 alcohol dehydrogenase3:
 
GRMZM2G152975
Zm00001d030348
Zm00001eb026710
Abdul Salam et al. 2025. Cerium Oxide Nanoparticle Protects Maize from Cobalt Stress: Insights from Transcriptomics and Oxidative Stress Response Analysis. ACS Appl Mater Interfaces. :doi: 10.1021/acsami.5c05835.     Reference: June 12th, 2025
Gene Product: July 8th, 2009
5 months agomate37 multidrug and toxic compound extrusion37:
 
GRMZM2G132995
Zm00001d000196
Zm00001eb285960
Abdul Salam et al. 2025. Cerium Oxide Nanoparticle Protects Maize from Cobalt Stress: Insights from Transcriptomics and Oxidative Stress Response Analysis. ACS Appl Mater Interfaces. :doi: 10.1021/acsami.5c05835.     Reference: June 12th, 2025
Gene Product: August 17th, 2015
5 months agofht14 flavanone 3-hydroxylase14:
9.02
AC197699.3_FG003
Zm00001d045233
Zm00001eb375840
Tongtong Xiao et al. 2025. Systematic analysis of the F3H family in maize reveals a role for ZmF3H6 in salt stress tolerance New Crops. :doi: 10.1016/j.ncrops.2025.100082.     Reference: June 12th, 2025
Gene Product: June 12th, 2025
Variation: September 25th, 2007
5 months agoIDP340  :
1.09
GRMZM2G042040
Zm00001d033707
Zm00001eb054680
Abdul Salam et al. 2025. Cerium Oxide Nanoparticle Protects Maize from Cobalt Stress: Insights from Transcriptomics and Oxidative Stress Response Analysis. ACS Appl Mater Interfaces. :doi: 10.1021/acsami.5c05835.     Reference: June 12th, 2025
Variation: March 31st, 2005
5 months agoaldh2 aldehyde dehydrogenase2:
4.06
GRMZM2G125268
Zm00001d051754
Zm00001eb189920
Abdul Salam et al. 2025. Cerium Oxide Nanoparticle Protects Maize from Cobalt Stress: Insights from Transcriptomics and Oxidative Stress Response Analysis. ACS Appl Mater Interfaces. :doi: 10.1021/acsami.5c05835.     Reference: June 12th, 2025
Gene Product: September 1st, 2003
Variation: May 13th, 2009
5 months agoptp1 protein tyrosine phosphatase1:
1.02
GRMZM2G052546
Zm00001d027309
Zm00001eb000620
Abdul Salam et al. 2025. Cerium Oxide Nanoparticle Protects Maize from Cobalt Stress: Insights from Transcriptomics and Oxidative Stress Response Analysis. ACS Appl Mater Interfaces. :doi: 10.1021/acsami.5c05835.     Reference: June 12th, 2025
Gene Product: January 22nd, 2021
5 months agogst59 glutathione S-transferase59:
10.03
GRMZM2G124974
Zm00001d023968
Zm00001eb411190
Abdul Salam et al. 2025. Cerium Oxide Nanoparticle Protects Maize from Cobalt Stress: Insights from Transcriptomics and Oxidative Stress Response Analysis. ACS Appl Mater Interfaces. :doi: 10.1021/acsami.5c05835.     Reference: June 12th, 2025
Gene Product: September 1st, 2003
5 months agogpdh1 glucose-6-phosphate dehydrogenase1:
2.04
GRMZM2G130230
Zm00001d003252
Zm00001eb079220
Abdul Salam et al. 2025. Cerium Oxide Nanoparticle Protects Maize from Cobalt Stress: Insights from Transcriptomics and Oxidative Stress Response Analysis. ACS Appl Mater Interfaces. :doi: 10.1021/acsami.5c05835.     Reference: June 12th, 2025
Gene Product: September 1st, 2003
5 months agophyC1 phytochromeC1:
1.10
GRMZM2G057935
Zm00001d034038
Zm00001eb057490
Xiao Luo et al. 2025. Molecular Mechanisms of Temperature-Mediated Flowering Regulation: From Arabidopsis to Short-Day Crops. Plant Cell Environ. :doi: 10.1111/pce.15678.     Reference: June 12th, 2025
Gene Product: June 30th, 2009
Variation: June 30th, 2009
5 months agobag7 B-cell lymphoma-2 (Bcl-2) associated athanogene7:
 
   Bi Lian et al. 2025. Spatiotemporal regulation of target mRNA cleavage by 21-nt phasiRNAs in maize anthers. Proc Natl Acad Sci, USA. 122:e2422647122.     Reference: June 11th, 2025
Gene Product: January 4th, 2025
5 months agorop2 Rho-related protein from plants2:
4.10
GRMZM5G846811
Zm00001d053899
Zm00001eb208230
Bi Lian et al. 2025. Spatiotemporal regulation of target mRNA cleavage by 21-nt phasiRNAs in maize anthers. Proc Natl Acad Sci, USA. 122:e2422647122.     Reference: June 11th, 2025
Gene Product: April 1st, 2004
Variation: January 25th, 2011
5 months agoumc1222  :
1.01 - 1.02
GRMZM2G056870
Zm00001d027688
Zm00001eb004030
Bi Lian et al. 2025. Spatiotemporal regulation of target mRNA cleavage by 21-nt phasiRNAs in maize anthers. Proc Natl Acad Sci, USA. 122:e2422647122.     Reference: June 11th, 2025
Variation: September 29th, 2016
5 months agoago5b argonaute5b:
2.09
GRMZM2G059033
Zm00001d007786
Zm00001eb116620
Bi Lian et al. 2025. Spatiotemporal regulation of target mRNA cleavage by 21-nt phasiRNAs in maize anthers. Proc Natl Acad Sci, USA. 122:e2422647122.     Reference: June 11th, 2025
Gene Product: August 12th, 2016
5 months agoAI855190  :
1.05
GRMZM2G443525
Zm00001d030888
Zm00001eb030390
Bi Lian et al. 2025. Spatiotemporal regulation of target mRNA cleavage by 21-nt phasiRNAs in maize anthers. Proc Natl Acad Sci, USA. 122:e2422647122.     Reference: June 11th, 2025
Variation: July 29th, 2004
5 months agoago108 argonaute108:
5.01
GRMZM2G461936
Zm00001d013542
Zm00001eb217290
Bi Lian et al. 2025. Spatiotemporal regulation of target mRNA cleavage by 21-nt phasiRNAs in maize anthers. Proc Natl Acad Sci, USA. 122:e2422647122.     Reference: June 11th, 2025
Gene Product: August 12th, 2016
Variation: September 11th, 2007
5 months agotrh2 thioredoxin h homolog2:
7.01
GRMZM2G144653
Zm00001d019034
Zm00001eb302140
Bi Lian et al. 2025. Spatiotemporal regulation of target mRNA cleavage by 21-nt phasiRNAs in maize anthers. Proc Natl Acad Sci, USA. 122:e2422647122.     Reference: June 11th, 2025
Gene Product: September 1st, 2003
5 months agoago1d argonaute1d:
 
GRMZM2G361518
Zm00001d014875
Zm00001eb228770
Bi Lian et al. 2025. Spatiotemporal regulation of target mRNA cleavage by 21-nt phasiRNAs in maize anthers. Proc Natl Acad Sci, USA. 122:e2422647122.   AT1G48410 (TAIR) Reference: June 11th, 2025
Gene Product: August 12th, 2016
5 months agoring347 RING-type E3 ligase347:
5.05
GRMZM2G362883
Zm00001d017252
Zm00001eb247460
Bi Lian et al. 2025. Spatiotemporal regulation of target mRNA cleavage by 21-nt phasiRNAs in maize anthers. Proc Natl Acad Sci, USA. 122:e2422647122.     Reference: June 11th, 2025
Gene Product: May 22nd, 2025
5 months agotip4a tonoplast intrinsic protein4:
6.05
GRMZM2G103945
Zm00001d037779
Zm00001eb284350
Pankievicz, VCS et al. 2022. Nitrogen fixation and mucilage production on maize aerial roots is controlled by aerial root development and border cell functions Frontiers in Plant Science. 13:977056.     Reference: June 10th, 2025
Gene Product: January 27th, 2022
Variation: July 10th, 2015
5 months agotip4b tonoplast intrinsic protein4:
8.04
GRMZM2G108273
Zm00001d010410
Zm00001eb350360
Pankievicz, VCS et al. 2022. Nitrogen fixation and mucilage production on maize aerial roots is controlled by aerial root development and border cell functions Frontiers in Plant Science. 13:977056.     Reference: June 10th, 2025
Gene Product: January 27th, 2022
Variation: August 27th, 2015
5 months agosodh1 sorbitol dehydrogenase homolog1:
1.07
GRMZM2G175423
Zm00001d031727
Zm00001eb037520
Pankievicz, VCS et al. 2022. Nitrogen fixation and mucilage production on maize aerial roots is controlled by aerial root development and border cell functions Frontiers in Plant Science. 13:977056.     Reference: June 10th, 2025
Gene Product: September 1st, 2003
Variation: August 13th, 2013
5 months agosweet16 sugars will eventually be exported transporter16:
 
GRMZM2G107597
Zm00001d029098
Zm00001eb016370
Pankievicz, VCS et al. 2022. Nitrogen fixation and mucilage production on maize aerial roots is controlled by aerial root development and border cell functions Frontiers in Plant Science. 13:977056.     Reference: June 10th, 2025
Gene Product: November 4th, 2015
5 months agosbt3 subtilisin3:
 
GRMZM2G363552
Zm00001d021912
Zm00001eb325470
Connolly, LN et al. 2025. Nitrogen fixation rates and aerial root production among maize landraces Frontiers in Plant Science. 16:1502884.     Reference: June 10th, 2025
Gene Product: November 11th, 2016
Variation: November 6th, 2023
5 months agoamt4 ammonium transporter4:
 
GRMZM2G062024
Zm00001d002964
Zm00001eb076780
Pankievicz, VCS et al. 2022. Nitrogen fixation and mucilage production on maize aerial roots is controlled by aerial root development and border cell functions Frontiers in Plant Science. 13:977056.     Reference: June 10th, 2025
Gene Product: July 8th, 2013
5 months agotom2 transporter of mugineic acid2:
 
GRMZM2G336448
Zm00001d052435
Zm00001eb196180
Pankievicz, VCS et al. 2022. Nitrogen fixation and mucilage production on maize aerial roots is controlled by aerial root development and border cell functions Frontiers in Plant Science. 13:977056.     Reference: June 10th, 2025
Gene Product: September 23rd, 2016
5 months agotom5 transporter of mugineic acid5:
 
GRMZM2G170302
Zm00001d040947
Zm00001eb132340
Pankievicz, VCS et al. 2022. Nitrogen fixation and mucilage production on maize aerial roots is controlled by aerial root development and border cell functions Frontiers in Plant Science. 13:977056.     Reference: June 10th, 2025
Gene Product: September 23rd, 2016
5 months agoIDP288  :
3.04
GRMZM2G063688
Zm00001d041504
Zm00001eb136160
Zm00001eb136170
Pankievicz, VCS et al. 2022. Nitrogen fixation and mucilage production on maize aerial roots is controlled by aerial root development and border cell functions Frontiers in Plant Science. 13:977056.     Reference: June 10th, 2025
Variation: March 31st, 2005
5 months agoZm00001d007623  :
 
Zm00001d007623
Zm00001eb115150
Zm00001eb115160
Cao, LR et al. 2025. Comprehensive transcriptome analysis provides molecular insights into the heterosis-associated drought tolerance and reveals ZmbHLH137 that promotes drought tolerance in maize seedlings. Frontiers in Plant Science. 16:1565650.     Reference: June 9th, 2025
Gene Product: June 12th, 2020
5 months agoxt8 beta-1,2-xylosyltransferase8:
4.11
Zm00001d054066
Zm00001eb209740
Cao, LR et al. 2025. Comprehensive transcriptome analysis provides molecular insights into the heterosis-associated drought tolerance and reveals ZmbHLH137 that promotes drought tolerance in maize seedlings. Frontiers in Plant Science. 16:1565650.     Reference: June 9th, 2025
Gene Product: February 10th, 2020
Variation: September 1st, 2003
5 months agozim28 ZIM-transcription factor 28:
7.02
GRMZM2G116614
Zm00001d020614
Zm00001eb314010
Cao, LR et al. 2025. Comprehensive transcriptome analysis provides molecular insights into the heterosis-associated drought tolerance and reveals ZmbHLH137 that promotes drought tolerance in maize seedlings. Frontiers in Plant Science. 16:1565650.     Reference: June 9th, 2025
Gene Product: February 24th, 2021
Variation: July 6th, 2021
5 months agohsftf9 HSF-transcription factor 9:
 
GRMZM2G026742
Zm00001d048041
Zm00001eb399800
Li, F et al. 2025. Environmental data provide marginal benefit for predicting climate adaptation. PLoS Genetics. 21:e1011714.     Reference: June 9th, 2025
Gene Product: May 15th, 2020
5 months agotif1 translation initiation factor1:
7.03
GRMZM5G835323
Zm00001d021668
Zm00001eb323110
Jores, T et al. 2025. Small DNA elements can act as both insulators and silencers in plants. Plant Cell. :doi: 10.1093/plcell/koaf084.     Reference: June 9th, 2025
Gene Product: September 1st, 2003
Variation: September 1st, 2003
5 months agoo*-QCL3024 opaque*-QCL3024:
 
   Chand, G et al. 2025. Dynamics of accumulation of lysine and tryptophan, and kernel modification in opaque2, opaque16, and double mutant (opaque2/opaque16) genotypes during kernel development in maize. J Appl Genet. :doi: 10.1007/s13353-025-00983-3.     Reference: June 9th, 2025
Variation: February 16th, 2013
5 months agohis302 histone H3 family2:
 
GRMZM2G475899
Zm00001d041672
Zm00001eb137500
Jores, T et al. 2025. Small DNA elements can act as both insulators and silencers in plants. Plant Cell. :doi: 10.1093/plcell/koaf084.     Reference: June 9th, 2025
Gene Product: June 15th, 2021
5 months agozip10 zinc-regulated, iron-regulated transporter-like protein10:
 
GRMZM2G047762
Zm00001d038437
Zm00001eb290160
Cao, LR et al. 2025. Comprehensive transcriptome analysis provides molecular insights into the heterosis-associated drought tolerance and reveals ZmbHLH137 that promotes drought tolerance in maize seedlings. Frontiers in Plant Science. 16:1565650.     Reference: June 9th, 2025
Gene Product: June 5th, 2019
5 months agoact8 actin8:
4.09
GRMZM2G126190
Zm00001d053177
Zm00001eb202400
Barbour, E et al. 2003. Maize Gos-2 promoters     Reference: June 9th, 2025
Gene Product: September 1st, 2003
Variation: April 29th, 2020
5 months agorpl44 ribosomal protein L44:
7.03
GRMZM2G009412
Zm00001d021652
Zm00001eb322940
Barbour, E et al. 2003. Maize Gos-2 promoters     Reference: June 9th, 2025
Gene Product: September 1st, 2003
Variation: January 24th, 2009
5 months agophys1 phytase1:
3.05
GRMZM2G140101
Zm00001d041660
Zm00001eb137390
Botta Thandava Ganesh et al. 2025. Unveiling the functionality of phytase activity in maize for enhanced bioavailability of minerals: a new avenue for nutritional security J Cereal Sci. :doi: 10.1016/j.jcs.2025.104220.     Reference: June 8th, 2025
Gene Product: September 1st, 2003
Variation: June 8th, 2025
5 months agophys2 phytase2:
3.05
GRMZM2G043336
Zm00001d041670
Zm00001eb137480
Botta Thandava Ganesh et al. 2025. Unveiling the functionality of phytase activity in maize for enhanced bioavailability of minerals: a new avenue for nutritional security J Cereal Sci. :doi: 10.1016/j.jcs.2025.104220.     Reference: June 8th, 2025
Gene Product: September 1st, 2003
Variation: March 4th, 2015
5 months agoskl1 shikimate kinase-like1:
 
GRMZM2G119249
Zm00001d030688
Zm00001eb028930
Liu, H et al. 2025. Maize big embryo 6 reveals roles of plastidial and cytosolic prephenate aminotransferases in seed and plant development. Plant Cell. 37:koaf067.   AT3G26900 (TAIR) Reference: June 6th, 2025
Gene Product: January 2nd, 2023
5 months agoskl2 shikimate kinase-like2:
 
GRMZM2G089147
Zm00001d030109
Zm00001eb025030
Liu, H et al. 2025. Maize big embryo 6 reveals roles of plastidial and cytosolic prephenate aminotransferases in seed and plant development. Plant Cell. 37:koaf067.   AT2G35500 (TAIR) Reference: June 6th, 2025
Gene Product: January 2nd, 2023
5 months agoshki2 shikimate kinase2:
 
GRMZM2G161566
Zm00001d052247
Zm00001eb194410
Liu, H et al. 2025. Maize big embryo 6 reveals roles of plastidial and cytosolic prephenate aminotransferases in seed and plant development. Plant Cell. 37:koaf067.   AT2G21940 (TAIR) Reference: June 6th, 2025
Gene Product: January 2nd, 2023
5 months agoZm00001eb391720  :
 
   Liu, H et al. 2025. Maize big embryo 6 reveals roles of plastidial and cytosolic prephenate aminotransferases in seed and plant development. Plant Cell. 37:koaf067.     Reference: June 6th, 2025
Gene Product: May 9th, 2025
5 months agopza03240  :
1.05
GRMZM2G053720
Zm00001d029853
Zm00001eb022980
Liu, H et al. 2025. Maize big embryo 6 reveals roles of plastidial and cytosolic prephenate aminotransferases in seed and plant development. Plant Cell. 37:koaf067.     Reference: June 6th, 2025
Gene Product: May 9th, 2025
5 months agonlp17 NLP-transcription factor 17:
 
GRMZM2G048582
Zm00001d006293
Zm00001eb104260
Gu, LJ et al. 2025. Transcription factor ZmNLP8 modulates nitrate utilization by transactivating ZmNiR1.2 in maize. Plant J. 122:e70263.     Reference: June 6th, 2025
Gene Product: December 3rd, 2019
5 months agonlp3 NLP-transcription factor 3:
 
GRMZM2G031398
Zm00001d003176
Zm00001eb078590
Gu, LJ et al. 2025. Transcription factor ZmNLP8 modulates nitrate utilization by transactivating ZmNiR1.2 in maize. Plant J. 122:e70263.     Reference: June 6th, 2025
Gene Product: December 3rd, 2019
5 months agotcptf20 TCP-transcription factor 20:
 
GRMZM2G034638
Zm00001d011985
Zm00001eb364110
Gu, LJ et al. 2025. Transcription factor ZmNLP8 modulates nitrate utilization by transactivating ZmNiR1.2 in maize. Plant J. 122:e70263.     Reference: June 6th, 2025
Gene Product: September 27th, 2019
5 months agotcptf8 TCP-transcription factor 8:
 
GRMZM2G092214
Zm00001d042305
Zm00001eb142960
Gu, LJ et al. 2025. Transcription factor ZmNLP8 modulates nitrate utilization by transactivating ZmNiR1.2 in maize. Plant J. 122:e70263.     Reference: June 6th, 2025
Gene Product: September 27th, 2019
5 months agonlp9 NLP-transcription factor 9:
10.04
GRMZM2G105004
Zm00001d025757
Zm00001eb425660
Gu, LJ et al. 2025. Transcription factor ZmNLP8 modulates nitrate utilization by transactivating ZmNiR1.2 in maize. Plant J. 122:e70263.     Reference: June 6th, 2025
Gene Product: December 3rd, 2019
Variation: July 29th, 2004
5 months agonlp7 NLP-transcription factor 7:
1.01
GRMZM2G109509
Zm00001d027510
Zm00001eb002490
Gu, LJ et al. 2025. Transcription factor ZmNLP8 modulates nitrate utilization by transactivating ZmNiR1.2 in maize. Plant J. 122:e70263.     Reference: June 6th, 2025
Gene Product: December 3rd, 2019
5 months agocmu2 chorismate mutase2:
5.04
GRMZM2G179454
Zm00001d015509
Zm00001eb234080
Liu, H et al. 2025. Maize big embryo 6 reveals roles of plastidial and cytosolic prephenate aminotransferases in seed and plant development. Plant Cell. 37:koaf067.     Reference: June 6th, 2025
Gene Product: February 12th, 2014
5 months agoadt4 arogenate dehydratase4:
9.06
GRMZM2G145451
Zm00001d047755
Zm00001eb397170
Liu, H et al. 2025. Maize big embryo 6 reveals roles of plastidial and cytosolic prephenate aminotransferases in seed and plant development. Plant Cell. 37:koaf067.     Reference: June 6th, 2025
Gene Product: March 4th, 2024
5 months agochsk1 Cochliobolus heterostrophus susceptibility kinase1:
 
GRMZM2G463574
Zm00001d039822
Zm00001eb124060
Zm00014a001903
Zhong, T et al. 2025. A maize near-isogenic line population designed for gene discovery and characterization of allelic effects Plant J. :doi: 10.1111/tpj.70228.     Reference: June 5th, 2025
Gene Product: April 25th, 2025
Variation: February 1st, 2023
5 months agoapy8 apyrase8:
 
GRMZM2G349839
Zm00001d007312
Zm00001eb112690
Muhammad Arif et al. 2025. Transcriptomic and Metabolomic Profiling Reveal the Close Implication of Alkaloid Biosynthesis and Ureide Metabolism to Drought Stress Tolerance in Maize. J Agric Food Chem. :doi: 10.1021/acs.jafc.5c01481.     Reference: June 5th, 2025
Gene Product: May 15th, 2024
5 months agocrt2 calreticulin2:
7.02
GRMZM2G358059
Zm00001d019283
Zm00001eb304290
Wang, H-Q et al. 2025. Inhibiting reactive oxygen species production mitigates endoplasmic reticulum damage in florets of developing maize ears under heat stress. Plant J. 122:e70243.     Reference: June 5th, 2025
Gene Product: February 12th, 2007
Variation: April 24th, 2010
5 months agosudh2 succinate dehydrogenase2:
4.05
GRMZM2G302259
Zm00001d049649
Zm00001eb173490
Wang, H-Q et al. 2025. Inhibiting reactive oxygen species production mitigates endoplasmic reticulum damage in florets of developing maize ears under heat stress. Plant J. 122:e70243.     Reference: June 5th, 2025
Gene Product: October 25th, 2016
Variation: October 25th, 2016
5 months agomybr68 MYB-related-transcription factor 68:
10.04 - 10.05
GRMZM2G410083
Zm00001d025823
Zm00001eb426280
Muhammad Arif et al. 2025. Transcriptomic and Metabolomic Profiling Reveal the Close Implication of Alkaloid Biosynthesis and Ureide Metabolism to Drought Stress Tolerance in Maize. J Agric Food Chem. :doi: 10.1021/acs.jafc.5c01481.     Reference: June 5th, 2025
Variation: September 1st, 2003
5 months agoumc1955  :
1.08
GRMZM2G067315
Zm00001d032825
Zm00001eb046920
Qiu-Yan Yang et al. 2025. Variation in photosynthetic efficiency among maize cultivars and its implications for breeding strategy. J Exp Bot. :doi: 10.1093/jxb/eraf249.     Reference: June 5th, 2025
Variation: December 22nd, 2016
5 months agoglk59 G2-like-transcription factor 59:
7.05
AC155434.2_FG005
Zm00001d022526
Zm00001eb331010
Diksha Jasrotia et al. 2025. Identification of QTLs associated with opaque2 modifiers influencing kernel opacity, kernel hardness, and tryptophan content in quality protein maize. Frontiers in Plant Science. 16:1553512.     Reference: June 5th, 2025
Variation: March 18th, 2021
5 months agogad5 glutamate decarboxylase5:
2.04
GRMZM2G101069
Zm00001d003531
Zm00001eb081600
Qiu-Yan Yang et al. 2025. Variation in photosynthetic efficiency among maize cultivars and its implications for breeding strategy. J Exp Bot. :doi: 10.1093/jxb/eraf249.   AT5G17330 (TAIR) Reference: June 5th, 2025
Gene Product: June 5th, 2025
5 months agoacs1 1-aminocyclopropane-1-carboxylate synthase1:
 
GRMZM2G163015
Zm00001d039487
Zm00001eb121190
Qiu-Yan Yang et al. 2025. Variation in photosynthetic efficiency among maize cultivars and its implications for breeding strategy. J Exp Bot. :doi: 10.1093/jxb/eraf249.     Reference: June 5th, 2025
Gene Product: May 16th, 2016
5 months agoaga1 alkaline galactosidase1:
 
GRMZM2G340656
Zm00001d019163
Zm00001eb303190
Muhammad Arif et al. 2025. Transcriptomic and Metabolomic Profiling Reveal the Close Implication of Alkaloid Biosynthesis and Ureide Metabolism to Drought Stress Tolerance in Maize. J Agric Food Chem. :doi: 10.1021/acs.jafc.5c01481.     Reference: June 5th, 2025
Gene Product: March 1st, 2018
5 months agopdi13 protein disulfide isomerase13:
 
GRMZM2G376542
Zm00001d005866
Zm00001eb100620
Wang, H-Q et al. 2025. Inhibiting reactive oxygen species production mitigates endoplasmic reticulum damage in florets of developing maize ears under heat stress. Plant J. 122:e70243.     Reference: June 5th, 2025
Gene Product: September 1st, 2003
5 months agocep6 C-terminally encoded peptide6:
 
AC206165.3_FG009
Zm00001d038748
Zm00001eb293270
Qiu-Yan Yang et al. 2025. Variation in photosynthetic efficiency among maize cultivars and its implications for breeding strategy. J Exp Bot. :doi: 10.1093/jxb/eraf249.     Reference: June 5th, 2025
Gene Product: October 23rd, 2020
5 months agohsp70-9 heat shock protein70-9:
 
GRMZM2G020040
Zm00001d017809
Zm00001eb252410
Wang, H-Q et al. 2025. Inhibiting reactive oxygen species production mitigates endoplasmic reticulum damage in florets of developing maize ears under heat stress. Plant J. 122:e70243.     Reference: June 5th, 2025
Gene Product: September 1st, 2003
5 months agogad4 glutamate decarboxylase4:
 
GRMZM2G098875
Zm00001d047981
Zm00001eb399220
Qiu-Yan Yang et al. 2025. Variation in photosynthetic efficiency among maize cultivars and its implications for breeding strategy. J Exp Bot. :doi: 10.1093/jxb/eraf249.   AT5G17330 (TAIR) Reference: June 5th, 2025
Gene Product: June 5th, 2025
5 months agoring11 RING-type E3 ligase:
 
   Li, D et al. 2025. Transcriptome and Metabolome Analysis of the Leaf Colour Mutation Mechanism in a Light-Green Leaf Mutant of Maize Agronomy. 15:1364.     Reference: June 4th, 2025
Gene Product: May 22nd, 2025
5 months agofrkh1 flowering regulator K-homology1:
 
   Cao, Y et al. 2025. RNA-binding protein ZmFRKH1 promotes maize flowering by modulating the stability of multiple flowering regulator RNAs J Integr Agric. :doi: 10.1016/j.jia.2025.06.008.   AT4G26000 (TAIR) Reference: June 4th, 2025
Gene Product: December 4th, 2021
Variation: June 4th, 2025
5 months agomets3 methionine synthase3:
1.09
GRMZM2G165747
Zm00001d033480
Zm00001eb052750
Li, D et al. 2025. Transcriptome and Metabolome Analysis of the Leaf Colour Mutation Mechanism in a Light-Green Leaf Mutant of Maize Agronomy. 15:1364.     Reference: June 4th, 2025
Gene Product: September 1st, 2003
5 months agoggps3 geranylgeranyl pyrophosphate synthase3:
 
GRMZM2G058404
Zm00001d008370
Zm00001eb333900
Li, D et al. 2025. Transcriptome and Metabolome Analysis of the Leaf Colour Mutation Mechanism in a Light-Green Leaf Mutant of Maize Agronomy. 15:1364.     Reference: June 4th, 2025
Gene Product: April 8th, 2013
5 months agoadt6 arogenate dehydratase6:
 
GRMZM2G437912
Zm00001d003830
Zm00001eb084260
Li, D et al. 2025. Transcriptome and Metabolome Analysis of the Leaf Colour Mutation Mechanism in a Light-Green Leaf Mutant of Maize Agronomy. 15:1364.   AT1G08250 (TAIR) Reference: June 4th, 2025
Gene Product: March 4th, 2024
5 months agopop1 putative organelle permease1 :
 
GRMZM2G078154
Zm00001d032430
Zm00001eb043340
Li, D et al. 2025. Transcriptome and Metabolome Analysis of the Leaf Colour Mutation Mechanism in a Light-Green Leaf Mutant of Maize Agronomy. 15:1364.     Reference: June 4th, 2025
Variation: August 18th, 2017
5 months agohma1 heavy metal ATPase1:
 
GRMZM2G067853
Zm00001d014569
Zm00001eb226120
Jonathan Jose Acosta Bayona et al. 2025. The influence of heavy metal stress on the evolutionary transition of teosinte to maizeElife :doi: 10.7554/eLife.105858.1.     Reference: June 4th, 2025
Gene Product: October 23rd, 2019
5 months agohma7 heavy metal ATPase7:
 
GRMZM2G029951
Zm00001d015829
Zm00001eb236270
Jonathan Jose Acosta Bayona et al. 2025. The influence of heavy metal stress on the evolutionary transition of teosinte to maizeElife :doi: 10.7554/eLife.105858.1.     Reference: June 4th, 2025
Gene Product: October 23rd, 2019
5 months agoipp1 inositol-x-phosphate phosphatase1:
 
GRMZM2G029731
Zm00001d008310
Zm00001eb333360
Li, D et al. 2025. Transcriptome and Metabolome Analysis of the Leaf Colour Mutation Mechanism in a Light-Green Leaf Mutant of Maize Agronomy. 15:1364.     Reference: June 4th, 2025
Gene Product: December 17th, 2019
5 months agodapat1 diaminopimelate aminotransferase1:
 
GRMZM2G010328
Zm00001d028810
Zm00001eb013940
Li, D et al. 2025. Transcriptome and Metabolome Analysis of the Leaf Colour Mutation Mechanism in a Light-Green Leaf Mutant of Maize Agronomy. 15:1364.     Reference: June 4th, 2025
Gene Product: October 21st, 2020
5 months agopgl20 polygalacturonase20:
 
GRMZM2G374375
Zm00001d015825
Zm00001eb236250
Jonathan Jose Acosta Bayona et al. 2025. The influence of heavy metal stress on the evolutionary transition of teosinte to maizeElife :doi: 10.7554/eLife.105858.1.     Reference: June 4th, 2025
Gene Product: October 4th, 2021
5 months agogogat3 glutamate synthase3:
 
GRMZM2G375064
Zm00001d038948
Zm00001eb295210
Zm00001eb295220
Haoyu Li et al. 2025. Improving Leaf GOGAT Activity After the Post-Silking Period Contributes to High Grain Yield with Reduced Nitrogen in N-Efficient Maize Agronomy. 15:1379.     Reference: June 4th, 2025
Gene Product: January 2nd, 2022
5 months agoIDP538  :
1.11
GRMZM2G062289
Zm00001d034520
Zm00001eb061480
Li, D et al. 2025. Transcriptome and Metabolome Analysis of the Leaf Colour Mutation Mechanism in a Light-Green Leaf Mutant of Maize Agronomy. 15:1364.     Reference: June 4th, 2025
Variation: March 31st, 2005
5 months agoskus5 skewed root growth similar5:
5.04
GRMZM2G076985
Zm00001d014366
Zm00001eb224610
Jonathan Jose Acosta Bayona et al. 2025. The influence of heavy metal stress on the evolutionary transition of teosinte to maizeElife :doi: 10.7554/eLife.105858.1.     Reference: June 4th, 2025
Gene Product: October 9th, 2020
5 months agoZm00001d007616  :
 
GRMZM2G091956
Zm00001d007616
Zm00001eb115140
Qinyong Dong et al. 2025. Nano-priming with selenium nanoparticles reprograms seed germination, antioxidant defense, and phenylpropanoid metabolism to enhance Fusarium graminearum resistance in maize seedlings. J Adv Res. :doi: 10.1016/j.jare.2025.05.057.     Reference: June 3rd, 2025
Gene Product: June 12th, 2020
5 months agoZm00001d007620  :
 
GRMZM2G124921
Zm00001d007620
Zm00001eb115130
Qinyong Dong et al. 2025. Nano-priming with selenium nanoparticles reprograms seed germination, antioxidant defense, and phenylpropanoid metabolism to enhance Fusarium graminearum resistance in maize seedlings. J Adv Res. :doi: 10.1016/j.jare.2025.05.057.     Reference: June 3rd, 2025
Gene Product: June 12th, 2020
5 months agomkkk8 MAP kinase kinase kinase8:
 
GRMZM2G034877
Zm00001d013206
Zm00001eb214220
Qinyong Dong et al. 2025. Nano-priming with selenium nanoparticles reprograms seed germination, antioxidant defense, and phenylpropanoid metabolism to enhance Fusarium graminearum resistance in maize seedlings. J Adv Res. :doi: 10.1016/j.jare.2025.05.057.     Reference: June 3rd, 2025
Gene Product: March 14th, 2022
5 months agojmj22 JUMONJI-transcription factor 22:
 
GRMZM2G417089
Zm00001d033158
Zm00001eb049830
Qinyong Dong et al. 2025. Nano-priming with selenium nanoparticles reprograms seed germination, antioxidant defense, and phenylpropanoid metabolism to enhance Fusarium graminearum resistance in maize seedlings. J Adv Res. :doi: 10.1016/j.jare.2025.05.057.     Reference: June 3rd, 2025
Gene Product: April 3rd, 2019
5 months agovq39 VQ motif-transcription factor39:
 
GRMZM2G083285
GRMZM2G382273
Zm00001d019354
Zm00001eb304830
Qinyong Dong et al. 2025. Nano-priming with selenium nanoparticles reprograms seed germination, antioxidant defense, and phenylpropanoid metabolism to enhance Fusarium graminearum resistance in maize seedlings. J Adv Res. :doi: 10.1016/j.jare.2025.05.057.     Reference: June 3rd, 2025
Gene Product: August 31st, 2019
5 months agoperk10 proline-rich extensin-like receptor kinase10:
 
GRMZM2G470499
Zm00001d012743
Zm00001eb370920
Qinyong Dong et al. 2025. Nano-priming with selenium nanoparticles reprograms seed germination, antioxidant defense, and phenylpropanoid metabolism to enhance Fusarium graminearum resistance in maize seedlings. J Adv Res. :doi: 10.1016/j.jare.2025.05.057.     Reference: June 3rd, 2025
Gene Product: September 7th, 2022
5 months agosacd9 stearoyl-acyl-carrier-protein desaturase9:
8.06
GRMZM2G316362
Zm00001d012221
Zm00001eb366200
Qinyong Dong et al. 2025. Nano-priming with selenium nanoparticles reprograms seed germination, antioxidant defense, and phenylpropanoid metabolism to enhance Fusarium graminearum resistance in maize seedlings. J Adv Res. :doi: 10.1016/j.jare.2025.05.057.     Reference: June 3rd, 2025
Gene Product: October 10th, 2016
5 months agocaax1 CAAX amino terminal protease1:
10.05
GRMZM2G005859
Zm00001d025860
Zm00001eb426630
Xiaohu Li et al. 2025. Maize leaf yellowing gene ZmCAAX modulates growth and drought resistance by regulating abscisic acid contents through interaction with the ABA biosynthetic enzyme ZmNCED3. Plant Biotechnol J. :doi: 10.1111/pbi.70147.     Reference: June 3rd, 2025
Gene Product: June 3rd, 2025
Variation: June 3rd, 2025
5 months agoprx100 peroxidase100:
 
GRMZM2G405459
Zm00001d016185
Zm00001eb238800
Xingyuan Liu et al. 2025. Transcriptome Analysis Reveals the Molecular Mechanisms Through Which Exogenous Methyl Jasmonate Enhances Mercury Stress Tolerance in Maize Seedlings Agronomy. 15:1369.     Reference: June 2nd, 2025
Gene Product: January 20th, 2025
5 months agovdac4 voltage-dependent anion channel protein4:
 
GRMZM2G059937
Zm00001d048362
Zm00001eb402750
Xingyuan Liu et al. 2025. Transcriptome Analysis Reveals the Molecular Mechanisms Through Which Exogenous Methyl Jasmonate Enhances Mercury Stress Tolerance in Maize Seedlings Agronomy. 15:1369.     Reference: June 2nd, 2025
Gene Product: July 4th, 2023
5 months agoprx17 peroxidase17:
 
AC211164.5_FG004
Zm00001d006097
Zm00001eb102470
Xingyuan Liu et al. 2025. Transcriptome Analysis Reveals the Molecular Mechanisms Through Which Exogenous Methyl Jasmonate Enhances Mercury Stress Tolerance in Maize Seedlings Agronomy. 15:1369.     Reference: June 2nd, 2025
Gene Product: January 20th, 2025
5 months agopao4 polyamine oxidase4:
10.07
GRMZM2G150248
Zm00001d026586
Zm00001eb433420
Xingyuan Liu et al. 2025. Transcriptome Analysis Reveals the Molecular Mechanisms Through Which Exogenous Methyl Jasmonate Enhances Mercury Stress Tolerance in Maize Seedlings Agronomy. 15:1369.     Reference: June 2nd, 2025
Gene Product: June 10th, 2020
5 months agoprx2 peroxidase2:
1.10
GRMZM2G047456
GRMZM5G892081
Zm00001d034129
Zm00001eb058260
Xingyuan Liu et al. 2025. Transcriptome Analysis Reveals the Molecular Mechanisms Through Which Exogenous Methyl Jasmonate Enhances Mercury Stress Tolerance in Maize Seedlings Agronomy. 15:1369.     Reference: June 2nd, 2025
Gene Product: January 20th, 2025
5 months agogot2 glutamate-oxaloacetate transaminase2:
5.08
GRMZM5G836910
Zm00001d018386
Zm00001eb257910
Xingyuan Liu et al. 2025. Transcriptome Analysis Reveals the Molecular Mechanisms Through Which Exogenous Methyl Jasmonate Enhances Mercury Stress Tolerance in Maize Seedlings Agronomy. 15:1369.     Reference: June 2nd, 2025
Gene Product: October 21st, 2021
Variation: September 1st, 2003
5 months agophp20793  :
8.08
GRMZM2G166441
Zm00001d012504
Zm00001eb368840
Xingyuan Liu et al. 2025. Transcriptome Analysis Reveals the Molecular Mechanisms Through Which Exogenous Methyl Jasmonate Enhances Mercury Stress Tolerance in Maize Seedlings Agronomy. 15:1369.     Reference: June 2nd, 2025
Variation: September 24th, 2018
5 months agosbp28 SBP-transcription factor 28:
10.07
GRMZM2G058588
Zm00001d026491
Zm00001eb432520
Nikhil Jaikumar et al. 2025. Constitutive down-regulation of liguleless alleles in sorghum drives increased productivity and water use efficiency. Plant Biotechnol J. :doi: 10.1111/pbi.70150.     Reference: June 2nd, 2025
Gene Product: July 5th, 2019
Variation: September 1st, 2003
5 months agopsan1 photosystem I N subunit1:
3.05
GRMZM2G080107
Zm00001d041819
Zm00001eb138650
Xingyuan Liu et al. 2025. Transcriptome Analysis Reveals the Molecular Mechanisms Through Which Exogenous Methyl Jasmonate Enhances Mercury Stress Tolerance in Maize Seedlings Agronomy. 15:1369.     Reference: June 2nd, 2025
Gene Product: September 1st, 2003
Variation: May 12th, 2013
5 months agopsah1 photosystem I H subunit1:
6.07
GRMZM2G451224
Zm00001d038984
Zm00001eb295610
Xingyuan Liu et al. 2025. Transcriptome Analysis Reveals the Molecular Mechanisms Through Which Exogenous Methyl Jasmonate Enhances Mercury Stress Tolerance in Maize Seedlings Agronomy. 15:1369.     Reference: June 2nd, 2025
Gene Product: September 1st, 2003
Variation: May 7th, 2013
5 months agofdx2 ferredoxin2:
6.00
GRMZM2G048313
Zm00001d035003
Zm00001eb260160
Xingyuan Liu et al. 2025. Transcriptome Analysis Reveals the Molecular Mechanisms Through Which Exogenous Methyl Jasmonate Enhances Mercury Stress Tolerance in Maize Seedlings Agronomy. 15:1369.     Reference: June 2nd, 2025
Gene Product: September 1st, 2003
Variation: September 1st, 2003
5 months agopx13 peroxidase 13:
5.03
GRMZM2G134947
Zm00001d014123
Zm00001eb222560
Xingyuan Liu et al. 2025. Transcriptome Analysis Reveals the Molecular Mechanisms Through Which Exogenous Methyl Jasmonate Enhances Mercury Stress Tolerance in Maize Seedlings Agronomy. 15:1369.     Reference: June 2nd, 2025
Gene Product: January 20th, 2025
Variation: September 1st, 2003
5 months agonbcs15 nucleobase:cation symporter15:
5.00
GRMZM2G420823
Zm00001d012935
Zm00001eb211490
Xingyuan Liu et al. 2025. Transcriptome Analysis Reveals the Molecular Mechanisms Through Which Exogenous Methyl Jasmonate Enhances Mercury Stress Tolerance in Maize Seedlings Agronomy. 15:1369.     Reference: June 2nd, 2025
Gene Product: July 14th, 2018
Variation: September 1st, 2003
5 months agopsan2 photosystem I N subunit2:
10.03
GRMZM2G009048
Zm00001d023713
Zm00001eb409220
Xingyuan Liu et al. 2025. Transcriptome Analysis Reveals the Molecular Mechanisms Through Which Exogenous Methyl Jasmonate Enhances Mercury Stress Tolerance in Maize Seedlings Agronomy. 15:1369.     Reference: June 2nd, 2025
Gene Product: September 1st, 2003
5 months agoprx58 peroxidase58:
5.04
GRMZM2G160327
Zm00001d016443
Zm00001eb240670
Xingyuan Liu et al. 2025. Transcriptome Analysis Reveals the Molecular Mechanisms Through Which Exogenous Methyl Jasmonate Enhances Mercury Stress Tolerance in Maize Seedlings Agronomy. 15:1369.     Reference: June 2nd, 2025
Gene Product: January 20th, 2025
5 months agoris1 iron-sulfur protein1:
5.04
GRMZM2G162748
Zm00001d016134
Zm00001eb238370
Xingyuan Liu et al. 2025. Transcriptome Analysis Reveals the Molecular Mechanisms Through Which Exogenous Methyl Jasmonate Enhances Mercury Stress Tolerance in Maize Seedlings Agronomy. 15:1369.     Reference: June 2nd, 2025
Gene Product: November 5th, 2014
Variation: October 31st, 2014
5 months agofdx1 ferredoxin1:
6.00
GRMZM2G122337
Zm00001d035001
Zm00001eb260140
Xingyuan Liu et al. 2025. Transcriptome Analysis Reveals the Molecular Mechanisms Through Which Exogenous Methyl Jasmonate Enhances Mercury Stress Tolerance in Maize Seedlings Agronomy. 15:1369.     Reference: June 2nd, 2025
Gene Product: September 1st, 2003
Variation: September 1st, 2003
5 months agoproh7 prolyl 4-hydroxylase 7:
5.03
GRMZM2G168506
Zm00001d014183
Zm00001eb223100
Xingyuan Liu et al. 2025. Transcriptome Analysis Reveals the Molecular Mechanisms Through Which Exogenous Methyl Jasmonate Enhances Mercury Stress Tolerance in Maize Seedlings Agronomy. 15:1369.     Reference: June 2nd, 2025
Gene Product: June 18th, 2021
5 months agoacco20 1-aminocyclopropane-1-carboxylate oxidase20:
4.07
GRMZM2G126732
Zm00001d052136
Zm00001eb193360
Lillian Matias Oliveira et al. 2025. Ethylene plays a key role in the infection of maize leaves by Exserohilum turcicum Trop Plant Pathol. 50:48.     Reference: June 2nd, 2025
Gene Product: May 16th, 2016
Variation: March 25th, 2015
5 months agoacco35 1-aminocyclopropane-1-carboxylate oxidase35:
5.07
GRMZM2G052422
Zm00001d018211
Zm00001eb256320
Lillian Matias Oliveira et al. 2025. Ethylene plays a key role in the infection of maize leaves by Exserohilum turcicum Trop Plant Pathol. 50:48.     Reference: June 2nd, 2025
Gene Product: May 16th, 2016
Variation: May 19th, 2015
5 months agomis1 putative aldehyde dehydrogenase MIS1:
 
GRMZM2G090087
Zm00001d038841
Zm00001eb294160
Xingyuan Liu et al. 2025. Transcriptome Analysis Reveals the Molecular Mechanisms Through Which Exogenous Methyl Jasmonate Enhances Mercury Stress Tolerance in Maize Seedlings Agronomy. 15:1369.     Reference: June 2nd, 2025
Gene Product: January 5th, 2024
Variation: January 15th, 2011
5 months agoproh5 prolyl 4-hydroxylase 5:
4.06
GRMZM2G025867
Zm00001d051856
Zm00001eb190810
Xingyuan Liu et al. 2025. Transcriptome Analysis Reveals the Molecular Mechanisms Through Which Exogenous Methyl Jasmonate Enhances Mercury Stress Tolerance in Maize Seedlings Agronomy. 15:1369.     Reference: June 2nd, 2025
Gene Product: June 18th, 2021
5 months agohct7 hydroxycinnamoyltransferase7:
 
AC215260.3_FG003
Zm00001d039840
Zm00001eb124190
Xingyuan Liu et al. 2025. Transcriptome Analysis Reveals the Molecular Mechanisms Through Which Exogenous Methyl Jasmonate Enhances Mercury Stress Tolerance in Maize Seedlings Agronomy. 15:1369.     Reference: June 2nd, 2025
Gene Product: November 7th, 2015
5 months agoacs3 1-aminocyclopropane-1-carboxylate synthase3:
 
GRMZM2G018006
Zm00001d045479
Zm00001eb378300
Zm00001eb378320
Lillian Matias Oliveira et al. 2025. Ethylene plays a key role in the infection of maize leaves by Exserohilum turcicum Trop Plant Pathol. 50:48.     Reference: June 2nd, 2025
Gene Product: May 16th, 2016
5 months agonbcs20 nucleobase:cation symporter20:
 
GRMZM5G802881
Zm00001d021519
Zm00001eb321710
Xingyuan Liu et al. 2025. Transcriptome Analysis Reveals the Molecular Mechanisms Through Which Exogenous Methyl Jasmonate Enhances Mercury Stress Tolerance in Maize Seedlings Agronomy. 15:1369.     Reference: June 2nd, 2025
Gene Product: July 14th, 2018
5 months agobak4 brassinosteroid insensitive1-associated receptor kinase 4:
 
GRMZM2G121565
Zm00001d038195
Zm00001eb288130
Lillian Matias Oliveira et al. 2025. Ethylene plays a key role in the infection of maize leaves by Exserohilum turcicum Trop Plant Pathol. 50:48.     Reference: June 2nd, 2025
Gene Product: January 18th, 2021
5 months agolhcb11 light harvesting chlorophyll a/b binding protein11:
 
GRMZM6G910544
Zm00001d048998
Zm00001eb168100
Xingyuan Liu et al. 2025. Transcriptome Analysis Reveals the Molecular Mechanisms Through Which Exogenous Methyl Jasmonate Enhances Mercury Stress Tolerance in Maize Seedlings Agronomy. 15:1369.     Reference: June 2nd, 2025
Gene Product: January 8th, 2005
5 months agoaaap15 amino acid/auxin permease15:
 
GRMZM2G125832
Zm00001d041004
Zm00001eb132750
Xingyuan Liu et al. 2025. Transcriptome Analysis Reveals the Molecular Mechanisms Through Which Exogenous Methyl Jasmonate Enhances Mercury Stress Tolerance in Maize Seedlings Agronomy. 15:1369.     Reference: June 2nd, 2025
Gene Product: March 31st, 2021
5 months agofnr4 ferredoxin NADP reductase4:
 
GRMZM2G059083
Zm00001d042049
Zm00001eb140530
Xingyuan Liu et al. 2025. Transcriptome Analysis Reveals the Molecular Mechanisms Through Which Exogenous Methyl Jasmonate Enhances Mercury Stress Tolerance in Maize Seedlings Agronomy. 15:1369.     Reference: June 2nd, 2025
Gene Product: May 11th, 2021
5 months agopx20 peroxidase20:
 
GRMZM2G320269
Zm00001d032405
Zm00001eb043100
Xingyuan Liu et al. 2025. Transcriptome Analysis Reveals the Molecular Mechanisms Through Which Exogenous Methyl Jasmonate Enhances Mercury Stress Tolerance in Maize Seedlings Agronomy. 15:1369.     Reference: June 2nd, 2025
Gene Product: January 20th, 2025
5 months agoIDP2458  :
10.04
GRMZM2G095826
Zm00001d025352
Zm00001eb421930
Xingyuan Liu et al. 2025. Transcriptome Analysis Reveals the Molecular Mechanisms Through Which Exogenous Methyl Jasmonate Enhances Mercury Stress Tolerance in Maize Seedlings Agronomy. 15:1369.     Reference: June 2nd, 2025
Gene Product: September 1st, 2003
Variation: March 31st, 2005
6 months agofarl13 FAR1-like-transcription factor 13:
 
GRMZM2G114461
Zm00001d022142
Fangfang Zhao et al. 2025. Pan-Genome-Wide Investigation and Expression Analysis of GATA Gene Family in Maize Plants. 14:1693.     Reference: June 1st, 2025
Gene Product: June 28th, 2019
6 months agoimpb19 importin beta19:
 
GRMZM2G096106
Zm00001d006845
Zm00001eb109040
Zilin Zhang et al. 2025. Root Transcriptome Analysis Identifies Salt-Tolerance Genes in Sweet Corn Chromosome Segment Substitution Lines (CSSLs) Plants. 14:1687.     Reference: May 31st, 2025
Gene Product: November 15th, 2022
6 months agoarm1 armadillo domain protein1:
 
GRMZM5G891990
Zm00001d028623
Zm00001eb012430
Tonghan Wang et al. 2025. Genome-wide association study and candidate gene identification for fall armyworm resistance in maize (Zea mays L.) Gene. 963:149598.     Reference: May 31st, 2025
Gene Product: February 1st, 2021
6 months agoidd27 indeterminate domain27:
 
GRMZM2G134306
Zm00001d036812
Zm00001eb275860
Tonghan Wang et al. 2025. Genome-wide association study and candidate gene identification for fall armyworm resistance in maize (Zea mays L.) Gene. 963:149598.     Reference: May 31st, 2025
Gene Product: May 31st, 2024
6 months agocaspl5 casparian-strip-membrane-domain-like5:
 
   Tonghan Wang et al. 2025. Genome-wide association study and candidate gene identification for fall armyworm resistance in maize (Zea mays L.) Gene. 963:149598.     Reference: May 31st, 2025
Gene Product: June 17th, 2020
6 months agocyp80 cytochrome P-450 80:
 
   Tonghan Wang et al. 2025. Genome-wide association study and candidate gene identification for fall armyworm resistance in maize (Zea mays L.) Gene. 963:149598.     Reference: May 31st, 2025
Gene Product: December 30th, 2022
6 months agocyp88 cytochrome P-450 88:
 
   Zilin Zhang et al. 2025. Root Transcriptome Analysis Identifies Salt-Tolerance Genes in Sweet Corn Chromosome Segment Substitution Lines (CSSLs) Plants. 14:1687.     Reference: May 31st, 2025
Gene Product: December 30th, 2022
6 months agoumc1108  :
2.06
GRMZM2G123972
Zm00001d005897
Zm00001eb100860
Zilin Zhang et al. 2025. Root Transcriptome Analysis Identifies Salt-Tolerance Genes in Sweet Corn Chromosome Segment Substitution Lines (CSSLs) Plants. 14:1687.     Reference: May 31st, 2025
Variation: September 1st, 2003
6 months agorcc1 regulator of chromosome condensation1:
3.06
GRMZM2G302245
Zm00001d042880
Zm00001eb148070
Zilin Zhang et al. 2025. Root Transcriptome Analysis Identifies Salt-Tolerance Genes in Sweet Corn Chromosome Segment Substitution Lines (CSSLs) Plants. 14:1687.     Reference: May 31st, 2025
Gene Product: August 2nd, 2021
Variation: March 28th, 2018
6 months agoabi41 ABI3-VP1-transcription factor 41:
 
GRMZM5G805685
Zm00001d023446
Zm00001eb406950
Zilin Zhang et al. 2025. Root Transcriptome Analysis Identifies Salt-Tolerance Genes in Sweet Corn Chromosome Segment Substitution Lines (CSSLs) Plants. 14:1687.     Reference: May 31st, 2025
Gene Product: January 29th, 2022
Variation: July 19th, 2021
6 months agowrky38 WRKY-transcription factor 38:
 
GRMZM2G163418
Zm00001d005622
Zm00001eb098330
Zilin Zhang et al. 2025. Root Transcriptome Analysis Identifies Salt-Tolerance Genes in Sweet Corn Chromosome Segment Substitution Lines (CSSLs) Plants. 14:1687.     Reference: May 31st, 2025
Variation: July 21st, 2022
6 months agogst11 glutathione transferase11:
1.01
GRMZM2G119499
Zm00001d027539
Zm00001eb002780
Zilin Zhang et al. 2025. Root Transcriptome Analysis Identifies Salt-Tolerance Genes in Sweet Corn Chromosome Segment Substitution Lines (CSSLs) Plants. 14:1687.     Reference: May 31st, 2025
Gene Product: September 1st, 2003
6 months agogst13 glutathione transferase13:
9.07
GRMZM2G126781
Zm00001d048353
Zm00001eb402630
Zilin Zhang et al. 2025. Root Transcriptome Analysis Identifies Salt-Tolerance Genes in Sweet Corn Chromosome Segment Substitution Lines (CSSLs) Plants. 14:1687.     Reference: May 31st, 2025
Gene Product: September 1st, 2003
Variation: August 6th, 2010
6 months agogst40 glutathione transferase40:
1.09
GRMZM2G054653
Zm00001d029701
Zm00001eb021620
Zilin Zhang et al. 2025. Root Transcriptome Analysis Identifies Salt-Tolerance Genes in Sweet Corn Chromosome Segment Substitution Lines (CSSLs) Plants. 14:1687.     Reference: May 31st, 2025
Gene Product: September 1st, 2003
Variation: June 13th, 2014
6 months agopmpm5 proteolipid membrane potential regulator5:
7.04 - 7.05
GRMZM2G477325
Zm00001d022264
Zilin Zhang et al. 2025. Root Transcriptome Analysis Identifies Salt-Tolerance Genes in Sweet Corn Chromosome Segment Substitution Lines (CSSLs) Plants. 14:1687.   AT3G05880 (TAIR) Reference: May 31st, 2025
Variation: May 3rd, 2021
6 months agodmag4 DNA-3-methyladenine glycosylase4:
 
GRMZM2G113228
GRMZM6G534641
Zm00001d023430
Zm00001eb406830
Zilin Zhang et al. 2025. Root Transcriptome Analysis Identifies Salt-Tolerance Genes in Sweet Corn Chromosome Segment Substitution Lines (CSSLs) Plants. 14:1687.     Reference: May 31st, 2025
Gene Product: January 1st, 2022
6 months agoyuc9 yucca9:
 
GRMZM2G333478
Zm00001d005439
Zm00001eb096820
Zilin Zhang et al. 2025. Root Transcriptome Analysis Identifies Salt-Tolerance Genes in Sweet Corn Chromosome Segment Substitution Lines (CSSLs) Plants. 14:1687.     Reference: May 31st, 2025
Gene Product: June 18th, 2018
6 months agopao2 polyamine oxidase2:
 
GRMZM2G000052
Zm00001d002266
Zm00001eb070310
Zilin Zhang et al. 2025. Root Transcriptome Analysis Identifies Salt-Tolerance Genes in Sweet Corn Chromosome Segment Substitution Lines (CSSLs) Plants. 14:1687.     Reference: May 31st, 2025
Gene Product: June 10th, 2020
6 months agosod17 superoxide dismutase17:
 
GRMZM2G081585
Zm00001d025106
Zm00001eb420210
Zilin Zhang et al. 2025. Root Transcriptome Analysis Identifies Salt-Tolerance Genes in Sweet Corn Chromosome Segment Substitution Lines (CSSLs) Plants. 14:1687.     Reference: May 31st, 2025
Gene Product: October 4th, 2021
6 months agopip2h plasma membrane intrinsic protein, PIP2h:
 
GRMZM2G432926
Zm00001d014285
Zm00001eb223910
Tonghan Wang et al. 2025. Genome-wide association study and candidate gene identification for fall armyworm resistance in maize (Zea mays L.) Gene. 963:149598.     Reference: May 31st, 2025
Gene Product: January 27th, 2022
6 months agorboh5 respiratory burst oxidase5:
 
GRMZM2G323731
Zm00001d009349
Zm00001eb341910
Zilin Zhang et al. 2025. Root Transcriptome Analysis Identifies Salt-Tolerance Genes in Sweet Corn Chromosome Segment Substitution Lines (CSSLs) Plants. 14:1687.     Reference: May 31st, 2025
Gene Product: February 18th, 2023
6 months agojih3 jasmonoyl-l-isoleucine hydrolase3:
 
GRMZM2G091540
Zm00001d043701
Zm00001eb155320
Zilin Zhang et al. 2025. Root Transcriptome Analysis Identifies Salt-Tolerance Genes in Sweet Corn Chromosome Segment Substitution Lines (CSSLs) Plants. 14:1687.     Reference: May 31st, 2025
Gene Product: June 10th, 2022
6 months agorcc29 regulator of chromosome condensation29:
 
GRMZM2G337819
Zm00001d012398
Zm00001eb367810
Zilin Zhang et al. 2025. Root Transcriptome Analysis Identifies Salt-Tolerance Genes in Sweet Corn Chromosome Segment Substitution Lines (CSSLs) Plants. 14:1687.     Reference: May 31st, 2025
Gene Product: August 2nd, 2021
6 months agoIDP3952  :
2.08
GRMZM2G140231
Zm00001d006536
Zm00001eb106390
Zilin Zhang et al. 2025. Root Transcriptome Analysis Identifies Salt-Tolerance Genes in Sweet Corn Chromosome Segment Substitution Lines (CSSLs) Plants. 14:1687.     Reference: May 31st, 2025
Variation: March 31st, 2005
6 months agoprh139 protein phosphatase homolog139:
5.03
GRMZM2G071087
Zm00001d014291
Zm00001eb223950
Tonghan Wang et al. 2025. Genome-wide association study and candidate gene identification for fall armyworm resistance in maize (Zea mays L.) Gene. 963:149598.     Reference: May 31st, 2025
Gene Product: October 25th, 2021
6 months agocpp15 CPP-transcription factor 15:
 
GRMZM2G102216
Zm00001d051928
Zm00001eb191540
    Gene Product: May 30th, 2025
6 months agocpp1 CPP-transcription factor 1:
 
GRMZM2G153754
Zm00001d018930
Zm00001eb301170
Song, XY et al. 2016. Genetics and Molecular Research 15:gmr.15038023     Reference: May 30th, 2025
Gene Product: May 30th, 2025
6 months agocpp10 CPP-transcription factor 10:
 
GRMZM2G701689
Zm00001d041445
Zm00001eb135750
Song, XY et al. 2016. Genetics and Molecular Research 15:gmr.15038023     Reference: May 30th, 2025
Gene Product: May 30th, 2025
6 months agocpp11 CPP-transcription factor 11:
 
GRMZM2G059678
Zm00001d043378
Zm00001eb152420
Song, XY et al. 2016. Genetics and Molecular Research 15:gmr.15038023     Reference: May 30th, 2025
Gene Product: May 30th, 2025
6 months agocpp12 CPP-transcription factor 12:
 
GRMZM2G342588
Zm00001d037461
Zm00001eb281570
Song, XY et al. 2016. Genetics and Molecular Research 15:gmr.15038023     Reference: May 30th, 2025
Gene Product: May 30th, 2025
6 months agocpp13 CPP-transcription factor 13:
 
AC203865.3_FG001
Zm00001d041444
Zm00001eb135740
Song, XY et al. 2016. Genetics and Molecular Research 15:gmr.15038023     Reference: May 30th, 2025
Gene Product: May 30th, 2025
6 months agocpp3 CPP-transcription factor 3:
 
GRMZM2G173198
Song, XY et al. 2016. Genetics and Molecular Research 15:gmr.15038023     Reference: May 30th, 2025
Gene Product: May 30th, 2025
6 months agocpp4 CPP-transcription factor 4:
 
GRMZM2G060170
Zm00001d038660
Zm00001eb292380
Song, XY et al. 2016. Genetics and Molecular Research 15:gmr.15038023     Reference: May 30th, 2025
Gene Product: May 30th, 2025
6 months agocpp6 CPP-transcription factor 6:
 
GRMZM2G366584
Zm00001d033274
Zm00001eb050860
Song, XY et al. 2016. Genetics and Molecular Research 15:gmr.15038023     Reference: May 30th, 2025
Gene Product: May 30th, 2025
6 months agocpp7 CPP-transcription factor 7:
 
GRMZM2G104246
Zm00001d012688
Zm00001eb370470
Song, XY et al. 2016. Genetics and Molecular Research 15:gmr.15038023     Reference: May 30th, 2025
Gene Product: May 30th, 2025
6 months agocpp8 CPP-transcription factor 8:
 
GRMZM2G096600
Zm00001d010713
Zm00001eb352860
Song, XY et al. 2016. Genetics and Molecular Research 15:gmr.15038023     Reference: May 30th, 2025
Gene Product: May 30th, 2025
6 months agocpp9 CPP-transcription factor 9:
 
GRMZM2G388148
Zm00001d015990
Zm00001eb237340
Song, XY et al. 2016. Genetics and Molecular Research 15:gmr.15038023     Reference: May 30th, 2025
Gene Product: May 30th, 2025
6 months agonced2 nine-cis-epoxycarotenoid dioxygenase2:
 
GRMZM2G407181
Zm00001d031086
Zm00001eb031940
Liu, J et al. 2025. Plant growth-promoting rhizobacteria Halomonas alkaliantarcticae M23 promotes the salt tolerance of maize by increasing the K+/Na+ ratio, antioxidant levels, and ABA levels and changing the rhizosphere bacterial community. BMC Plant Biology. 25:727.     Reference: May 30th, 2025
Gene Product: September 20th, 2012
6 months agosnrkII5 SnRK2 serine threonine kinase5:
10.07
GRMZM2G110908
Zm00001d026690
Zm00001eb434400
Liu, J et al. 2025. Plant growth-promoting rhizobacteria Halomonas alkaliantarcticae M23 promotes the salt tolerance of maize by increasing the K+/Na+ ratio, antioxidant levels, and ABA levels and changing the rhizosphere bacterial community. BMC Plant Biology. 25:727.     Reference: May 30th, 2025
Gene Product: April 14th, 2018
6 months agoprx19 peroxidase19:
 
GRMZM2G044049
Zm00001d006933
Zm00001eb109910
Ying Zhou et al. 2025. Transcriptomic Profiling Reveals the Involvement of the Phenylpropanoid–Lignin Pathway in the Response of Maize Roots to Zinc Stress Plants. 14:1657.     Reference: May 29th, 2025
Gene Product: January 20th, 2025
6 months agocmal1 chloroplast mraW methyltransferase like1:
 
   Kurt, F et al. 2025. Computational study of the plastid rRNA methyl transferase (CMAL) gene in higher plants and its role in drought and salt stresses Genet Resour Crop Evol. :doi: 10.1007/s10722-025-02467-z.   AT5G10910 (TAIR) Reference: May 29th, 2025
Gene Product: May 29th, 2025
6 months agogla3 beta-glucanase3:
5.01
GRMZM2G473711
Zm00001d013269
Zm00001eb214880
Ying Zhou et al. 2025. Transcriptomic Profiling Reveals the Involvement of the Phenylpropanoid–Lignin Pathway in the Response of Maize Roots to Zinc Stress Plants. 14:1657.     Reference: May 29th, 2025
Variation: May 9th, 2009

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