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ZmMYC2s play important roles in maize responses to simulated herbivory and jasmonate

摘要Both herbivory and jasmonic acid (JA) activate the biosynthesis of defensive metabolites in maize, but the mechanism underlying this remains un-clear. We generated maize mutants in which ZmMYC2a and ZmMYC2b, two transcription factor genes important in JA signaling, were individually or both knocked out. Genetic and bi-ochemical analyses were used to elucidate the functions of ZmMYC2 proteins in the maize re-sponse to simulated herbivory and JA. Compared with the wild-type (WT) maize, the double mutant myc2ab was highly susceptible to insects, and the levels of benzoxazinoids and volatile terpenes, and the levels of their biosynthesis gene tran-scripts, were much lower in the mutants than in the WT maize after simulated insect feeding or JA treatment. Moreover, ZmMYC2a and ZmMYC2b played a redundant role in maize resistance to insects and JA signaling. Transcriptome and Cleavage Under Targets and Tagmentation-Sequencing (CUT&Tag-Seq) analysis indicated that ZmMYC2s physically targeted 60%of the JA-responsive genes, even though only 33%of these genes were transcriptionally ZmMYC2-dependent. Importantly, CUT&Tag-Seq and dual luciferase assays revealed that ZmMYC2s transactivate the benzoxazinoid and volatile terpene biosynthesis genes IGPS1/3, BX10/11/12/14, and TPS10/2/3/4/5/8 by directly binding to their promoters. Fur-thermore, several transcription factors physically targeted by ZmMYC2s were identified, and these are likely to function in the regulation of benzoxazinoid biosynthesis. This work reveals the transcriptional regulatory landscapes of both JA signaling and ZmMYC2s in maize and provides comprehensive mechanistic insight into how JA signaling modulates defenses in maize responses to herbivory through ZmMYC2s.

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作者 Canrong Ma [1] Ruoyue Li [2] Yan Sun [2] Mou Zhang [2] Sen Li [2] Yuxing Xu [1] Juan Song [1] Jing Li [1] Jinfeng Qi [1] Lei Wang [1] Jianqiang Wu [1] 学术成果认领
作者单位 Department of Economic Plants and Biotechnology,Yunnan Key Laboratory for Wild Plant Resources,Kunming Institute of Botany,the Chinese Academy of Sciences,Kunming 650201,China;Chinese Academy of Science Center for Excellence in Biotic Interactions,University of Chinese Academy of Sciences,Beijing 100049,China [1] Department of Economic Plants and Biotechnology,Yunnan Key Laboratory for Wild Plant Resources,Kunming Institute of Botany,the Chinese Academy of Sciences,Kunming 650201,China [2]
发布时间 2023-04-24(万方平台首次上网日期,不代表论文的发表时间)
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植物学报(英文版)

植物学报(英文版)

2023年65卷4期

1041-1058页

SCIMEDLINEISTICCSCDCABP

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