分子生物学
IVD分子诊断
细胞培养与分析
蛋白研究
细胞因子
重组蛋白
抗体
高通量测序建库
病原检测UCF系列
生物医药
工具酶
抑制剂激活剂与常用试剂
仪器
耗材

The OsFTIP6-OsHB22-OsMYBR57 module regulates drought response in rice

Lijia Yang, Ying Chen, Liang Xu, Jiaxuan Wang, Haoyue Qi, Jiazhuo Guo, Liang Zhang, Jun Shen, Huanyu Wang, Fan Zhang, Lijun Xie, Wenjun Zhu, Peitao Lü, Qian Qian, Hao Yu, Shiyong Song

Journal:Molecular Plant

IF:21.95

DOI:10.1016/j.molp.2022.06.003

PMID:35684964

Published:2022-06-09

research field:生殖生物学分子遗传学基因组学RNA生物学发育生物学

Abstract

Plants have evolved a sophisticated set of mechanisms to adapt to drought stress. Transcription factors play crucial roles in plant responses to various environmental stimuli by modulating the expression of numerous stress-responsive genes. However, how the crosstalk between different transcription factor families orchestrates initiation of the key transcriptional network and the role of posttranscriptional modification of transcription factors, especially in cellular localization/trafficking in response to stress in rice, remain still largely unknown. In this study, we isolated an Osmybr57 mutant that displays a drought-sensitive phenotype through a genetic screen for drought stress sensitivity. We found that OsMYBR57, an MYB-related protein, directly regulates the expression of several key drought-related OsbZIPs in response to drought treatment. Further studies revealed that OsMYBR57 interacts with a homeodomain transcription factor, OsHB22, which also plays a positive role in drought signaling. We further demonstrate that OsFTIP6 interacts with OsHB22 and promotes the nucleocytoplasmic translocation of OsHB22 into the nucleus, where OsHB22 cooperates with OsMYBR57 to regulate the expression of drought-responsive genes. Our findings have revealed a mechanistic framework underlying the OsFTIP6-OsHB22-OsMYBR57 module-mediated regulation of drought response in rice. The OsFTIP6-mediated OsHB22 nucleocytoplasmic shuttling and OsMYBR57-OsHB22 regulation of OsbZIP  transcription ensure precise control of expression of OsLEA3 and Rab21 , and thereby regulate the response to water deficiency in rice.

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