The transcriptional hub SHORT INTERNODES1 integrates hormone signals to orchestrate rice growth and development

生长素 生物 油菜素甾醇 脱落酸 转录因子 抑制因子 细胞生物学 拟南芥 突变体 信号转导 水稻 心理压抑 转录调控 植物激素 赤霉素 串扰 诱导剂 基因表达 遗传学 植物 基因 物理 光学
作者
Erchao Duan,Qibing Lin,Yihua Wang,Yulong Ren,Huan Xu,Yuanyan Zhang,Yunlong Wang,Xuan Teng,Hui Dong,Yupeng Wang,Xiaokang Jiang,Xiaoli Chen,Jie Lei,Hang Yang,Rongbo Chen,Ling Jiang,Haiyang Wang,Jianmin Wan
出处
期刊:The Plant Cell [Oxford University Press]
卷期号:35 (8): 2871-2886 被引量:11
标识
DOI:10.1093/plcell/koad130
摘要

Abstract Plants have evolved sophisticated mechanisms to coordinate their growth and stress responses via integrating various phytohormone signaling pathways. However, the precise molecular mechanisms orchestrating integration of the phytohormone signaling pathways remain largely obscure. In this study, we found that the rice (Oryza sativa) short internodes1 (shi1) mutant exhibits typical auxin-deficient root development and gravitropic response, brassinosteroid (BR)-deficient plant architecture and grain size as well as enhanced abscisic acid (ABA)-mediated drought tolerance. Additionally, we found that the shi1 mutant is also hyposensitive to auxin and BR treatment but hypersensitive to ABA. Further, we showed that OsSHI1 promotes the biosynthesis of auxin and BR by activating the expression of OsYUCCAs and D11, meanwhile dampens ABA signaling by inducing the expression of OsNAC2, which encodes a repressor of ABA signaling. Furthermore, we demonstrated that 3 classes of transcription factors, AUXIN RESPONSE FACTOR 19 (OsARF19), LEAF AND TILLER ANGLE INCREASED CONTROLLER (LIC), and OsZIP26 and OsZIP86, directly bind to the promoter of OsSHI1 and regulate its expression in response to auxin, BR, and ABA, respectively. Collectively, our results unravel an OsSHI1-centered transcriptional regulatory hub that orchestrates the integration and self-feedback regulation of multiple phytohormone signaling pathways to coordinate plant growth and stress adaptation.
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