Oryza sativa mediator subunit OsMED25 interacts with OsBZR1 to regulate brassinosteroid signaling and plant architecture in rice

油菜素甾醇 水稻 RNA干扰 加压器 调解人 生物 信号转导 转录因子 细胞生物学 抄写(语言学) 核糖核酸 遗传学 拟南芥 抑制因子 基因 哲学 突变体 语言学
作者
Yuekun Ren,Xiaojie Tian,Shuyu Li,Enyang Mei,Ming He,Jufen Tang,Min Xu,Xiufeng Li,Zhenyu Wang,Chuanyou Li,Qingyun Bu
出处
期刊:Journal of Integrative Plant Biology [Wiley]
卷期号:62 (6): 793-811 被引量:25
标识
DOI:10.1111/jipb.12914
摘要

Abstract Brassinosteroids (BRs) are plant‐specific steroid hormones which regulate plant growth, development, and adaptation. Transcriptional regulation plays key roles in plant hormone signaling. A mediator can serve as a bridge between gene‐specific transcription factors and the RNA polymerase machinery, functioning as an essential component in regulating the transcriptional process. However, whether a mediator is involved in BR signaling is unknown. Here, we discovered that Oryza sativa mediator subunit 25 (OsMED25) is an important regulator of rice BR signaling. Phenotypic analyses showed that the OsMED25‐RNAi and osmed25 mutant presented erect leaves, as observed in BR‐deficient mutants. In addition, the OsMED25‐RNAi and osmed25 mutant exhibited decreased BR sensitivity. Genetic analysis indicated that OsMED25‐RNAi could suppress the enhanced BR signaling phenotype of Osbzr1‐D . Further biochemical analysis showed that OsMED25 interacts with OsBZR1 in vivo , and OsMED25 is enriched on the promoter of OsBZR1 target genes. RNA sequencing analysis indicated that OsMED25 affects the expression of approximately 45% of OsBZR1‐regulated genes and mainly functions as a corepressor of OsBZR1. Together, these findings revealed that OsMED25 regulates rice BR signaling by interacting with OsBZR1 and modulating the expression of OsBZR1 target genes, thus expanding our understanding of the roles of mediators in plant hormone signaling.
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