The OsMAPK5–OsWRKY72 module negatively regulates grain length and grain weight in rice

突变体 磷酸化 转录因子 野生型 生物 水稻 生长素 MAPK/ERK通路 信号转导 细胞生物学 粒度 表型 植物 生物化学 基因 材料科学 冶金
作者
Wang FuXiang,Jiexin Lin,Yang Fan,Xiaofeng Chen,Yinzhan Liu,Lianhe Yan,Jing Chen,Zonghua Wang,Huaan Xie,Jianfu Zhang,Huibin Xu,Songbiao Chen
出处
期刊:Journal of Integrative Plant Biology [Wiley]
标识
DOI:10.1111/jipb.13786
摘要

ABSTRACT Grain size and grain weight are important determinants for grain yield. In this study, we identify a novel OsMAPK5–OsWRKY72 module that negatively regulates grain length and grain weight in rice. We found that loss‐of‐function of OsMAPK5 leads to larger cell size of the rice spikelet hulls and a significant increase in both grain length and grain weight in an indica variety Minghui 86 (MH86). OsMAPK5 interacts with OsMAPKK3/4/5 and OsWRKY72 and phosphorylates OsWRKY72 at T86 and S88. Similar to the osmapk5 MH86 mutants, the oswrky72 knockout MH86 mutants exhibited larger size of spikelet hull cells and increased grain length and grain weight, whereas the OsWRKY72 ‐overexpression MH86 plants showed opposite phenotypes. OsWRKY72 targets the W‐box motifs in the promoter of OsARF6 , an auxin response factor involved in auxin signaling. Dual‐luciferase reporter assays demonstrated that OsWRKY72 activates OsARF6 expression. The activation effect of the phosphorylation‐mimicking OsWRKY72 T86D/S88D on OsARF6 expression was significantly enhanced, whereas the effects of the OsWRKY72 phosphorylation‐null mutants were significantly reduced. In addition, auxin levels in young panicles of the osmapk5 and oswrky72 mutants were significantly higher than that in the wild‐type MH86. Collectively, our study uncovered novel connections of the OsMAPKK3/4/5‐OsMAPK5‐mediated MAPK signaling, OsWRKY72‐mediated transcription regulation, and OsARF6‐mediated auxin signaling pathways in regulating grain length and grain weight in an indica ‐type rice, providing promising targets for molecular breeding of rice varieties with high yield and quality.
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