The TaSnRK1-TabHLH489 module integrates brassinosteroid and sugar signalling to regulate the grain length in bread wheat
文献类型: 外文期刊
作者: Lyu, Jinyang 1 ; Wang, Dongzhi 2 ; Sun, Na 1 ; Yang, Fan 1 ; Li, Xuepeng 1 ; Mu, Junyi 1 ; Zhou, Runxiang 1 ; Zheng, Guolan 1 ; Yang, Xin 1 ; Zhang, Chenxuan 1 ; Han, Chao 1 ; Xia, Guang-Min 1 ; Li, Genying 3 ; Fan, Min 1 ; Xiao, Jun 2 ; Bai, Ming-Yi 1 ;
作者机构: 1.Shandong Univ, Sch Life Sci, Key Lab Plant Dev & Environm Adaptat Biol, Minist Educ, Qingdao, Peoples R China
2.Chinese Acad Sci, Inst Genet & Dev Biol, State Key Lab Plant Cell & Chromosome Engn, Beijing, Peoples R China
3.Shandong Acad Agr Sci, Crop Res Inst, Jinan, Peoples R China
4.Univ Chinese Acad Sci, Beijing, Peoples R China
5.JIC CAS, Ctr Excellence Plant & Microbial Sci CEPAMS, Beijing, Peoples R China
关键词: wheat grain length; brassinosteroid; sugar; TabHLH489; SnRK1
期刊名称:PLANT BIOTECHNOLOGY JOURNAL ( 影响因子:13.8; 五年影响因子:13.2 )
ISSN: 1467-7644
年卷期: 2024 年
页码:
收录情况: SCI
摘要: Regulation of grain size is a crucial strategy for improving the crop yield and is also a fundamental aspect of developmental biology. However, the underlying molecular mechanisms governing grain development in wheat remain largely unknown. In this study, we identified a wheat atypical basic helix-loop-helix (bHLH) transcription factor, TabHLH489, which is tightly associated with grain length through genome-wide association study and map-based cloning. Knockout of TabHLH489 and its homologous genes resulted in increased grain length and weight, whereas the overexpression led to decreased grain length and weight. TaSnRK1 alpha 1, the alpha-catalytic subunit of plant energy sensor SnRK1, interacted with and phosphorylated TabHLH489 to induce its degradation, thereby promoting wheat grain development. Sugar treatment induced TaSnRK1 alpha 1 protein accumulation while reducing TabHLH489 protein levels. Moreover, brassinosteroid (BR) promotes grain development by decreasing TabHLH489 expression through the transcription factor BRASSINAZOLE RESISTANT1 (BZR1). Importantly, natural variations in the promoter region of TabHLH489 affect the TaBZR1 binding ability, thereby influencing TabHLH489 expression. Taken together, our findings reveal that the TaSnRK1 alpha 1-TabHLH489 regulatory module integrates BR and sugar signalling to regulate grain length, presenting potential targets for enhancing grain size in wheat.
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