WRKY蛋白质结构域
MYB公司
耐旱性
苜蓿
发起人
染色质免疫沉淀
泛素连接酶
转录因子
生物
植物
基因表达
泛素
转录组
基因
遗传学
作者
Kun Shi,Jia Liu,Huan Liang,Hongbin Dong,Jinli Zhang,Yuanhong Wei,Le Zhou,S. Wang,J. Zhu,Mingshu Cao,Chris S. Jones,Dongmei Ma,Zan Wang
摘要
ABSTRACT Drought is a major threat to alfalfa ( Medicago sativa L.) production. The discovery of important alfalfa genes regulating drought response will facilitate breeding for drought‐resistant alfalfa cultivars. Here, we report a genome‐wide association study of drought resistance in alfalfa. We identified and functionally characterized an MYB‐like transcription factor gene ( MsMYBH ), which increases the drought resistance in alfalfa. Compared with the wild‐types, the biomass and forage quality were enhanced in MsMYBH overexpressed plants. Combined RNA‐seq, proteomics and chromatin immunoprecipitation analysis showed that MsMYBH can directly bind to the promoters of MsMCP1, MsMCP2, MsPRX1A and MsCARCAB to improve their expression. The outcomes of such interactions include better water balance, high photosynthetic efficiency and scavenge excess H 2 O 2 in response to drought. Furthermore, an E3 ubiquitin ligase (MsWAV3) was found to induce MsMYBH degradation under long‐term drought, via the 26S proteasome pathway. Furthermore, variable‐number tandem repeats in MsMYBH promoter were characterized among a collection of germplasms, and the variation is associated with promoter activity. Collectively, our findings shed light on the functions of MsMYBH and provide a pivotal gene that could be leveraged for breeding drought‐resistant alfalfa. This discovery also offers new insights into the mechanisms of drought resistance in alfalfa.
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