ACBP4‐WRKY70‐RAP2.12 module positively regulates submergence‐induced hypoxia response in Arabidopsis thaliana

拟南芥 生物 拟南芥 磷酸化 调节器 下调和上调 细胞生物学 芸苔属 缺氧(环境) 基因 植物 遗传学 突变体 化学 氧气 有机化学
作者
Mengyun Guo,Yingjun Yao,Kangqun Yin,Luna Tan,Meng Liu,Jing Hou,Han Zhang,Ruyun Liang,X. Zhang,Heng Yang,Xiaoxiao Chen,Jinrui Tan,Yan Song,Shangling Lou,Liyang Chen,XiangWen Liu,Si Tang,Yongqi Hu,Jin Yan,Wensen Fu
出处
期刊:Journal of Integrative Plant Biology [Wiley]
卷期号:66 (6): 1052-1067 被引量:14
标识
DOI:10.1111/jipb.13647
摘要

ABSTRACT ACYL‐CoA‐BINDING PROTEINs (ACBPs) play crucial regulatory roles during plant response to hypoxia, but their molecular mechanisms remain poorly understood. Our study reveals that ACBP4 serves as a positive regulator of the plant hypoxia response by interacting with WRKY70, influencing its nucleocytoplasmic shuttling in Arabidopsis thaliana . Furthermore, we demonstrate the direct binding of WRKY70 to the ACBP4 promoter, resulting in its upregulation and suggesting a positive feedback loop. Additionally, we pinpointed a phosphorylation site at Ser638 of ACBP4, which enhances submergence tolerance, potentially by facilitating WRKY70's nuclear shuttling. Surprisingly, a natural variation in this phosphorylation site of ACBP4 allowed A. thaliana to adapt to humid conditions during its historical demographic expansion. We further observed that both phosphorylated ACBP4 and oleoyl‐CoA can impede the interaction between ACBP4 and WRKY70, thus promoting WRKY70's nuclear translocation. Finally, we found that the overexpression of orthologous BnaC5.ACBP4 and BnaA7.WRKY70 in Brassica napus increases submergence tolerance, indicating their functional similarity across genera. In summary, our research not only sheds light on the functional significance of the ACBP4 gene in hypoxia response, but also underscores its potential utility in breeding flooding‐tolerant oilseed rape varieties.
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