磷酸化
生物
细胞生物学
蛋白磷酸酶2
白粉病
化学
磷酸酶
植物
作者
Yuanming Liu,Hongguang You,Hanping Li,Chujun Zhang,Huan Guo,Xueling Huang,Qiong Zhang,Shouxin Zhang,Chuang Ma,Yajuan Wang,Tingdong Li,Wanquan Ji,Zhensheng Kang,Hong Zhang
摘要
The integrity of wheat (Triticum aestivum) production is increasingly jeopardized by the fungal pathogen Blumeria graminis f. sp. tritici (Bgt), particularly amid the vicissitudes of climate change. Here, we delineated the role of a wheat transcription factor, TaNAC1, which precipitates cellular apoptosis and fortifies resistance against Bgt. Utilizing BiFC, co-immunoprecipitation, protein quantification, luciferase report assays, we determined that cytoplasmic TaNAC1-7A undergoes phosphorylation at the S184/S258 sites by TaCDPK20, facilitating its nuclear translocation. This migration appears to prime further phosphorylation by TaMPK1, thereby enhancing transcriptional regulatory activity. Notably, the apoptotic activity of phosphorylated TaNAC1-7A is negatively modulated by the nuclear protein phosphatase PP2Ac. Furthermore, activation of TaNAC1 phosphorylation initiates transcription of downstream genes TaSec1a and TaCAMTA4, through binding to the C[T/G]T[N
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