烟草
细胞生物学
磷酸化
生物
免疫系统
效应器
激酶
蛋白质磷酸化
活性氧
程序性细胞死亡
呼吸爆发
过敏反应
信号转导
植物免疫
免疫受体
免疫
Jurkat细胞
细胞信号
蛋白激酶A
先天免疫系统
受体
细胞
T细胞
模式识别受体
作者
Yuta Hino,Miki Yoshioka,H. Adachi,Hirofumi YOSHIOKA
摘要
Plant immune responses comprise two phases, pattern-triggered immunity (PTI) and effector-triggered immunity (ETI). Sensing of the pathogen effector by a nucleotide-binding leucine-rich repeat receptor (NLR) induces robust and sustained immune responses, resulting in hypersensitive response (HR) cell death. During HR, the reactive oxygen species (ROS) burst is achieved through Nicotiana benthamiana NbRBOHB. However, the detailed regulatory mechanisms of the ROS burst during HR are unclear. Here, we show that calcium-dependent protein kinases (CDPKs) contribute to the ROS burst associated with ongoing cell death using luminol-based ROS assay together with immunodetection of the phosphorylated NbRBOHB in N. benthamiana. We found that NbCDPK4 and NbCDPK5 directly phosphorylate NbRBOHB Ser-123 and provoke ROS bursts. The phosphorylation of the Ser-123 was strongly increased during AVRblb2-ETI and INF1-triggered PTI-ETI responses. On the contrary, the Ser-123 was not phosphorylated during flg22-triggered PTI. Moreover, the transient expression of NRC4D478V, an autoactive helper NLR, indicated that phosphorylation of Ser-123 was induced in a manner dependent on the N-terminal conserved motif required for Ca2+ channel activity of the NRC4. These findings demonstrate a pivotal role for NbCDPKs in activating RBOH and sustained robust ROS bursts during plant immune cell death.
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