A cyclic nucleotide-gated channel mediates cytoplasmic calcium elevation and disease resistance in rice

水稻中一种环核苷酸门控通道介导细胞质钙离子浓度升高和抗病性。

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作者:Jiachang Wang,Xi Liu,An Zhang,Yulong Ren,Fuqing Wu,Gang Wang,Yang Xu,Cailin Lei,Shanshan Zhu,Tian Pan,Yongfei Wang,Huan Zhang,Fan Wang,Yan-Qiu Tan,Yupeng Wang,Xin Jin,Sheng Luo,Chunlei Zhou,Xiao Zhang,Jinling Liu,Shuai Wang,Lingzhi Meng,Yihua Wang,Xi Chen,Qibing Lin,Xin Zhang,Xiuping Guo,Zhijun Cheng,Jiulin Wang,Yunlu Tian,Shijia Liu,Ling Jiang,Chuanyin Wu,Ertao Wang,Jian-Min Zhou,Yong-Fei Wang,Haiyang Wang,Jianmin Wan

Abstract

The transient elevation of cytoplasmic calcium is essential for pathogen-associated molecular pattern (PAMP)-triggered immunity (PTI). However, the calcium channels responsible for this process have remained unknown. Here, we show that rice CDS1 (CELL DEATH and SUSCEPTIBLE to BLAST 1) encoding OsCNGC9, a cyclic nucleotide-gated channel protein, positively regulates the resistance to rice blast disease. We show that OsCNGC9 mediates PAMP-induced Ca2+ influx and that this event is critical for PAMPs-triggered ROS burst and induction of PTI-related defense gene expression. We further show that a PTI-related receptor-like cytoplasmic kinase OsRLCK185 physically interacts with and phosphorylates OsCNGC9 to activate its channel activity. Our results suggest a signaling cascade linking pattern recognition to calcium channel activation, which is required for initiation of PTI and disease resistance in rice.

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