激酶
免疫系统
信号转导
细胞生物学
NADPH氧化酶
植物免疫
磷酸化
生物
化学
免疫学
生物化学
活性氧
拟南芥
基因
突变体
作者
Philipp Köster,Gefeng He,Qiuyan Dong,Katarina Hake,Ina Schmitz-Thom,Paulina Heinkow,Jürgen Eirich,Lukas Wallrad,Kenji Hashimoto,Stefanie Schültke,Iris Finkemeier,Tina Romeis,Jörg Kudla
标识
DOI:10.1101/2023.03.14.532616
摘要
Abstract Systemic signaling is an essential hallmark of multicellular life. Pathogen encounter occurs locally but triggers organ-scale and organismic immune responses. In plants, elicitor perception provokes systemically expanding Ca 2+ and H 2 O 2 signals conferring immunity. Here, we identify a Ca 2+ sensing bi-kinase module as becoming super-activated through mutual trans-phosphorylation and imposing synergistically enhanced NADPH oxidase activation. A combined two-layer bi-kinase/substrate phospho-code allows for sensitized signaling initiation already by near-resting elevations of Ca 2+ concentration at the infection site. Subsequently, it facilitates further signal wave proliferation with minimal amplitude requirement, triggering protective defense responses throughout the plant. Our study reveals how plants build and perpetuate trans-cellular immune signal proliferation while avoiding disturbance of ongoing cellular signaling along the path of response dissemination. One sentence summary Mutual trans-activation of a Ca 2+ sensing bi-kinase module potentiates NADPH oxidase activation to facilitate systemic immunity.
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