鞭毛蛋白
生物
拟南芥
免疫系统
拟南芥
植物免疫
非生物成分
细胞生物学
信号转导
免疫
受体
激酶
免疫学
遗传学
基因
生态学
突变体
作者
Jakub Rzemieniewski,Henriette Leicher,Hyun Kyung Lee,Caroline Broyart,Shahran Nayem,Christian Wiese,Julian Maroschek,Zeynep Camgöz,Vilde Olsson Lalun,Michael A. Djordjevic,A. Corina Vlot,Ralph Hückelhoven,Julia Santiago,Martin Stegmann
标识
DOI:10.1101/2022.12.20.521212
摘要
Abstract Plant endogenous signaling peptides shape growth, development and adaptations to biotic and abiotic stress. Here, we identified C-TERMINALLY ENCODED PEPTIDEs (CEPs) as novel immune-modulatory peptides (phytocytokines) in Arabidopsis thaliana . Our data reveals that CEPs induce immune outputs and are required to mount resistance against the leaf-infecting bacterial pathogen Pseudomonas syringae pv . tomato . We show that effective immunity requires CEP perception by tissue-specific CEP RECEPTOR 1 (CEPR1) and CEPR2. Moreover, we identified the related RECEPTOR-LIKE KINASE 7 (RLK7) as a novel CEP4-specific CEP receptor contributing to CEP-mediated immunity, suggesting a complex interplay of multiple CEP ligands and receptors in different tissues during biotic stress. CEPs have a known role in the regulation of root growth and systemic nitrogen (N)-demand signaling. We now provide evidence that CEPs and their receptors promote immunity in an N status-dependent manner, suggesting a previously unknown molecular crosstalk between plant nutrition and cell surface immunity. We propose that CEPs and their receptors are central regulators for the adaptation of biotic stress responses to plant-available resources.
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