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Pathogen effector AvrSr35 triggers Sr35 resistosome assembly via a direct recognition mechanism.


ABSTRACT: Nucleotide-binding, leucine-rich repeat receptors (NLRs) perceive pathogen effectors to trigger plant immunity. The direct recognition mechanism of pathogen effectors by coiled-coil NLRs (CNLs) remains unclear. We demonstrate that the Triticum monococcum CNL Sr35 directly recognizes the pathogen effector AvrSr35 from Puccinia graminis f. sp. tritici and report a cryo-electron microscopy structure of Sr35 resistosome and a crystal structure of AvrSr35. We show that AvrSr35 forms homodimers that are disassociated into monomers upon direct recognition by the leucine-rich repeat domain of Sr35, which induces Sr35 resistosome assembly and the subsequent immune response. The first 20 amino-terminal residues of Sr35 are indispensable for immune signaling but not for plasma membrane association. Our findings reveal the direct recognition and activation mechanism of a plant CNL and provide insights into biochemical function of Sr35 resistosome.

SUBMITTER: Zhao YB 

PROVIDER: S-EPMC9462685 | biostudies-literature | 2022 Sep

REPOSITORIES: biostudies-literature

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Pathogen effector AvrSr35 triggers Sr35 resistosome assembly via a direct recognition mechanism.

Zhao Yan-Bo YB   Liu Meng-Xi MX   Chen Tao-Tao TT   Ma Xiaomin X   Li Ze-Kai ZK   Zheng Zichao Z   Zheng Si-Ru SR   Chen Lifei L   Li You-Zhi YZ   Tang Li-Rui LR   Chen Qi Q   Wang Peiyi P   Ouyang Songying S  

Science advances 20220909 36


Nucleotide-binding, leucine-rich repeat receptors (NLRs) perceive pathogen effectors to trigger plant immunity. The direct recognition mechanism of pathogen effectors by coiled-coil NLRs (CNLs) remains unclear. We demonstrate that the <i>Triticum monococcum</i> CNL Sr35 directly recognizes the pathogen effector AvrSr35 from <i>Puccinia graminis</i> f. sp<i>. tritici</i> and report a cryo-electron microscopy structure of Sr35 resistosome and a crystal structure of AvrSr35. We show that AvrSr35 fo  ...[more]

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