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一种溶菌酶效应蛋白介导了坏死营养型真菌灰葡萄孢的黏附及植物免疫抑制作用。

A LysM Effector Mediates Adhesion and Plant Immunity Suppression in the Necrotrophic Fungus Botrytis cinerea.

作者信息

Crumière Mélanie, de Vallée Amélie, Rascle Christine, Gillet François-Xavier, Nahar Shamsun, van Kan Jan A L, Bruel Christophe, Poussereau Nathalie, Choquer Mathias

机构信息

Univ Lyon, Université Lyon1, CNRS, INSA-Lyon, Microbiologie, Adaptation et Pathogénie, Villeurbanne, France.

Laboratoire Mixte, Bayer SAS, Centre de Recherche de La Dargoire, Lyon, France.

出版信息

J Basic Microbiol. 2025 May;65(5):e2400552. doi: 10.1002/jobm.202400552. Epub 2024 Dec 10.

DOI:10.1002/jobm.202400552
PMID:39655398
Abstract

LysM effectors are suppressors of chitin-triggered plant immunity in biotrophic and hemibiotrophic fungi. In necrotrophic fungi, LysM effectors might induce a mechanism to suppress host immunity during the short asymptomatic phase they establish before these fungi activate plant defenses and induce host cell death leading to necrosis. Here, we characterize a secreted LysM protein from a major necrotrophic fungus, Botrytis cinerea, called BcLysM1. Transcriptional induction of BcLysM1 gene was observed in multicellular appressoria, called infection cushions, in unicellular appressoria and in the early phase of infection on bean leaves. We confirmed that BcLysM1 protein binds chitin in the fungus cell wall and protects hyphae against degradation by external chitinases. This effector is also able to suppress the chitin-induced ROS burst in Arabidopsis thaliana, suggesting sequestration of chitooligosaccharides in apoplast during infection. Moreover, contribution of BcLysM1 in infection initiation and in adhesion to bean leaf surfaces were demonstrated. Our data show for the first time that a LysM effector can play a dual role in mycelial adhesion and suppression of chitin-triggered host immunity, both of which occur during the early asymptomatic phase of infection by necrotrophic fungi.

摘要

LysM效应蛋白是活体营养型和半活体营养型真菌中几丁质触发的植物免疫的抑制因子。在死体营养型真菌中,LysM效应蛋白可能会诱导一种机制,在这些真菌激活植物防御并诱导宿主细胞死亡导致坏死之前,在它们建立的短暂无症状阶段抑制宿主免疫。在此,我们对一种来自主要死体营养型真菌灰葡萄孢的分泌型LysM蛋白进行了表征,其名为BcLysM1。在多细胞附着胞(称为侵染垫)、单细胞附着胞以及在菜豆叶片上的侵染早期阶段,均观察到了BcLysM1基因的转录诱导。我们证实,BcLysM1蛋白与真菌细胞壁中的几丁质结合,并保护菌丝免受外部几丁质酶的降解。这种效应蛋白还能够抑制拟南芥中几丁质诱导的活性氧爆发,这表明在侵染过程中质外体中的壳寡糖被隔离。此外,还证明了BcLysM1在侵染起始和附着于菜豆叶片表面过程中的作用。我们的数据首次表明,一种LysM效应蛋白可以在菌丝附着和抑制几丁质触发的宿主免疫中发挥双重作用,这两种作用均发生在死体营养型真菌侵染的早期无症状阶段。

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