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首页> 外文期刊>Frontiers in Plant Science >Supramolecular Structure and Functional Analysis of the Type III Secretion System in Pseudomonas fluorescens 2P24
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Supramolecular Structure and Functional Analysis of the Type III Secretion System in Pseudomonas fluorescens 2P24

机译:荧光假单胞菌 2P24 III型分泌系统的超分子结构和功能分析

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The type III secretion system (T3SS) of plant and animal bacterial pathogens directs the secretion and injection of proteins into host cells. Some homologous genes of T3SS were found also in non-pathogenic bacteria, but the organization of its machinery and basic function are still unknown. In this study, we identified a T3SS gene cluster from the plant growth-promoting Pseudomonas fluorescens 2P24 and isolated the corresponding T3SS apparatus. The T3SS gene cluster of strain 2P24 is similar organizationally to that of pathogenic P. syringae , except that it lacks the regulator hrpR and the hrpK1 and hrpH genes, which are involved in translocation of proteins. Electron microscopy revealed that the T3SS supramolecular structure of strain 2P24 was comprised of two distinctive substructures: a long extracellular, filamentous pilus, and a membrane-embedded base. We show that strain 2P24 deploys a harpin homolog protein, RspZ1, to elicit a hypersensitive response when infiltrated into Nicotiana tabacum cv. xanthi leaves with protein that is partially purified, and by complementing the hrpZ1 mutation of pHIR11. The T3SS of strain 2P24 retained ability to secrete effectors, whereas its effector translocation activity appeared to be excessively lost. Mutation of the rscC gene from 2P24 T3SS abolished the secretion of effectors, but the general biocontrol properties were unaffected. Remarkably, strain 2P24 induced functional MAMP-triggered immunity that included a burst of reactive oxygen species, strong suppression of challenge cell death, and disease expansion, while it was not associated with the secretion functional T3SS.
机译:动植物细菌病原体的III型分泌系统(T3SS)指导蛋白质的分泌并将其注入宿主细胞。在非致病性细菌中也发现了T3SS的一些同源基因,但其机制和基本功能的组成仍未知。在这项研究中,我们从促进植物生长的荧光假单胞菌2P24中鉴定了一个T3SS基因簇,并分离了相应的T3SS装置。菌株2P24的T3SS基因簇在组织结构上与致病性丁香假单胞菌相似,不同之处在于它缺少调控蛋白hrpR以及与蛋白易位有关的hrpK1和hrpH基因。电子显微镜显示,菌株2P24的T3SS超分子结构由两个独特的亚结构组成:一个长的细胞外丝状菌毛和一个膜包埋的碱基。我们显示,菌株2P24部署了harpin同源蛋白RspZ1,以渗入烟草(Nicotiana tabacum)cv中时引起过敏反应。黄嘌呤会留下部分纯化的蛋白质,并补充pHIR11的hrpZ1突变。菌株2P24的T3SS保留了分泌效应子的能力,而其效应子易位活性似乎过度丧失。来自2P24 T3SS的rscC基因的突变消除了效应子的分泌,但一般的生物防治特性并未受到影响。值得注意的是,菌株2P24诱导功能性MAMP触发的免疫力,包括活性氧的爆发,对攻击细胞死亡的强烈抑制和疾病的扩展,而与分泌功能性T3SS无关。

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