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植物致病细菌中III型分泌系统的调控

Regulation of the type III secretion system in phytopathogenic bacteria.

作者信息

Tang Xiaoyan, Xiao Yanmei, Zhou Jian-Min

机构信息

Department of Plant Pathology, Kansas State University, Manhattan, KS 66506-5502, USA.

出版信息

Mol Plant Microbe Interact. 2006 Nov;19(11):1159-66. doi: 10.1094/MPMI-19-1159.

Abstract

The type III secretion system (TTSS) is a specialized protein secretion machinery used by numerous gram-negative bacterial pathogens of animals and plants to deliver effector proteins directly into the host cells. In plant-pathogenic bacteria, genes encoding the TTSS were discovered as hypersensitive response and pathogenicity (hrp) genes, because mutation of these genes typically disrupts the bacterial ability to cause diseases on host plants and to elicit hypersensitive response on nonhost plants. The hrp genes and the type III effector genes (collectively called TTSS genes hereafter) are repressed in nutrient-rich media but induced when bacteria are infiltrated into plants or incubated in nutrient-deficient inducing media. Multiple regulatory components have been identified in the plant-pathogenic bacteria regulating TTSS genes under various conditions. In Ralstonia solanacearum, several signal transduction components essential for the induction of TTSS genes in plants are dispensable for the induction in inducing medium. In addition to the inducing signals, recent studies indicated the presence of negative signals in the plant regulating the Pseudomonas syringae TTSS genes. Thus, the levels of TTSS gene expression in plants likely are determined by the interactions of multiple signal transduction pathways. Studies of the hrp regulons indicated that TTSS genes are coordinately regulated with a number of non-TTSS genes.

摘要

III型分泌系统(TTSS)是一种特殊的蛋白质分泌机制,许多动植物革兰氏阴性细菌病原体利用它将效应蛋白直接输送到宿主细胞中。在植物致病细菌中,编码TTSS的基因被发现是过敏反应和致病性(hrp)基因,因为这些基因的突变通常会破坏细菌在宿主植物上致病以及在非宿主植物上引发过敏反应的能力。hrp基因和III型效应基因(以下统称为TTSS基因)在营养丰富的培养基中受到抑制,但当细菌渗入植物或在营养缺乏的诱导培养基中培养时会被诱导。在植物致病细菌中已鉴定出多种调控成分,它们在不同条件下调控TTSS基因。在青枯雷尔氏菌中,植物中诱导TTSS基因所必需的几个信号转导成分在诱导培养基中诱导时是可有可无的。除了诱导信号外,最近的研究表明植物中存在调节丁香假单胞菌TTSS基因的负信号。因此,植物中TTSS基因的表达水平可能由多种信号转导途径的相互作用决定。对hrp调控子的研究表明,TTSS基因与许多非TTSS基因协同调控。

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