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在没有载体宿主的情况下,嗜线虫致病杆菌(γ-变形菌纲:肠杆菌科)的可变毒力表型

Variable virulence phenotype of Xenorhabdus bovienii (γ-Proteobacteria: Enterobacteriaceae) in the absence of their vector hosts.

作者信息

McMullen John G, McQuade Rebecca, Ogier Jean-Claude, Pagès Sylvie, Gaudriault Sophie, Patricia Stock S

机构信息

School of Animal and Comparative Biomedical Sciences, University of Arizona, Tucson, AZ, USA.

Postdoctoral Excellence in Research and Teaching (PERT) Fellow, Center for Insect Science, University of Arizona, Tucson, AZ, USA.

出版信息

Microbiology (Reading). 2017 Apr;163(4):510-522. doi: 10.1099/mic.0.000449. Epub 2017 Apr 22.

Abstract

Xenorhabdus bovienii bacteria have a dual lifestyle: they are mutualistic symbionts to many species of Steinernema nematodes and are pathogens to a wide array of insects. Previous studies have shown that virulence of X.bovienii-Steinernema spp. pairs decreases when the nematodes associate with non-cognate bacterial strains. However, the virulence of the X. bovienii strains alone has not been fully investigated. In this study, we characterized the virulence of nine X. bovienii strains in Galleria mellonella and Spodoptera littoralis and performed a comparative genomic analysis to correlate observed phenotypes with strain genotypes. Two X. bovienii strains were found to be highly virulent against the tested insect hosts, while three strains displayed attenuated insect virulence. Comparative genomic analyses revealed the presence of several clusters present only in virulent strains, including a predicted type VI secretion system (T6SS). We performed intra-species-competition assays, and showed that the virulent T6SS+ strains generally outcompeted the less virulent T6SS- strains. Thus, we speculate that the T6SS in X. bovienii may be another addition to the arsenal of antibacterial mechanisms expressed by these bacteria in an insect, where it could potentially play three key roles: (1) competition against the insect host microbiota; (2) protection of the insect cadaver from necrotrophic microbial competitors; and (3) outcompeting other Xenorhabdus species and/or strains when co-infections occur.

摘要

博维氏致病杆菌具有双重生活方式

它们是许多斯氏线虫属线虫的互利共生体,也是多种昆虫的病原体。先前的研究表明,当线虫与非同源细菌菌株结合时,博维氏致病杆菌-斯氏线虫属组合的毒力会降低。然而,单独的博维氏致病杆菌菌株的毒力尚未得到充分研究。在本研究中,我们表征了九种博维氏致病杆菌菌株对大蜡螟和斜纹夜蛾的毒力,并进行了比较基因组分析,以将观察到的表型与菌株基因型相关联。发现两种博维氏致病杆菌菌株对受试昆虫宿主具有高毒力,而三种菌株表现出减弱的昆虫毒力。比较基因组分析揭示了仅在有毒力菌株中存在的几个基因簇,包括一个预测的VI型分泌系统(T6SS)。我们进行了种内竞争试验,结果表明有毒力的T6SS+菌株通常比毒力较弱的T6SS-菌株更具竞争力。因此,我们推测博维氏致病杆菌中的T6SS可能是这些细菌在昆虫中表达的抗菌机制库中的又一成员,它可能潜在地发挥三个关键作用:(1)与昆虫宿主微生物群竞争;(2)保护昆虫尸体免受坏死性微生物竞争者的侵害;(3)在发生共感染时胜过其他致病杆菌属物种和/或菌株。

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本文引用的文献

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Bacterial Metabolism Shapes the Host-Pathogen Interface.
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2
The Versatile Type VI Secretion System.
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