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RpoS在大肠杆菌于原生动物捕食期间及水分减少条件下存活过程中的作用凸显了其在土壤环境中的重要性。

Roles for RpoS in survival of Escherichia coli during protozoan predation and in reduced moisture conditions highlight its importance in soil environments.

作者信息

Somorin Yinka, Bouchard Guillaume, Gallagher Joseph, Abram Florence, Brennan Fiona, O'Byrne Conor

机构信息

Microbiology, School of Natural Sciences, College of Science, National University of Ireland, Galway, Galway H91 CF50, Ireland.

Département de Génie Biologique, IUT Dijon, University of Burgundy, F- 21078 Dijon, France.

出版信息

FEMS Microbiol Lett. 2017 Oct 16;364(19). doi: 10.1093/femsle/fnx198.

DOI:10.1093/femsle/fnx198
PMID:28967947
Abstract

The soil is a complex ecosystem where interactions between biotic and abiotic factors determine the survival and fate of microbial inhabitants of the system. Having previously shown that Escherichia coli requires the general stress response regulator, RpoS, to survive long term in soil, it was important to determine what specific conditions in this environment necessitate a functional RpoS. This study investigated the susceptibility of soil-persistent E. coli to predation by the single-celled eukaryotes Acanthamoeba polyphaga and Tetrahymena pyriformis, and the role RpoS plays in resisting this predation. Strain-specific differences were observed in the predation of E. coli strains, with soil-persistent strain COB583 being the most resistant to predation by both protozoans. RpoS and curli, proteinaceous fibres used for attachment to biotic and abiotic surfaces, increased the ability of E. coli to resist predation by A. polyphaga and T. pyriformis. Furthermore, soil moisture content impacted the survival of E. coli BW25113 but wild-type COB583 had similar survival irrespective of soil moisture content. Overall, this study confirmed that RpoS contributes to the resistance of E. coli to protozoan predation and that RpoS is crucial for the increased fitness of soil-persistent E. coli against predation and reduced moisture in soil.

摘要

土壤是一个复杂的生态系统,其中生物和非生物因素之间的相互作用决定了该系统中微生物群落的生存和命运。先前的研究表明,大肠杆菌需要一般应激反应调节因子RpoS才能在土壤中长期存活,因此确定这种环境中哪些特定条件需要功能性的RpoS非常重要。本研究调查了土壤中持续存在的大肠杆菌对单细胞真核生物多噬棘阿米巴和梨形四膜虫捕食的敏感性,以及RpoS在抵抗这种捕食中所起的作用。在大肠杆菌菌株的捕食过程中观察到了菌株特异性差异,土壤中持续存在的COB583菌株对这两种原生动物的捕食最具抵抗力。RpoS和卷曲菌毛(用于附着在生物和非生物表面的蛋白质纤维)增强了大肠杆菌抵抗多噬棘阿米巴和梨形四膜虫捕食的能力。此外,土壤湿度影响了大肠杆菌BW25113的存活,但野生型COB583的存活情况与土壤湿度无关。总体而言,本研究证实RpoS有助于大肠杆菌抵抗原生动物的捕食,并且RpoS对于增强土壤中持续存在的大肠杆菌抵抗捕食和降低土壤湿度的适应性至关重要。

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