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从环境到人:人类机会性病原体细菌的基因组进化和适应

From environment to man: genome evolution and adaptation of human opportunistic bacterial pathogens.

机构信息

Université Montpellier 1, UMR 5119 (UM2, CNRS, IRD, IFREMER, UM1), équipe Pathogènes et Environnements, Montpellier 34093, France.

出版信息

Genes (Basel). 2012 Mar 26;3(2):191-232. doi: 10.3390/genes3020191.

Abstract

Environment is recognized as a huge reservoir for bacterial species and a source of human pathogens. Some environmental bacteria have an extraordinary range of activities that include promotion of plant growth or disease, breakdown of pollutants, production of original biomolecules, but also multidrug resistance and human pathogenicity. The versatility of bacterial life-style involves adaptation to various niches. Adaptation to both open environment and human specific niches is a major challenge that involves intermediate organisms allowing pre-adaptation to humans. The aim of this review is to analyze genomic features of environmental bacteria in order to explain their adaptation to human beings. The genera Pseudomonas, Aeromonas and Ochrobactrum provide valuable examples of opportunistic behavior associated to particular genomic structure and evolution. Particularly, we performed original genomic comparisons among aeromonads and between the strictly intracellular pathogens Brucella spp. and the mild opportunistic pathogens Ochrobactrum spp. We conclude that the adaptation to human could coincide with a speciation in action revealed by modifications in both genomic and population structures. This adaptation-driven speciation could be a major mechanism for the emergence of true pathogens besides the acquisition of specialized virulence factors.

摘要

环境被认为是细菌物种的巨大储存库和人类病原体的来源。一些环境细菌具有非凡的活动范围,包括促进植物生长或疾病、分解污染物、生产原始生物分子,但也包括多药耐药性和人类致病性。细菌生活方式的多功能性涉及到对各种生态位的适应。适应开放环境和人类特定生态位是一个重大挑战,需要中间生物体来实现对人类的预适应。本综述的目的是分析环境细菌的基因组特征,以解释它们对人类的适应。假单胞菌、气单胞菌和弧菌属为与特定基因组结构和进化相关的机会性行为提供了有价值的例子。特别是,我们在气单胞菌属之间以及严格细胞内病原体布鲁氏菌属和轻度机会性病原体弧菌属之间进行了原始的基因组比较。我们得出结论,适应人类可能与由基因组和种群结构变化引起的正在进行的物种形成相一致。这种适应驱动的物种形成可能是除了获得专门的毒力因子之外,真正病原体出现的主要机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/879f/3899952/cf127928818e/genes-03-00191-g001.jpg

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