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在理解细菌群落中质粒命运方面取得的进展。

Progress towards understanding the fate of plasmids in bacterial communities.

作者信息

Slater Frances R, Bailey Mark J, Tett Adrian J, Turner Sarah L

机构信息

The Centre for Ecology and Hydrology, Oxford, UK.

出版信息

FEMS Microbiol Ecol. 2008 Oct;66(1):3-13. doi: 10.1111/j.1574-6941.2008.00505.x. Epub 2008 May 28.

Abstract

Plasmid-mediated horizontal gene transfer influences bacterial community structure and evolution. However, an understanding of the forces which dictate the fate of plasmids in bacterial populations remains elusive. This is in part due to the enormous diversity of plasmids, in terms of size, structure, transmission, evolutionary history and accessory phenotypes, coupled with the lack of a standard theoretical framework within which to investigate them. This review discusses how ecological factors, such as spatial structure and temporal fluctuations, shape both the population dynamics and the physical features of plasmids. Novel data indicate that larger plasmids are more likely to be harboured by hosts in complex environments. Plasmid size may therefore be determined by environmentally mediated fitness trade-offs. As the correlation between replicon size and complexity of environment is similar for plasmids and chromosomes, plasmids could be used as tractable tools to investigate the influence of ecological factors on chromosomes. Parallels are drawn between plasmids and bacterial facultative symbionts, including the evolution of some members of both groups to a more obligate relationship with their host. The similarity between the influences of ecological factors on plasmids and bacterial symbionts suggests that it may be appropriate to study plasmids within a classical ecological framework.

摘要

质粒介导的水平基因转移影响细菌群落结构和进化。然而,对于决定质粒在细菌群体中命运的因素仍缺乏了解。部分原因在于质粒在大小、结构、传播、进化历史和附属表型方面具有巨大的多样性,同时缺乏一个用于研究它们的标准理论框架。本综述讨论了诸如空间结构和时间波动等生态因素如何塑造质粒的种群动态和物理特征。新数据表明,在复杂环境中,较大的质粒更有可能被宿主携带。因此,质粒大小可能由环境介导的适应性权衡决定。由于质粒和染色体的复制子大小与环境复杂性之间的相关性相似,质粒可作为研究生态因素对染色体影响的便捷工具。文中还比较了质粒和细菌兼性共生体,包括这两类群体中一些成员向与宿主形成更专性关系的进化过程。生态因素对质粒和细菌共生体影响的相似性表明,在经典生态框架内研究质粒可能是合适的。

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