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移动基因盒:细菌进化的基本资源。

Mobile gene cassettes: a fundamental resource for bacterial evolution.

作者信息

Michael Carolyn A, Gillings Michael R, Holmes Andrew J, Hughes Lesley, Andrew Nigel R, Holley Marita P, Stokes H W

机构信息

Department of Biological Sciences, Macquarie University, Sydney, New South Wales 2109, Australia.

出版信息

Am Nat. 2004 Jul;164(1):1-12. doi: 10.1086/421733. Epub 2004 May 3.

Abstract

Horizontal gene transfer increases genetic diversity in prokaryotes to a degree not allowed by the limitations of reproduction by binary fission. The integron/gene cassette system is one of the most recently characterized examples of a system that facilitates horizontal gene transfer. This system, discovered in the context of multidrug resistance, is recognized in a clinical context for its role in allowing pathogens to adapt to the widespread use of antibiotics. Recent studies suggest that gene cassettes are common and encode functions relevant to many adaptive traits. To estimate the diversity of mobile cassettes in a natural environment, a molecular technique was developed to provide representative distributions of cassette populations at points within a sampling area. Subsequently, statistical methods analogous to those used for calculating species diversity were employed to assess the diversity of gene cassettes within the sample area in addition to gaining an estimate of cassette pool size. Results indicated that the number of cassettes within a 5x10-m sample area was large and that the overall mobile cassette metagenome was likely to be orders of magnitude larger again. Accordingly, gene cassettes appear to be capable of mobilizing a significant genetic resource and consequently have a substantial impact on bacterial adaptability.

摘要

水平基因转移增加了原核生物的遗传多样性,其程度是二元裂变繁殖的局限性所不允许的。整合子/基因盒系统是促进水平基因转移的系统中最新被描述的例子之一。这个在多重耐药背景下发现的系统,在临床环境中因其在使病原体适应抗生素广泛使用方面的作用而被认可。最近的研究表明,基因盒很常见,并且编码与许多适应性特征相关的功能。为了估计自然环境中可移动基因盒的多样性,开发了一种分子技术,以提供采样区域内各点基因盒群体的代表性分布。随后,采用类似于计算物种多样性的统计方法,来评估样本区域内基因盒的多样性,并估计基因盒库的大小。结果表明,在5×10米的样本区域内基因盒数量众多,而且整个可移动基因盒宏基因组可能还要大几个数量级。因此,基因盒似乎能够调动大量的遗传资源,从而对细菌的适应性产生重大影响。

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