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细菌中水平转移基因的调控整合

Regulatory integration of horizontally-transferred genes in bacteria.

作者信息

Dorman Charles J

机构信息

Department of Microbiology, Trinity College, Dublin 2, Ireland.

出版信息

Front Biosci (Landmark Ed). 2009 Jan 1;14(11):4103-12. doi: 10.2741/3515.

Abstract

Horizontal transfer of genetic material is a fact of microbial life and bacteria can obtain new DNA sequences through the processes of conjugation, transduction and transformation. This offers the bacterium the possibility of evolving rapidly by importing new genes that code for new traits that may assist in environmental adaptation. Research in this area has focused in particular on the role of horizontal transfer in the dissemination through bacterial populations of genes for resistance to antimicrobial agents, including antibiotics. It is becoming clear that many other phenotypic characteristics have been acquired through horizontal routes and that these include traits contributing to pathogenesis and symbiosis. An important corollary to the acquisition of new genes is the problem of how best to integrate them in the existing gene regulatory circuits of the recipient so that fitness is not compromised initially and can be enhanced in the future through optimal expression of the new genes.

摘要

遗传物质的水平转移是微生物生命中的一个事实,细菌可以通过接合、转导和转化过程获得新的DNA序列。这为细菌提供了通过导入编码有助于环境适应的新性状的新基因而快速进化的可能性。该领域的研究特别关注水平转移在抗微生物剂(包括抗生素)抗性基因在细菌群体中的传播中的作用。越来越清楚的是,许多其他表型特征也是通过水平途径获得的,这些特征包括有助于发病机制和共生的性状。获得新基因的一个重要推论是如何最好地将它们整合到受体现有的基因调控回路中的问题,以便最初不会损害适应性,并且将来可以通过新基因的最佳表达来增强适应性。

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