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毒力进化的源-汇动态

Source-sink dynamics of virulence evolution.

作者信息

Sokurenko Evgeni V, Gomulkiewicz Richard, Dykhuizen Daniel E

机构信息

Department of Microbiology, University of Washington, Seattle, Washington 98105, USA.

出版信息

Nat Rev Microbiol. 2006 Jul;4(7):548-55. doi: 10.1038/nrmicro1446.

Abstract

To understand the evolution of genetic diversity within species--bacterial and others--we must dissect the first steps of genetic adaptation to novel habitats, particularly habitats that are suboptimal for sustained growth where there is strong selection for adaptive changes. Here, we present the view that bacterial human pathogens represent an excellent model for understanding the molecular mechanisms of the adaptation of a species to alternative habitats. In particular, bacterial pathogens allow us to develop analytical methods to detect genetic adaptation using an evolutionary 'source-sink' model, with which the evolution of bacterial pathogens can be seen from the angle of continuous switching between permanent (source) and transient (sink) habitats. The source-sink model provides a conceptual framework for understanding the population dynamics and molecular mechanisms of virulence evolution.

摘要

为了理解物种(包括细菌及其他物种)内遗传多样性的演变,我们必须剖析遗传适应新栖息地的最初步骤,尤其是那些对持续生长并非最优的栖息地,在这些地方,对适应性变化存在强烈的选择压力。在此,我们提出这样的观点:细菌人类病原体是理解一个物种适应替代栖息地分子机制的绝佳模型。特别是,细菌病原体使我们能够开发分析方法,利用进化的“源 - 汇”模型来检测遗传适应,通过该模型,可从永久(源)和短暂(汇)栖息地之间的持续转换角度来观察细菌病原体的进化。源 - 汇模型为理解毒力进化的种群动态和分子机制提供了一个概念框架。

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