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种群结构、选择水平与细胞内共生体的进化

Population structure, levels of selection, and the evolution of intracellular symbionts.

作者信息

O'Fallon Brendan

机构信息

Department of Biology, University of Utah, Salt Lake City, Utah 84112, USA.

出版信息

Evolution. 2008 Feb;62(2):361-73. doi: 10.1111/j.1558-5646.2007.00289.x. Epub 2007 Dec 7.

Abstract

Many obligately intracellular symbionts exhibit a characteristic set of genetic changes that include an increase in substitution rates, loss of many genes, and apparent destabilization of many proteins and structural RNAs. Authors have suggested that these changes are due to increased mutation rates, or, more commonly, decreased effective population size due to population bottlenecks at the symbiont or, perhaps, host level. I propose that the increase in substitution rates and accumulation of deleterious mutations is a consequence of the population structure imposed on the endosymbionts by strict host association, loss of horizontal transmission and potentially conflicting levels of selection. I analyze a population genetic model of endosymbiont evolution, and demonstrate that substitution rates will increase, and the effect of those substitutions on endosymbiont fitness will become more deleterious as horizontal transmission among hosts decreases. Additionally, I find that there is a critical level of horizontal transmission below which natural selection cannot effectively purge deleterious mutations, leading to an expected loss of fitness over time. This critical level varies across loci with the degree of correlation between host and endosymbiont fitness, and may help explain differential retention and loss of certain genes.

摘要

许多专性细胞内共生体呈现出一系列特征性的遗传变化,包括替换率增加、许多基因丢失,以及许多蛋白质和结构RNA明显不稳定。作者们认为,这些变化是由于突变率增加,或者更常见的是,由于共生体或宿主水平的种群瓶颈导致有效种群大小减小。我认为,替换率的增加和有害突变的积累是严格的宿主关联、水平传播的丧失以及潜在冲突的选择水平强加于内共生体的种群结构的结果。我分析了一个内共生体进化的种群遗传模型,并证明随着宿主间水平传播的减少,替换率将会增加,并且这些替换对内共生体适应性的影响将变得更加有害。此外,我发现存在一个水平传播的临界水平,低于这个水平,自然选择无法有效清除有害突变,导致预期的适应性随时间丧失。这个临界水平因位点而异,取决于宿主和内共生体适应性之间的相关程度,并且可能有助于解释某些基因的差异保留和丢失。

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