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应激诱导的无性繁殖种群中突变的进化。

The evolution of stress-induced hypermutation in asexual populations.

机构信息

Department of Molecular Biology and Ecology of Plants, Tel-Aviv University, Tel-Aviv 69978, Israel.

出版信息

Evolution. 2012 Jul;66(7):2315-28. doi: 10.1111/j.1558-5646.2012.01576.x. Epub 2012 Feb 28.

Abstract

Numerous empirical studies show that stress of various kinds induces a state of hypermutation in bacteria via multiple mechanisms, but theoretical treatment of this intriguing phenomenon is lacking. We used deterministic and stochastic models to study the evolution of stress-induced hypermutation in infinite and finite-size populations of bacteria undergoing selection, mutation, and random genetic drift in constant environments and in changing ones. Our results suggest that if beneficial mutations occur, even rarely, then stress-induced hypermutation is advantageous for bacteria at both the individual and the population levels and that it is likely to evolve in populations of bacteria in a wide range of conditions because it is favored by selection. These results imply that mutations are not, as the current view holds, uniformly distributed in populations, but rather that mutations are more common in stressed individuals and populations. Because mutation is the raw material of evolution, these results have a profound impact on broad aspects of evolution and biology.

摘要

大量的实证研究表明,各种类型的压力通过多种机制诱导细菌发生超突变,但这一有趣现象的理论研究还很缺乏。我们使用确定性和随机性模型,研究了在恒定环境和变化环境中,经过选择、突变和随机遗传漂变的无限和有限大小的细菌群体中,压力诱导的超突变的进化。我们的结果表明,如果有益突变偶尔发生,那么压力诱导的超突变对个体和群体水平的细菌都是有利的,而且它很可能在广泛条件下的细菌群体中进化,因为它受到选择的青睐。这些结果意味着突变并不是像当前观点认为的那样,在种群中均匀分布,而是在压力下的个体和种群中更为常见。由于突变是进化的原始材料,这些结果对进化和生物学的广泛方面产生了深远的影响。

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