首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >Diminishing Returns From Beneficial Mutations and Pervasive Epistasis Shape the Fitness Landscape for Rifampicin Resistance in Pseudomonas aeruginosa
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Diminishing Returns From Beneficial Mutations and Pervasive Epistasis Shape the Fitness Landscape for Rifampicin Resistance in Pseudomonas aeruginosa

机译:有益突变和普遍上位性的收益递减影响铜绿假单胞菌对利福平耐药的适应性景观

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Because adaptation depends upon the fixation of novel beneficial mutations, the fitness effects of beneficial mutations that are substituted by selection are key to our understanding of the process of adaptation. In this study, we experimentally investigated the fitness effects of beneficial mutations that are substituted when populations of the pathogenic bacterium Pseudomonas aeruginosa adapt to the antibiotic rifampicin. Specifically, we isolated the first beneficial mutation to be fixed by selection when 96 populations of three different genotypes of P. aeruginosa that vary considerably in fitness in the presence of rifampicin were challenged with adapting to a high dose of this antibiotic. The simple genetics of rifampicin resistance allowed us to determine the genetic basis of adaptation in the majority of our populations. We show that the average fitness effects of fixed beneficial mutations show a simple and clear pattern of diminishing returns, such that selection tends to fix mutations with progressively smaller effects as populations approach a peak on the adaptive landscape. The fitness effects of individual mutations, on the other hand, are highly idiosyncratic across genetic backgrounds, revealing pervasive epistasis. In spite of this complexity of genetic interactions in this system, there is an overall tendency toward diminishing-returns epistasis. We argue that a simple overall pattern of diminishing-returns adaptation emerges, despite pervasive epistasis between beneficial mutations, because many beneficial mutations are available, and while the fitness landscape is rugged at the fine scale, it is smooth and regular when we consider the average over possible routes to adaptation. In the context of antibiotic resistance, these results show that acquiring mutations that confer low levels of antibiotic resistance does not impose any constraint on the ability to evolve high levels of resistance.
机译:因为适应性取决于新的有益突变的固定,所以被选择替代的有益突变的适应性效应是我们对适应过程的理解的关键。在这项研究中,我们实验研究了当致病细菌铜绿假单胞菌种群适应抗生素利福平时被替代的有益突变的适应性效果。具体而言,当在适应性大剂量使用这种抗生素的情况下,对96种三种不同基因型的铜绿假单胞菌在适应性方面存在显着差异时,我们分离出了通过选择固定的第一个有益突变。利福平耐药性的简单遗传学使我们能够确定大多数人群适应的遗传基础。我们显示,固定的有益突变的平均适应度效应显示出收益递减的简单明了模式,因此选择趋向于随着种群在适应性景观上接近峰值而以较小的效应逐渐修复突变。另一方面,单个突变的适应性效应在整个遗传背景下都是高度特异的,揭示了普遍的上位性。尽管该系统中遗传相互作用的复杂性,但总体上趋向于递减-归位上位。我们认为,尽管有益突变之间普遍存在上位现象,但仍出现了一种简单的总体递减回归模式,因为可以利用许多有益突变,并且尽管健身状况在很好的范围内崎,不平,但当我们考虑平均值时,它是平稳且规则的在可能的适应途径上。在抗生素抗性的背景下,这些结果表明,获得赋予低水平抗生素抗性的突变不会对发展高水平抗性的能力施加任何限制。

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