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枯草芽孢杆菌适应性突变有害多效性效应的改善

AMELIORATION OF THE DELETERIOUS PLEIOTROPIC EFFECTS OF AN ADAPTIVE MUTATION IN BACILLUS SUBTILIS.

作者信息

Cohan Frederick M, King Elaine C, Zawadzki Piotr

机构信息

Department of Biology, Wesleyan University, Middletown, Connecticut, 06459-0170.

出版信息

Evolution. 1994 Feb;48(1):81-95. doi: 10.1111/j.1558-5646.1994.tb01296.x.

Abstract

The deleterious pleiotropic effects of an adaptive mutation may be ameliorated by one of two modes of evolution: (1) by replacement, in which an adaptive mutation with harmful pleiotropic effects is replaced by one that confers an equal benefit but at less cost; or (2) by compensatory evolution, in which natural selection favors modifiers at other loci that compensate for the deleterious effects of the mutant allele. In this study, we have measured the potential of these two modes of evolution to ameliorate the deleterious pleiotropic effects of resistance to the antibiotic rifampicin in the soil bacterium Bacillus subtilis. One approach was to measure the fitness cost of a series of spontaneous rifampicin-resistance mutations from each of several strains. The potential for amelioration by the replacement mode was estimated by the variation in fitness cost among the mutants of a single strain. Another approach was to introduce a series of different rifampicin-resistance alleles into a diversity of strains, and to measure the fitness cost of rifampicin resistance for each allele-by-strain combination. The potential for amelioration by the replacement mode was estimated by the variation in fitness costs among rifampicin-resistance alleles; the potential for compensatory evolution was estimated by variation in the fitness cost of rifampicin resistance among strains. This study has shown that the cost of rifampicin resistance may be ameliorated by both the compensatory and replacement modes.

摘要

适应性突变的有害多效性影响可能会通过两种进化模式之一得到改善

(1)通过替代,即具有有害多效性影响的适应性突变被另一个能带来同等益处但成本更低的突变所取代;或者(2)通过补偿进化,即自然选择有利于其他位点上的修饰基因,这些修饰基因可补偿突变等位基因的有害影响。在本研究中,我们测定了这两种进化模式改善土壤细菌枯草芽孢杆菌中对利福平抗性的有害多效性影响的潜力。一种方法是测量来自几个菌株的一系列自发利福平抗性突变的适合度代价。通过单个菌株突变体之间适合度代价的变化来估计替代模式的改善潜力。另一种方法是将一系列不同的利福平抗性等位基因导入多种菌株中,并测量每个等位基因与菌株组合的利福平抗性适合度代价。通过利福平抗性等位基因之间适合度代价的变化来估计替代模式的改善潜力;通过菌株之间利福平抗性适合度代价的变化来估计补偿进化的潜力。这项研究表明,利福平抗性的代价可通过补偿模式和替代模式得到改善。

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