首页> 外文期刊>Proceedings of the Royal Society. Biological sciences >Epistasis between antibiotic resistance mutations and genetic background shape the fitness effect of resistance across species of Pseudomonas
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Epistasis between antibiotic resistance mutations and genetic background shape the fitness effect of resistance across species of Pseudomonas

机译:抗生素耐药性突变与遗传背景之间的上位性决定了假单胞菌种间耐药性的适应性效应

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Antibiotic resistance often evolves by mutations at conserved sites in essential genes, resulting in parallel molecular evolution between divergent bacterial strains and species. Whether these resistance mutations are having parallel effects on fitness across bacterial taxa, however, is unclear. This is an important point to address, because the fitness effects of resistance mutations play a key role in the spread and maintenance of resistance in pathogen populations. We address this idea by measuring the fitness effect of a collection of rifampicin resistance mutations in the beta subunit of RNA polymerase (rpoB) across eight strains that span the diversity of the genus Pseudomonas. We find that almost 50% of rpoB mutations have background-dependent fitness costs, demonstrating that epistatic interactions between rpoB and the rest of the genome are common. Moreover, epistasis is typically strong, and it is the dominant genetic determinant of the cost of resistance mutations. To investigate the functional basis of epistasis, and because rpoB plays a central role in transcription, we measured the effects of common rpoB mutations on transcriptional efficiency across three strains of Pseudomonas. Transcriptional efficiency correlates strongly to fitness across strains, and epistasis arises because individual rpoB mutations have differential effects on transcriptional efficiency in different genetic backgrounds.
机译:抗生素抗性通常是通过必需基因保守位点的突变而演变而来的,导致不同细菌菌株和物种之间的平行分子进化。但是,尚不清楚这些抗性突变是否对整个细菌类群的适应性具有平行影响。这是需要解决的重要问题,因为耐药性突变的适应性效应在病原体人群中耐药性的传播和维持中起着关键作用。我们通过测量跨越八种假单胞菌属多样性的8种菌株的RNA聚合酶(rpoB)β亚基中的利福平抗性突变集合的适应性效应,来解决这个想法。我们发现,几乎50%的rpoB突变具有背景依赖性适应性成本,表明rpoB与基因组其余部分之间的上位性相互作用很普遍。此外,上位性通常很强,它是耐药突变成本的主要遗传决定因素。为了研究上位性的功能基础,并且由于rpoB在转录中起着核心作用,我们测量了常见rpoB突变对三种假单胞菌菌株转录效率的影响。转录效率与各个菌株的适应性密切相关,并且由于各个rpoB突变对不同遗传背景下的转录效率具有不同的影响,因此会产生上位转移。

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