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Impact of Individual Mutations on Increased Fitness in Adaptively Evolved Strains of Escherichia coli

机译:个体突变对大肠杆菌适应性进化菌株适应性提高的影响

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We measured the relative fitness among a set of experimentally evolved Escherichia coli strains differing by a small number of adaptive mutations by directly measuring allelic frequencies in head-to-head competitions using a mass spectrometry-based method. We compared the relative effects of mutations to the same or similar genes acquired in multiple strains when expressed in allele replacement strains. We found that the strongest determinant of fitness among the evolved strains was the impact of beneficial mutations to the RNA polymerase β and β′ subunit genes. We also identified several examples of epistatic interactions between rpoB/C and glpK mutations and identified two other mutations that are beneficial only in the presence of previously acquired mutations but that have little or no adaptive benefit to the wild-type strain. Allele frequency estimation is shown to be a highly sensitive method for measuring selection rates during competitions between strains differing by as little as a single-nucleotide polymorphism and may be of great use for investigating epistatic interactions.
机译:通过使用基于质谱的方法直接测量头对头竞争中的等位基因频率,我们测量了一组实验进化的大肠杆菌菌株之间的相对适应性,这些菌株之间存在少量的自适应突变。当在等位基因替代菌株中表达时,我们比较了突变与多个菌株中获得的相同或相似基因的相对影响。我们发现进化菌株中适应性的最强决定因素是有益突变对RNA聚合酶β和β'亚基基因的影响。我们还鉴定了 rpoB / C glpK 突变之间的上位相互作用的几个例子,并鉴定了另外两个仅在先前获得的突变存在下有益但几乎没有突变的突变对野生型菌株没有适应性益处。已证明等位基因频率估计是一种用于测量菌株之间竞争中变异率的高度灵敏方法,这些变异之间的差异仅为单核苷酸多态性,在研究上位相互作用方面可能很有用。

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