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Tests of parallel molecular evolution in a long-term experiment with Escherichia coli

机译:大肠杆菌长期实验中平行分子进化的测试

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The repeatability of evolutionary change is difficult to quantify because only a single outcome can usually be observed for any precise set of circumstances. In this study, however, we have quantified the frequency of parallel and divergent genetic changes in 12 initially identical populations of Escherichia coli that evolved in identical environments for 20,000 cell generations. Unlike previous analyses in which candidate genes were identified based on parallel phenotypic changes, here we sequenced four loci (pykF, nadR, pbpA-rodA, and hokB/sokB) in which mutations of unknown effect had been discovered in one population, and then we compared the substitution pattern in these "blind" candidate genes with the pattern found in 36 randomly chosen genes. Two candidate genes, pykF and nadR, had substitutions in all 11 other populations, and the other 2 in several populations. There were very few cases, however, in which the exact same mutations were substituted, in contrast to the findings from conceptually related work performed with evolving virus populations. No random genes had any substitutions except in four populations that evolved defects in DNA repair. Tests of four different statistical aspects of the pattern of molecular evolution all indicate that adaptation by natural selection drove the parallel changes in these candidate genes.
机译:进化变化的可重复性很难量化,因为在任何精确的情况下通常只能观察到一个结果。然而,在这项研究中,我们已经量化了在相同环境中进化了20,000个细胞世代的12个最初相同的大肠杆菌群体中平行和发散的遗传变化的频率。与先前的分析基于平行表型变化识别候选基因的分析不同,在这里我们对四个基因座(pykF,nadR,pbpA-rodA和hokB / sokB)进行了测序,在一个种群中发现了未知作用的突变,然后我们将这些“盲”候选基因中的替换模式与在36个随机选择的基因中发现的模式进行了比较。 pykF和nadR这两个候选基因在所有其他11个种群中都有替代,而在另外几个种群中有2个替代基因。然而,很少有情况下,完全相同的突变被替换,这与不断发展的病毒种群在概念上相关的工作中的发现相反。除了在DNA修复中进化出缺陷的四个种群外,没有随机基因具有任何取代。对分子进化模式的四个不同统计方面的测试均表明,自然选择的适应性驱动了这些候选基因的平行变化。

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