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The genetic code constrains yet facilitates Darwinian evolution

机译:遗传密码限制了达尔文进化

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An important goal of evolutionary biology is to understand the constraints that shape the dynamics and outcomes of evolution. Here, we address the extent to which the structure of the standard genetic code constrains evolution by analyzing adaptive mutations of the antibiotic resistance gene TEM-1 beta-lactamase and the fitness distribution of codon substitutions in two influenza hemagglutinin inhibitor genes. We find that the architecture of the genetic code significantly constrains the adaptive exploration of sequence space. However, the constraints endow the code with two advantages: the ability to restrict access to amino acid mutations with a strong negative effect and, most remarkably, the ability to enrich for adaptive mutations. Our findings support the hypothesis that the standard genetic code was shaped by selective pressure to minimize the deleterious effects of mutation yet facilitate the evolution of proteins through imposing an adaptive mutation bias.
机译:进化生物学的一个重要目标是了解影响进化动力学和结果的限制条件。在这里,我们通过分析抗生素抗性基因TEM-1β-内酰胺酶的适应性突变和两个流感血凝素抑制剂基因中密码子替代的适应性分布,来解决标准遗传密码的结构限制进化的程度。我们发现遗传密码的体系结构极大地限制了序列空间的自适应探索。但是,这些限制条件使代码具有两个优点:限制对氨基酸突变的访问具有很强的负面影响,最显着的是,能够丰富适应性突变。我们的研究结果支持以下假设:标准遗传密码受选择性压力影响,以最大程度地降低突变的有害影响,但通过施加适应性突变偏向来促进蛋白质的进化。

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