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Periodic Pattern of Genetic and Fitness Diversity during Evolution of an Artificial Cell-Like System

机译:人工细胞样系统进化过程中遗传和适应度多样性的周期性模式

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摘要

Genetic and phenotypic diversity are the basis of evolution. Despite their importance, however, little is known about how they change over the course of evolution. In this study, we analyzed the dynamics of the adaptive evolution of a simple evolvable artificial cell-like system using single-molecule real-time sequencing technology that reads an entire single artificial genome. We found that the genomic RNA population increases in fitness intermittently, correlating with a periodic pattern of genetic and fitness diversity produced by repeated diversification and domination. In the diversification phase, a genomic RNA population spreads within a genetic space by accumulating mutations until mutants with higher fitness are generated, resulting in an increase in fitness diversity. In the domination phase, the mutants with higher fitness dominate, decreasing both the fitness and genetic diversity. This study reveals the dynamic nature of genetic and fitness diversity during adaptive evolution and demonstrates the utility of a simplified artificial cell-like system to study evolution at an unprecedented resolution.
机译:遗传和表型多样性是进化的基础。然而,尽管它们很重要,但人们对它们在进化过程中的变化知之甚少。在这项研究中,我们使用读取整个单个人工基因组的单分子实时测序技术分析了简单可进化的人工细胞样系统的适应性进化动力学。我们发现基因组RNA种群的适应度间歇性增加,与反复多样化和支配产生的遗传和适应度多样性的周期性模式相关。在多样化阶段,基因组RNA群体通过积累突变在遗传空间内传播,直到产生具有更高适应度的突变体,从而导致适应度多样性的增加。在支配阶段,适应度较高的突变体占主导地位,降低了适应度和遗传多样性。这项研究揭示了适应性进化过程中遗传和适应度多样性的动态性质,并证明了简化的人工细胞样系统以前所未有的分辨率研究进化的效用。

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