How evolution builds up complexity?: In vitro evolution approaches to witness complexification in artificial molecular replication systems

Taro Furubayashi, N. Ichihashi
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Abstract

How can evolution assemble lifeless molecules into a complex living organism? The emergent process of biological complexity in the origin of life is a big mystery in biology. In vitro evolution of artificial molecular replication systems offers unique experimental opportunities to probe possible pathways of a simple molecular system approaching a complex life-like system. This review focuses on experimental efforts to examine evolvability of molecules in vitro from the pioneering Spiegelman’s experiment to our latest research on an artificial RNA self-replication system. Genetic translation and compartmentalization are shown to enable sustainable replication and evolution. Latest studies are revealing that coevolution of self-replicating “host replicators” and freeloading “parasitic replicators” is crucial to extend evolvability of a molecular replication system for continuous evolution and emergence of diversity. Intense competition between hosts and parasites would have existed even before the origin of life and contributed to generating complex molecular ecosystems. This review article is an extended version of the Japanese article “An in vitro evolutionary journey of an artificial RNA replication system towards biological complexity” published in SEIBUTSU-BUTSURI Vol.61, p.240–244 (2021).”
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进化是如何构建复杂性的?:人工分子复制系统中复杂化的体外进化方法
进化是如何将无生命的分子组合成一个复杂的有生命的有机体的?生命起源中生物复杂性的涌现过程是生物学中的一大谜题。人工分子复制系统的体外进化为探索简单分子系统接近复杂类生命系统的可能途径提供了独特的实验机会。本文综述了从Spiegelman的开创性实验到我们对人工RNA自我复制系统的最新研究,在体外研究分子的可进化性的实验努力。遗传翻译和区隔化被证明能够实现可持续的复制和进化。最新研究表明,自我复制的“宿主复制子”和免费的“寄生复制子”的共同进化对于扩展分子复制系统的可进化性,实现持续进化和多样性的出现至关重要。宿主和寄生虫之间的激烈竞争甚至在生命起源之前就已经存在,并促成了复杂分子生态系统的产生。这篇评论文章是日本文章“人工RNA复制系统向生物复杂性的体外进化之旅”的扩展版本,发表在SEIBUTSU-BUTSURI Vol.61, p.240-244(2021)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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