Evolution of Genetic Information without Error Replication

Guenther Witzany
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引用次数: 8

Abstract

Darwinian evolutionary theory has two key terms, variations and biological selection, which finally lead to survival of the fittest variant. With the rise of molecular genetics, variations were explained as results of error replications out of the genetic master templates. For more than half a century, it has been accepted that new genetic information is mostly derived from random error-based events. But the error replication narrative has problems explaining the sudden emergence of new species, new phenotypic traits, and genome innovations as a sudden single event. Meanwhile, it is recognized that errors cannot explain the evolution of genetic information, genetic novelty, and complexity. Now, empirical evidence establishes the crucial role of non-random genetic content editors, such as viruses, diversity generating retroelements, and other RNA networks, to produce new genetic information, complex regulatory control, inheritance vectors, genetic identity, immunity, new sequence space, evolution of complex organisms, and evolutionary transitions.
无错误复制的遗传信息进化
达尔文的进化理论有两个关键术语,变异和生物选择,最终导致适者生存的变异。随着分子遗传学的兴起,变异被解释为基因主模板错误复制的结果。半个多世纪以来,人们一直认为新的遗传信息大多来自随机的错误事件。但是,错误复制的叙述在解释新物种的突然出现、新的表型特征和基因组创新是一个突然的单一事件方面存在问题。同时,人们认识到错误不能解释遗传信息、遗传新颖性和遗传复杂性的进化。现在,经验证据表明,非随机遗传内容编辑器(如病毒、多样性生成逆转录因子和其他RNA网络)在产生新的遗传信息、复杂的调控控制、遗传载体、遗传同一性、免疫、新的序列空间、复杂生物体的进化和进化转变等方面发挥着至关重要的作用。
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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