旧的在一起,新的在一起:复制过程的乱交产生了新基因创造的不同途径。

Vaishali Katju
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引用次数: 39

摘要

基因复制过程在创造具有新颖外显子-内含子结构的相似物方面表现出比Ohno甚至预期的更大的混杂性。在本文中,我探索了该领域的历史,从新达尔文的合成到大野耐一对基因复制进化的规范模型的表述,并在当前的基因组时代达到高潮。我描述了大野耐一模型的主要原则,并讨论了它在概括基因组学时代揭示的复制过程的全部复杂性方面的失败。我讨论了源自DNA和rna介导的复制事件的不同种类的类似物,以及它们假设从根本上改变功能的进化潜力,以及它们可以不受基因转换压力约束地发挥作用的程度。最后,我探讨了一个物种的有效种群大小(N(e))如何影响具有根本改变功能的基因出现的概率的理论种群遗传学考虑。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

In with the old, in with the new: the promiscuity of the duplication process engenders diverse pathways for novel gene creation.

In with the old, in with the new: the promiscuity of the duplication process engenders diverse pathways for novel gene creation.

In with the old, in with the new: the promiscuity of the duplication process engenders diverse pathways for novel gene creation.

In with the old, in with the new: the promiscuity of the duplication process engenders diverse pathways for novel gene creation.

The gene duplication process has exhibited far greater promiscuity in the creation of paralogs with novel exon-intron structures than anticipated even by Ohno. In this paper I explore the history of the field, from the neo-Darwinian synthesis through Ohno's formulation of the canonical model for the evolution of gene duplicates and culminating in the present genomic era. I delineate the major tenets of Ohno's model and discuss its failure to encapsulate the full complexity of the duplication process as revealed in the era of genomics. I discuss the diverse classes of paralogs originating from both DNA- and RNA-mediated duplication events and their evolutionary potential for assuming radically altered functions, as well as the degree to which they can function unconstrained from the pressure of gene conversion. Lastly, I explore theoretical population-genetic considerations of how the effective population size (N(e)) of a species may influence the probability of emergence of genes with radically altered functions.

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