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来自非编码序列的新基因:从头起源的蛋白质编码基因在真核生物进化创新中的作用

New genes from non-coding sequence: the role of de novo protein-coding genes in eukaryotic evolutionary innovation.

作者信息

McLysaght Aoife, Guerzoni Daniele

机构信息

Smurfit Institute of Genetics, University of Dublin, Trinity College Dublin, Dublin 2, Republic of Ireland

Smurfit Institute of Genetics, University of Dublin, Trinity College Dublin, Dublin 2, Republic of Ireland.

出版信息

Philos Trans R Soc Lond B Biol Sci. 2015 Sep 26;370(1678):20140332. doi: 10.1098/rstb.2014.0332.

Abstract

The origin of novel protein-coding genes de novo was once considered so improbable as to be impossible. In less than a decade, and especially in the last five years, this view has been overturned by extensive evidence from diverse eukaryotic lineages. There is now evidence that this mechanism has contributed a significant number of genes to genomes of organisms as diverse as Saccharomyces, Drosophila, Plasmodium, Arabidopisis and human. From simple beginnings, these genes have in some instances acquired complex structure, regulated expression and important functional roles. New genes are often thought of as dispensable late additions; however, some recent de novo genes in human can play a role in disease. Rather than an extremely rare occurrence, it is now evident that there is a relatively constant trickle of proto-genes released into the testing ground of natural selection. It is currently unknown whether de novo genes arise primarily through an 'RNA-first' or 'ORF-first' pathway. Either way, evolutionary tinkering with this pool of genetic potential may have been a significant player in the origins of lineage-specific traits and adaptations.

摘要

全新蛋白质编码基因的起源曾被认为极不可能发生,甚至是不可能的。在不到十年的时间里,尤其是在过去五年中,来自不同真核生物谱系的大量证据推翻了这一观点。现在有证据表明,这一机制为酿酒酵母、果蝇、疟原虫、拟南芥和人类等多种生物的基因组贡献了大量基因。从简单的起始,这些基因在某些情况下获得了复杂的结构、调控表达和重要的功能作用。新基因通常被认为是可有可无的后期添加物;然而,人类中一些最近的全新基因可在疾病中发挥作用。现在很明显,并非极其罕见,而是有相对稳定的原基因不断进入自然选择的试验场。目前尚不清楚全新基因主要是通过“RNA优先”还是“开放阅读框优先”途径产生。无论哪种方式,对这一遗传潜力库的进化修补可能在谱系特异性特征和适应性的起源中发挥了重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/be7a/4571571/b54967ee10ee/rstb20140332-g1.jpg

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