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转座元件在基因调控和脊椎动物基因组进化中的作用。

Transposable elements in gene regulation and in the evolution of vertebrate genomes.

机构信息

Genome Institute of Singapore, Singapore 138672, Singapore.

出版信息

Curr Opin Genet Dev. 2009 Dec;19(6):607-12. doi: 10.1016/j.gde.2009.10.013. Epub 2009 Nov 13.

Abstract

Repetitive DNA and in particular transposable elements have been intimately linked to eukaryotic genomes for millions of years. Once overlooked for being only a collection of selfish debris and a nuisance for sequence assembly, genomic repeats are now being recognized as a key driving force in genome evolution. Indeed, by changing the DNA landscape of genomes, transposable elements have been a rich source of innovation in genes, regulatory elements and genome structures. In this review, I will focus on recent advances that demonstrate that genomic repeats have had a global impact on vertebrate gene regulatory networks. I will also summarize results that show how transposable elements have been a major catalyst of structural rearrangements throughout evolution.

摘要

重复 DNA,尤其是转座元件,与真核生物基因组已经紧密联系了数百万年。过去,由于它们只是一堆自私的碎片,而且会给序列组装带来麻烦,因此一直被忽视。然而,现在人们已经认识到基因组重复是基因组进化的关键驱动力。事实上,通过改变基因组的 DNA 景观,转座元件已经成为基因、调控元件和基因组结构创新的丰富来源。在这篇综述中,我将重点介绍最近的研究进展,这些进展表明基因组重复对脊椎动物基因调控网络产生了全球性影响。我还将总结表明转座元件在整个进化过程中是结构重排的主要催化剂的结果。

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