脊椎动物的遗传创新:吉普赛整合酶基因和其他来自转座因子的基因。

Domitille Chalopin, Delphine Galiana, Jean-Nicolas Volff
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引用次数: 15

摘要

由于它们能够驱动DNA重排并作为新的编码和调控序列的来源,转座因子(te)被认为是基因组中强大的进化因子。本文综述了分子驯化与TE序列衍生的新基因形成的机制。在哺乳动物和其他脊椎动物中已经发现了许多来自逆转录因子和DNA转座子的基因,其中一些基因对宿主生物的发育和生存起着重要的作用。我们将特别关注吉普赛整合酶(GIN)基因的进化和表达,这些基因是由古老的分子驯化事件形成的,并且在一些脊椎动物亚谱系中进化不同。我们在这里描述的可能只是进化的冰山一角,未来的基因组分析肯定会发现新的te衍生基因和生物功能,推动脊椎动物和其他生物的遗传创新。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Genetic innovation in vertebrates: gypsy integrase genes and other genes derived from transposable elements.

Genetic innovation in vertebrates: gypsy integrase genes and other genes derived from transposable elements.

Genetic innovation in vertebrates: gypsy integrase genes and other genes derived from transposable elements.

Genetic innovation in vertebrates: gypsy integrase genes and other genes derived from transposable elements.

Due to their ability to drive DNA rearrangements and to serve as a source of new coding and regulatory sequences, transposable elements (TEs) are considered as powerful evolutionary agents within genomes. In this paper, we review the mechanism of molecular domestication, which corresponds to the formation of new genes derived from TE sequences. Many genes derived from retroelements and DNA transposons have been identified in mammals and other vertebrates, some of them fulfilling essential functions for the development and survival of their host organisms. We will particularly focus on the evolution and expression of Gypsy integrase (GIN) genes, which have been formed from ancient event(s) of molecular domestication and have evolved differentially in some vertebrate sublineages. What we describe here is probably only the tip of the evolutionary iceberg, and future genome analyses will certainly uncover new TE-derived genes and biological functions driving genetic innovation in vertebrates and other organisms.

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