睾丸特异性新基因的重复进化:果蝇端粒封顶基因的案例。

Raphaëlle Dubruille, Gabriel A B Marais, Benjamin Loppin
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引用次数: 8

摘要

比较基因组分析已经允许识别涉及基因诞生的各种机制。然而,理解驱动新基因起源的进化力量仍然是一个重大挑战。特别是,在对新基因的研究中出现了一个有趣但尚未完全理解的趋势:它们中的许多显示出睾丸特异性表达模式,这一点仍然知之甚少。在这里,我们回顾了这样一个新的基因的情况下,它涉及一个端粒封顶基因家族在果蝇。hiphop及其睾丸特异性平行体K81分别在体细胞和雄性配子的染色体末端保护中起关键作用。两项独立的功能研究最近提出,这些基因是在生殖亚功能化机制下进化的。2011年发布的新的果蝇基因组序列使我们能够深化对hiphop/K81家族的系统发育分析。这项工作揭示了一个意想不到的动态的基因出生和死亡的群体,通过逆转录机制的重复事件反复发生。最后,我们讨论了可能解释该基因家族多样化的不同进化情景的合理性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Repeated evolution of testis-specific new genes: the case of telomere-capping genes in Drosophila.

Repeated evolution of testis-specific new genes: the case of telomere-capping genes in Drosophila.

Repeated evolution of testis-specific new genes: the case of telomere-capping genes in Drosophila.

Comparative genome analysis has allowed the identification of various mechanisms involved in gene birth. However, understanding the evolutionary forces driving new gene origination still represents a major challenge. In particular, an intriguing and not yet fully understood trend has emerged from the study of new genes: many of them show a testis-specific expression pattern, which has remained poorly understood. Here we review the case of such a new gene, which involves a telomere-capping gene family in Drosophila. hiphop and its testis-specific paralog K81 are critical for the protection of chromosome ends in somatic cells and male gametes, respectively. Two independent functional studies recently proposed that these genes evolved under a reproductive-subfunctionalization regime. The 2011 release of new Drosophila genome sequences from the melanogaster group of species allowed us to deepen our phylogenetic analysis of the hiphop/K81 family. This work reveals an unsuspected dynamic of gene birth and death within the group, with recurrent duplication events through retroposition mechanisms. Finally, we discuss the plausibility of different evolutionary scenarios that could explain the diversification of this gene family.

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