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Positive selection and functional divergence after melanopsin gene duplication.

机译:黑色素蛋白基因复制后的阳性选择和功能差异。

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摘要

A newly discovered melanopsin gene (Opn4) encodes a member of the opsins, melanopsin. Two melanopsin genes, mammalian-like Opn4m and Xenopus-like Opn4x, have been described in nonmammalian vertebrates, but the underlying evolutionary mechanisms behind the duplication of melanopsin genes remain unclear. We conducted a comprehensive evolutionary analysis within a phylogenetic framework. In our phylogenetic tree, the duplication of Opn4m and Opn4x probably occurred prior to the emergence of vertebrates, and subsequently Opn4x disappeared in the lineages leading to mammalian species. Evolutionary analyses show strong purifying selection during melanopsin evolution. We also provide evidence that Opn4x underwent positive selection after the early gene duplication events. It has been indicated that functional divergence and altered functional constraints occurred between Opn4m and Opn4x duplicates with the identification of positively selected amino acids. Our findings highlight the evolutionary malleability in vertebrate melanopsin genes and provide a genetic basis for comparative studies of functional properties of these two melanopsins.
机译:新发现的黑色素蛋白基因(Opn4)编码视蛋白的成员,黑色素蛋白。在非哺乳动物脊椎动物中已经描述了两个黑色素蛋白基因,如哺乳动物的Opn4m和非洲爪蟾类的Opn4x,但黑色素蛋白基因重复背后的潜在进化机制仍不清楚。我们在系统发育框架内进行了全面的进化分析。在我们的系统发育树中,Opn4m和Opn4x的重复可能发生在脊椎动物出现之前,随后,Opn4x在导致哺乳动物物种的世系中消失了。进化分析显示在黑视蛋白进化过程中强大的纯化选择。我们还提供证据表明,在早期基因复制事件之后,Opn4x经历了阳性选择。已经表明,通过鉴定阳性选择的氨基酸,在Opn4m和Opn4x重复序列之间发生功能差异和改变的功能限制。我们的发现突出了脊椎动物黑视蛋白基因的进化可塑性,并为这两种黑视蛋白功能特性的比较研究提供了遗传基础。

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