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首页> 外文期刊>Molecular biology and evolution >Positive selection during the diversification of class I vomeronasal receptor-like (V1RL) genes, putative pheromone receptor genes, in human and primate evolution
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Positive selection during the diversification of class I vomeronasal receptor-like (V1RL) genes, putative pheromone receptor genes, in human and primate evolution

机译:在人类和灵长类动物进化中,I类犁鼻受体样(V1RL)基因,假定的信息素受体基因多样化期间的阳性选择

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Vomeronasal receptors are the major receptors for pheromones in vertebrates, and five putative type I vomeronasal receptors (V1RL) have been identified in humans. The evolution of the V1RL1 gene in non-human primates, and patterns of selection on V1RL genes, were investigated. The presumed ortholog of V1RL1 was sequenced from 13 species of nonhuman primate, and in eight of these species V1RL1 was a pseudogene. Phylogenetic reconstructions reveal that V1RL1 pseudogene formation occurred independently in multiple primate lineages. Using maximum likelihood estimates of d(N)/d(S) ratios in PAML, we show that V1RL genes have evolved under neutral evolution in lineages in which they became a pseudogene. In contrast, among lineages in which V1RL genes contain an open reading frame, the majority of sites are under purifying selection and a minority are under significant positive selection. These results provide an interesting case where all three categories of selection can be teased apart in the same data set using maximum likelihood methods. The finding of positive selection on V1RL genes during primate evolution provides indirect support for the hypothesis that V1RL genes have a function in species-specific pheromone detection in primates.
机译:犁鼻器受体是脊椎动物信息素的主要受体,并且在人类中鉴定出五种推定的I型犁鼻器受体(V1RL)。研究了V1RL1基因在非人类灵长类动物中的进化以及在V1RL基因上的选择模式。推测的V1RL1直系同源序列是从13种非人类灵长类动物中测序的,其中8种V1RL1是假基因。系统发生重建表明,V1RL1假基因的形成独立发生在多个灵长类谱系中。使用PAML中d(N)/ d(S)比率的最大似然估计,我们显示V1RL基因在中性进化过程中已进化为假基因,并在其谱系中进化。相反,在其中V1RL基因包含开放阅读框的谱系中,大多数位点处于纯化选择之下,而少数位点处于显着的阳性选择之下。这些结果提供了一个有趣的情况,其中可以使用最大似然方法在同一数据集中将所有三个类别的选择分开。在灵长类动物进化过程中对V1RL基因的阳性选择的发现为V1RL基因在灵长类动物的物种特异性信息素检测中起作用的假设提供了间接支持。

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