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Molecular population genetics of the OBP83 genomic region in Drosophila subobscura and D. guanche: contrasting the effects of natural selection and gene arrangement expansion in the patterns of nucleotide variation

机译:果蝇和D.guanche的OBP83基因组区域的分子种群遗传学:对比自然选择和基因排列扩展对核苷酸变异模式的影响

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摘要

Chromosomal inversion polymorphism play a major role in the evolutionary dynamics of populations and species because of their effects on the patterns of genetic variability in the genomic regions within inversions. Though there is compelling evidence for the adaptive character of chromosomal polymorphisms, the mechanisms responsible for their maintenance in natural populations is not fully understood. For this type of analysis, Drosophila subobscura is a good model species as it has a rich and extensively studied chromosomal inversion polymorphism system. Here, we examine the patterns of DNA variation in two natural populations segregating for chromosomal arrangements that differentially affect the surveyed genomic region; in particular, we analyse both nucleotide substitutions and insertion/deletion variations in the genomic region encompassing the odorant-binding protein genes Obp83a and Obp83b (Obp83 region). We show that the two main gene arrangements are genetically differentiated, but are consistent with a monophyletic origin of inversions. Nevertheless, these arrangements interchange some genetic information, likely by gene conversion. We also find that the frequency spectrum-based tests indicate that the pattern of nucleotide variation is not at equilibrium; this feature probably reflects the rapid increase in the frequency of the new gene arrangement promoted by positive selection (that is an adaptive change). Furthermore, a comparative analysis of polymorphism and divergence patterns reveals a relaxation of the functional constraints at the Obp83b gene, which might be associated with particular ecological or demographic features of the Canary island endemic species D. guanche
机译:染色体倒位多态性在种群和物种的进化动力学中起主要作用,因为它们对倒位内基因组区域的遗传变异性模式有影响。尽管有令人信服的证据表明染色体多态性具有适应性,但对其在天然种群中维持的机制尚未完全了解。对于这种类型的分析,果蝇亚种(Drosophila subobscura)是一个很好的模型物种,因为它具有丰富且经过广泛研究的染色体反转多态性系统。在这里,我们检查了两个自然种群中DNA变异的模式,这些变异针对染色体排列而分离,这些染色体排列差异性地影响了所调查的基因组区域。特别是,我们分析了包含气味结合蛋白基因Obp83a和Obp83b(Obp83区域)的基因组区域中的核苷酸取代和插入/缺失变异。我们表明,这两个主要的基因安排是遗传分化的,但与反演的单系起源是一致的。然而,这些安排可能通过基因转换来交换一些遗传信息。我们还发现,基于频谱的测试表明核苷酸变异的模式不处于平衡状态。这一特征可能反映了通过积极选择(即适应性改变)促进的新基因排列频率的快速增加。此外,对多态性和发散模式的比较分析显示,Obp83b基因的功能限制有所放松,这可能与加那利群岛特有物种D. guanche的特定生态学或人口统计学特征有关。

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