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Comparative Genomics Reveals Accelerated Evolution in Conserved Pathways during the Diversification of Anole Lizards

机译:比较基因组学揭示了Anole蜥蜴多样化过程中保守途径的加速进化。

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摘要

Squamates include all lizards and snakes, and display some of the most diverse and extreme morphological adaptations among vertebrates. However, compared with birds and mammals, relatively few resources exist for comparative genomic analyses of squamates, hampering efforts to understand the molecular bases of phenotypic diversification in such a speciose clade. In particular, the ∼400 species of anole lizard represent an extensive squamate radiation. Here, we sequence and assemble the draft genomes of three anole species—Anolis frenatus, Anolis auratus, and Anolis apletophallus—for comparison with the available reference genome of Anolis carolinensis. Comparative analyses reveal a rapid background rate of molecular evolution consistent with a model of punctuated equilibrium, and strong purifying selection on functional genomic elements in anoles. We find evidence for accelerated evolution in genes involved in behavior, sensory perception, and reproduction, as well as in genes regulating limb bud development and hindlimb specification. Morphometric analyses of anole fore and hindlimbs corroborated these findings. We detect signatures of positive selection across several genes related to the development and regulation of the forebrain, hormones, and the iguanian lizard dewlap, suggesting molecular changes underlying behavioral adaptations known to reinforce species boundaries were a key component in the diversification of anole lizards.
机译:鳞状鳞屑包括所有的蜥蜴和蛇,并且在脊椎动物中表现出一些最多样化和极端的形态适应。但是,与鸟类和哺乳动物相比,用于鳞状上皮的比较基因组分析的资源相对较少,这妨碍了人们了解此类特殊进化枝表型多样化的分子基础。尤其是,约400种Anole蜥蜴代表着广泛的鳞状辐射。在这里,我们对三种Anoles物种(Anolis frenatus,Anolis auratus和Anolis apletophallus)的基因组序列进行测序和组装,以与可用的Anolins carolinensis参考基因组进行比较。对比分析显示,分子进化的背景本底速率与标点平衡模型相符,并且对肛门中功能基因组元件的纯化作用强。我们发现在行为,感官知觉和生殖以及调节肢芽发育和后肢规格的基因中加速进化的证据。肛门前肢和后肢的形态分析证实了这些发现。我们检测到与前脑,激素和鬣蜥蜥蜴的去皮的发育和调控有关的几个基因的阳性选择的特征,表明潜在的行为适应基础的分子变化可加强物种边界,这是肛门蜥蜴多样化的关键组成部分。

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