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Dietary Change and Adaptive Evolution of enamelin in Humans and Among Primates

机译:人和灵长类动物中namenlin的饮食变化和适应性进化

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摘要

Scans of the human genome have identified many loci as potential targets of recent selection, but exploration of these candidates is required to verify the accuracy of genomewide scans and clarify the importance of adaptive evolution in recent human history. We present analyses of one such candidate, enamelin, whose protein product operates in tooth enamel formation in 100 individuals from 10 populations. Evidence of a recent selective sweep at this locus confirms the signal of selection found by genomewide scans. Patterns of polymorphism in enamelin correspond with population-level differences in tooth enamel thickness, and selection on enamel thickness may drive adaptive enamelin evolution in human populations. We characterize a high-frequency nonsynonymous derived allele in non-African populations. The polymorphism occurs in codon 648, resulting in a nonconservative change from threonine to isoleucine, suggesting that the allele may affect enamelin function. Sequences of exons from 12 primate species show evidence of positive selection on enamelin. In primates, it has been documented that enamel thickness correlates with diet. Our work shows that bursts of adaptive enamelin evolution occur on primate lineages with inferred dietary changes. We hypothesize that among primate species the evolved differences in tooth enamel thickness are correlated with the adaptive evolution of enamelin.
机译:对人类基因组的扫描已确定许多位点为近期选择的潜在靶标,但是需要对这些候选基因进行探索,以验证全基因组扫描的准确性并阐明近期人类历史中适应性进化的重要性。我们提供了一种这样的候选物enamelin的分析,该蛋白的蛋白质产物在10个人群的100个个体中形成牙釉质。最近在此基因座进行选择性扫描的证据证实了全基因组扫描发现的选择信号。珐琅质中的多态性模式与牙齿珐琅质厚度的人群水平差异相对应,珐琅质厚度的选择可能会驱动人类珐琅质的适应性进化。我们表征非非洲人口中的高频非同义词衍生等位基因。该多态性发生在密码子648中,导致从苏氨酸到异亮氨酸的非保守变化,表明等位基因可能影响着釉蛋白功能。来自12个灵长类物种的外显子序列显示了对enamelin进行阳性选择的证据。在灵长类动物中,有文献记载搪瓷厚度与饮食有关。我们的工作表明,在推测饮食变化的灵长类动物谱系中发生适应性Enamelin进化的爆发。我们假设在灵长类动物物种中,牙釉质厚度的进化差异与enamelin的适应性进化相关。

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