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首页> 外文期刊>Ecology and Evolution >Selective constraints in cold‐region wild boars may defuse the effects of small effective population size on molecular evolution of mitogenomes
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Selective constraints in cold‐region wild boars may defuse the effects of small effective population size on molecular evolution of mitogenomes

机译:寒冷地区野猪的选择性限制可能缓解有效种群数量少对有丝分裂基因组分子进化的影响

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Spatial range expansion during population colonization is characterized by demographic events that may have significant effects on the efficiency of natural selection. Population genetics suggests that genetic drift brought by small effective population size ( N e ) may undermine the efficiency of selection, leading to a faster accumulation of nonsynonymous mutations. However, it is still unknown whether this effect might be balanced or even reversed by strong selective constraints. Here, we used wild boars and local domestic pigs from tropical (Vietnam) and subarctic region (Siberia) as animal model to evaluate the effects of functional constraints and genetic drift on shaping molecular evolution. The likelihood‐ratio test revealed that Siberian clade evolved significantly different from Vietnamese clades. Different datasets consistently showed that Siberian wild boars had lower Ka/Ks ratios than Vietnamese samples. The potential role of positive selection for branches with higher Ka/Ks was evaluated using branch‐site model comparison. No signal of positive selection was found for the higher Ka/Ks in Vietnamese clades, suggesting the interclade difference was mainly due to the reduction in Ka/Ks for Siberian samples. This conclusion was further confirmed by the result from a larger sample size, among which wild boars from northern Asia (subarctic and nearby region) had lower Ka/Ks than those from southern Asia (temperate and tropical region). The lower Ka/Ks might be due to either stronger functional constraints, which prevent nonsynonymous mutations from accumulating in subarctic wild boars, or larger N e in Siberian wild boars, which can boost the efficacy of purifying selection to remove functional mutations. The latter possibility was further ruled out by the Bayesian skyline plot analysis, which revealed that historical N e of Siberian wild boars was smaller than that of Vietnamese wild boars. Altogether, these results suggest stronger functional constraints acting on mitogenomes of subarctic wild boars, which may provide new insights into their local adaptation of cold resistance.
机译:人口定居过程中空间范围的扩展以人口统计事件为特征,这些事件可能对自然选择的效率产生重大影响。群体遗传学表明,有效种群规模较小(N e)带来的遗传漂移可能会破坏选择的效率,从而导致非同义突变的积累更快。但是,仍然不清楚这种作用是否会被强大的选择性约束所平衡或抵消。在这里,我们使用来自热带(越南)和北极地区(西伯利亚)的野猪和本地家猪作为动物模型来评估功能限制和遗传漂移对塑造分子进化的影响。似然比检验表明,西伯利亚进化枝与越南进化枝有显着差异。不同的数据集一致表明,西伯利亚野猪的Ka / Ks比值低于越南样本。使用分支-站点模型比较评估了正选择对具有较高Ka / Ks的分支的潜在作用。越南进化枝中没有发现较高的Ka / Ks的阳性选择信号,这表明种间差异主要是由于西伯利亚样品的Ka / Ks降低。更大样本量的结果进一步证实了这一结论,其中来自北亚(南亚和附近地区)的野猪的钾/钾比南亚(温带和热带地区)的野猪低。较低的Ka / Ks可能是由于较强的功能限制(可防止非同义突变在亚北极野猪中积累)或西伯利亚野猪中的较大N e引起的,这可提高纯化选择以去除功能突变的功效。贝叶斯天际线图分析进一步排除了后者的可能性,该分析表明西伯利亚野猪的历史N e小于越南野猪的历史N e。总而言之,这些结果表明作用于北极亚野公猪的有丝分裂基因组的功能更强,这可能为它们对局部抗寒性的适应提供新的见解。

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