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首页> 外文期刊>Ecology and Evolution >Impact of long‐term chromosomal shuffling on the multispecies coalescent analysis of two anthropoid primate lineages
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Impact of long‐term chromosomal shuffling on the multispecies coalescent analysis of two anthropoid primate lineages

机译:长期染色体改组对两个类人猿灵长类谱系的多物种合并分析的影响

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Multispecies coalescent (MSC) theory assumes that gene trees inferred from individual loci are independent trials of the MSC process. As genes might be physically close in syntenic associations spanning along chromosome regions, these assumptions might be flawed in evolutionary lineages with substantial karyotypic shuffling. Neotropical primates (NP) represent an ideal case for assessing the performance of MSC methods in such scenarios because chromosome diploid number varies significantly in this lineage. To this end, we investigated the effect of sequence length on the theoretical expectations of MSC model, as well as the results of coalescent‐based tree inference methods. This was carried out by comparing NP with hominids, a lineage in which chromosome macrostructure has been stable for at least 15 million years. We found that departure from the MSC model in Neotropical primates decreased with smaller sequence fragments, where sites sharing the same evolutionary history were more frequently found than in longer fragments. This scenario probably resulted from extensive karyotypic rearrangement occurring during the radiation of NP, contrary to the comparatively stable chromosome evolution in hominids.
机译:多物种合并(MSC)理论假设,从单个基因座推断出的基因树是MSC过程的独立试验。由于基因在跨染色体区域的同位关联中可能在物理上接近,因此这些假设可能在具有大量核型改组的进化谱系中存在缺陷。新嗜性灵长类动物(NP)代表了在这种情况下评估MSC方法性能的理想案例,因为该谱系中的染色体二倍体数量明显不同。为此,我们研究了序列长度对MSC模型理论预期的影响以及基于合并的树推断方法的结果。这是通过将NP与原始人进行比较而进行的,其中原始人的染色体宏观结构至少稳定了1500万年。我们发现在新热带灵长类动物中,MSC模式的偏离随着序列片段的减少而减少,在序列中,具有相同进化史的位点比更长的片段更为常见。这种情况可能是由于在NP辐射过程中发生了广泛的核型重排,这与人类中相对稳定的染色体进化相反。

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