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首页> 外文期刊>The Journal of Heredity >Whole Mitochondrial Genomic and Y-Chromosomal Phylogenies of Burmese Long-Tailed Macaque (Macaca fascicularis aurea) Suggest Ancient Hybridization between fascicularis and sinica Species Groups
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Whole Mitochondrial Genomic and Y-Chromosomal Phylogenies of Burmese Long-Tailed Macaque (Macaca fascicularis aurea) Suggest Ancient Hybridization between fascicularis and sinica Species Groups

机译:缅甸长尾猕猴(Macaca Fascularis Aurea)的全部线粒体基因组和Y-染色体系统发育,表明Fascicularis和Sinica物种群之间的古代杂交

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Macaca fascicularis aurea (Burmese long-tailed macaque) is 1 of the 10 subspecies of Macaca fascicularis. Despite having few morphological differences from other subspecies, a recent phylogeographic study showed that M. f. aurea is clearly distinct genetically from Macaca fascicularis fascicularis (common long-tailed macaque) and suggests that M. f. aurea experienced a disparate evolutionary pathway versus other subspecies. To construct a detailed evolutionary history of M. f. aurea and its relationships with other macaque species, we performed phylogenetic analyses and divergence time estimation of whole mitochondrial genomes (2 M. f. aurea, 8 M. f. fascicularis, and 16 animals of 12 macaque species) and 2871 bp of the Y chromosome (1 M. f. aurea, 2 M. f. fascicularis, and 5 animals of 5 macaque species) and haplotype network analysis of 758 bp of the Y chromosome (1 M. f. aurea, 2 M. f. fascicularis, and 21 animals of 19 macaque species). Whereas the Y chromosome of M. f. aurea clustered with those of the fascicularis species group in the phylogenetic and haplotype network analyses, its mtDNA clustered within the clade of the sinica species group. Based on this phylogenetic incongruence and the estimated divergence times, we propose that proto-M. f. aurea underwent hybridization with a population of the sinica species group between 2.5 and 0.95 MYA after divergence from the common ancestor of M. fascicularis. Hybridization and introgression might have been central in the evolution of M. f. aurea, similar to what occurred in the evolution of other macaque species and subspecies.
机译:金斑猕猴(缅甸长尾猕猴)是金斑猕猴的10个亚种之一。尽管与其他亚种在形态上几乎没有差异,但最近的一项系统地理学研究表明,金黄色葡萄球菌在遗传学上明显不同于金刚鹦鹉(普通长尾猕猴),并表明金黄色葡萄球菌与其他亚种经历了完全不同的进化途径。为了构建金黄色葡萄球菌的详细进化史及其与其他猕猴物种的关系,我们对整个线粒体基因组(2个金黄色葡萄球菌、8个金黄色葡萄球菌和12种猕猴的16只动物)和Y染色体的2871 bp(1个金黄色葡萄球菌、2个金黄色葡萄球菌和5种猕猴的5只动物)进行了系统发育分析和分化时间估计,并对Y染色体的758 bp进行了单倍型网络分析(1只金黄色短尾猴、2只束状短尾猴和19种猕猴的21只动物)。然而,在系统发育和单倍型网络分析中,金黄色葡萄球菌的Y染色体与束状种群的Y染色体聚集在一起,其线粒体DNA聚集在中国种群的分支内。基于这种系统发育上的不一致性和估计的分化时间,我们提出,在与束状支原体的共同祖先分化后,原金黄色支原体在2.5至0.95 MYA之间与中国种群的种群进行了杂交。杂交和渐渗可能是金黄色葡萄球菌进化的核心,类似于其他猕猴物种和亚种的进化。

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