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首页> 外文期刊>Molecular phylogenetics and evolution >Comparison of Y Chromosome and mtDNA Phylogenies Leads to Unique Inferences of Macaque Evolutionary History
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Comparison of Y Chromosome and mtDNA Phylogenies Leads to Unique Inferences of Macaque Evolutionary History

机译:Y染色体和mtDNA系统发育的比较导致猕猴进化史的独特推断。

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We report here the results of one of the first analyses to use male-specific nuclear markers in elucidating primate phylogenetic relationships at the intrageneric level. Two closely linked Y chromosome markers, TSPY and SRY, were sequenced for a total of 3100 bases. Forty-four macaques, representing 18 of the 19 recognized species, were sequenced for the full 3.1 kb, as was 1 individual from each of the following outgroup genera: Papio, Theropithecus, Mandrillus,Allenopithecus, Cercopithecus, Trachypithecus, Presbytis, and Homo. In contrast to recent mtDNA phylogenies, Y chromosome loci support four monophyletic species groups, including a sinica group containing M. arctoides-a classification largely congruent with those of Fooden and Delson. Comparison of mtDNA and Y chromosome phylogenies highlight (1) a potential hybrid origin of Macaca arctoides from M. fascicularis and proto-M. assamensis/thibetana and (2) cases of mitochondrial paraphyly in macaque species whose Y chromosome lineages are monophyletic-a probable evolutionary consequence of philopatric females vs dispersing males. These results raise the question of whether a phylogenetic tree should be a topology of species origins or a depiction of more current species relationships, including subsequent episodes of introgression.
机译:我们在这里报告的第一个分析的结果之一,该分析使用雄性特异的核标记物在遗传内水平阐明灵长类动物的系统发生关系。对两个紧密相连的Y染色体标记TSPY和SRY进行了测序,共3100个碱基。代表19个公认物种中的18个的四十只猕猴的全长3.1 kb序列,以及以下各外属属中的每一个的1个个体:狒狒,Theropithecus,Mandrillus,Allenopithecus,Cercopithecus,Trachypithecus,Presbytis和Homo。与最近的mtDNA系统发育相反,Y染色体位点支持四个单系统物种组,包括一个包含弓形支原体(M. arctoides)的中华组-与Fooden和Delson的分类大体上一致。 mtDNA和Y染色体系统发育的比较突出了(1)来自猕猴和原M的猕猴的潜在杂种起源。 assamensis / thibetana和(2)猕猴物种的线粒体副生物,其Y染色体谱系是单系的,这可能是雌性雌性与雄性成年雌性进化的结果。这些结果提出了一个问题,即系统发育树是应该是物种起源的拓扑还是应该描述更多当前物种的关系,包括随后的渗入事件。

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