现生灵长类的分子系统发生
A molecular phylogeny of living primates.
机构信息
Laboratory of Genomic Diversity, National Cancer Institute-Frederick, Frederick, Maryland, USA.
出版信息
PLoS Genet. 2011 Mar;7(3):e1001342. doi: 10.1371/journal.pgen.1001342. Epub 2011 Mar 17.
Comparative genomic analyses of primates offer considerable potential to define and understand the processes that mold, shape, and transform the human genome. However, primate taxonomy is both complex and controversial, with marginal unifying consensus of the evolutionary hierarchy of extant primate species. Here we provide new genomic sequence (8 Mb) from 186 primates representing 61 (90%) of the described genera, and we include outgroup species from Dermoptera, Scandentia, and Lagomorpha. The resultant phylogeny is exceptionally robust and illuminates events in primate evolution from ancient to recent, clarifying numerous taxonomic controversies and providing new data on human evolution. Ongoing speciation, reticulate evolution, ancient relic lineages, unequal rates of evolution, and disparate distributions of insertions/deletions among the reconstructed primate lineages are uncovered. Our resolution of the primate phylogeny provides an essential evolutionary framework with far-reaching applications including: human selection and adaptation, global emergence of zoonotic diseases, mammalian comparative genomics, primate taxonomy, and conservation of endangered species.
灵长类动物的比较基因组分析为定义和理解塑造、塑造和改变人类基因组的过程提供了巨大的潜力。然而,灵长类动物的分类学既复杂又有争议,现存灵长类物种的进化层次只有边缘上的统一共识。在这里,我们提供了来自 186 种灵长类动物的新基因组序列(约 8 Mb),代表了 61 种(90%)描述的属,并且包括了皮翼目、树鼩目和兔形目外群物种。由此产生的系统发育树非常稳健,阐明了从远古到近代的灵长类动物进化事件,澄清了许多分类学上的争议,并提供了人类进化的新数据。正在进行的物种形成、网状进化、古老的遗迹谱系、进化速率的不均等以及插入/缺失在重建的灵长类谱系中的不同分布都被揭示出来。我们对灵长类动物系统发育的解析提供了一个至关重要的进化框架,具有广泛的应用,包括:人类的选择和适应、人畜共患疾病的全球出现、哺乳动物的比较基因组学、灵长类动物的分类学以及濒危物种的保护。
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