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现存猫科动物(猫科)基因组中古代杂交的系统基因组学证据。

Phylogenomic evidence for ancient hybridization in the genomes of living cats (Felidae).

作者信息

Li Gang, Davis Brian W, Eizirik Eduardo, Murphy William J

机构信息

Department of Veterinary Integrative Biosciences, Texas A&M University, College Station, Texas 77843, USA;

Department of Veterinary Integrative Biosciences, Texas A&M University, College Station, Texas 77843, USA; Interdisciplinary Program in Genetics, Texas A&M University, College Station, Texas 77843, USA;

出版信息

Genome Res. 2016 Jan;26(1):1-11. doi: 10.1101/gr.186668.114. Epub 2015 Oct 30.

Abstract

Inter-species hybridization has been recently recognized as potentially common in wild animals, but the extent to which it shapes modern genomes is still poorly understood. Distinguishing historical hybridization events from other processes leading to phylogenetic discordance among different markers requires a well-resolved species tree that considers all modes of inheritance and overcomes systematic problems due to rapid lineage diversification by sampling large genomic character sets. Here, we assessed genome-wide phylogenetic variation across a diverse mammalian family, Felidae (cats). We combined genotypes from a genome-wide SNP array with additional autosomal, X- and Y-linked variants to sample ∼150 kb of nuclear sequence, in addition to complete mitochondrial genomes generated using light-coverage Illumina sequencing. We present the first robust felid time tree that accounts for unique maternal, paternal, and biparental evolutionary histories. Signatures of phylogenetic discordance were abundant in the genomes of modern cats, in many cases indicating hybridization as the most likely cause. Comparison of big cat whole-genome sequences revealed a substantial reduction of X-linked divergence times across several large recombination cold spots, which were highly enriched for signatures of selection-driven post-divergence hybridization between the ancestors of the snow leopard and lion lineages. These results highlight the mosaic origin of modern felid genomes and the influence of sex chromosomes and sex-biased dispersal in post-speciation gene flow. A complete resolution of the tree of life will require comprehensive genomic sampling of biparental and sex-limited genetic variation to identify and control for phylogenetic conflict caused by ancient admixture and sex-biased differences in genomic transmission.

摘要

种间杂交最近被认为在野生动物中可能很常见,但它对现代基因组的塑造程度仍知之甚少。要将历史杂交事件与导致不同标记之间系统发育不一致的其他过程区分开来,需要一个解析良好的物种树,该树要考虑所有遗传模式,并通过对大量基因组特征集进行采样来克服由于快速谱系分化导致的系统问题。在这里,我们评估了一个多样化的哺乳动物家族——猫科动物(猫)全基因组的系统发育变异。我们将全基因组SNP阵列的基因型与额外的常染色体、X和Y连锁变异相结合,以采样约150 kb的核序列,此外还使用低覆盖度的Illumina测序生成了完整的线粒体基因组。我们展示了第一棵稳健的猫科动物时间树,该树考虑了独特的母系、父系和双亲进化历史。系统发育不一致的特征在现代猫的基因组中大量存在,在许多情况下表明杂交是最可能的原因。大型猫科动物全基因组序列的比较揭示,在几个大的重组冷点中,X连锁分歧时间大幅减少,这些冷点高度富集了雪豹和狮子谱系祖先之间由选择驱动的分化后杂交的特征。这些结果突出了现代猫科动物基因组的镶嵌起源以及性染色体和性别偏向扩散在物种形成后基因流动中的影响。要完全解析生命之树,需要对双亲遗传变异和性别受限遗传变异进行全面的基因组采样,以识别和控制由古代混合和基因组传递中的性别偏向差异引起的系统发育冲突。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a511/4691742/53a9e1a05bb1/1f01.jpg

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