首页> 外文期刊>Molecular phylogenetics and evolution >Supermatrix and species tree methods resolve phylogenetic relationships within the big cats, Panthera (Carnivora: Felidae)
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Supermatrix and species tree methods resolve phylogenetic relationships within the big cats, Panthera (Carnivora: Felidae)

机译:超级矩阵和物种树方法可解决大型猫科Panthera(食肉动物:Felidae)内的系统发育关系

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摘要

The pantherine lineage of cats diverged from the remainder of modern Felidae less than 11 million years ago and consists of the five big cats of the genus Panthera, the lion, tiger, jaguar, leopard, and snow leopard, as well as the closely related clouded leopard. A significant problem exists with respect to the precise phylogeny of these highly threatened great cats. Despite multiple publications on the subject, no two molecular studies have reconstructed Panthera with the same topology. These evolutionary relationships remain unresolved partially due to the recent and rapid radiation of pantherines in the Pliocene, individual speciation events occurring within less than 1 million years, and probable introgression between lineages following their divergence. We provide an alternative, highly supported interpretation of the evolutionary history of the pantherine lineage using novel and published DNA sequence data from the autosomes, both sex chromosomes and the mitochondrial genome. New sequences were generated for 39 single-copy regions of the felid Y chromosome, as well as four mitochondrial and four autosomal gene segments, totaling 28.7 kb. Phylogenetic analysis of these new data, combined with all published data in GenBank, highlighted the prevalence of phylogenetic disparities stemming either from the amplification of a mitochondrial to nuclear translocation event (numt), or errors in species identification. Our 47.6 kb combined dataset was analyzed as a supermatrix and with respect to individual partitions using maximum likelihood and Bayesian phylogenetic inference, in conjunction with Bayesian Estimation of Species Trees (BEST) which accounts for heterogeneous gene histories. Our results yield a robust consensus topology supporting the monophyly of lion and leopard, with jaguar sister to these species, as well as a sister species relationship of tiger and snow leopard. These results highlight new avenues for the study of speciation genomics and understanding the historical events surrounding the origin of the members of this lineage.
机译:豹的谱系在不到1100万年前就与现代费利德犬的其余部分分叉,由豹属,狮子,老虎,美洲虎,豹和雪豹的五只大猫组成,并且密切相关豹。这些高度受威胁的大猫的精确系统发育存在重大问题。尽管有许多关于该主题的出版物,但没有两个分子研究用相同的拓扑结构重建了Panthera。这些进化关系至今仍未得到解决,部分原因是上新世近来迅速照射了泛素,在不到一百万年的时间里发生了各种物种形成事件,并且在它们的分歧后谱系之间可能发生了渗入。我们使用来自常染色体,性染色体和线粒体基因组的新颖和公开的DNA序列数据,提供了对Pantherine谱系进化史的另一种高度支持的解释。为猫科动物Y染色体的39个单拷贝区域以及四个线粒体和四个常染色体基因片段生成了新序列,总计28.7 kb。对这些新数据进行的系统发育分析,再加上GenBank中所有已发表的数据,突出表明了由于线粒体向核易位事件(数字)扩增或物种鉴定错误引起的系统发育差异的普遍性。我们将47.6 kb的组合数据集作为一个超级矩阵,使用最大似然和贝叶斯系统发生推断,结合解释异质基因历史的贝叶斯树估计(BEST),对各个分区进行了分析。我们的结果产生了一个强大的共有拓扑,支持了狮子和豹的一面文字,美洲虎姐妹也喜欢这些物种,以及老虎和雪豹的姐妹物种关系。这些结果为研究物种基因组学和了解围绕该谱系成员起源的历史事件提供了新途径。

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