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结合高通量测序数据以扩大分类群覆盖范围的真兽类哺乳动物宏观系统学

Macrosystematics of eutherian mammals combining HTS data to expand taxon coverage.

作者信息

Feijoo M, Parada A

机构信息

Departamento de Ecología y Evolución, Facultad de Ciencias, Universidad de la República, Montevideo CP 11400, Uruguay.

Instituto de Ciencias Ambientales y Evolutivas, Universidad Austral de Chile, Valdivia CP 5090000, Chile.

出版信息

Mol Phylogenet Evol. 2017 Aug;113:76-83. doi: 10.1016/j.ympev.2017.05.004. Epub 2017 May 6.

DOI:10.1016/j.ympev.2017.05.004
PMID:28487261
Abstract

In the last few years high-throughput sequencing technologies have permitted significant advances in mammalian phylogenetic studies from a genomic perspective. However, these studies have been restricted to a sparse number of species with available reference genomes. Thus, several issues inside the eutherian mammals phylogeny remain unresolved. This may be due in part to limited taxon sampling, as taxonomic density is known to affect phylogenetic resolution. In this context, we present a protocol to increase taxon coverage using high-throughput sequencing data (RNA or DNA) generated for other biological studies and available in public databases. Following this procedure we addressed pending or controversial issues concerning the phylogenetic position of Dermoptera, Pholidota and Chiroptera, considering multiple and independent loci. Also for Chiroptera and Arctoidea we evaluated the relationships of the lineages that compose it. Although the maximum number of genes used is moderate (95), in some cases taxon coverage doubles that of previous related studies. Globally, all coalescent-based (STAR, MP-EST and ASTRAL) and concatenated (IQ-TREE and BEAST2) methods used for species tree reconstruction were consistent to each other and most of interrogated nodes received high statistical support.

摘要

在过去几年中,高通量测序技术使得从基因组角度进行的哺乳动物系统发育研究取得了重大进展。然而,这些研究仅限于少数具有可用参考基因组的物种。因此,真兽类哺乳动物系统发育中的几个问题仍未得到解决。这可能部分归因于分类群抽样有限,因为已知分类密度会影响系统发育分辨率。在此背景下,我们提出了一种方案,利用为其他生物学研究生成并可在公共数据库中获取的高通量测序数据(RNA或DNA)来增加分类群覆盖范围。按照此程序,我们考虑了多个独立位点,解决了关于皮翼目、鳞甲目和翼手目的系统发育位置的悬而未决或有争议的问题。对于翼手目和熊型总科,我们还评估了构成它们的谱系之间的关系。尽管使用的基因最大数量适中(95个),但在某些情况下,分类群覆盖范围是先前相关研究的两倍。总体而言,用于物种树重建的所有基于合并的方法(STAR、MP-EST和ASTRAL)以及串联方法(IQ-TREE和BEAST2)相互一致,并且大多数被询问的节点都获得了高统计支持。

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