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利用 RAD-seq 数据揭示干旱适应的沙鼠属啮齿动物(鼠科:沙鼠亚科)的系统发育关系和物种界限。

Unraveling phylogenetic relationships and species boundaries in the arid adapted Gerbillus rodents (Muridae: Gerbillinae) by RAD-seq data.

机构信息

Department of Ecology and Biogeography, Nicolaus Copernicus University in Toruń, Lwowska 1, PL-87-100 Toruń, Poland.

CBGP, IRD, CIRAD, INRAE, Institut Agro, Université de Montpellier, Montpellier, France.

出版信息

Mol Phylogenet Evol. 2023 Dec;189:107913. doi: 10.1016/j.ympev.2023.107913. Epub 2023 Sep 1.

Abstract

Gerbillus is one of the most speciose genera among rodents, with ca. 51 recognized species. Previous attempts to reconstruct the evolutionary history of Gerbillus mainly relied on the mitochondrial cyt-b marker as a source of phylogenetic information. In this study, we utilize RAD-seq genomic data from 37 specimens representing 11 species to reconstruct the phylogenetic tree for Gerbillus, applying concatenation and coalescence methods. We identified four highly supported clades corresponding to the traditionally recognized subgenera: Dipodillus, Gerbillus, Hendecapleura and Monodia. Only two uncertain branches were detected in the resulting trees, with one leading to diversification of the main lineages in the genus, recognized by quartet sampling analysis as uncertain due to possible introgression. We also examined species boundaries for four pairs of sister taxa, including potentially new species from Morocco, using SNAPP. The results strongly supported a speciation model in which all taxa are treated as separate species. The dating analyses confirmed the Plio-Pleistocene diversification of the genus, with the uncertain branch coinciding with the beginning of aridification of the Sahara at the the Plio-Pleistocene boundary. This study aligns well with the earlier analyses based on the cyt-b marker, reaffirming its suitability as an adequate marker for estimating genetic diversity in Gerbillus.

摘要

沙鼠是啮齿动物中最具物种多样性的属之一,约有 51 个被认可的物种。以前重建沙鼠属的进化历史主要依赖于线粒体细胞色素 b 标记作为系统发育信息的来源。在这项研究中,我们利用代表 11 个物种的 37 个样本的 RAD-seq 基因组数据,应用连锁和聚合法构建沙鼠属的系统发育树。我们鉴定了四个高度支持的分支,对应于传统上公认的亚属:Dipodillus、Gerbillus、Hendecapleura 和 Monodia。在生成的树中只检测到两个不确定的分支,其中一个导致该属的主要谱系多样化,四分体采样分析认为由于可能的基因渗入而不确定。我们还使用 SNAPP 检查了四个姐妹对种的物种界限,包括来自摩洛哥的潜在新物种。结果强烈支持一种物种形成模型,其中所有分类群都被视为单独的物种。约会分析证实了该属在更新世-全新世的多样化,不确定的分支与撒哈拉在更新世-全新世边界干旱化的开始相吻合。这项研究与以前基于细胞色素 b 标记的分析一致,再次证实了它作为估计沙鼠属遗传多样性的合适标记的适用性。

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