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基于核DNA和线粒体DNA的南非沙蜥(Pedioplanis,蜥蜴目:蜥蜴科)系统发育研究

Nuclear and mtDNA-based phylogeny of southern African sand lizards, Pedioplanis (Sauria: Lacertidae).

作者信息

Makokha Jane S, Bauer Aaron M, Mayer Werner, Matthee Conrad A

机构信息

Evolutionary Genomics Group, Department of Botany and Zoology, Stellenbosch University, 7602, South Africa.

出版信息

Mol Phylogenet Evol. 2007 Aug;44(2):622-33. doi: 10.1016/j.ympev.2007.04.021. Epub 2007 May 18.

DOI:10.1016/j.ympev.2007.04.021
PMID:17588779
Abstract

The diversity of lacertid lizards in Africa is highest in the southern African subcontinent, where over two-thirds of the species are endemic. With eleven currently recognized species, Pedioplanis is the most diverse among the southern African genera. In this study we use 2200 nucleotide positions derived from two mitochondrial markers (ND2 and 16S rRNA) and one nuclear gene (RAG-1) to (i) assess the phylogeny of Pedioplanis and (ii) estimate divergence time among lineages using the relaxed molecular clock method. Individual analyses of each gene separately supported different nodes in the phylogeny and the combined analysis yielded more well supported relationships. We present the first, well-resolved gene tree for the genus Pedioplanis and this is largely congruent with a phylogeny derived from morphology. Contrary to previous suggestions Heliobolus/Nucras are sister to Pedioplanis. The genus Pedioplanis is monophyletic, with P. burchelli/P. laticeps forming a clade that is sister to all the remaining congeners. Two distinct geographic lineages can be identified within the widespread P. namaquensis; one occurs in Namibia, while the other occurs in South Africa. The P. undata species complex is monophyletic, but one of its constituent species, P. inornata, is paraphyletic. Relationships among the subspecies of P. lineoocellata are much more complex than previously documented. An isolated population previously assigned to P. l. pulchella is paraphyletic and sister to the three named subspecies. The phylogeny identifies two biogeographical clades that probably diverged during the mid-Miocene, after the development of the Benguella Current. This probably led to habitat changes associated with climate and, in conjunction with physical barriers (Great Escarpment), contributed towards speciation within the genus Pedioplanis.

摘要

非洲蜥蜴科蜥蜴的多样性在南部非洲次大陆最高,那里超过三分之二的物种是特有种。在南部非洲的属中,有11个目前已被认可的物种的沙生蜥属是最多样化的。在本研究中,我们使用来自两个线粒体标记(ND2和16S rRNA)和一个核基因(RAG-1)的2200个核苷酸位点来(i)评估沙生蜥属的系统发育,以及(ii)使用宽松分子钟方法估计谱系之间的分歧时间。对每个基因单独进行的分析在系统发育中支持不同的节点,而联合分析产生了更多得到充分支持的关系。我们展示了沙生蜥属的第一棵解析良好的基因树,这在很大程度上与从形态学得出的系统发育一致。与之前的观点相反,日射蜥属/沙蜥属是沙生蜥属的姐妹群。沙生蜥属是单系的,其中巴氏沙生蜥/宽头沙生蜥形成一个分支,是所有其余同属物种的姐妹群。在分布广泛的纳马夸沙生蜥中可以识别出两个不同的地理谱系;一个出现在纳米比亚,另一个出现在南非。细纹沙生蜥物种复合体是单系的,但其组成物种之一的无饰沙生蜥是并系的。线眼沙生蜥亚种之间的关系比之前记录的要复杂得多。一个先前被归为丽纹沙生蜥的孤立种群是并系的,是三个命名亚种的姐妹群。系统发育识别出两个生物地理分支,它们可能在本格拉寒流形成后的中新世中期 diverged。这可能导致了与气候相关的栖息地变化,并与物理屏障(大陡崖)一起,促成了沙生蜥属内的物种形成。 (注:原文中“diverged”未翻译完整,应根据上下文补充完整含义,这里保留英文是因为不确定准确完整的中文表述,需结合更多背景知识)

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