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分子系统发育、分歧时间和跳蛛科 Euophryinae 亚科蜘蛛的生物地理学。

Molecular phylogeny, divergence times and biogeography of spiders of the subfamily Euophryinae (Araneae: Salticidae).

机构信息

Department of Zoology, University of British Columbia, Vancouver, BC, Canada V6T 1Z4.

出版信息

Mol Phylogenet Evol. 2013 Jul;68(1):81-92. doi: 10.1016/j.ympev.2013.03.017. Epub 2013 Mar 28.

DOI:10.1016/j.ympev.2013.03.017
PMID:23542001
Abstract

We investigate phylogenetic relationships of the jumping spider subfamily Euophryinae, diverse in species and genera in both the Old World and New World. DNA sequence data of four gene regions (nuclear: 28S, Actin 5C; mitochondrial: 16S-ND1, COI) were collected from 263 jumping spider species. The molecular phylogeny obtained by Bayesian, likelihood and parsimony methods strongly supports the monophyly of a Euophryinae re-delimited to include 85 genera. Diolenius and its relatives are shown to be euophryines. Euophryines from different continental regions generally form separate clades on the phylogeny, with few cases of mixture. Known fossils of jumping spiders were used to calibrate a divergence time analysis, which suggests most divergences of euophryines were after the Eocene. Given the divergence times, several intercontinental dispersal events are required to explain the distribution of euophryines. Early transitions of continental distribution between the Old and New World may have been facilitated by the Antarctic land bridge, which euophryines may have been uniquely able to exploit because of their apparent cold tolerance. Two hot-spots of diversity of euophryines are discovered: New Guinea and the Caribbean Islands. Implications of the molecular phylogeny on the taxonomy of euophryines, and on the evolution of unusual genitalic forms and myrmecophagy, are also briefly discussed.

摘要

我们研究了跳蛛亚科 Euophryinae 的系统发育关系,该亚科在新旧大陆都有丰富的物种和属。从 263 种跳蛛中收集了四个基因区域(核:28S、Actin 5C;线粒体:16S-ND1、COI)的 DNA 序列数据。贝叶斯、似然和简约方法获得的分子系统发育强烈支持将 Euophryinae 重新定义为包括 85 个属的单系群。Diolenius 及其相关属被证明是 Euophryinae。来自不同大陆地区的 Euophryinae 通常在系统发育树上形成独立的分支,很少有混合的情况。已知的跳蛛化石被用来校准分歧时间分析,该分析表明,Euophryinae 的大多数分歧发生在始新世之后。鉴于分歧时间,需要几次洲际扩散事件来解释 Euophryinae 的分布。旧大陆和新大陆之间的大陆分布的早期转变可能是由南极陆桥促成的,Euophryinae 可能因其明显的耐寒性而能够独特地利用这种陆桥。发现了 Euophryinae 的两个多样性热点:新几内亚和加勒比群岛。分子系统发育对 Euophryinae 的分类学以及对不寻常生殖器形态和拟寄生的进化的影响也进行了简要讨论。

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