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非洲热带叶鼻蝠(翼手目,菊头蝠科)的进化关系与种群遗传学

Evolutionary relationships and population genetics of the Afrotropical leaf-nosed bats (Chiroptera, Hipposideridae).

作者信息

Patterson Bruce D, Webala Paul W, Lavery Tyrone H, Agwanda Bernard R, Goodman Steven M, Peterhans Julian C Kerbis, Demos Terrence C

机构信息

Negaunee Integrative Research Center, Field Museum of Natural History, Chicago IL 60605, USA Field Museum of Natural History Chicago United States of America.

Department of Forestry and Wildlife Management, Maasai Mara University, Narok, Kenya Maasai Mara University Narok Kenya.

出版信息

Zookeys. 2020 Apr 22;929:117-161. doi: 10.3897/zookeys.929.50240. eCollection 2020.

Abstract

The Old World leaf-nosed bats (Hipposideridae) are aerial and gleaning insectivores that occur throughout the Paleotropics. Both their taxonomic and phylogenetic histories are confused. Until recently, the family included genera now allocated to the Rhinonycteridae and was recognized as a subfamily of Rhinolophidae. Evidence that Hipposideridae diverged from both Rhinolophidae and Rhinonycteridae in the Eocene confirmed their family rank, but their intrafamilial relationships remain poorly resolved. We examined genetic variation in the Afrotropical hipposiderids , , and using relatively dense taxon-sampling throughout East Africa and neighboring regions. Variation in both mitochondrial (cyt-b) and four nuclear intron sequences (ACOX2, COPS, ROGDI, STAT5) were analyzed using both maximum likelihood and Bayesian inference methods. We used intron sequences and the lineage delimitation method BPP-a multilocus, multi-species coalescent approach-on supported mitochondrial clades to identify those acting as independent evolutionary lineages. The program StarBEAST was used on the intron sequences to produce a species tree of the sampled Afrotropical hipposiderids. All genetic analyses strongly support generic monophyly, with and as Afrotropical sister genera distinct from a Paleotropical ; mitochondrial analyses interpose the genera , , and between these clades. Mitochondrial analyses also suggest at least two separate colonizations of Africa by Asian groups of , but the actual number and direction of faunal interchanges will hinge on placement of the unsampled African-Arabian species . Mitochondrial sequences further identify a large number of geographically structured clades within species of all three genera. However, in sharp contrast to this pattern, the four nuclear introns fail to distinguish many of these groups and their geographic structuring disappears. Various distinctive mitochondrial clades are consolidated in the intron-based gene trees and delimitation analyses, calling into question their evolutionary independence or else indicating their very recent divergence. At the same time, there is now compelling genetic evidence in both mitochondrial and nuclear sequences for several additional unnamed species among the Afrotropical . Conflicting appraisals of differentiation among the Afrotropical hipposiderids based on mitochondrial and nuclear loci must be adjudicated by large-scale integrative analyses of echolocation calls, quantitative morphology, and geometric morphometrics. Integrative analyses will also help to resolve the challenging taxonomic issues posed by the diversification of the many lineages associated with and .

摘要

旧大陆叶鼻蝠科(菊头蝠科)是分布于整个古热带地区的空中捕食和静候捕食的食虫动物。它们的分类学和系统发育史都很混乱。直到最近,该科还包括现在划归犀蝠科的属,并且被认为是菊头蝠科的一个亚科。有证据表明菊头蝠科在始新世就与菊头蝠科和犀蝠科分道扬镳,这证实了它们的科级地位,但它们科内的关系仍未得到很好的解决。我们通过在东非及周边地区进行相对密集的分类群抽样,研究了非洲菊头蝠属、和的遗传变异。使用最大似然法和贝叶斯推断法分析了线粒体(细胞色素b)和四个核内含子序列(ACOX2、COPS、ROGDI、STAT5)的变异。我们使用内含子序列和谱系界定方法BPP(一种多位点、多物种合并方法)对得到支持的线粒体分支进行分析,以确定哪些是独立的进化谱系。使用StarBEAST程序对内含子序列进行分析,以构建抽样的非洲菊头蝠属的系统发育树。所有的遗传分析都有力地支持了属的单系性,其中和是非洲的姐妹属,与古热带的不同;线粒体分析将属、和置于这些分支之间。线粒体分析还表明,亚洲的菊头蝠属至少有两次独立的非洲殖民,但动物区系交流的实际数量和方向将取决于未抽样的非洲 - 阿拉伯物种的位置。线粒体序列进一步确定了所有三个属的物种内大量地理结构分支。然而,与此模式形成鲜明对比的是,四个核内含子未能区分其中许多群体,它们的地理结构也消失了。各种独特的线粒体分支在内含子基因树和界定分析中合并在一起,这让人质疑它们的进化独立性,或者表明它们是最近才分化的。与此同时,现在线粒体和核序列都有令人信服的遗传证据表明非洲菊头蝠属中有几个未命名的新物种。基于线粒体和核基因座对非洲菊头蝠属分化的相互矛盾的评估,必须通过对回声定位叫声、定量形态学和几何形态测量学的大规模综合分析来裁决。综合分析也将有助于解决与菊头蝠属多样化相关的许多谱系所带来的具有挑战性的分类学问题。

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