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首页> 外文期刊>Molecular phylogenetics and evolution >Molecular phylogenetics of the butterflyfishes (Chaetodontidae): Taxonomy and biogeography of a global coral reef fish family
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Molecular phylogenetics of the butterflyfishes (Chaetodontidae): Taxonomy and biogeography of a global coral reef fish family

机译:蝴蝶鱼的分子系统发育(Chaetodontidae):全球珊瑚礁鱼科的分类学和生物地理学

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Marine butterflyfishes (10 genera, 114 species) are conspicuously beautiful and abundant animals found on coral reefs worldwide, and are well studied due to their ecological importance and commercial value. Several phylogenies based on morphological and molecular data exist, yet a well-supported molecular phylogeny at the species level for a wide range of taxa remains to be resolved. Here we present a molecular phylogeny of the butterflyfishes, including representatives of all genera (except Parachaetodon) and at least one representative of all commonly cited subgenera of Chaetodon (except Roa sensu Blum, 1988). Genetic data were collected for 71 ingroup and 13 outgroup, taxa, using two nuclear and three mitochondrial genes that total 3332 nucleotides. Bayesian inference, parsimony, and maximum likelihood methods produced a well-supported phylogeny with strong support for a monophyletic Chaetodontidae. The Chaetodon subgenera Exornator and Chaetodon were found to be polyphyletic, and the genus Amphichaetodon was not the basal sister group to the rest of the family as had been previously proposed. Molecular phylogenetic analysis of data from 5 genes resolved some clades in agreement with previous phylogenetic studies, however the topology of relationships among major butterflyfish groups differed significantly from previous hypotheses. The analysis recovered a clade containing Amphichaetodon, Coradion, Chelmonops, Chelmon, Forcipiger, Hemitaurichthys, Johnrandallia, and Heniochus. Prognathodes was resolved as the sister to all Chaetodon, as in previous hypotheses, although the topology of subgeneric clades differed significantly from hypotheses based on morphology. We use the species-level phylogeny for the butterflyfishes to resolve long-standing questions regarding the use of subgenera in Chaetodon, to reconstruct molecular rates and estimated dates of diversification of major butterflyfish clades, and to examine global biogeographic patterns. (c) 2007 Elsevier Inc. All rights reserved.
机译:海洋蝴蝶鱼(10属114种)是在全世界的珊瑚礁上发现的美丽而丰富的动物,由于其生态重要性和商业价值而受到了充分研究。存在基于形态学和分子数据的几种系统发育,但是对于种类广泛的种类群,在物种水平上得到良好支持的分子系统发育仍有待解决。在这里,我们介绍了蝶类鱼类的分子系统发育,包括所有属的代表(Parachaetodon除外)和Chaetodon的所有普遍引用的亚属的至少一位代表(Roa sensu Blum,1988)。使用两个核和三个线粒体基因,总计3332个核苷酸,收集了71个内群和13个外群的遗传数据。贝叶斯推论,简约和最大似然方法产生了一个得到良好支持的系统发育学,并为单系Cha科提供了强有力的支持。 Chaetodon亚属Exornator和Chaetodon被发现是多系的,而Amphichaetodon属并不是该家族其他成员的基础姐妹群体。对来自5个基因的数据进行的分子系统发育分析与先前的系统发育研究一致地解析了一些进化枝,但是主要蝴蝶鱼群之间的关系拓扑与先前的假设有显着差异。分析回收了包含两栖类、,类,切尔蒙诺普斯,切尔蒙,Forcipiger,Hemitaurichthys,Johnrandallia和Heniochus的进化枝。与先前的假设一样,Prognathodes被确定为所有Chaetodon的姐妹,尽管亚属进化枝的拓扑结构与基于形态的假设有显着差异。我们使用蝶类的种系系统发育来解决有关Chaetodon亚属使用的长期存在的问题,以重建主要蝶类进化枝的分子速率和估计的多样化日期,并研究全球生物地理格局。 (c)2007 Elsevier Inc.保留所有权利。

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