首页> 外文期刊>Molecular phylogenetics and evolution >Phylogenetic relationships of Acheilognathidae (Cypriniformes: Cyprinoidea) as revealed from evidence of both nuclear and mitochondrial gene sequence variation: Evidence for necessary taxonomic revision in the family and the identification of cryptic species
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Phylogenetic relationships of Acheilognathidae (Cypriniformes: Cyprinoidea) as revealed from evidence of both nuclear and mitochondrial gene sequence variation: Evidence for necessary taxonomic revision in the family and the identification of cryptic species

机译:从核和线粒体基因序列变异的证据中揭示出的che蛇科(Cyprinoformes:Cyprinoidea)的亲缘关系:必要的分类学修订证据和隐性物种的鉴定

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摘要

Bitterlings are relatively small cypriniform species and extremely interesting evolutionarily due to their unusual reproductive behaviors and their coevolutionary relationships with freshwater mussels. As a group, they have attracted a great deal of attention in biological studies. Understanding the origin and evolution of their mating system demands a well-corroborated hypothesis of their evolutionary relationships. In this study, we provide the most comprehensive phylogenetic reconstruction of species relationships of the group based on partitioned maximum likelihood and Bayesian methods using DNA sequence variation of nuclear and mitochondrial genes on 41 species, several subspecies and three undescribed species. Our findings support the monophyly of the Acheilognathidae. Two of the three currently recognized genera are not monophyletic and the family can be subdivided into six clades. These clades are further regarded as genera based on both their phylogenetic relationships and a reappraisal of morphological characters. We present a revised classification for the Acheilognathidae with five genera/lineages: Rhodeus, Acheilognathus (new constitution), Tanakia (new constitution), Paratanakia gen. nov., and Pseudorhodeus gen. nov. and an unnamed clade containing five species currently referred to as "Acheilognathus". Gene trees of several bitterling species indicate that the taxa are not monophyletic. This result highlights a potentially dramatic underestimation of species diversity in this family. Using our new phylogenetic framework, we discuss the evolution of the Acheilognathidae relative to classification, taxonomy and biogeography. (C) 2014 Elsevier Inc. All rights reserved.
机译:苦瓜是一种相对较小的鲤科鱼类,由于其异常的繁殖行为以及与淡水贻贝的共同进化关系,在进化上极为有趣。作为一个整体,它们在生物学研究中引起了极大的关注。要了解它们的交配系统的起源和进化,就需要对其进化关系进行充分证实的假设。在这项研究中,我们使用41种,几个亚种和三个未描述物种的核和线粒体基因的DNA序列变异,基于分区最大似然和贝叶斯方法,提供了该物种物种关系的最全面的系统发育重建。我们的发现支持虎耳草科的单生。目前公认的三个属中的两个不是单系的,该科可以细分为六个进化枝。这些进化枝基于它们的系统发生关系和形态特征的重新评估而进一步被视为属。我们提出了具有五个属/谱系的棘齿纲科的修订分类:罗氏,棘齿纲(新宪法),塔纳基亚(新宪法),帕拉塔纳基亚氏族。十一月,和Ps​​eudorhodeus gen。十一月还有一个未命名的进化枝,其中包含五个物种,目前被称为“ Acheilognathus”。几种苦涩物种的基因树表明该分类单元不是单系的。这一结果突出说明了该家族中物种多样性的潜在严重低估。使用我们的新的系统发育框架,我们讨论了棘突科相对于分类,分类学和生物地理学的进化。 (C)2014 Elsevier Inc.保留所有权利。

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