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Simultaneous analysis of five molecular markers provides a well-supported phylogenetic hypothesis for the living bony-tongue fishes (Osteoglossomorpha : Teleostei)

机译:对五个分子标记物的同时分析为活体骨舌鱼类(Osteoglossomorpha:Teleostei)提供了有力的系统发育假说

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Fishes of the Superorder Osteoglossomorpha (the "bonytongues") constitute a morphologically heterogeneous group of basal teleosts, including highly derived subgroups such as African electric fishes, the African butterfly fish, and Old World knifefishes. Lack of consensus among hypotheses of osteoglossomorph relationships advanced during the past 30 years may be due in part to the difficulty of identifying shared derived characters among the morphologically differentiated extant families of this group. In this study, we present a novel phylogenetic hypothesis for this group, based on the analysis of more than 4000 characters from five molecular markers (the mitochondrial cytochrome b, 12S and 16S rRNA genes, and the nuclear genes RAG2 and MLL). Our taxonomic sampling includes one representative of each extant non-mormyrid osteoglossomorph genus, one representative for the monophyletic family Mormyridae, and four outgroup taxa within the basal Teleostei. Maximum parsimony analysis of combined and equally weighted characters from the five molecular markers and Bayesian analysis provide a single, well-supported, hypothesis of osteoglossomorph interrelationships and show the group to be monophyletic. The tree topology is the following: (Hiodon alosoides, (Pantodon buchholzi, (((Osteoglossum bicirrhosum, Scleropages sp.), (Arapaima gigas, Heterotis niloticus)), ((Gymnarchus niloticus, Ivindomyrus opdenboschi), ((Notopterus notopterus, Chitala ornata), (Xenomystits nigri, Papyrocranus afer)))))). We compare our results with previously published phylogenetic hypotheses based on morpho-anatomical data. Additionally, we explore the consequences of the long terminal branch length for the taxon Pantodon buchholzi in our phylogenetic reconstruction and we use the obtained phylogenetic tree to reconstruct the evolutionary history of electroreception in the Notopteroidei. (C) 2004 Elsevier Inc. All rights reserved.
机译:上颌骨鱼类(“ bonytongues”)的鱼类构成了基底硬骨鱼的形态上异质的一组,包括高度衍生的亚组,例如非洲电鱼,非洲蝴蝶鱼和旧世界的刀鱼。在过去的30年中,关于骨球形态关系假说的共识缺乏共识,部分原因可能是该组在形态上不同的现存家族之间难以识别出共有的衍生特征。在这项研究中,我们基于五个分子标记(线粒体细胞色素b,12S和16S rRNA基因以及核基因RAG2和MLL)对4000多个字符的分析,为该组提出了一种新的系统发育假说。我们的生物分类学采样包括每个现存的非虫科骨藻类属的一名代表,一类单生科的鼠科的一名代表和基底硬骨鱼中的四个外群类群。来自五个分子标记的组合和等权重字符的最大简约分析和贝叶斯分析提供了一个单一的,有充分依据的假骨形态相互关系假说,并表明该组是单系的。树形拓扑如下:(Hiodon alosoides,(Pantodon buchholzi,((((Osteoglossum bicirrhosum,Scleropages sp。),(Arapaima gigas,Heterotis niloticus))),(((Gymnarchus niloticus,Ivindomyrus opdenboschi),(((Notopterus notopteraopteraoptera) ornata),(Xenomystits nigri,Papyrocranus afer))))))。我们将我们的结果与基于形态解剖学数据的先前发表的系统发育假设进行比较。另外,我们在系统发育重建中探索了分类单元Pantondon buchholzi的长末端分支长度的后果,并使用获得的系统发育树重建Notopteroidei中电感受的进化历史。 (C)2004 Elsevier Inc.保留所有权利。

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