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首页> 外文期刊>BMC Evolutionary Biology >Phylogenetic relationships within the speciose family Characidae (Teleostei: Ostariophysi: Characiformes) based on multilocus analysis and extensive ingroup sampling
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Phylogenetic relationships within the speciose family Characidae (Teleostei: Ostariophysi: Characiformes) based on multilocus analysis and extensive ingroup sampling

机译:基于多基因座分析和广泛的群体内采样的特异科查拉德克虫(Teleostei:Ostariophysi:Characiformes)内的亲缘关系

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Background With nearly 1,100 species, the fish family Characidae represents more than half of the species of Characiformes, and is a key component of Neotropical freshwater ecosystems. The composition, phylogeny, and classification of Characidae is currently uncertain, despite significant efforts based on analysis of morphological and molecular data. No consensus about the monophyly of this group or its position within the order Characiformes has been reached, challenged by the fact that many key studies to date have non-overlapping taxonomic representation and focus only on subsets of this diversity. Results In the present study we propose a new definition of the family Characidae and a hypothesis of relationships for the Characiformes based on phylogenetic analysis of DNA sequences of two mitochondrial and three nuclear genes (4,680 base pairs). The sequences were obtained from 211 samples representing 166 genera distributed among all 18 recognized families in the order Characiformes, all 14 recognized subfamilies in the Characidae, plus 56 of the genera so far considered incertae sedis in the Characidae. The phylogeny obtained is robust, with most lineages significantly supported by posterior probabilities in Bayesian analysis, and high bootstrap values from maximum likelihood and parsimony analyses. Conclusion A monophyletic assemblage strongly supported in all our phylogenetic analysis is herein defined as the Characidae and includes the characiform species lacking a supraorbital bone and with a derived position of the emergence of the hyoid artery from the anterior ceratohyal. To recognize this and several other monophyletic groups within characiforms we propose changes in the limits of several families to facilitate future studies in the Characiformes and particularly the Characidae. This work presents a new phylogenetic framework for a speciose and morphologically diverse group of freshwater fishes of significant ecological and evolutionary importance across the Neotropics and portions of Africa.
机译:背景查亚德科鱼类家族有近1100种,占Characiformes物种的一半以上,是新热带淡水生态系统的重要组成部分。尽管基于形态学和分子数据分析做出了巨大的努力,但目前仍无法确定炭疽菌的组成,系统发育和分类。迄今为止,许多关键研究都具有不重叠的分类学表示,并且仅关注该多样性的子集,这一事实对这一群体的单亲性或其在Characiformes顺序中的位置尚未达成共识。结果在本研究中,我们基于对两个线粒体和三个核基因(4,680个碱基对)的DNA序列进行系统发育分析,提出了Characidae家族的新定义以及有关Characiformes关系的假设。这些序列是从代表166个属的166个属中按Characiformes顺序,Characidae中的所有14个公认的亚科以及迄今为止被认为属于Characidae中的indisae sedis的56个属获得的。获得的系统发育是稳健的,大多数谱系得到了贝叶斯分析中的后验概率的显着支持,以及来自最大似然和简约分析的高自举值。结论在我们所有的系统发育分析中得到大力支持的单系组合在本文中被定义为Characidae,其中包括缺乏眶上骨并且从舌前玻璃体获得舌状动脉出现位置的characiform物种。为了认识到characiforms中的这个和其他几个单系群体,我们建议改变几个家族的界限,以方便将来在characiformes,尤其是Characidae中进行研究。这项工作为在新热带地区和非洲部分地区具有重要生态和进化重要性的淡水鱼类的特定和形态多样的群体提出了一个新的系统发育框架。

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