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首页> 外文期刊>Molecular phylogenetics and evolution >A new phylogeny of tetraodontiform fishes (Tetraodontiformes, Acanthomorpha) based on 22 loci
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A new phylogeny of tetraodontiform fishes (Tetraodontiformes, Acanthomorpha) based on 22 loci

机译:基于22个基因座的四齿鱼类(Tetraodontiformes,Acanthomorpha)的新系统发育

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Tetraodontiform fishes represent one of the most peculiar radiations of teleost fishes. In spite of this, we do not currently have a consensus on the phylogenetic relationships among the major tetraodontiform lineages, with different morphological and molecular datasets all supporting contrasting relationships. In this paper we present the results of the analysis of tetraodontiform interrelationships based on two mitochondrial and 20 nuclear loci for 40 species of tetraodontiforms (representing all of the 10 currently recognized families), as well as three outgroups. Bayesian and maximum likelihood analyses of the concatenated dataset (18,682 nucleotides) strongly support novel relationships among the major tetraodontiform lineages. Our results recover two large clades already found in mitogenomic analyses (although the position of triacanthids differ), while they strongly conflict with hypotheses of tetraodontiform relationships inferred by previous studies based on morphology, as well as studies of higher-level teleost relationships based on nuclear loci, which included multiple tetraodontiform lineages. A parsimony gene-tree, species-tree analysis recovers relationships that are mostly congruent with the analyses of the concatenated dataset, with the significant exception of the position of the pufferfishes. +. porcupine fishes clade. Our findings suggest that while the phylogenetic placement of some tetraodontiform lineages (triacanthids, molids) remains problematic even after sequencing 22 loci, an overall molecular consensus is beginning to emerge regarding the existence of several major clades. This new hypothesis will require a re-evaluation of the phylogenetic usefulness of several morphological features, such as the fusion of several jaw bones into a parrot-like beak, or the reduction and loss of some of the fins, which may have occurred independently more times than previously thought.
机译:四齿鱼类代表硬骨鱼类最特殊的辐射之一。尽管如此,我们目前在主要四齿类谱系之间的系统发育关系上尚无共识,不同的形态和分子数据集均支持对比关系。在本文中,我们介绍了基于40种四齿齿形(代表了目前公认的10个家族的全部)以及三个外群的两个线粒体和20个核基因座的四齿齿形相互关系的分析结果。连接数据集(18,682个核苷酸)的贝叶斯和最大似然分析强烈支持主要四齿形谱系之间的新颖关系。我们的结果回收了在线粒体基因组分析中已经发现的两个大型进化枝(尽管三棘类鱼类的位置有所不同),而它们却与先前基于形态学的研究以及基于核的更高水平的硬骨性关系研究得出的四齿形关系的假设强烈冲突。位点,包括多个四齿形谱系。简约的基因树,物种树分析可恢复与级联数据集的分析大部分一致的关系,但河豚的位置明显例外。 +。豪猪鱼进化枝。我们的发现表明,即使在对22个基因座进行测序后,某些四齿类谱系(三尖齿类,软体动物)的系统发育问题仍然存在问题,但有关几个主要进化枝的存在的整体分子共识开始出现。这个新的假设将需要重新评估几种形态学特征的系统发育有用性,例如将多个颚骨融合成鹦鹉状喙,或者减少或损失一些鳍,这些鳍可能更多地独立发生。比以前想象的要多。

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