首页> 外文期刊>Molecular phylogenetics and evolution >Gene trees, species trees, and morphology converge on a similar phylogeny of living gars (Actinopterygii: Holostei: Lepisosteidae), an ancient clade of ray-finned fishes
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Gene trees, species trees, and morphology converge on a similar phylogeny of living gars (Actinopterygii: Holostei: Lepisosteidae), an ancient clade of ray-finned fishes

机译:基因树,物种树和形态学汇聚在类似活的系统发育上(Actinopterygii:Holostei:Lepisosteidae),这是古老的有鳍鱼类鱼类进化枝

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摘要

Extant gars represent the remaining members of a formerly diverse assemblage of ancient ray-finned fishes and have been the subject of multiple phylogenetic analyses using morphological data. Here, we present the first hypothesis of phylogenetic relationships among living gar species based on molecular data, through the examination of gene tree heterogeneity and coalescent species tree analyses of a portion of one mitochondrial (COI) and seven nuclear (ENC1, myh6, plagl2, S7 ribosomal protein intron 1, sreb2, tbr1, and zic1) genes. Individual gene trees displayed varying degrees of resolution with regards to species-level relationships, and the gene trees inferred from COI and the S7 intron were the only two that were completely resolved. Coalescent species tree analyses of nuclear genes resulted in a well-resolved and strongly supported phylogenetic tree of living gar species, for which Bayesian posterior node support was further improved by the inclusion of the mitochondrial gene. Species-level relationships among gars inferred from our molecular data set were highly congruent with previously published morphological phylogenies, with the exception of the placement of two species, Lepisosteus osseus and L. platostomus. Re-examination of the character coding used by previous authors provided partial resolution of this topological discordance, resulting in broad concordance in the phylogenies inferred from individual genes, the coalescent species tree analysis, and morphology. The completely resolved phylogeny inferred from the molecular data set with strong Bayesian posterior support at all nodes provided insights into the potential for introgressive hybridization and patterns of allopatric speciation in the evolutionary history of living gars, as well as a solid foundation for future examinations of functional diversification and evolutionary stasis in a "living fossil" lineage.
机译:现存的Gars代表着古老的有鳍鱼类的先前多样化组合中的其余成员,并且已成为使用形态学数据进行的多种系统发育分析的主题。在这里,我们通过分子树的异质性检查和对一部分线粒体(COI)和七个核(ENC1,myh6,plagl2, S7核糖体蛋白内含子1,sreb2,tbr1和zic1)基因。各个基因树在物种水平关系上显示出不同程度的分辨率,而从COI和S7内含子推断出的基因树是仅有的两个完全解析的基因树。对核基因进行聚结树分析后,得到了一个解析度高且有力支持的活树的系统树,为此,通过包含线粒体基因,进一步改善了贝叶斯后节点的支持。从我们的分子数据集推断出的食用菌之间的物种级关系与先前发表的形态学系统高度一致,除了两个物种(Lepisosteus osseus和platostomus)的位置不同。重新检查以前的作者使用的字符编码可部分解决此拓扑不一致性问题,从而导致从单个基因推断的系统发育,聚结树分析和形态学方面具有广泛的一致性。由分子数据集推断出的完全解析的系统发育,在所有节点上均具有强大的贝叶斯后验支持,为深入了解活gars进化史中潜在的渐渗杂交和异源物种形成模式提供了见识,并为将来功能性检查奠定了坚实的基础“活化石”谱系中的多样化和演化停滞。

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