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首页> 外文期刊>Zoologica Scripta: An International Journal of Evolutionary Zoology >A multilocus phylogeny of archiheterodont bivalves (Mollusca, Bivalvia, Archiheterodonta)
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A multilocus phylogeny of archiheterodont bivalves (Mollusca, Bivalvia, Archiheterodonta)

机译:双歧双壳类(软体动物,双壳纲,大双足类)的多基因组系统发育

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摘要

The bivalve clade Heterodonta encompasses more than half of the extant bivalve species and is presently considered a derived group of the modern bivalves (Newell ; Waller ). Heterodonta is subdivided into two major lineages, the hyperdiverse Euheterodonta and Archiheterodonta. The latter comprises four relatively small extant families: Astartidae, Carditidae, Condylocardiidae and Crassatellidae, whose relationships and internal phylogeny are poorly understood. We assessed the phylogeny of archiheterodont bivalves using a multilocus data set comprised of molecular sequence data from six loci (18S rRNA, 28S rRNA, cytochrome c oxidase subunit I, cytochrome b, internal transcribed spacer 2 and histone H3). Resultant data sets of 4Kb of concatenated molecular sequence data were analysed using probabilistic approaches (maximum likelihood and Bayesian inference) and parsimony direct optimization. We recovered strong support for the monophyly of Archiheterodonta, within which Astartidae is the sister group of Crassatellidae, and these two constitute the sister clade of Carditidae, which is paraphyletic with respect to Condylocardiidae. The relationships among the constituent species groups were evaluated in the context of the archiheterodont fossil record through the estimation of divergence times. Diversification times of archiheterodont families were congruent with bounded estimates of origins based on palaeontological data: Archiheterodonta diversified during the Devonian, 373.1Ma (95% highest posterior density interval [HPD] 325.8-428.2); Crassatelloidea around the Carboniferous, 330.1Ma (95% HPD 291.0-372.7); Crassatellidae around the Triassic, 224.0 (95% HPD 140.6-320.2); Astartidae around the Permian, 288.2Ma (95% HPD 269.2-307.3); and Carditoidea around the Jurassic, 178.8Ma (95% HPD 120.9-228.3).Archiheterodonta
机译:双壳类进化支杂齿菊涵盖了现存双壳类的一半以上,目前被认为是现代双壳类的衍生群体(Newell; Waller)。杂齿兽可分为两大类:超多样性的裸齿兽和弓形齿兽。后者包括四个相对较小的现存家族:A科,小it科,Con突科和ida科,它们之间的关系和内部系统发育了解得很少。我们使用包含来自六个基因座(18S rRNA,28S rRNA,细胞色素c氧化酶亚基I,细胞色素b,内部转录间隔区2和组蛋白H3)的分子序列数据的多基因座数据集评估了古异双齿双壳类的系统发育。使用概率方法(最大似然和贝叶斯推断)和简约直接优化分析了4Kb级联分子序列数据的结果数据集。我们获得了对Archeheterodonta一字植物的大力支持,其中Astartidae是Crassatellidae的姐妹群,而这两个构成了Carditidae的姐妹进化枝,与Condylocardiidae有共生关系。通过估计发散时间,在古异齿龙化石记录的背景下评估了组成物种组之间的关系。根据古生物学数据,古异齿牙科的多样化时间与起源的有限估计相吻合:在泥盆纪,古异齿龙(Archiheterodonta)分布于373.1Ma(最高后位密度区间[HPD] 325.8-428.2);石炭纪周围的Crassatelloidea,330.1Ma(95%HPD 291.0-372.7);三叠纪周围的裂甲科224.0(95%HPD 140.6-320.2);二叠纪周围的Astartidae,288.2Ma(95%HPD 269.2-307.3);侏罗纪周围的心型和心型(178.8Ma(95%HPD 120.9-228.3))。

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