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The mitochondrial phylogeny of an ancient lineage of ray-finned fishes (Polypteridae) with implications for the evolution of body elongation, pelvic fin loss, and craniofacial morphology in Osteichthyes

机译:古老的鳍鳍鱼类(Polypteridae)的线粒体系统发育对骨鱼类的身体伸长,骨盆鳍损失和颅面形态演变有影响

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摘要

The family Polypteridae, commonly known as "bichirs", is a lineage that diverged early in the evolutionary history of Actinopterygii (ray-finned fish), but has been the subject of far less evolutionary study than other members of that clade. Uncovering patterns of morphological change within Polypteridae provides an important opportunity to evaluate if the mechanisms underlying morphological evolution are shared among actinoptyerygians, and in fact, perhaps the entire osteichthyan (bony fish and tetrapods) tree of life. However, the greatest impediment to elucidating these patterns is the lack of a well-resolved, highly-supported phylogenetic tree of Polypteridae. In fact, the interrelationships of polypterid species have never been subject to molecular phylogenetic analysis. Here, we infer the first molecular phylogeny of bichirs, including all 12 recognized species and multiple subspecies using Bayesian analyses of 16S and cyt-b mtDNA. We use this mitochondrial phylogeny, ancestral state reconstruction, and geometric morphometrics to test whether patterns of morphological evolution, including the evolution of body elongation, pelvic fin reduction, and craniofacial morphology, are shared throughout the osteichthyan tree of life.
机译:Poly科(Polypteridae),通常被称为“比希尔犬”(bihirs),是一个在放线gi(in鳍鱼)的进化史上早有分歧的血统,但与该进化枝的其他成员相比,进化研究的对象要少得多。揭示Poly科内形态变化的模式提供了一个重要的机会,可用来评估形态进化的基本机制是否在放线放线菌者之间,乃至整个生命的整骨(te鱼和四足动物)之间共享。但是,阐明这些模式的最大障碍是缺少一个良好解析的,高度支持的Poly科系统发育树。实际上,多肽类物种之间的相互关系从未进行过分子系统发育分析。在这里,我们使用16S和cyt-b mtDNA的贝叶斯分析推断双歧杆菌的第一个分子系统发育,包括所有12个公认的物种和多个亚种。我们使用这种线粒体的系统发育,祖先状态重建和几何形态计量学来测试在整个osteichthyan树上是否共享了形态进化的模式,包括身体伸长,骨盆鳍减少和颅面形态的进化。

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