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Phylogeny and jaw ontogeny of beloniform fishes

机译:贝类鱼类的系统发育和颚发育

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To investigate jaw evolution in beloniform fishes, we reconstructed the phylogeny of 54 species using fragments of two nuclear (RAG2 and Tmo-4C4) and two mitochondrial (cytochrome b and 16S rRNA) genes. Our total molecular evidence topology refutes the monophyly of needlefishes (Belonidae) and half-beaks (Hemiramphidae), but supports the monophyly of flyingfishes (Exocoetidae) and sauries (Scomberesocidae). Flyingfishes are nested within halfbeaks, and sauries are nested within needlefishes. Optimization of jaw characters on the tree reveals a diverse array of evolutionary changes in ontogeny. During their development, needlefishes pass through a "halfbeak" stage that closely resembles the adult condition in the hemiramphid halfbeaks. The reconstruction of jaw transitions falsifies the hypothesis that halfbeaks are paedomorphic derivatives of needlefishes. Instead, halfbeaks; make up a basal paraphyletic grade within beloniforms, and the needlefish jaw morphology is relatively derived. The parallel between needlefish ontogeny and beloniform phylogeny is discussed, and clades amenable to future morphological analysis are proposed.
机译:为了研究贝类鱼类的颌骨进化,我们使用两个核(RAG2和Tmo-4C4)和两个线粒体(细胞色素b和16S rRNA)基因的片段重建了54种物种的系统发育。我们的全部分子证据拓扑结构驳斥了针鱼(Belonidae)和半喙(Hemiramphidae)的单性,但支持了飞鱼(Exocoetidae)和秋刀鱼(Scomberesocidae)的单性。飞鱼被嵌套在半喙内,而秋刀鱼则被嵌套在针鱼内。树上颌骨特征的优化揭示了个体发育的进化变化。在它们的发育过程中,针鱼经历了一个“半喙”阶段,该阶段非常类似于半淋巴半喙的成年状态。下颌过渡的重建伪造了半喙是针鱼的类形态衍生物的假说。相反,半喙;在贝类动物中组成基础副生动物等级,并且刺鱼颌骨形态是相对衍生的。讨论了刺鱼个体发育和贝类生物系统发育之间的平行性,并提出了适合未来形态分析的进化枝。

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