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Family matters: The first molecular phylogeny of the Onchidorididae Gray, 1827 (Mollusca, Gastropoda, Nudibranchia)

机译:家庭事务:1827年的甲chi科的第一个分子系统发育史(软体动物,腹足纲,裸子nch属)

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Recent investigations into the evolution of the Onchidorididae using morphological based methods have resulted in low support for relationships among genera. This study aims to determine if molecular data corroborates recent morphological interpretations of the evolution of Onchidorididae. Five genetic markers: 16S, 18S, 28S, cytochrome c oxidase 1 (COI) and histone 3 (H3), were sequenced from 32 species comprising Onchidorididae and five other families, three from Phanerobranchia and two from Cryptobranchia. Phylogenies were estimated using maximum likelihood, and Bayesian inference analyses; with both yielding similar topologies. Molecular analyses resulted in high support for the monophyly of the suctorian clade and the placement of the genera within Onchidorididae. However, the Onchidorididae forms a paraphyletic grouping due to the recovery of the Goniodorididae and the Akiodorididae nested within family. In addition, the placement of Corambe as the most derived member of Onchidorididae is contradicted by the present study. Rather it is sister to a large clade that includes Acanthodoris and the species traditionally placed in Onchidoris and Adalaria, now defined as Onchidorididae. We have chosen to maintain Corambidae as a distinct taxon (including Corambe and Loy), sister to Onchidorididae. We also maintain Goniodorididae, Akiodorididae and Calycidoridae (including Calycidoris and Diaphorodoris), which along with the Onchidorididae and Corambidae comprise. the suctorian superfamily Onchidoridoidea. Ancestral character reconstruction also suggests that the formation of a gill pocket, a character that currently defines the Cryptobranchia, may have evolved multiple times from an ancestor that lacked the ability to retract its gills into a fully formed gill pocket. The diversity of gill morphology displayed by the Onchidoridoidea will help give new insight into the evolution of this complex character within the Nudibranchia. (C) 2015 Elsevier Inc. All rights reserved.
机译:最近使用基于形态学的方法对甲chi科的进化的研究导致对属间关系的支持不高。这项研究旨在确定分子数据是否证实了甲On科进化的最新形态学解释。五个遗传标记:16S,18S,28S,细胞色素C氧化酶1(COI)和组蛋白3(H3),从包括棘足科和其他五个家族的32个物种中测序,其中三个来自Phanerobranchia,另一个来自Cryptobranchia。使用最大似然和贝叶斯推断分析来估计系统发育。两者产生相似的拓扑。分子分析得到了对刀齿类进化枝的单性和在甲chi科内属的高度支持。然而,由于the虫科和嵌套在家庭中的A科的恢复,the科形成了寄生群。此外,本研究与将Corambe定位为Onchidorididae的最衍生成员的做法相矛盾。相反,它是一个大型进化枝的姊妹,该进化枝包括棘棘龙和按传统方式放在Onchidoris和Adalaria中的物种,现在被定义为Onchidorididae。我们选择将科兰比科作为Onchidorididae的姊妹(包括Corambe和Loy)作为一个独特的分类群。我们还维护了角ni科,A纲科和剑形科(包括剑兰和Diaphorodoris),以及On形科和and科。巫师超家族Onchidoridoidea。祖先的性格重建还表明,pocket囊的形成(目前定义隐枝菌)可能是从缺乏将其g缩回完全形成的g囊的能力的祖先演变而来的。甲壳纲显示的g形态的多样性将有助于使人们更深入地了解裸di鱼体内这种复杂特征的演变。 (C)2015 Elsevier Inc.保留所有权利。

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