首页> 外文期刊>Zoological Journal of the Linnean Society >Molecular taxonomy in 2D: a novel ITS2 rRNA sequence-structure approach guides the description of the oysters' subfamily Saccostreinae and the genus Magallana (Bivalvia: Ostreidae)
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Molecular taxonomy in 2D: a novel ITS2 rRNA sequence-structure approach guides the description of the oysters' subfamily Saccostreinae and the genus Magallana (Bivalvia: Ostreidae)

机译:2D的分子分类物:一种新的ITS2 rRNA序列结构方法指导牡蛎的描述和Magallana(Bivalvia:Ostreidae)的描述

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Molecular approaches have contributed to a drastic reconsideration of organisms' systematics and evolution especially in some groups of bivalves where high levels of phenotypic plasticity have hampered morphology-based assessments. However, these insights have rarely been integrated into taxonomy and classification due to the challenge of taxon description based on DNA data alone. In this study we used, for the first time, an approach based on ITS2 rRNA sequence-structure for the diagnosis and description of new oyster taxa identified based on multi-locus phylogenetic analyses including new molecular data for Striostrea Vialov, 1936. Phylogenetic analyses and diagnostic ITS2 sequence-structure characters supported Ostreidae Rafinesque, 1815 with four subfamilies: Crassostreinae Scarlato & Starobogatov, 1979 (including Crassostrea Sacco, 1897, Talonostrea Li & Qi, 1994, and Magallana gen. nov.), Saccostreinae subfam. nov. (including Saccostrea Dollfus & Dautzenberg, 1920), Striostreinae Harry, 1985 (including Striostrea) and Ostreinae Rafinesque, 1815 (including the remaining genera). We provide a formal description of the subfamily Saccostreinae subfam. nov. and the genus Magallana gen. nov., a diagnosis for the subfamily Striostreinae, and suggest the reclassification of Striostrea circumpicta (Pilsbry, 1904) and Crassostrea zhanjiangensis Wu, Xiao & Yu, 2013 as Ostrea circumpicta and Talonostrea zhanjiangensis comb. nov., respectively. This study demonstrates the suitability of ITS2 sequence-structure characters for taxonomic diagnosis and description. The advantages of such an approach in the context of DNA taxonomy of cryptic taxa are discussed. (C) 2016 The Linnean Society of London, Zoological Journal of the Linnean Society, 2017
机译:分子方法有助于彻底重新考虑生物的系统学和进化,尤其是在一些双壳类动物群体中,因为高水平的表型可塑性阻碍了基于形态学的评估。然而,由于仅基于DNA数据的分类单元描述的挑战,这些见解很少被整合到分类学和分类中。在这项研究中,我们首次使用基于ITS2 rRNA序列结构的方法来诊断和描述根据多位点系统发育分析(包括Striostrea Vialov,1936年的新分子数据)确定的新牡蛎分类群。系统发育分析和诊断ITS2序列结构特征支持Ostreidae Rafinesque,1815年的四个亚科:Crassostreinae Scarlato和;Starobogatov,1979年(包括1897年的Crassostrea Sacco,1994年的Talonostrea Li&Qi和Magallana gen.11月),Saccostreae Subam。11月(包括Saccostrea Dollfus&Dautzenberg,1920年)、Striostreinae Harry,1985年(包括Striostrea)和Ostreinae Rafinesque,1815年(包括其余属)。我们提供了一个正式的描述亚科Saccostrenae subfam。nov.和Magallana gen.nov.属,这是对环纹肌亚科的诊断,并建议对环纹肌(Pilsby,1904)和湛江牡蛎进行重新分类;于,2013年作为环纹牡蛎和湛江塔龙牡蛎的梳子。分别是11月。本研究证明了ITS2序列结构特征对分类诊断和描述的适用性。讨论了这种方法在隐秘类群的DNA分类中的优势。(C) 2016年伦敦林奈学会,《林奈学会动物学杂志》,2017年

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