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帕劳群岛孤立海洋环境中三种贻贝形态(双壳纲,贻贝科)的系统发育特征

Phylogenetic characterization of three morphs of mussels (Bivalvia, Mytilidae) inhabiting isolated marine environments in Palau Islands.

作者信息

Goto Tadasuke V, Tamate Hidetoshi B, Hanzawa Naoto

机构信息

Graduate School of Science and Engineering, Yamagata University, Yamagata 990-8560, Japan.

出版信息

Zoolog Sci. 2011 Aug;28(8):568-79. doi: 10.2108/zsj.28.568.

DOI:10.2108/zsj.28.568
PMID:21800997
Abstract

Marine lakes in the Palau Islands are known to harbor unique marine fauna that have remained isolated since the formation of the lakes after the Last Glacial Maximum. We analyzed mussels from marine lakes located on different islands and conducted morphological, phylogenetic and population genetic characterization to clarify their evolutionary history. The mussels were morphologically classified into three differentiated morphs: NS, ON, and MC. Their common characteristics were consistent with the Brachidontes-Hormomya complex of the Mytilidae family. Phylogenetic analysis based on the nuclear 18S ribosomal RNA gene supported the taxonomic position of the mussels among the Mytilidae. In the mitochondrial cytochrome c oxidase subunit I (COI) gene lineage, NS-and MC-morphs were highly diverged from each other; their estimated time of divergence dates back to the mid-Pleistocene. ON-morph was more closely related to MC-morph, although the shell morphologies of ON- and MC-morphs were easily distinguishable. Population genetic analysis revealed the coexistence of highly diverged haplotypes within a population of ON-morph, indicating introgression of mtDNA among the morphs. Our data suggest that morphological differentiation of marine lake mussels can occur in a relatively short period under different environmental conditions. Thus, the marine lakes provide a unique site for the study of diversification in mussels.

摘要

众所周知,帕劳群岛的咸水湖拥有独特的海洋动物群,自末次盛冰期后湖泊形成以来,这些动物群一直处于隔离状态。我们分析了来自不同岛屿咸水湖的贻贝,并进行了形态学、系统发育和种群遗传学特征分析,以阐明它们的进化历史。这些贻贝在形态上被分为三种不同的形态:NS、ON和MC。它们的共同特征与贻贝科的Brachidontes-Hormomya复合体一致。基于核18S核糖体RNA基因的系统发育分析支持了贻贝在贻贝科中的分类地位。在线粒体细胞色素c氧化酶亚基I(COI)基因谱系中,NS形态和MC形态彼此高度分化;它们的估计分化时间可追溯到中更新世。ON形态与MC形态关系更密切,尽管ON形态和MC形态的壳形态很容易区分。种群遗传学分析显示,ON形态的一个种群中存在高度分化的单倍型共存,表明线粒体DNA在这些形态之间存在渐渗。我们的数据表明,在不同环境条件下,咸水湖贻贝的形态分化可能在相对较短的时间内发生。因此,咸水湖为研究贻贝的多样化提供了一个独特的场所。

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