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中国水域鞘形亚纲(软体动物:头足纲)的 DNA 条形码分析。

DNA barcoding analysis of Coleoidea (Mollusca: Cephalopoda) from Chinese waters.

机构信息

Key Laboratory of Mariculture, Ministry of Education, Ocean University of China, Qingdao 266003, China.

出版信息

Mol Ecol Resour. 2012 May;12(3):437-47. doi: 10.1111/j.1755-0998.2012.03118.x. Epub 2012 Feb 21.

Abstract

Coleoids are part of the Cephalopoda class, which occupy an important position in most oceans both at an ecological level and at a commercial level. Nevertheless, some coleoid species are difficult to distinguish with traditional morphological identification in cases when specimens are heavily damaged during collection or when closely related taxa are existent. As a useful tool for rapid species assignment, DNA barcoding may offer significant potential for coleoid identification. Here, we used two mitochondrial fragments, cytochrome c oxidase I and the large ribosomal subunit (16S rRNA), to assess whether 34 coleoids accounting for about one-third of the Chinese coleoid fauna could be identified by DNA barcoding technique. The pairwise intra- and interspecific distances were assessed, and relationships among species were estimated by NJ and bayesian analyses. High levels of genetic differentiation within Loliolus beka led to an overlap between intra- and interspecific distances. All remaining species forming well-differentiated clades in the NJ and bayesian trees were identical for both fragments. Loliolus beka possessed two mitochondrial lineages with high levels of intraspecific distances, suggesting the occurrence of cryptic species. This study confirms the efficacy of DNA barcoding for identifying species as well as discovering cryptic diversity of Chinese coleoids. It also lays a foundation for other ecological and biological studies of Coleoidea.

摘要

头足类是头足纲的一部分,在生态和商业层面上都占据着大多数海洋生物的重要地位。然而,在采集过程中标本严重受损或存在密切相关的分类群时,一些头足类物种很难通过传统的形态学鉴定来区分。作为一种快速物种鉴定的有用工具,DNA 条形码技术对头足类鉴定具有很大的潜力。在这里,我们使用两个线粒体片段,细胞色素 c 氧化酶 I 和大亚基核糖体(16S rRNA),来评估约占中国头足类动物三分之一的 34 个头足类动物是否可以通过 DNA 条形码技术进行鉴定。评估了种内和种间的成对距离,并通过 NJ 和贝叶斯分析估计了物种之间的关系。Loliolus beka 内部的高遗传分化导致种内和种间距离重叠。NJ 和贝叶斯树中所有其他形成分化良好分支的物种在两个片段上都是相同的。Loliolus beka 拥有两个具有高水平种内距离的线粒体谱系,表明存在隐种。本研究证实了 DNA 条形码技术对头足类物种鉴定以及发现中国头足类隐种多样性的有效性。它也为其他头足类动物的生态和生物学研究奠定了基础。

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