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南海仔稚鱼及鱼卵 DNA 条码参考资料库:分类有效性与地理结构。

DNA barcode reference library of the fish larvae and eggs of the South China Sea: taxonomic effectiveness and geographic structure.

机构信息

College of Fisheries, Guangdong Ocean University, Zhanjiang, 524088, China.

Mangrove Conservation and Research Center, Southern Marine Science and Engineering Guangdong Laboratory (Zhanjiang), Zhanjiang, 524000, China.

出版信息

BMC Ecol Evol. 2024 Oct 28;24(1):132. doi: 10.1186/s12862-024-02316-0.

Abstract

Fish early-stages constitute useful indicators of the states of marine ecosystems, as well as important fishery resources. Given the spectacular phenotypic changes during ontogeny, and the paucity of diagnostic morphological characters at the species level, the identification of fish early-stages is a challenging task. DNA barcoding, the use of the mitochondrial gene of the cytochrome c oxidase subunit I (COI) as an internal species tag, opened new perspectives for the identifications of both larval fish and fish eggs. However, the accuracy of the identifications assisted by DNA barcoding are dependent of the completeness of the DNA barcode reference libraries used to assigned unknown sequences to known species. Here, we built a DNA barcode reference library for 113 species of larval fish and 85 species of fish eggs involving the production of 741 newly generated DNA barcodes from South China Sea (63 localities). Together with 514 DNA barcodes mined from Genbank for 116 species from the South China Sea regions, a reference library including 1255 DNA barcodes for 308 species (248 locations) was assembled. The present study emphasizes the importance of integrating DNA barcoding to large scale inventories of early stages, as DNA-based species delimitation analyses delimited 305 molecular operational taxonomic units (MOTUs) and multiple cases of discordance with morphological identifications were detected. Cryptic diversity is detected with 14 species displaying two MOTUs and a total of 23 species were lumped into 11 MOTUs due to low interspecific divergence and/or mixed lineages.

摘要

鱼类早期阶段是海洋生态系统状态的有用指标,也是重要的渔业资源。鉴于其在个体发育过程中表现出的显著表型变化,以及在物种水平上缺乏诊断形态特征,鱼类早期阶段的鉴定是一项具有挑战性的任务。DNA 条形码技术,即利用线粒体基因细胞色素 c 氧化酶亚基 I(COI)作为内部物种标记,为鉴定幼鱼和鱼卵开辟了新的视角。然而,DNA 条形码辅助鉴定的准确性取决于用于将未知序列分配给已知物种的 DNA 条形码参考文库的完整性。在这里,我们为 113 种幼鱼和 85 种鱼卵建立了一个 DNA 条形码参考文库,涉及从南海(63 个地点)生成了 741 个新的 DNA 条形码。结合从 Genbank 挖掘的南海地区 116 个物种的 514 个 DNA 条形码,组装了一个包含 308 个物种(248 个地点)的 1255 个 DNA 条形码的参考文库。本研究强调了将 DNA 条形码整合到大规模早期阶段调查中的重要性,因为基于 DNA 的物种界定分析界定了 305 个分子操作分类单元(MOTU),并且检测到多个与形态识别不一致的案例。还检测到了隐多态性,有 14 个物种显示出两个 MOTU,共有 23 个物种由于种间分歧低和/或混合谱系而合并为 11 个 MOTU。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cc86/11514968/103afb309db5/12862_2024_2316_Fig1_HTML.jpg

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