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海洋龙虾微型条码标记的设计与测试。

The design and testing of mini-barcode markers in marine lobsters.

机构信息

School of Life Sciences, University of KwaZulu-Natal, Pietermaritzburg, South Africa.

Oceanographic Research Institute, Durban, KwaZulu-Natal, South Africa.

出版信息

PLoS One. 2019 Jan 24;14(1):e0210492. doi: 10.1371/journal.pone.0210492. eCollection 2019.

Abstract

Full-length mitochondrial cytochrome c oxidase I (COI) sequence information from lobster phyllosoma larvae can be difficult to obtain when DNA is degraded or fragmented. Primers that amplify smaller fragments are also more useful in metabarcoding studies. In this study, we developed and tested a method to design a taxon-specific mini-barcode primer set for marine lobsters. The shortest, most informative portion of the COI gene region was identified in silico, and a DNA barcode gap analysis was performed to assess its reliability as species diagnostic marker. Primers were designed, and cross-species amplification success was tested on DNA extracted from a taxonomic range of spiny-, clawed-, slipper- and blind lobsters. The mini-barcode primers successfully amplified both adult and phyllosoma COI fragments, and were able to successfully delimit all species analyzed. Previously published universal primer sets were also tested and sometimes failed to amplify COI from phyllosoma samples. The newly designed taxon-specific mini-barcode primers will increase the success rate of species identification in bulk environmental samples and add to the growing DNA metabarcoding toolkit.

摘要

当 DNA 降解或碎片化时,从龙虾叶状幼体中获取全长线粒体细胞色素 c 氧化酶 I(COI)序列信息可能很困难。扩增较小片段的引物在代谢组学研究中也更有用。在这项研究中,我们开发并测试了一种为海洋龙虾设计分类特异性迷你条码引物的方法。通过计算机鉴定了 COI 基因区域最短、最具信息量的部分,并进行了 DNA 条码间隙分析,以评估其作为物种诊断标记的可靠性。设计了引物,并在从各种刺龙虾、爪龙虾、拖鞋龙虾和盲龙虾提取的 DNA 上测试了跨物种扩增的成功率。迷你条码引物成功扩增了成虫和叶状幼体 COI 片段,并能够成功区分分析的所有物种。还测试了先前发表的通用引物组,但有时无法从叶状幼体样本中扩增 COI。新设计的分类特异性迷你条码引物将提高批量环境样本中物种鉴定的成功率,并为不断增长的 DNA 代谢组学工具包增添新的内容。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/59b9/6345471/01bb66d61f8c/pone.0210492.g001.jpg

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