Overcoming taxonomic challenges in DNA barcoding for improvement of identification and preservation of clariid catfish species.

Genomics & informatics Pub Date : 2023-09-01 Epub Date: 2023-09-27 DOI:10.5808/gi.23038
Piangjai Chalermwong, Thitipong Panthum, Pish Wattanadilokcahtkun, Nattakan Ariyaraphong, Thanyapat Thong, Phanitada Srikampa, Worapong Singchat, Syed Farhan Ahmad, Kantika Noito, Ryan Rasoarahona, Artem Lisachov, Hina Ali, Ekaphan Kraichak, Narongrit Muangmai, Satid Chatchaiphan, Kednapat Sriphairoj, Sittichai Hatachote, Aingorn Chaiyes, Chatchawan Jantasuriyarat, Visarut Chailertlit, Warong Suksavate, Jumaporn Sonongbua, Witsanu Srimai, Sunchai Payungporn, Kyudong Han, Agostinho Antunes, Prapansak Srisapoome, Akihiko Koga, Prateep Duengkae, Yoichi Matsuda, Uthairat Na-Nakorn, Kornsorn Srikulnath
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引用次数: 0

Abstract

DNA barcoding without assessing reliability and validity causes taxonomic errors of species identification, which is responsible for disruptions of their conservation and aquaculture industry. Although DNA barcoding facilitates molecular identification and phylogenetic analysis of species, its availability in clariid catfish lineage remains uncertain. In this study, DNA barcoding was developed and validated for clariid catfish. 2,970 barcode sequences from mitochondrial cytochrome c oxidase I (COI) and cytochrome b (Cytb) genes and D-loop sequences were analyzed for 37 clariid catfish species. The highest intraspecific nearest neighbor distances were 85.47%, 98.03%, and 89.10% for COI, Cytb, and D-loop sequences, respectively. This suggests that the Cytb gene is the most appropriate for identifying clariid catfish and can serve as a standard region for DNA barcoding. A positive barcoding gap between interspecific and intraspecific sequence divergence was observed in the Cytb dataset but not in the COI and D-loop datasets. Intraspecific variation was typically less than 4.4%, whereas interspecific variation was generally more than 66.9%. However, a species complex was detected in walking catfish and significant intraspecific sequence divergence was observed in North African catfish. These findings suggest the need to focus on developing a DNA barcoding system for classifying clariid catfish properly and to validate its efficacy for a wider range of clariid catfish. With an enriched database of multiple sequences from a target species and its genus, species identification can be more accurate and biodiversity assessment of the species can be facilitated.

克服DNA条形码在分类学上的挑战,以改进单鳍鲶鱼物种的鉴定和保存。
没有评估可靠性和有效性的DNA条形码会导致物种识别的分类错误,这是破坏其保护和水产养殖业的原因。尽管DNA条形码有助于物种的分子鉴定和系统发育分析,但其在单鳍鲶鱼谱系中的可用性仍不确定。在这项研究中,DNA条形码被开发出来并被验证用于单鳍鲶鱼。分析了37种单鳍鲶鱼线粒体细胞色素c氧化酶I(COI)和细胞色素b(Cytb)基因的2970个条形码序列和D环序列。COI、Cytb和D-loop序列的种内最近邻距离最高,分别为85.47%、98.03%和89.10%。这表明Cytb基因最适合鉴定单鳍鲶鱼,可以作为DNA条形码的标准区域。在Cytb数据集中观察到种间和种内序列差异之间的正条形码差距,但在COI和D-loop数据集中没有观察到。种内变异通常小于4.4%,而种间变异通常大于66.9%。然而,在行走的鲶鱼中检测到物种复合体,在北非鲶鱼中观察到显著的种内序列差异。这些发现表明,需要专注于开发一种DNA条形码系统,以正确地对单鳍鲶鱼进行分类,并验证其对更广泛的单鳍鲶鱼的疗效。有了目标物种及其属的多个序列的丰富数据库,物种识别可以更准确,物种的生物多样性评估也可以更方便。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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