利用DNA条形码提高海洋鱼类幼体的识别能力&以印度尼西亚雅加达和班达海沿岸水域为例

A. Wibowo, A. S. Panggabean, A. Zamroni, A. Priatna, H. N. Yusuf
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引用次数: 10

摘要

印尼鱼类开发的可持续性在很大程度上取决于鱼类的许多基本信息,包括幼虫的分布和扩散。然而,鱼类幼虫和幼鱼对物种的识别非常有限。在这项研究中,我们采用DNA条形码技术,通过将querries与成年期的序列进行比较,在雅加达湾和班达海的物种水平上识别海鱼幼虫,作为参考库,为该特定地区的生物多样性信息做出贡献。结果表明,在雅加达湾,线粒体cyctochrome c氧化酶I基因(COI)471bp区域的分子标记已被成功发现是物种特异性的,在物种内具有遗传距离(0.0-1.30%)。在总共15个成功的PCR中,总共有8科、5属和5种,可以用于计算三个分类类别中幼鱼鉴定的准确性。同时,在班达海,对于成年标本,经过一些PCR实验,我们已经成功扩增了27个个体,只有8个序列可用。在28个成功扩增的PCR样本中,共有326个卵和幼虫从19个站点采集,11个序列可用于DNA分析,至少有10个物种将班达海及其周边地区作为产卵场。我们证明了COI条形码从查询序列中识别物种级别分辨率的能力,以及对不同地理来源的物种进行分类的能力,并确定检索到的数据如何为提出海水渔业保护和管理计划提供重要信息。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
USING DNA BARCODE TO IMPROVE THE IDENTIFICATION OF MARINE FISH LARVAE, CASE STUDY COASTAL WATER NEAR JAKARTA AND BANDA SEA, INDONESIA
The sustainability of the exploitation of the Indonesian fishes depends heavily on many of fish’s basic information including both larvae distribution and dispersal. However, the identification of fish larvae and juvenile to species is very limited. In this study, we employed DNA barcoding techniques to identify marine fish larvae to a species level in Jakarta Bay and Banda Sea by comparing the querries with sequences from adult stage as reference library to contribute on biodiversity information on that particular area. The result revealed that in Jakarta Bay, the molecular marker of a 471 bp region of the mitchondrial cyctochrome c oxidase I gene (COI) has been successfully found to be species-specific, genetic distance within species (0.0 - 1.30 percent). There are total of 8 families, 5 genera and 5 species from a total 15 successful PCR that could be used to calculate the accuracy of larval fish identification in three taxonomic categories. Meanwhile in Banda Sea, for the adult specimens, after some of PCR experiment, we have successfully amplified 27 individuals, only 8 sequences available. There are a total 326 eggs and larvae which been collected from 19 stations, of the 28 successfully amplified PCR samples, 11 sequences were available for DNA analysis and at least 10 species used Banda Sea and surrounding area as their spawning ground. We prove the ability of COI barcodes to identify species level resolution from query sequences and to classify species from distinct geographical origins and determine of how the data retrieved give important information for proposing plans for conserving and managing of fisheries in the sea waters.
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