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Advances in DNA Barcoding of Toxic Marine Organisms

机译:有毒海洋生物DNA条形码的研究进展

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摘要

There are more than 200,000 marine species worldwide. These include many important economic species, such as large yellow croaker, ribbonfish, tuna, and salmon, but also many potentially toxic species, such as blue-green algae, diatoms, cnidarians, ctenophores, Nassarius spp., and pufferfish. However, some edible and toxic species may look similar, and the correct identification of marine species is thus a major issue. The failure of traditional classification methods in certain species has promoted the use of DNA barcoding, which uses short, standard DNA fragments to assist with species identification. In this review, we summarize recent advances in DNA barcoding of toxic marine species such as jellyfish and pufferfish, using genes including cytochrome oxidase I gene (COI), cytochrome b gene (cytb), 16S rDNA, internal transcribed spacer (ITS), and Ribulose-1,5-bisphosphate carboxylase oxygenase gene (rbcL). We also discuss the application of this technique for improving the identification of marine species. The use of DNA barcoding can benefit the studies of biological diversity, biogeography, food safety, and the detection of both invasive and new species. However, the technique has limitations, particularly for the analysis of complex objects and the selection of standard DNA barcodes. The development of high-throughput methods may offer solutions to some of these issues.
机译:全球有超过200,000种海洋物种。这些物种包括许多重要的经济物种,例如大型黄花鱼,带状鱼类,金枪鱼和鲑鱼,还包括许多潜在有毒物种,例如蓝藻,硅藻,刺孢子虫,鱼鳞茎,纳萨里氏菌属和河豚。但是,某些食用和有毒物种可能看起来相似,因此正确识别海洋物种是一个主要问题。传统分类方法在某些物种中的失败促进了DNA条形码的使用,DNA条形码使用短的标准DNA片段来辅助物种鉴定。在这篇综述中,我们总结了使用包括细胞色素氧化酶I基因(COI),细胞色素b基因(cytb),16S rDNA,内部转录间隔子(ITS)和基因在内的有毒海洋物种(例如水母和河豚)的DNA条形码的最新进展。核糖-1,5-二磷酸羧化酶加氧酶基因(rbcL)。我们还将讨论该技术在改善海洋物种识别中的应用。 DNA条形码的使用可以有益于生物多样性,生物地理学,食品安全以及入侵和新物种检测的研究。但是,该技术有局限性,特别是对于复杂对象的分析和标准DNA条形码的选择。高通量方法的发展可能为其中一些问题提供解决方案。

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