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首页> 外文期刊>Scientific reports. >‘Genome skimming’ with the MinION hand-held sequencer identifies CITES-listed shark species in India’s exports market
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‘Genome skimming’ with the MinION hand-held sequencer identifies CITES-listed shark species in India’s exports market

机译:带有MinION手持式测序仪的“基因组撇除”功能可识别出CITES列出的印度出口市场中的鲨鱼物种

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摘要

Chondrichthyes - sharks, rays, skates, and chimeras, are among the most threatened and data deficient vertebrate species. Global demand for shark and ray derived products, drives unregulated and exploitative fishing practices, which are in turn facilitated by the lack of ecological data required for effective conservation of these species. Here, we describe a Next Generation Sequencing method (using the MinION, a hand-held portable sequencing device from Oxford Nanopore Technologies), and analyses pipeline for molecular ecological studies in Chondrichthyes. Using this method, the complete mitochondrial genome and nuclear intergenic and protein-coding sequences were obtained by direct sequencing of genomic DNA obtained from shark fin tissue. Recovered loci include mitochondrial barcode sequences- Cytochrome oxidase I, NADH2, 16S rRNA and 12S rRNA- and nuclear genetic loci such as 5.8S rRNA, Internal Transcribed Spacer 2, and 28S rRNA regions, which are commonly used for taxonomic identification. Other loci recovered were the nuclear protein-coding genes for antithrombin or SerpinC, Immunoglobulin lambda light chain, Preprogehrelin, selenium binding protein 1(SBP1), Interleukin-1?beta (IL-1β) and Recombination-Activating Gene 1 (RAG1). The median coverage across all genetic loci was 20x and sequence accuracy was ≥99.8% compared to reference sequences. Analyses of the nuclear ITS2 region and the mitochondrial protein-encoding loci allowed accurate taxonomic identification of the shark specimen as Carcharhinus falciformis, a CITES Appendix II species. MinION sequencing provided 1,152,211?bp of new shark genome, increasing the number of sequenced shark genomes to five. Phylogenetic analyses using both mitochondrial and nuclear loci provided evidence that Prionace glauca is nested within Carcharhinus, suggesting the need for taxonomic reassignment of P. glauca. We increased genomic information about a shark species for ecological and population genetic studies, enabled accurate identification of the shark tissue for biodiversity indexing and resolved phylogenetic relationships among multiple taxa. The method was independent of amplification bias, and adaptable for field assessments of other Chondrichthyes and wildlife species in the future.
机译:软骨鱼类-鲨鱼,rays鱼,溜冰鞋和嵌合体,是最受威胁和缺乏数据的脊椎动物。全球对鲨鱼和鱼产品的需求推动了不受管制和剥削性的捕鱼活动,而缺乏有效保护这些物种所需的生态数据又反过来促进了这种活动。在这里,我们描述了一种下一代测序方法(使用MinION,这是一种来自牛津纳米孔技术公司的手持便携式测序设备),并分析了在软骨鱼类中进行分子生态研究的管道。使用这种方法,通过直接测序从鱼翅组织获得的基因组DNA,可以获得完整的线粒体基因组以及核基因间和蛋白质编码序列。回收的基因座包括线粒体条形码序列-细胞色素氧化酶I,NADH2、16S rRNA和12S rRNA-以及核遗传基因座,例如5.8S rRNA,内部转录间隔区2和28S rRNA区域,通常用于分类学鉴定。回收的其他基因座是抗凝血酶或SerpinC的核蛋白编码基因,免疫球蛋白λ轻链,蛋白原前列素,硒结合蛋白1(SBP1),白介素-1ββ(IL-1β)和重组激活基因1(RAG1)。与参考序列相比,所有遗传基因座的中位覆盖率为20倍,序列准确性为≥99.8%。核ITS2区域和线粒体蛋白编码基因座的分析允许鲨鱼标本的准确分类学鉴定为Carcharhinus falciformis,CITES附录II物种。 MinION测序提供了1,152,211?bp的新鲨鱼基因组,使测序的鲨鱼基因组数量增加到五个。使用线粒体和核基因座的系统发育分析提供了证据,将白垩纪白蚁嵌套在真鲨鱼体内,这表明需要对白青霉进行分类学重新分配。我们增加了有关鲨鱼物种的基因组信息,以进行生态和种群遗传研究,从而能够准确识别鲨鱼组织以进行生物多样性索引编制,并解决了多个分类群之间的系统发生关系。该方法不受扩增偏差的影响,并且适用于将来对其他软骨鱼类和野生动植物物种的现场评估。

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