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SNP discovery in wild and domesticated populations of blue catfish, Ictalurus furcatus, using genotyping-by-sequencing and subsequent SNP validation

机译:使用测序进行基因分型和随后的SNP验证在蓝blue鱼(Ictalurus furcatus)的野生和驯养种群中发现SNP

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Blue catfish, Ictalurus furcatus, are valued in the United States as a trophy fishery for their capacity to reach large sizes, sometimes exceeding 45 kg. Additionally, blue catfish × channel catfish (I. punctatus) hybrid food fish production has recently increased the demand for blue catfish broodstock. However, there has been little study of the genetic impacts and interaction of farmed, introduced and stocked populations of blue catfish. We utilized genotyping-by-sequencing (GBS) to capture and genotype SNP markers on 190 individuals from five wild and domesticated populations (Mississippi River, Missouri, D&B, Rio Grande and Texas). Stringent filtering of SNP-calling parameters resulted in 4275 SNP loci represented across all five populations. Population genetics and structure analyses revealed potential shared ancestry and admixture between populations. We utilized the Sequenom MassARRAY to validate two multiplex panels of SNPs selected from the GBS data. Selection criteria included SNPs shared between populations, SNPs specific to populations, number of reads per individual and number of individuals genotyped by GBS. Putative SNPs were validated in the discovery population and in two additional populations not used in the GBS analysis. A total of 64 SNPs were genotyped successfully in 191 individuals from nine populations. Our results should guide the development of highly informative, flexible genotyping multiplexes for blue catfish from the larger GBS SNP set as well as provide an example of a rapid, low-cost approach to generate and genotype informative marker loci in aquatic species with minimal previous genetic information.
机译:蓝cat鱼(Ictalurus furcatus)因能够捕捞大规格(有时超过45公斤)的能力而在美国被视为奖杯渔业。此外,蓝cat鱼×斑cat鱼(I. punctatus)杂交食用鱼的生产最近增加了对蓝cat鱼亲鱼的需求。但是,关于蓝cat鱼养殖,引进和饲养种群的遗传影响和相互作用的研究很少。我们利用测序基因分型(GBS)来捕获来自五个野生和驯化种群(密西西比河,密苏里州,D&B,里奥格兰德和德克萨斯州)的190个人的SNP标记并进行基因分型。对SNP调用参数的严格过滤导致在所有五个种群中代表了4275个SNP位点。人口遗传学和结构分析揭示了人口之间潜在的共同血统和混杂。我们利用Sequenom MassARRAY来验证从GBS数据中选择的两个SNP多重面板。选择标准包括人群之间共享的SNP,特定于人群的SNP,每个个体的读取数以及通过GBS进行基因分型的个体数。在发现种群和GBS分析中未使用的另外两个种群中验证了推定的SNP。在9个人群的191个人中成功对64个SNP进行了基因分型。我们的结果应指导大型GBS SNP集合中蓝blue鱼高度信息化,灵活的基因分型多态性的发展,并提供一个快速,低成本的方法来在以往遗传基因最少的情况下在水生物种中生成和基因型信息性标记基因座信息。

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