Department of Bioscience, Aarhus University, Aarhus C, Denmark.
Mol Ecol Resour. 2013 Jul;13(4):706-14. doi: 10.1111/1755-0998.12117. Epub 2013 May 9.
Reduced representation genome sequencing such as restriction-site-associated DNA (RAD) sequencing is finding increased use to identify and genotype large numbers of single-nucleotide polymorphisms (SNPs) in model and nonmodel species. We generated a unique resource of novel SNP markers for the European eel using the RAD sequencing approach that was simultaneously identified and scored in a genome-wide scan of 30 individuals. Whereas genomic resources are increasingly becoming available for this species, including the recent release of a draft genome, no genome-wide set of SNP markers was available until now. The generated SNPs were widely distributed across the eel genome, aligning to 4779 different contigs and 19,703 different scaffolds. Significant variation was identified, with an average nucleotide diversity of 0.00529 across individuals. Results varied widely across the genome, ranging from 0.00048 to 0.00737 per locus. Based on the average nucleotide diversity across all loci, long-term effective population size was estimated to range between 132,000 and 1,320,000, which is much higher than previous estimates based on microsatellite loci. The generated SNP resource consisting of 82,425 loci and 376,918 associated SNPs provides a valuable tool for future population genetics and genomics studies and allows for targeting specific genes and particularly interesting regions of the eel genome.
简化基因组重测序,如限制性位点相关 DNA(RAD)测序,越来越多地被用于鉴定和分型模型和非模型物种中的大量单核苷酸多态性(SNP)。我们使用 RAD 测序方法为欧洲鳗鲡生成了独特的 SNP 标记资源,在对 30 个个体的全基因组扫描中同时进行了鉴定和评分。尽管该物种的基因组资源越来越丰富,包括最近发布的一个草案基因组,但直到现在还没有全基因组的 SNP 标记集。生成的 SNP 广泛分布在鳗鱼基因组中,与 4779 个不同的 contig 和 19703 个不同的支架对齐。鉴定出了显著的变异,个体间平均核苷酸多样性为 0.00529。结果在整个基因组中差异很大,每个位点的范围从 0.00048 到 0.00737。根据所有位点的平均核苷酸多样性,长期有效种群大小估计在 132000 到 1320000 之间,远高于以前基于微卫星位点的估计。包含 82425 个位点和 376918 个相关 SNP 的生成 SNP 资源为未来的群体遗传学和基因组学研究提供了有价值的工具,并允许针对特定基因和鳗鱼基因组中特别有趣的区域。