Yáñez J M, Naswa S, López M E, Bassini L, Correa K, Gilbey J, Bernatchez L, Norris A, Neira R, Lhorente J P, Schnable P S, Newman S, Mileham A, Deeb N, Di Genova A, Maass A
Faculty of Veterinary and Animal Sciences, University of Chile, Av. Santa Rosa 11735, Santiago, Chile.
Aquainnovo, Talca 60, Puerto Montt, Chile.
Mol Ecol Resour. 2016 Jul;16(4):1002-11. doi: 10.1111/1755-0998.12503. Epub 2016 Mar 1.
A considerable number of single nucleotide polymorphisms (SNPs) are required to elucidate genotype-phenotype associations and determine the molecular basis of important traits. In this work, we carried out de novo SNP discovery accounting for both genome duplication and genetic variation from American and European salmon populations. A total of 9 736 473 nonredundant SNPs were identified across a set of 20 fish by whole-genome sequencing. After applying six bioinformatic filtering steps, 200 K SNPs were selected to develop an Affymetrix Axiom(®) myDesign Custom Array. This array was used to genotype 480 fish representing wild and farmed salmon from Europe, North America and Chile. A total of 159 099 (79.6%) SNPs were validated as high quality based on clustering properties. A total of 151 509 validated SNPs showed a unique position in the genome. When comparing these SNPs against 238 572 markers currently available in two other Atlantic salmon arrays, only 4.6% of the SNP overlapped with the panel developed in this study. This novel high-density SNP panel will be very useful for the dissection of economically and ecologically relevant traits, enhancing breeding programmes through genomic selection as well as supporting genetic studies in both wild and farmed populations of Atlantic salmon using high-resolution genomewide information.
需要大量的单核苷酸多态性(SNP)来阐明基因型与表型的关联,并确定重要性状的分子基础。在这项研究中,我们开展了从头SNP发现工作,同时考虑了基因组复制以及美洲和欧洲鲑鱼种群的遗传变异。通过全基因组测序,在一组20条鱼中总共鉴定出9736473个非冗余SNP。经过六个生物信息学过滤步骤后,选择了20万个SNP来开发Affymetrix Axiom(®)定制芯片。该芯片用于对代表来自欧洲、北美和智利的野生和养殖鲑鱼的480条鱼进行基因分型。基于聚类特性,总共159099个(79.6%)SNP被验证为高质量。总共151509个经过验证的SNP在基因组中显示出独特的位置。当将这些SNP与目前另外两种大西洋鲑鱼芯片中可用的238572个标记进行比较时,只有4.6%的SNP与本研究开发的面板重叠。这种新型的高密度SNP面板对于剖析经济和生态相关性状、通过基因组选择加强育种计划以及利用高分辨率全基因组信息支持大西洋鲑鱼野生和养殖种群的遗传研究将非常有用。