a Department of Integrative Biology, University of Guelph, Guelph, ON N1G 2W1, Canada.
b Department of Fisheries and Oceans Canada, St. Andrews Biological Station, St. Andrews, NB E5B 2L9, Canada.
Genome. 2018 Jan;61(1):33-42. doi: 10.1139/gen-2017-0026. Epub 2017 Oct 16.
Little is known about the genetic architecture of traits important for salmonid restoration ecology. We mapped quantitative trait loci (QTL) using single nucleotide polymorphisms (SNPs) for juvenile body length, weight, shape, and vertical skin pigmentation patterns (parr marks) within three hybrid backcross families between European and North American subspecies of Atlantic salmon. Amounts of variation in skin colour and pattern quantified in the two second-generation transAtlantic families exceeded the ranges seen in purebred populations. GridQTL analyses using low-density female-specific linkage maps detected QTL showing experiment-wide significance on Ssa02, Ssa03, Ssa09, Ssa11, Ssa19, and Ssa26/28 for both length and weight; on Ssa04 and Ssa23 for parr mark number; on Ssa09 and Ssa13 for parr mark contrast; and on Ssa05, Ssa07, Ssa10, Ssa11, Ssa18, Ssa23, and Ssa26/28 for geometric morphometric shape coordinates. Pleiotrophic QTL on Ssa11 affected length, weight, and shape. No QTL was found that explained more than 10% of the phenotypic variance in pigmentation or shape traits. Each QTL was approximately positioned on the physical map of the Atlantic salmon genome. Some QTL locations confirmed previous studies but many were new. Studies like ours may increase the success of salmon restoration projects by enabling better phenotypic and genetic matching between introduced and extirpated strains.
关于对鲑鱼恢复生态学很重要的性状的遗传结构,我们知之甚少。我们使用单核苷酸多态性 (SNP) 对三个欧洲和北美的大西洋鲑亚种杂交回交家系的幼体体长、体重、体型和垂直皮肤色素模式 (幼鱼标记) 进行了数量性状位点 (QTL) 作图。在两个跨大西洋的第二代杂交家系中,量化的皮肤颜色和图案变异量超过了纯种种群的范围。使用低密度雌性特异性连锁图谱进行的 GridQTL 分析检测到了在 Ssa02、Ssa03、Ssa09、Ssa11、Ssa19 和 Ssa26/28 上对长度和体重具有全实验范围显著意义的 QTL;在 Ssa04 和 Ssa23 上对幼鱼标记数量有 QTL;在 Ssa09 和 Ssa13 上对幼鱼标记对比度有 QTL;在 Ssa05、Ssa07、Ssa10、Ssa11、Ssa18、Ssa23 和 Ssa26/28 上对几何形态形状坐标有 QTL。Ssa11 上的多效性 QTL 影响了长度、体重和体型。没有发现任何 QTL 可以解释色素或形状性状的表型变异超过 10%。每个 QTL 都大致位于大西洋鲑基因组的物理图谱上。一些 QTL 位置与先前的研究一致,但许多是新的。像我们这样的研究可以通过更好地在引入和灭绝种群之间进行表型和遗传匹配,提高鲑鱼恢复项目的成功率。