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Mapping quantitative trait loci for infectious salmon anaemia resistance in a North American strain of Atlantic salmon

机译:大西洋三文治区北美拉力中传染性鲑鱼贫血抗性的定量特征基因座

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Infectious salmon anaemia (ISA) is a highly virulent viral disease of Atlantic salmon that causes massive economic losses to infected aquaculture operations. Our goal was to detect and map quantitative trait loci (QTL) that confer resistance to ISA in an admixed commercial strain of Atlantic salmon that was largely founded from the Saint John River (SJR) in North America. Full-sibling families were challenged with a virulent strain of ISA virus. Mortality was tracked during two annual trials with individual fish that survived to the end of the trial being classified as 'resistant', and those that died were classified as 'susceptible'. Ten families with intermediate levels of mortality and an average size of 54.2 individuals were chosen for genotyping with a 50K SNP array designed for the SJR strain. Single nucleotide polymorphisms that were segregating within families were first used to make a composite 11K female linkage map that was then used to find the positions of QTL for ISA resistance using a half-sib model. The dam-based HS model detected a total of three QTL for ISA resistance including an experiment-wide significant QTL on Ssa25 that accounted for 8.3% of the phenotypic variance and chromosome-wide significant QTL on Ssa03 and on Ssa04 that accounted for 6.0% and 6.6% respectively. We conclude that classic linkage mapping within families continues to be an important method of detecting QTL for oligogenic traits in strains founded from multiple populations. Single nucleotide polymorphisms with moderate trait effects are being used to select within families for more ISA-resistant strains of Atlantic salmon.
机译:传染性鲑鱼贫血(ISA)是大西洋鲑鱼的高毒性病毒疾病,导致受感染的水产养殖业务的大规模经济损失。我们的目标是检测和映射赋予抵制ISA的定量特质基因座(QTL),该鲑鱼的大西洋鲑鱼的混合商业紧张群体主要是从北美圣约翰河(SJR)的基础上。全兄弟家庭因毒性的ISA病毒而受到挑战。在两个年度审判中被履行了死亡率,这些鱼类的个人鱼类幸存到审判的结束时被归类为“抗拒”,那些死亡的人被归类为“易感”。选择具有中间死亡率水平的十个家庭和54.2个体的平均大小,用于使用为SJR菌株设计的50k SNP阵列进行基因分型。首先使用在家族内进行偏析的单核苷酸多态性,以制备复合11K骨键,然后使用半SIB模型来找到QTL的QTL的位置。基于大坝的HS模型对ISA电阻的总共检测到了三个QTL,包括SSA25上的实验显着QTL,其占SSA03和SSA04上的表型方差和染色体型显着QTL的8.3%,占SSA04的6.0%分别为6.6%。我们得出结论,家庭中的经典联动映射仍然是检测从多种群体创建的菌株中的抑制QTL的重要方法。具有中等特征效果的单核苷酸多态性用于在家庭内选择用于更多的大西洋鲑鱼的抗性菌株。

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