首页> 美国卫生研究院文献>Wiley-Blackwell Online Open >Single nucleotide polymorphisms in the insulin-like growth factor 1 (IGF1) gene are associated with growth-related traits in farmed Atlantic salmon
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Single nucleotide polymorphisms in the insulin-like growth factor 1 (IGF1) gene are associated with growth-related traits in farmed Atlantic salmon

机译:胰岛素样生长因子1(IGF1)基因中的单核苷酸多态性与养殖大西洋鲑鱼的生长相关性状相关

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摘要

Understanding the genetic basis of variation in traits related to growth and fillet quality in Atlantic salmon is of importance to the aquaculture industry. Several growth-related QTL have been identified via the application of genetic markers. The IGF1 gene is considered a highly conserved and crucial growth-regulating gene in salmonid species. However, the association between polymorphisms in the IGF1 gene and growth-related traits in Atlantic salmon is unknown. Therefore, in this study, regions of the Atlantic salmon IGF1 gene were sequenced, aligned and compared across individuals. Three SNPs were identified in the putative promoter (SNP1, g.5763G>T; GenBank no. ), intron 1 (SNP2, g.7292C>T; GenBank no. ) and intron 3 (SNP3, g.4671A>C; GenBank no. ) regions respectively. These SNPs were genotyped in a population of 4800 commercial Atlantic salmon with data on several weight and fillet traits measured at harvest (at approximately 3 years of age). In a mixed model, association analysis of individual SNPs, SNP1 and SNP3 were both significantly associated with several weight traits (P < 0.05). The estimated additive effect on overall harvest weight was approximately 35 and 110 g for SNPs 1 and 3 respectively. A haplotype analysis confirmed the association between genetic variation in the IGF1 gene with overall body weight (P < 0.05) and fillet component traits (P < 0.05). Our findings suggest the identified nucleotide polymorphisms of the IGF1 gene may either affect farmed Atlantic salmon growth directly or be in population-wide linkage disequilibrium with causal variation, highlighting their possible utility as candidates for marker-assisted selection in the aquaculture industry.
机译:了解大西洋鲑鱼生长和鱼片质量相关性状变异的遗传基础对水产养殖业至关重要。通过应用遗传标记已鉴定出几种与生长相关的QTL。 IGF1基因被认为是鲑鱼物种中高度保守且至关重要的生长调节基因。然而,IGF1基因多态性与大西洋鲑鱼生长相关性状之间的关联尚不清楚。因此,在这项研究中,对大西洋鲑鱼IGF1基因的各个区域进行了测序,比对和比较。在推定的启动子(SNP1,g.5763G> T; GenBank号),内含子1(SNP2,g.7292C> T; GenBank号)和内含子3(SNP3,g.4671A> C; GenBank)中鉴定出三个SNP号)区域。这些SNP在4800头商业大西洋鲑鱼种群中进行了基因分型,并提供了收获时(大约3岁时)测得的几种体重和鱼片性状的数据。在混合模型中,单个SNP,SNP1和SNP3的关联分析均与多种体重特征显着相关(P <0.05)。 SNP 1和3估计对总收成重量的累加效应分别约为35和110 g。单倍型分析证实了IGF1基因的遗传变异与整体体重(P <0.05)和鱼片成分性状(P <0.05)之间的关联。我们的发现表明,已鉴定的IGF1基因核苷酸多态性可能会直接影响养殖大西洋鲑鱼的生长,或者可能因因果关系导致群体连锁不平衡,从而突显了它们在水产养殖业中作为标记辅助选择的可能用途。

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