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Genome-wide association study for feed efficiency in collective cage-raised rabbits under full and restricted feeding

机译:全基因组协会饲料效率的饲料效率,充分限制饲料饲养兔子

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Feed efficiency (FE) is one of the most economically and environmentally relevant traits in the animal production sector. The objective of this study was to gain knowledge about the genetic control of FE in rabbits. To this end, GWASs were conducted for individual growth under two feeding regimes (full feeding and restricted) and FE traits collected from cage groups, using 114 604 autosome SNPs segregating in 438 rabbits. Two different models were implemented: (1) an animal model with a linear regression on each SNP allele for growth trait; and (2) a two-trait animal model, jointly fitting the performance trait and each SNP allele content, for FE traits. This last modeling strategy is a new tool applied to GWAS and allows information to be considered from non-genotyped individuals whose contribution is relevant in the group average traits. A total of 189 SNPs in 17 chromosomal regions were declared to be significantly associated with any of the five analyzed traits at a chromosome-wide level. In 12 of these regions, 20 candidate genes were proposed to explain the variation of the analyzed traits, including genes such asFTO,NDUFAF6andCEBPApreviously associated with growth and FE traits in monogastric species. Candidate genes associated with behavioral patterns were also identified. Overall, our results can be considered as the foundation for future functional research to unravel the actual causal mutations regulating growth and FE in rabbits.
机译:饲料效率(FE)是动物生产领域中最经济和环境相关的性状之一。本研究的目的是了解对兔子的Fe遗传控制的知识。为此,在两种饲养制度下进行个体生长(从笼子组收集的饲料组收集的Fe特征,使用114604兔子,进行Gwass,以438只兔子分离。实施了两种不同的模型:(1)一种具有线性回归的动物模型,用于生长特征的每个SNP等位基因; (2)双特征动物模型,共同拟合绩效特征和每种SNP等位基因含量,用于Fe特征。最后建模策略是应用于GWA的新工具,允许从非基因分类的个体中考虑的信息,其贡献在群体平均性状性状相关。在染色体全水平下,共有18个染色体区域中共有189个SNP与任何五种分析的性状显着相关。在这些区域中的12个中,提出了20个候选基因来解释分析的性状的变异,包括诸如FFTO,Ndufaf6AndceBpapReveprebrebreveblebreveblebreve,与单一动物中的​​生长和Fe特征相关。还确定了与行为模式相关的候选基因。总体而言,我们的结果可被视为未来功能研究的基础,以解开调节兔子的实际因果突变的实际因果突变。

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