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A genome-wide association study of growth and fatness traits in two pig populations with different genetic backgrounds

机译:全基因组关联研究不同遗传背景的两个猪种群的生长和脂肪性状

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摘要

Improvement in growth and fatness traits are the main objectives in pig all breeding programs. Tenth rib backfat thickness (>10RIBBFT) and days to 100 kg (>D100), which are good predictors of carcass lean content and growth rate, respectively, are economically important traits and also main breeding target traits in pigs. To investigate the genetic mechanisms of 10RIBBFT and D100 of pigs, we sampled 1,137 and 888 pigs from 2 Yorkshire populations of American and British origin, respectively, and conducted genome-wide association study (>GWAS) through combined analysis and meta-analysis, to identify SNPs associated with 10RIBBFT and D100. A total of 11 and 7 significant SNPs were identified by combined analysis for 10RIBBFT and D100, respectively. And in meta-analysis, 8 and 7 significant SNPs were identified for 10RIBBFT and D100, respectively. Among them, 6 and 5 common significant SNPs in two analysis results were, respectively, identified associated with 10RIBBFT and D100, and correspondingly explained 2.09% and 0.52% of the additive genetic variance of 10RIBBFT and D100. Further bioinformatics analysis revealed 10 genes harboring or close to these common significant SNPs, 5 for 10RIBBFT and 5 for D100. In particular, Gene Ontology analysis highlighted 6 genes, PCK1, ANGPTL3, EEF1A2, TNFAIP8L3, PITX2, and PLA2G12, as promising candidate genes relevant with backfat thickness and growth. PCK1, ANGPTL3, EEF1A2, and TNFAIP8L3 could influence backfat thickness through phospholipid transport, regulation of lipid metabolic process through the glycerophospholipid biosynthesis and metabolism pathway, the metabolism of lipids and lipoproteins pathway. PITX2 has a crucial role in skeletal muscle tissue development and animal organ morphogenesis, and PLA2G12A plays a role in the lipid catabolic and phospholipid catabolic processes, which both are involved in the body weight pathway. All these candidate genes could directly or indirectly influence fat production and growth in Yorkshire pigs. Our findings provide novel insights into the genetic basis of growth and fatness traits in pigs. The candidate genes for D100 and 10RIBBFT are worthy of further investigation.
机译:生长和脂肪性状的改善是所有猪育种计划的主要目标。第十肋骨后脂肪厚度(> 10RIBBFT )和100公斤的天数(> D100 )分别是car体瘦肉含量和生长速率的良好预测指标,是重要的经济特征,也是猪的主要繁殖目标性状。为了研究猪的10RIBBFT和D100的遗传机制,我们分别从2个美国和英国血统的约克郡种群中取样了1,137和888头猪,并通过组合分析进行了全基因组关联研究(> GWAS )和荟萃分析,以鉴定与10RIBBFT和D100相关的SNP。通过对10RIBBFT和D100的组合分析,分别鉴定出总共11个和7个重要SNP。在荟萃分析中,分别为10RIBBFT和D100鉴定了8个和7个重要的SNP。其中,在两个分析结果中分别确定了6个和5个共同的重要SNP与10RIBBFT和D100相关,并分别解释了10RIBBFT和D100的累加遗传方差的2.09%和0.52%。进一步的生物信息学分析显示,有10个具有或接近这些常见重要SNP的基因,其中10个RIBBFT为5个,D100为5个。特别是,基因本体分析强调了6个基因,即PCK1,ANGPTL3,EEF1A2,TNFAIP8L3,PITX2和PLA2G12,它们是与背脂厚度和生长相关的有前途的候选基因。 PCK1,ANGPTL3,EEF1A2和TNFAIP8L3可以通过磷脂转运,通过甘油磷脂生物合成和代谢途径调节脂质代谢过程,通过脂质和脂蛋白途径代谢来影响后脂肪厚度。 PITX2在骨骼肌组织发育和动物器官形态发生中起关键作用,而PLA2G12A在脂质分解代谢和磷脂分解代谢过程中均起作用,这两个过程均与体重途径有关。所有这些候选基因都可以直接或间接影响约克郡猪的脂肪生产和生长。我们的发现为猪的生长和脂肪性状的遗传基础提供了新颖的见解。 D100和10RIBBFT的候选基因值得进一步研究。

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