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A Polymorphism in the 5′-Untranslated Region of the Porcine Cholecystokinin Type A Receptor Gene Affects Feed Intake and Growth

机译:猪胆囊收缩素A型受体基因5-非翻译区的多态性影响饲料的摄入和生长

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摘要

The location and utilization of quantitative trait loci (QTL) and candidate genes with significant effects on economically important traits are becoming increasingly important in livestock breeding programs. The porcine cholecystokinin type A receptor (CCKAR) is a candidate gene for performance traits, due to its known role in the physiological control of feed intake, satiety, and obesity. We investigated the association of CCKAR polymorphisms with feeding, growth, and efficiency traits in an F2 population derived from a cross between Meishan and Large White founder animals and in lines of Large White pigs that had been divergently selected on the basis of lean growth efficiency traits. In the F2 population, CCKAR genotype was significantly associated with daily feed intake and average daily gain. The effects of the polymorphisms were then assessed in a larger-scale analysis of segregating commercial lines. A newly discovered single-nucleotide polymorphism (SNP) within the 5′-untranslated region (5′-UTR) had highly significant effects on feed intake, average daily gain, and days to 110 kg, which were not seen for a previously reported SNP within the CCKAR gene. Furthermore, we provide evidence that the novel SNP disrupts the binding of the YY1 transcription factor, which raises the possibility that it is the causal variant. The 5′-UTR SNP could be utilized as a molecular genetic test for increased feed intake, faster lean growth, and reduced days to market weight in segregating commercial lines.
机译:在牲畜育种计划中,数量性状基因位点(QTL)和候选基因对经济上重要的性状具有重要影响的位置和利用正变得越来越重要。猪A型胆囊收缩素受体(CCKAR)是一种表现性状的候选基因,这是由于其在饲料采食,饱腹感和肥胖症的生理控制中的已知作用。我们调查了CCKAR多态性与梅山猪与大白创始动物之间的杂交以及根据瘦肉生长效率性状不同选择的大白猪的F2群体的摄食,生长和效率性状之间的关系。在F2人群中,CCKAR基因型与每日采食量和平均日增重显着相关。然后在分离的商业品系的大规模分析中评估了多态性的影响。在5'-非翻译区(5'-UTR)内新发现的单核苷酸多态性(SNP)对采食量,平均日增重和110 kg的天数具有非常显着的影响,这在以前报道的SNP中没有发现在CCKAR基因中。此外,我们提供了新的SNP破坏YY1转录因子结合的证据,这增加了它是因果变异的可能性。 5'-UTR SNP可以用作分子遗传学测试,以提高饲料采食量,更快的瘦肉生长以及在分离商业品系中缩短上市天数。

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