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SIRT1 gene polymorphisms are associated with growth traits in Nanyang cattle

生物 单核苷酸多态性 单倍型 遗传学 连锁不平衡 SNP公司 等位基因 核苷酸多型性 SNP基因分型 候选基因 遗传关联 基因 基因型
作者
Mingxun Li,Xiaomei Sun,Liushuai Hua,Xinsheng Lai,Xianyong Lan,Chuzhao Lei,Chunlei Zhang,Xinglei Qi,Hong Chen
出处
期刊:Molecular and Cellular Probes [Elsevier BV]
卷期号:27 (5-6): 215-220 被引量:35
标识
DOI:10.1016/j.mcp.2013.07.002
摘要

Growth is under complex genetic control and uncovering the molecular mechanisms how the genes and polymorphisms affect economic growth traits, are important for successful marker-assisted selection and more efficient management strategies in commercial cattle populations. SIRT1 is a NAD+-dependent deacetylase that belongs to the class III histone deacetylases. It plays an important role in numerous fundamental cellular processes including gene silencing, DNA repair, and metabolic regulation. In addition, SIRT1 acts as an inhibitor of adipogenesis and has been associated with body weight regulation. The objective of the present study was to identify single nucleotide polymorphisms (SNPs) of bovine SIRT1 using 1255 animals representing the five main Chinese breeds and to determine if these SNPs are associated with economically important traits in Nanyang cattle. The approach consisted of resequencing SIRT1 using a panel of DNA from unrelated animals of five different breeds and the process revealed five novel SNPs. SNPs g.17324T>C and g.17491G>A exhibited a high degree of linkage disequilibrium in all tested breeds. Seven major haplotypes accounting for 91.2% of the alleles were observed and the haplotype 'GCCGA' was the most common haplotype in NY, QC, LX and JX breeds. An association analysis was performed between the five SNPs and six performance traits. SNP g.-274C>G was demonstrated to have a strong effect on 24-months-old body weight and g.17379A>G polymorphism was related to 6 and 12-months-old body weight in NY population, although these effects did not remained significant after the Bonferroni correction. Our results provide evidence that polymorphisms in SIRT1 are associated with growth efficiency traits, and may be used for marker-assisted selection and management in feedlot cattle.
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