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北美纯血马频发运动性横纹肌溶解症的遗传图谱定位。

Genetic mapping of recurrent exertional rhabdomyolysis in a population of North American Thoroughbreds.

机构信息

Department of Veterinary and Biomedical Sciences, College of Veterinary Medicine, University of Minnesota, Saint Paul, MN 55108, USA.

出版信息

Anim Genet. 2012 Dec;43(6):730-8. doi: 10.1111/j.1365-2052.2012.02351.x. Epub 2012 Mar 23.

Abstract

Recurrent exertional rhabdomyolysis is a heritable disorder that results in painful skeletal muscle cramping with exercise in up to 10% of all Thoroughbred racehorses. Here, we report a genome-wide association study with 48 282 SNPs analyzed among 48 case and 37 control Thoroughbreds. The most significant SNPs spanned approximately 13 Mb on ECA16, and the P-value of the most significant SNP after correcting for population structure was 8.0 × 10(-6) . This region on ECA16 was further evaluated by genotyping 247 SNPs in both the initial population and a second population of 34 case and 98 control Thoroughbreds. Several SNPs across the 13-Mb region on ECA16 showed significance when each population was analyzed separately; however, the exact positions of the most significant SNPs within this region on ECA16 varied between populations. This variability in location may be attributed to lack of power owing to insufficient sample sizes within each population individually, or to the relative distribution of long, conserved haplotypes, characteristic of the Thoroughbred breed. Future genome-wide association studies with additional horses would likely improve the power to resolve casual loci located on ECA16 and increase the likelihood of detecting any additional loci on other chromosomes contributing to disease susceptibility.

摘要

复发性运动性横纹肌溶解症是一种遗传性疾病,在所有纯种赛马中多达 10%的赛马会在运动时出现疼痛性骨骼肌痉挛。在这里,我们报告了一项全基因组关联研究,在 48 例病例和 37 例对照纯种马中分析了 48282 个 SNP。最显著的 SNP 跨越 ECA16 约 13 Mb,在校正群体结构后,最显著 SNP 的 P 值为 8.0×10(-6)。ECA16 上的这个区域进一步通过对初始群体和第二个群体中的 247 个 SNP 进行基因分型来评估,该群体包括 34 个病例和 98 个对照纯种马。当分别分析每个群体时,ECA16 上的 13 Mb 区域中的多个 SNP 显示出显著性;然而,在 ECA16 上这个区域内最显著 SNP 的确切位置在群体之间有所不同。这种位置的可变性可能归因于每个群体内样本量不足导致的缺乏效力,或者归因于长的、保守的单倍型的相对分布,这是纯种马品种的特征。未来与更多马匹进行全基因组关联研究,可能会提高解析位于 ECA16 上的因果基因座的效力,并增加检测其他染色体上任何导致疾病易感性的额外基因座的可能性。

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