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Linkage disequilibrium over short physical distances measured in sheep using a high-density SNP chip

机译:使用高密度SNP芯片在绵羊中测量的短距离物理距离上的连锁不平衡

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摘要

The extent of linkage disequilibrium (LD) between genetic loci has implications for both association studies and the accuracy of genomic prediction. To characterise the persistence of LD in diverse sheep breeds, two SNP genotyping platforms were used. First, existing SNP genotypes from 63 breeds obtained using the ovine SNP50 BeadChip (49034 loci) were used to estimate LD decay in populations with contrasting levels of genetic diversity. Given the paucity of marker pairs separated by short physical distances on the SNP50 BeadChip, genotyping was subsequently performed for four breeds using the recently developed ovine HD BeadChip that assays approximately 600000 SNPs with an average genomic spacing of 5 kb. This facilitated a highly accurate estimate of LD over short genomic distances (<30kb) and revealed LD varies considerably between sheep breeds. Further, sheep appear to contain generally lower levels of LD than do other domestic species, likely a reflection of aspects of their past population history
机译:遗传基因座之间的连锁不平衡(LD)的程度对关联研究和基因组预测的准确性都有影响。为了表征LD在不同绵羊品种中的持久性,使用了两个SNP基因分型平台。首先,使用绵羊SNP50 BeadChip(49034个位点)获得的来自63个品种的现有SNP基因型被用于估计遗传多样性水平相反的种群中的LD衰变。鉴于在SNP50 BeadChip上缺乏短距离物理距离的标记对,随后使用最新开发的绵羊HD BeadChip对四个品种进行了基因分型,可检测约600000个SNP,平均基因组间隔为5 kb。这促进了在短基因组距离(<30kb)上对LD的高度准确估计,并揭示了绵羊品种之间的LD差异很大。此外,绵羊的LD水平普遍低于其他本地物种,这可能反映了其过去种群历史的某些方面

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