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High-throughput genotyping of intermediate-size structural variation.

机译:中型结构变异的高通量基因分型。

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The contribution of large-scale and intermediate-size structural variation (ISV) to human genetic disease and disease susceptibility is only beginning to be understood. The development of high-throughput genotyping technologies is one of the most critical aspects for future studies of linkage disequilibrium (LD) and disease association. Using a simple PCR-based method designed to assay the junctions of the breakpoints, we genotyped seven simple insertion and deletion polymorphisms ranging in size from 6.3 to 24.7 kb among 90 CEPH individuals. We then extended this analysis to a larger collection of samples (n=460) by application of an oligonucleotide extension-ligation genotyping assay. The analysis showed a high level of concordance ( approximately 99%) when compared with PCR/sequence-validated genotypes. Using the available HapMap data, we observed significant LD (r2=0.74-0.95) between each ISV and flanking single nucleotide polymorphisms, but this observation is likely to hold only for similar simple insertion/deletion events. The approach we describe may be used to characterize a large number of individuals in a cost-effective manner once the sequence organization of ISVs is known.
机译:大规模和中等规模的结构变异(ISV)对人类遗传疾病和疾病易感性的贡献才刚刚开始被理解。高通量基因分型技术的发展是对连锁不平衡(LD)和疾病关联的未来研究的最关键方面之一。使用设计用于分析断点连接的基于PCR的简单方法,我们对90个CEPH个体中7个简单的插入和缺失多态性进行了基因分型,大小从6.3到24.7 kb不等。然后,我们通过应用寡核苷酸延伸连接基因分型分析将该分析扩展到更大的样本集合(n = 460)。与PCR /序列验证的基因型相比,该分析显示出较高的一致性(约99%)。使用可用的HapMap数据,我们观察到每个ISV与侧翼单核苷酸多态性之间存在显着的LD(r2 = 0.74-0.95),但是这种观察可能仅适用于类似的简单插入/缺失事件。一旦已知ISV的序列组织,我们所描述的方法就可以以经济有效的方式用于表征大量个体。

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