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Technical Reproducibility of Genotyping SNP Arrays Used in Genome-Wide Association Studies

机译:sNp基因分型阵列中使用的全基因组关联分析技术再现

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摘要

During the last several years, high-density genotyping SNP arrays have facilitated genome-wide association studies (GWAS) that successfully identified common genetic variants associated with a variety of phenotypes. However, each of the identified genetic variants only explains a very small fraction of the underlying genetic contribution to the studied phenotypic trait. Moreover, discordance observed in results between independent GWAS indicates the potential for Type I and II errors. High reliability of genotyping technology is needed to have confidence in using SNP data and interpreting GWAS results. Therefore, reproducibility of two widely genotyping technology platforms from Affymetrix and Illumina was assessed by analyzing four technical replicates from each of the six individuals in five laboratories. Genotype concordance of 99.40% to 99.87% within a laboratory for the sample platform, 98.59% to 99.86% across laboratories for the same platform, and 98.80% across genotyping platforms was observed. Moreover, arrays with low quality data were detected when comparing genotyping data from technical replicates, but they could not be detected according to venders’ quality control (QC) suggestions. Our results demonstrated the technical reliability of currently available genotyping platforms but also indicated the importance of incorporating some technical replicates for genotyping QC in order to improve the reliability of GWAS results. The impact of discordant genotypes on association analysis results was simulated and could explain, at least in part, the irreproducibility of some GWAS findings when the effect size (i.e. the odds ratio) and the minor allele frequencies are low.
机译:在最近几年中,高密度基因分型SNP阵列促进了全基因组关联研究(GWAS),该研究成功地鉴定了与多种表型相关的常见遗传变异。然而,每个鉴定出的遗传变异仅解释了对研究表型性状的潜在遗传贡献的很小一部分。此外,在独立的GWAS之间的结果中观察到的不一致表明了I型和II型错误的可能性。需要基因分型技术的高度可靠性,才能对使用SNP数据和解释GWAS结果有信心。因此,通过分析来自五个实验室的六个人中每个人的四个技术复制品,评估了Affymetrix和Illumina的两个广泛的基因分型技术平台的可重复性。在实验室中,样本平台的基因型一致性为99.40%至99.87%,同一平台的实验室间的基因型一致性为98.59%至99.86%,在基因分型平台上的基因型一致性为98.80%。此外,在比较技术复制品的基因分型数据时,发现了质量低劣的阵列,但根据供应商的质量控制(QC)建议无法检测到。我们的结果证明了目前可用的基因分型平台的技术可靠性,但同时也表明了将某些技术复制品用于基因分型QC的重要性,以提高GWAS结果的可靠性。模拟了不一致基因型对关联分析结果的影响,至少可以部分解释当效应大小(即优势比)和次要等位基因频率较低时,某些GWAS发现的不可重复性。

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