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使用Affymetrix 500 K基因芯片对颊部与血液基因组DNA进行质量评估。

Quality assessment of buccal versus blood genomic DNA using the Affymetrix 500 K GeneChip.

作者信息

Woo Jessica G, Sun Guangyun, Haverbusch Mary, Indugula Subbarao, Martin Lisa J, Broderick Joseph P, Deka Ranjan, Woo Daniel

机构信息

University of Cincinnati College of Medicine, 321 Albert Sabin Way, Cincinnati, OH 45267, USA.

出版信息

BMC Genet. 2007 Nov 8;8:79. doi: 10.1186/1471-2156-8-79.

Abstract

BACKGROUND

With the advent of genome-wide genotyping, the utility of stored buccal brushes for DNA extraction and genotyping has been questioned. We sought to describe the genomic DNA yield and concordance between stored buccal brushes and blood samples from the same individuals in the context of Affymetrix 500 K Human GeneChip genotyping.

RESULTS

Buccal cytobrushes stored for approximately 7 years at -80 degrees C prior to extraction yielded sufficient double stranded DNA (dsDNA) to be successfully genotyped on the Affymetrix approximately 262 K NspI chip, with yields between 536 and 1047 ng dsDNA. Using the BRLMM algorithm, genotyping call rates for blood samples averaged 98.4%, and for buccal samples averaged 97.8%. Matched blood samples exhibited 99.2% concordance, while matched blood and buccal samples exhibited 98.8% concordance.

CONCLUSION

Buccal cytobrushes stored long-term result in sufficient dsDNA concentrations to achieve high genotyping call rates and concordance with stored blood samples in the context of Affymetrix 500 K SNP genotyping. Thus, given high-quality collection and storage protocols, it is possible to use stored buccal cytobrush samples for genome-wide association studies.

摘要

背景

随着全基因组基因分型技术的出现,人们对储存的口腔刷用于DNA提取和基因分型的效用提出了质疑。我们试图在Affymetrix 500K人类基因芯片基因分型的背景下,描述储存的口腔刷与来自同一受试者的血液样本之间的基因组DNA产量及一致性。

结果

在提取前于-80℃储存约7年的口腔细胞刷产生了足够的双链DNA(dsDNA),能够在Affymetrix约262K NspI芯片上成功进行基因分型,dsDNA产量在536至1047ng之间。使用BRLMM算法,血液样本的基因分型检出率平均为98.4%,口腔样本平均为97.8%。匹配的血液样本一致性为99.2%,而匹配的血液和口腔样本一致性为98.8%。

结论

在Affymetrix 500K SNP基因分型的背景下,长期储存的口腔细胞刷可产生足够的dsDNA浓度,以实现较高的基因分型检出率,并与储存的血液样本保持一致。因此,在高质量的采集和储存方案下,有可能使用储存的口腔细胞刷样本进行全基因组关联研究。

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