Grant Struan F A, Steinlicht Simone, Nentwich Ulrike, Kern Rainer, Burwinkel Barbara, Tolle Ralf
LION bioscience AG, Im Neuenheimer Feld 515-517, 69120 Heidelberg, Germany.
Nucleic Acids Res. 2002 Nov 15;30(22):e125. doi: 10.1093/nar/gnf125.
With the increasing demand for higher throughput single nucleotide polymorphism (SNP) genotyping, the quantity of genomic DNA often falls short of the number of assays required. We investigated the use of degenerate oligonucleotide primed polymerase chain reaction (DOP-PCR) to generate a template for our SNP genotyping methodology of fluorescence polarization template-directed dye-terminator incorporation detection. DOP-PCR employs a degenerate primer (5'-CCGACTCGAGNNNNNNATGTGG-3') to produce non-specific uniform amplification of DNA. This approach has been successfully applied to microsatellite genotyping. We compared genotyping of DOP-PCR-amplified genomic DNA to genomic DNA as a template. Results were analyzed with respect to feasibility, allele loss of alleles, genotyping accuracy and storage conditions in a high-throughput genotyping environment. DOP-PCR yielded overall satisfactory results, with a certain loss in accuracy and quality of the genotype assignments. Accuracy and quality of genotypes generated from the DOP-PCR template also depended on storage conditions. Adding carrier DNA to a final concentration of 10 ng/microl improved results. In conclusion, we have successfully used DOP-PCR to amplify our genomic DNA collection for subsequent SNP genotyping as a standard process.
随着对更高通量单核苷酸多态性(SNP)基因分型需求的增加,基因组DNA的数量常常无法满足所需检测的数量。我们研究了使用简并寡核苷酸引物聚合酶链反应(DOP-PCR)来为我们的荧光偏振模板导向染料终止子掺入检测的SNP基因分型方法生成模板。DOP-PCR使用简并引物(5'-CCGACTCGAGNNNNNNATGTGG-3')对DNA进行非特异性均匀扩增。该方法已成功应用于微卫星基因分型。我们将DOP-PCR扩增的基因组DNA基因分型与作为模板的基因组DNA进行了比较。在高通量基因分型环境中,就可行性、等位基因的等位基因丢失、基因分型准确性和储存条件对结果进行了分析。DOP-PCR产生了总体令人满意的结果,但基因型分配的准确性和质量有一定损失。由DOP-PCR模板产生的基因型的准确性和质量也取决于储存条件。将载体DNA添加到终浓度为10 ng/微升可改善结果。总之,我们已成功使用DOP-PCR扩增我们的基因组DNA文库,用于后续的SNP基因分型作为标准流程。