Abstract
Whole genome amplification (WGA) procedures such as primer extension preamplification (PEP) or multiple displacement amplification (MDA) have the potential to provide an unlimited source of DNA for large-scale genetic studies. We have performed a quantitative evaluation of PEP and MDA for genotyping single nucleotide polymorphisms (SNPs) using multiplex, four-color fluorescent minisequencing in a microarray format. Forty-five SNPs were genotyped and the WGA methods were evaluated with respect to genotyping success, signal-to-noise ratios, power of genotype discrimination, yield and imbalanced amplification of alleles in the MDA product. Both PEP and MDA products provided genotyping results with a high concordance to genomic DNA. For PEP products the power of genotype discrimination was lower than for MDA due to a 2-fold lower signal-to-noise ratio. MDA products were indistinguishable from genomic DNA in all aspects studied. To obtain faithful representation of the SNP alleles at least 0.3 ng DNA should be used per MDA reaction. We conclude that the use of WGA, and MDA in particular, is a highly promising procedure for producing DNA in sufficient amounts even for genome wide SNP mapping studies.
MeSH Terms
Alleles
Genome, Human
Genotype
Humans
Oligonucleotide Array Sequence Analysis/methods
Polymorphism, Single Nucleotide/genetics
Sensitivity and Specificity
Sequence Analysis, DNA/methods
Templates, Genetic
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
Lovmar Lovisa
Molecular Medicine, Department of Medical Sciences, Entrance 70, 3rd Floor, Research Department 2, Uppsala University Hospital, SE-75185 Uppsala, Sweden.
Fredriksson Mona
Liljedahl Ulrika
Sigurdsson Snaevar
Syvänen Ann-Christine
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