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Bias in Template-to-Product Ratios in Multitemplate PCR

Applied and Environmental Microbiology · 1998 · Vol. 64(10) · pp. 3724–3730
Martin F. PolzColleen M. Cavanaugh

Abstract

Bias introduced by the simultaneous amplification of specific genes from complex mixtures of templates remains poorly understood. To explore potential causes and the extent of bias in PCR amplification of 16S ribosomal DNAs (rDNAs), genomic DNAs of two closely and one distantly related bacterial species were mixed and amplified with universal, degenerate primers. Quantification and comparison of template and product ratios showed that there was considerable and reproducible overamplification of specific templates. Variability between replicates also contributed to the observed bias but in a comparatively minor way. Based on these initial observations, template dosage and differences in binding energies of permutations of the degenerate, universal primers were tested as two likely causes of this template-specific bias by using 16S rDNA templates modified by site-directed mutagenesis. When mixtures of mutagenized templates containing AT- and GC-rich priming sites were used, templates containing the GC-rich permutation amplified with higher efficiency, indicating that different primer binding energies may to a large extent be responsible for overamplification. In contrast, gene copy number was found to be an unlikely cause of the observed bias. Similarly, amplification from DNA extracted from a natural community to which different amounts of genomic DNA of a single bacterial species were added did not affect relative product ratios. Bias was reduced considerably by using high template concentrations, by performing fewer cycles, and by mixing replicate reaction preparations.

Molecular Biology Techniques and ApplicationsAdvanced biosensing and bioanalysis techniquesCRISPR and Genetic EngineeringTemplateBiologyPrimer (cosmetics)GeneticsDNAGenePolymerase chain reactiongenomic DNAGC-contentReplicate

MeSH terms

Bacillus subtilisBase SequenceDNA, RibosomalEscherichia coliRNA, Ribosomal, 16SSensitivity and SpecificitySequence Homology, Nucleic AcidTemplates, GeneticVibrioReproducibility of ResultsOligonucleotide ProbesPolymerase Chain ReactionMutagenesisSequence AlignmentDNA Primers
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References
16S/23S rRNA sequencing
Medical Entomology and Zoology · 1991 · 7,957 citations
High diversity in DNA of soil bacteria
Applied and Environmental Microbiology · 1990 · 1,759 citations
Bias caused by template annealing in the amplification of mixtures of 16S rRNA genes by PCR
Applied and Environmental Microbiology · 1996 · 1,890 citations
Cold Spring Harbor Laboratory; Cold Spring Harbor, NY
FEBS Letters · 1980 · 6,313 citations
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