Efficiency Correction Is Required for Accurate Quantitative PCR Analysis and Reporting

Author:

Ruijter Jan M1,Barnewall Rebecca J23,Marsh Ian B4,Szentirmay Andrew N5,Quinn Jane C23,van Houdt Robin6,Gunst Quinn D1,van den Hoff Maurice J B1

Affiliation:

1. Department of Medical Biology, Amsterdam University Medical Centres, Location Academic Medical Center, Amsterdam, the Netherlands

2. School of Animal and Veterinary Sciences, Charles Sturt University, Wagga Wagga, NSW, Australia

3. NSW Department of Primary Industries), Graham Centre for Agricultural Innovation, Charles Sturt University, Wagga Wagga, NSW, Australia

4. New South Wales Department of Primary Industries, Elizabeth Macarthur Agricultural Institute, Narellan, NSW, Australia

5. Gene Target Solutions, Dural, NSW, Australia

6. Department of Medical Microbiology and Infection Prevention, Amsterdam University Medical Centres, Amsterdam, the Netherlands

Abstract

Abstract Background Quantitative PCR (qPCR) aims to measure the DNA or RNA concentration in diagnostic and biological samples based on the quantification cycle (Cq) value observed in the amplification curves. Results of qPCR experiments are regularly calculated as if all assays are 100% efficient or reported as just Cq, ΔCq, or ΔΔCq values. Contents When the reaction shows specific amplification, it should be deemed to be positive, regardless of the observed Cq. Because the Cq is highly dependent on amplification efficiency that can vary among targets and samples, accurate calculation of the target quantity and relative gene expression requires that the actual amplification efficiency be taken into account in the analysis and reports. PCR efficiency is frequently derived from standard curves, but this approach is affected by dilution errors and hampered by properties of the standard and the diluent. These factors affect accurate quantification of clinical and biological samples used in diagnostic applications and collected in challenging conditions. PCR efficiencies determined from individual amplification curves avoid these confounders. To obtain unbiased efficiency-corrected results, we recommend absolute quantification with a single undiluted calibrator with a known target concentration and efficiency values derived from the amplification curves of the calibrator and the unknown samples. Summary For meaningful diagnostics or biological interpretation, the reported results of qPCR experiments should be efficiency corrected. To avoid ambiguity, the Minimal Information for Publications on Quantitative Real-Time PCR Experiments (MIQE) guidelines checklist should be extended to require the methods that were used (1) to determine the PCR efficiency and (2) to calculate the reported target quantity and relative gene expression value.

Funder

Meat and Livestock Australia Donor Company

Publisher

Oxford University Press (OUP)

Subject

Biochemistry, medical,Clinical Biochemistry

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