Literature DB >> 16447995

Automated validation of polymerase chain reactions using amplicon melting curves.

Tobias P Mann1, Richard Humbert, John A Stamatoyannopolous, William Stafford Noble.   

Abstract

PCR, the polymerase chain reaction, is a fundamental tool of molecular biology. Quantitative PCR is the gold-standard methodology for determination of DNA copy numbers, quantitating transcription, and numerous other applications. A major barrier to large-scale application of PCR for quantitative genomic analyses is the current requirement for manual validation of individual PCR reactions to ensure generation of a single product. This typically requires visual inspection either of gel electrophoreses or temperature dissociation ("melting") curves of individual PCR reactions - a time-consuming and costly process. Here we describe a robust computational solution to this fundamental problem. Using a training set of 10,080 reactions comprising multiple quantitative PCR reactions from each of 1,728 unique human genomic amplicons, we developed a support vector machine classifier capable of discriminating single-product PCR reactions with better than 99% accuracy. This approach has broad utility, and eliminates a major bottleneck to widespread application of PCR for high-throughput genomic applications.

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Year:  2005        PMID: 16447995     DOI: 10.1109/csb.2005.17

Source DB:  PubMed          Journal:  Proc IEEE Comput Syst Bioinform Conf        ISSN: 1551-7497


  1 in total

1.  Gaussian decomposition of high-resolution melt curve derivatives for measuring genome-editing efficiency.

Authors:  Michail Zaboikin; Carl Freter; Narasimhachar Srinivasakumar
Journal:  PLoS One       Date:  2018-01-04       Impact factor: 3.240

  1 in total

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