A High-Resolution Digital DNA Melting Platform for Robust Sequence Profiling and Enhanced Genotype Discrimination

Author:

Sinha Mridu123,Mack Hannah123,Coleman Todd P.13,Fraley Stephanie I.123

Affiliation:

1. Department of Bioengineering, University of California, San Diego, La Jolla, CA, USA

2. Clinical Translational Research Institute, University of California, San Diego, La Jolla, CA, USA

3. Center for Microbiome Innovation, University of California, San Diego, La Jolla, CA, USA

Abstract

DNA melting analysis provides a rapid method for genotyping a target amplicon directly after PCR amplification. To transform melt genotyping into a broad-based profiling approach for heterogeneous samples, we previously proposed the integration of universal PCR and melt analysis with digital PCR. Here, we advanced this concept by developing a high-resolution digital melt platform with precise thermal control to accomplish reliable, high-throughput heat ramping of microfluidic chip digital PCR reactions. Using synthetic DNA oligos with defined melting temperatures, we characterized sources of melting variability and minimized run-to-run variations. Within-run comparisons throughout a 20,000-reaction chip revealed that high-melting-temperature sequences were significantly less prone to melt variation. Further optimization using bacterial 16S amplicons revealed a strong dependence of the number of melting transitions on the heating rate during curve generation. These studies show that reliable high-resolution melt curve genotyping can be achieved in digital, picoliter-scale reactions and demonstrate that rate-dependent melt signatures may be useful for enhancing automated melt genotyping.

Funder

Burroughs Wellcome Fund

Division of Molecular and Cellular Biosciences

University of California San Diego

Publisher

Elsevier BV

Subject

Medical Laboratory Technology,Computer Science Applications

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