Author:
Boussina Aaron,Langouche Lennart,Obirieze Augustine C.,Sinha Mridu,Mack Hannah,Leineweber William,Aralar April,Pride David T.,Coleman Todd P.,Fraley Stephanie I.
Abstract
AbstractSurveillance for genetic variation of microbial pathogens, both within and among species, plays an important role in informing research, diagnostic, prevention, and treatment activities for disease control. However, large-scale systematic screening for novel genotypes remains challenging in part due to technological limitations. Towards addressing this challenge, we present an advancement in universal microbial high resolution melting (HRM) analysis that is capable of accomplishing both known genotype identification and novel genotype detection. Specifically, this novel surveillance functionality is achieved through time-series modeling of sequence-defined HRM curves, which is uniquely enabled by the large-scale melt curve datasets generated using our high-throughput digital HRM platform. Taking the detection of bacterial genotypes as a model application, we demonstrate that our algorithms accomplish an overall classification accuracy over 99.7% and perform novelty detection with a sensitivity of 0.96, specificity of 0.96 and Youden index of 0.92. Since HRM-based DNA profiling is an inexpensive and rapid technique, our results add support for the feasibility of its use in surveillance applications.
Funder
U.S. National Library of Medicine
NIAID
Publisher
Springer Science and Business Media LLC
Reference41 articles.
1. Tacconelli E. Global priority list of antibiotic-resistant bacteria to guide research, discovery, and development. World Health Organization; 2017.
2. Heymann DL, Shindo N. COVID-19: What is next for public health? The lancet. 2020;395(10224):542–5.
3. Didelot X, Bowden R, Wilson DJ, Peto TE, Crook DW. Transforming clinical microbiology with bacterial genome sequencing. Nat Rev Genet. 2012;13(9):601–12.
4. Kwong JC, McCallum N, Sintchenko V, Howden BP. Whole genome sequencing in clinical and public health microbiology. Pathology. 2015;47(3):199–210.
5. Reed GH, Wittwer CT. Sensitivity and specificity of single-nucleotide polymorphism scanning by high-resolution melting analysis. Clin Chem. 2004;50(10):1748–54.