bioRxiv · 10.1101/527127
DisCVR: Rapid viral diagnosis from high-throughput sequencing data
Abstract
High-throughput sequencing (HTS) enables most pathogens in a clinical sample to be detected from a single analysis, thereby providing novel opportunities for diagnosis, surveillance and epidemiology. However, this powerful technology is difficult to apply in diagnostic laboratories because of its computational and bioinformatic demands. We have developed DisCVR, which detects known human viruses in clinical samples by matching sample k-mers (22 nucleotide sequences) to k-mers from taxonomically labelled viral genomes. DisCVR was validated using published HTS data for 89 clinical samples from adults with upper respiratory tract infections. These samples had been tested for viruses metagenomically and also by real-time polymerase chain reaction assay, which is the standard diagnostic method. DisCVR detected human viruses with high sensitivity (79%) and specificity (100%), and was able to detect mixed infections. Moreover, it produced results comparable to those in a published metagenomic analysis of 177 blood samples from patients in Nigeria. DisCVR has been designed as a user-friendly tool for detecting human viruses from HTS data using computers with limited RAM and processing power, and includes a graphical user interface to help users interpret and validate the output. It is written in Java and is publicly available from http://bioinformatics.cvr.ac.uk/discvr.php. Issue SectionResources
Source connections
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Maabar, M., Davison, A. J., Palmarini, M., Hughes, J.. 2019-01-23. DisCVR: Rapid viral diagnosis from high-throughput sequencing data. https://doi.org/10.1101/527127
Cite the original work for its findings. Save a collection to share your selection of sources.