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Validation strategy of a bioinformatics whole genome sequencing workflow for Shiga toxin-producing Escherichia coli using a reference collection extensively characterized with conventional methods

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Published

Peer reviewed scientific article

Engels

DOI : https://doi.org/10.1099/mgen.0.000531 [2]

Auteurs

Bert Bogaerts [3]; Stéphanie Nouws [4]; Bavo Verhaegen [5]; Sarah Denayer [6]; Julien Van Braekel [7]; Raf Winand [8]; Qiang Fu [9]; Florence Crombé [10]; Denis Piérard [11]; Kathleen Marchal [12]; Nancy Roosens [13]; Sigrid C.J. De Keersmaecker [14]; Kevin Vanneste [15]

Trefwoorden

    Article written during project(s) : 
    .Be READY Belgische roadmap voor een effectief en correct gebruik van high-throughput technologieën met het oog op reactie en paraatheid in verschillende mogelijke scenario’s van besmettelijke ziektedreigingen [16]
    StEQIDEMIC.be Ontwikkeling en implementatie van een Belgisch platform voor het genereren en gebruiken van "whole genome sequencing" (WGS) -gegevens voor uitbraakonderzoek, met de voor de mens pathogene Shiga-toxine producerende Escherichia coli (STEC) als casestudy [17]

    Samenvatting:

    Whole genome sequencing (WGS) enables complete characterization of bacterial pathogenic isolates at single nucleotide resolution, making it the ultimate tool for routine surveillance and outbreak investigation. The lack of standardization, and the variation regarding bioinformatics workflows and parameters, however, complicates interoperability among (inter)national laboratories. We present a validation strategy applied to a bioinformatics workflow for Illumina data that performs complete characterization of Shiga toxin-producing Escherichia coli (STEC) isolates including antimicr…
    Lees meer

    Samenvatting

    Whole genome sequencing (WGS) enables complete characterization of bacterial pathogenic isolates at single nucleotide resolution, making it the ultimate tool for routine surveillance and outbreak investigation. The lack of standardization, and the variation regarding bioinformatics workflows and parameters, however, complicates interoperability among (inter)national laboratories. We present a validation strategy applied to a bioinformatics workflow for Illumina data that performs complete characterization of Shiga toxin-producing Escherichia coli (STEC) isolates including antimicrobial resistance prediction, virulence gene detection, serotype prediction, plasmid replicon detection and sequence typing. The workflow supports three commonly used bioinformatics approaches for the detection of genes and alleles: alignment with blast+, kmer-based read mapping with KMA, and direct read mapping with SRST2. A collection of 131 STEC isolates collected from food and human sources, extensively characterized with conventional molecular methods, was used as a validation dataset. Using a validation strategy specifically adopted to WGS, we demonstrated high performance with repeatability, reproducibility, accuracy, precision, sensitivity and specificity above 95 % for the majority of all assays. The WGS workflow is publicly available as a ‘push-button’ pipeline at https://galaxy.sciensano.be. Our validation strategy and accompanying reference dataset consisting of both conventional and WGS data can be used for characterizing the performance of various bioinformatics workflows and assays, facilitating interoperability between laboratories with different WGS and bioinformatics set-ups.

    Associated health topics:

    Pathogene E. coli [18]

    Source URL:https://sciensano.be/nl/biblio/validation-strategy-a-bioinformatics-whole-genome-sequencing-workflow-shiga-toxin-producing

    Links
    [1] https://sciensano.be/sites/default/files/bogaerts_et_al_2021_stec_validation.pdf [2] https://doi.org/10.1099/mgen.0.000531 [3] https://sciensano.be/nl/people/bert-bogaerts/biblio [4] https://sciensano.be/nl/biblio?f%5Bauthor%5D=89308&f%5Bsearch%5D=St%C3%A9phanie%20Nouws [5] https://sciensano.be/nl/people/bavo-verhaegen/biblio [6] https://sciensano.be/nl/people/sarah-denayer/biblio [7] https://sciensano.be/nl/people/julien-van-braekel/biblio [8] https://sciensano.be/nl/people/raf-winand/biblio [9] https://sciensano.be/nl/biblio?f%5Bauthor%5D=86743&f%5Bsearch%5D=Qiang%20Fu [10] https://sciensano.be/nl/biblio?f%5Bauthor%5D=44175&f%5Bsearch%5D=Florence%20Cromb%C3%A9 [11] https://sciensano.be/nl/biblio?f%5Bauthor%5D=579&f%5Bsearch%5D=Denis%20Pi%C3%A9rard [12] https://sciensano.be/nl/biblio?f%5Bauthor%5D=178408&f%5Bsearch%5D=Kathleen%20Marchal [13] https://sciensano.be/nl/people/nancy-roosens/biblio [14] https://sciensano.be/nl/people/sigrid-de-keersmaecker/biblio [15] https://sciensano.be/nl/people/kevin-vanneste/biblio [16] https://sciensano.be/nl/projecten/belgische-roadmap-voor-een-effectief-en-correct-gebruik-van-high-throughput-technologieen-met-het [17] https://sciensano.be/nl/projecten/ontwikkeling-en-implementatie-van-een-belgisch-platform-voor-het-genereren-en-gebruiken-van-whole [18] https://sciensano.be/nl/gezondheidsonderwerpen/pathogene-e-coli