4.7 Article

Development and Evaluation of a Core Genome Multilocus Sequencing Typing (cgMLST) Scheme for Serratia marcescens Molecular Surveillance and Outbreak Investigations

期刊

JOURNAL OF CLINICAL MICROBIOLOGY
卷 60, 期 11, 页码 -

出版社

AMER SOC MICROBIOLOGY
DOI: 10.1128/jcm.01196-22

关键词

Serratia marcescens; cgMLST; typing; whole-genome sequencing; outbreak investigation

资金

  1. ContraFect
  2. TenNor Therapeutics Limited
  3. BioFire

向作者/读者索取更多资源

A novel cgMLST scheme for S. marcescens was developed and evaluated in this study, showing promising results in typing efforts for molecular surveillance and outbreak investigation. The scheme aims to improve standardization and facilitate interlaboratory comparisons, ultimately enhancing understanding of S. marcescens genomic epidemiology.
Serratia marcescens can cause a range of severe infections and contributes to nosocomial outbreaks. Although whole-genome sequencing (WGS)-based typing is the standard method for molecular surveillance and outbreak investigation, there is no standardized analytic scheme for S. marcescens core genome multilocus sequence typing (cgMLST). Here, the development and evaluation of a S. marcescens cgMLST scheme is reported with the goal of enabling a standardized methodology and typing nomenclature. Four hundred ninety-one high-quality S. marcescens WGS data sets were extracted from public databases and-using the genomic sequence of NCBI reference strain S. marcescens Db11 (NZ_HG326223.1) as a starting point-all Db11 genes present in >= 97% data sets used to create a cgMLST scheme. The novel scheme was evaluated using WGS data from 24 outbreak investigations (n = 175 isolates) distributed over three continents. Analysis of Db11 genes within the 491 data sets identified 2,692 target genes present in >= 97% of genomes (mean, 99.1%; median, 99.9%). These genes formed the novel cgMLST scheme, covering 47.8% of nucleotides in the Db11 genome. Analyzing 175 isolates from 24 outbreaks using the novel scheme gave comparable results to previous typing efforts for both general groupings and allelic distances within clusters. In summary, a novel cgMLST scheme for S. marcescens was developed and evaluated. The scheme and its associated nomenclature will improve standardization of typing efforts for molecular surveillance and outbreak investigation, allowing better understanding of S. marcescens genomic epidemiology and facilitating interlaboratory comparisons.

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