AI Article Synopsis

  • Salmonella infections pose a significant public health concern, highlighted by a 2018 outbreak in South Korea linked to contaminated chocolate cakes in schools.
  • Researchers sequenced 37 S. Thompson strains from the outbreak and analyzed them alongside 61 others to explore their genomic characteristics through comparative genomics and phylogenetic analysis.
  • The study found unique genetic distinctions in the chocolate cake-related strains, including the presence of three specific bacteriophages that may enhance their pathogenicity compared to other S. Thompson strains.

Article Abstract

Salmonella infections represent an important public health problem. In 2018, a multistate outbreak of S. enterica subsp. enterica serovar Thompson infection associated with contaminated chocolate cakes in schools was reported in South Korea. In this study, we sequenced the 37 S. Thompson strains isolated from chocolate cakes, egg whites, preserves, and cookware associated with the outbreak. In addition, we analyze the genomic sequences of 61 S. Thompson strains (37 chocolate cake-related outbreak strains, 4 strains isolated from outbreaks in South Korea and 20 strains available in the National Center for Biotechnology Information) to assess the genomic characteristics of outbreak-related strains by comparative genomics and phylogenetic analysis. The results showed that identically classified clusters divided strains into two clusters, sub-clusters A & I (with strains from 2018 in South Korea) and sub-clusters B & II (with strains from 2014 to 2015 in South Korea). S. Thompson isolated from South Korea were accurately distinguished from publicly-available strains. Unlike other S. Thompson genomes, those of chocolate cake outbreak-related strains had three Salmonella phages (SEN8, vB SosS Oslo, and SI7) integrated into their chromosome. Comparative genomics revealed several genes responsible for the specific genomic features of chocolate cake outbreak-related strains and three bacteriophages that may contribute to the pathogenicity of other S. Thompson strains.

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http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9708683PMC
http://dx.doi.org/10.1038/s41598-022-22168-2DOI Listing

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