Abstract Background Bacterial genotyping can support outbreak investigations including skin and soft tissue infections point source outbreaks caused by Mycobacterium abscessus. This study presents an innovative approach that combines Nanopore long-read and Illumina short-read whole-genome sequencing (WGS) data using a novel bioinformatic pipeline to identify related M. abscessus isolates.Core-genome SNP phylogeny of Montreal M. abscessus isolatesThe core genome was estimated from open reading frames of the assembled outbreak isolates along with 220 additional isolates from the island of Montreal. M. abscessus subsp. massiliense isolates cultured from the skin infection outbreak patients exhibit high relatedness compared to the Montreal M. abscessus catalog. Methods Physicians and public health authorities identified a potential skin and soft tissue infection outbreak in Montreal, Canada. Six isolates from four patients were retrieved and DNA was sequenced using both Illumina short-read and Oxford Nanopore long-read WGS platforms.Minhash k-mer distances to reference M. abscessus type strains were used to confirm taxonomic identity of clinical isolates. Complete genomes for each isolate were assembled using long-reads and polished using short-read data. Single nucleotide polymorphism (SNP) distances between clinical isolates and the putative earliest outbreak case were used to examine their relatedness. Outbreak isolates were also compared to 220 contemporary Montreal M. abscessus genomes using core-genome (cg) SNPs to assess their relatedness and clustering among locally circulating strains. Results All outbreak isolates were most closely related to M. abscessus subsp. massilliense. Short reads from the outbreak isolates showed 100% mapping coverage to the complete assembly of the earliest outbreak isolate. All outbreak isolates were found to be nearly identical, differing by only 0-2 SNPs. In comparison, using the more distantly related subspecies reference exaggerated SNP distances between isolates (32-50 SNPs), and between outbreak isolates and the reference (26612-26644 SNPs). The cgSNP phylogenetic tree shows the outbreak isolates are distinct to other Montreal M. abscessus genomes and to the M. abscessus subspecies reference genomes. Conclusion Our findings indicate that this improved molecular approach leveraging both short and long read sequence data to produce complete genome assemblies of M. abscessus. This helped confirm the relatedness of epidemiologically linked cases and assess their bacterial isolates’ molecular clustering within an extended catalog of locally circulating strains. Disclosures All Authors: No reported disclosures
Quan-Nguyen et al. (Thu,) studied this question.