The genomic diversity of this understudied Legionella species is underscore the genomic diversity of this understudied Legionella species and provides a framework for future investigations regarding environmental persistence and potential pathogenicity.
Abstract
Abstract Legionella anisa has been frequently isolated from engineered water systems; however, its population structure remains understudied compared to Legionella pneumophila. Here, we generated complete genome sequences for four L. anisa isolates recovered from a healthcare facility in Rimouski, Canada. Further the population structure of this species was investigated by performing comparative genomic analyses of the genomes generated in this study together with publicly available L. anisa genomes. Genome-wide phylogenetic analysis revealed the presence of three distinct clades separated by substantial genetic divergence (∼500 single nucleotide polymorphisms), with the Rimouski isolates forming a tightly clustered group, suggesting a clonal lineage. Comparative pangenome analysis indicated moderate core genome conservation accompanied by a highly variable accessory genome (∼50%). The isolates characterized in this study harbored multiple plasmids encoding genes associated with conjugation, heavy metal resistance, and other stress-related functions, suggesting potential roles in environmental persistence. Previous studies have shown that L. anisa can proliferate within protozoan host cells, although outcomes vary depending on the host species. Our isolates showed efficient proliferation within Acanthamoeba castellanii, but not within Vermamoeba vermiformis, under the conditions tested. Together, these findings underscore the genomic diversity of this understudied Legionella species and provide a framework for future investigations regarding environmental persistence and potential pathogenicity.
ABSTRACT Legionella pneumophila populations within environmental reservoirs can exhibit genomic diversity, complicating source attribution during outbreak investigations. Core genome single-nucleotide variant (cgSNV)-based approaches are widely used for identifying closely related lineages during molecular epidemiologi...
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ABSTRACT Legionella longbeachae is an emerging respiratory pathogen primarily found in soil environments, yet its genomic architecture and evolutionary strategies remain poorly characterized. Here, through pan-genomic and functional analysis of 242 L. longbeachae isolates, we reveal an open pan-genome driven by extensi...
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The family Pasteurellaceae includes pathogenic and opportunistic bacteria affecting poultry, yet taxonomic resolution remains challenging due to phenotypic heterogeneity, limited genomic representation, and the poor performance of routine diagnostic systems for uncommon taxa. At the Clemson Veterinary Diagnostic Center...
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Abstract Acinetobacter baumannii sequence type 3 (ST3) has been reported in multiple regions but has not achieved the global dominance of major clones such as ST1 and ST2. Here, we analysed 383 ST3 genomes, including 205 isolates from the Multidrug-Resistant Organism Repository and Surveillance Network (MRSN) and 178 p...
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A high-resolution cgMLST framework is established for B. henselae and it is demonstrated that genetically distinct strains have diverse endothelial cell phenotypes, indicating strain-dependent differences in endothelial cell injury.
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