Whole-Genome Characterization of Proteus mirabilis Isolated from Fermented Soybean, hawaijar: Insights into Foodborne Virulence and Antimicrobial Resistance Determinants
Singh, M. G.; Wahengbam, R.
Show abstract
Proteus mirabilis is a well-known opportunistic pathogen primarily associated with urinary tract and wound infections in humans; however, its presence in fermented foods has rarely been documented. This study reports the first whole-genome characterization of P. mirabilis strain FFPR3MR5, isolated from traditionally fermented soybean (hawaijar) produced in Moirang, Manipur, India, to evaluate its genomic features, virulence potential, and evolutionary relationship with clinical isolates. The draft genome comprised 3.74 Mb with a GC content of 38.56%, assembled into 109 contigs and encoding 3,317 coding sequences, with 100% completeness and 0.17% contamination. Functional annotation identified 3,282 KEGG orthologs mapped to 40 metabolic pathways, with metabolism-related genes predominating (75.05%). Genome screening revealed 35 virulence-associated genes involved in adherence, motility, biofilm formation, and immune evasion, along with four antimicrobial resistance genes conferring resistance to {beta}-lactams, fluoroquinolones, tetracyclines, and macrolides. Phylogenetic analysis showed that FFPR3MR5 clustered closely with the clinical reference strain P. mirabilis NC_010554, supported by a high OrthoANIu value of 99.39%. Genome-wide variant analysis identified approximately 27,000 polymorphisms, including deleterious nonsynonymous substitutions in genes associated with stress response (cpxA, kdpD), biofilm formation (bcsA), DNA repair (recB, recC, ssb), and metabolism (metH), suggesting niche-specific adaptation to the fermentation environment. The coexistence of virulence and antimicrobial resistance determinants in this food-derived strain underscores its potential as a reservoir of clinically relevant traits, highlighting the need for genomic surveillance of traditional fermented foods within a One Health framework. ImportanceThis study offers a comprehensive whole-genome analysis of a P. mirabilis strain isolated from fermented soybean food, broadening current knowledge of how opportunistic pathogens survive outside clinical settings. Integrated genomic, phylogenetic, and variant analyses revealed the coexistence of virulence and antimicrobial resistance determinants, highlighting fermented foods as potential reservoirs of clinically relevant bacteria. Deleterious mutations in genes linked to biofilm formation, stress response, metabolism, and DNA repair suggest adaptation to fermentation environments, while close relatedness to a clinical reference strain underscores public health relevance. These findings emphasize the need for genomic surveillance of traditional fermented foods within a One Health framework.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- A high quality reference genome for the fish pathogen Streptococcus iniae 96%
- Genomic rearrangements uncovered by genome-wide co-evolution analysis of a major nosocomial pathogen Enterococcus faecium 96%
- Complete genome assembly of clinical multidrug resistant Bacteroides fragilis isolates enables comprehensive identification of antimicrobial resistance genes and plasmids 96%
Similar papers in this journal
- Comparative genomics of Exiguobacterium reveals what makes a cosmopolitan bacterium 96%
- Reduced virulence and enhanced host adaption during antibiotics therapy: A story of a within-host carbapenem-resistant Klebsiella pneumoniae sequence type 11 evolution in a fatal scrotal abscess patient 96%
- Genomic characterization of the C. tuberculostearicum species complex, a ubiquitous member of the human skin microbiome 95%
Similar papers in this journal
- Comparative genomic analyses of Lactococcus garvieae isolated from bovine mastitis in China 97%
- Global dissemination of tet(X3) and tet(X6) among livestock-associated Acinetobacter is sporadically mediated by highly diverse plasmidomes 96%
- Establishment of a publicly available core genome multilocus sequence typing scheme for Clostridium perfringens 96%
Similar papers in this journal
- Phylogenomics reveals that Asaia symbionts from insects underwent convergent genome reduction, preserving an insecticide-degrading gene 96%
- Identification of a novel LysR-type transcriptional regulator in Staphylococcus aureus that is crucial for secondary tissue colonization during metastatic bloodstream infection 95%
- Stabilizing genetically unstable simple sequence repeats in the Campylobacter jejuni genome by multiplex genome editing: a reliable approach for delineating multiple phase-variable genes 94%
Similar papers in this journal
- Whole-Genome Sequence Typing shows extensive diversity of Listeria monocytogenes in the outdoor environment and poultry processing plants. 96%
- Establishing Conserved Biosynthetic Gene Clusters of the Phylum Myxococcota 96%
- Does strain-level persistence of lactobacilli in long term back-slopped sourdoughs inform on domestication of food-fermenting lactic acid bacteria? 96%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.