Urinary F plasmids reduce permissivity to coliphage infection
Montelongo Hernandez, C. E.; Putonti, C.; Wolfe, A. J.
Show abstract
The microbial community of the urinary tract (urinary microbiota or urobiota) has been associated with human health. Bacteriophages (phages) and plasmids present in the urinary tract, like in other niches, may shape urinary bacteria dynamics. While urinary E. coli, often associated with urinary tract infection (UTI), and their phages have been catalogued for the urobiome, the dynamics of their interactions have yet to be explored. In this study, we characterized urinary E. coli F plasmids and their ability to decrease permissivity to E. coli phage (coliphage) infection. Putative F plasmids were present in 47 of 67 urinary E. coli isolates, and most of these plasmids carry genes that encode for toxin-antitoxin (TA) modules, antibiotic resistance, and/or virulence. Two urinary E. coli F plasmids, from urinary microbiota (UMB) 0928 and 1284, were conjugated into E. coli K-12 strains; plasmids included genes for antibiotic resistance and virulence. These plasmids, pU0928 and pU1284, decreased permissivity to coliphage infection by the laboratory phage P1vir and the urinary phages Greed and Lust. Furthermore, pU0928 could be maintained in E. coli K-12 for up to ten days in the absence of antibiotic resistance selection; this included maintenance of the antibiotic resistance phenotype and decreased permissivity to phage. Finally, we discuss how F plasmids present in urinary E. coli could play a role in coliphage dynamics and maintenance of antibiotic resistance in urinary E. coli. ImportanceThe microbial community of the urinary tract (urinary microbiota or urobiota) has been associated with human health. Bacteriophages (phages) and plasmids present in the urinary tract, like in other niches, may shape urinary bacteria dynamics. While urinary E. coli, often associated with urinary tract infection, and their phages have been catalogued for the urobiome, the dynamics of their interactions have yet to be explored. In this study, we characterized urinary E. coli F plasmids and their ability to decrease permissivity to E. coli phage (coliphage) infection. Two urinary E. coli F plasmids, each encoding antibiotic resistance and transferred by conjugation into naive laboratory E. coli K-12 strains decreased permissivity to coliphage infection. We propose a model by which F plasmids present in urinary E. coli could help to maintain antibiotic resistance of urinary E. coli.
Matching journals
The top 7 journals account for 50% of the predicted probability mass.
Similar papers in this journal
Similar papers in this journal
- The mobilizable plasmid P3 of Salmonella enterica serovar Typhimurium SL1344 depends on the P2 plasmid for conjugative transfer into a broad range of bacteria in vitro and in vivo 94%
- Autotransporters drive biofilm formation and auto-aggregation in the diderm Firmicute Veillonella parvula 92%
- The Gene Encoding Ornithine Decarboxylase for Putrescine Biosynthesis Is Essential for the Viability of Fusobacterium nucleatum 92%
Similar papers in this journal
Similar papers in this journal
- CRISPR-Cas blocks antibiotic resistance plasmid transfer between Enterococcus faecalis strains in the gastrointestinal tract 94%
- Regulation of Klebsiella pneumoniae mucoidy by the bacterial tyrosine kinase Wzc 94%
- Genes influencing phage host range in Staphylococcus aureus on a species-wide scale 93%
Similar papers in this journal
- Genomic surveillance of vancomycin-resistant Enterococcus faecium reveals spread of a linear plasmid conferring a nutrient utilization advantage 95%
- Phage-plasmids spread antibiotic resistance genes through infection and lysogenic conversion 94%
- Genomic adaptation in group B Streptococcus following intrapartum antibiotic prophylaxis and childbirth 93%
"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.