IncC plasmid genome rearrangements influence the vertical and horizontal transmission tradeoff in Escherichia coli
Allain, M.; Morel-Journel, T.; Condamine, B.; Gibeaux, B.; Gachet, B.; GSCHWIND, R.; Denamur, E.; Landraud, L.
Show abstract
It has been shown that an evolutionary tradeoff between vertical (host growth rate) and horizontal (plasmid conjugation) transmissions contribute to global plasmid fitness. As conjugative IncC plasmids are important for the spread of multidrug resistance (MDR), in a broad range of bacterial hosts, we investigated vertical and horizontal transmissions of two multidrug-resistant IncC plasmids according to their backbones and MDR-region rearrangements, upon plasmid entry into a new host. We observed plasmid genome deletions after conjugation in three diverse natural Escherichia coli clinical strains, varying from null to high number depending on the plasmid, all occurring in the MDR-region. The plasmid burden on bacterial fitness depended more on the strain background than on the structure of the MDR-region, deletions appearing to have no impact. Besides, we observed an increase in plasmid transfer rate, from ancestral host to new clinical recipient strains, when the IncC plasmid was rearranged. Finally, using a second set of conjugation experiments, we investigated the evolutionary tradeoff of the IncC plasmid during the critical period of plasmid establishment in E. coli K-12, by correlating the transfer rates of deleted or non-deleted IncC plasmids and their costs on the recipient strain. Plasmid deletions strongly improved conjugation efficiency with no negative growth effect. Our findings indicate that the flexibility of the MDR-region of the IncC plasmids can promote their dissemination, and provide diverse opportunities to capture new resistance genes. In a broader view, they suggest that the vertical-horizontal transmission tradeoff can be manipulated by the plasmid to improve its fitness.
Matching journals
The top 9 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Conjugative IncC plasmid entry triggers the SOS response and promotes effective transfer of the integrative antibiotic resistance element SGI1 96%
- Global dissemination of tet(X3) and tet(X6) among livestock-associated Acinetobacter is sporadically mediated by highly diverse plasmidomes 95%
- Real-time Plasmid Transmission Detection Pipeline 94%
Similar papers in this journal
- Mismatch repair hierarchy of Pseudomonas putida revealed by mutagenic ssDNA recombineering of the pyrF gene 93%
- Specificities and commonalities of the Planctomycetes plasmidome 93%
- A partial pathogenicity chromosome in Fusarium oxysporum is sufficient to cause disease and can be horizontally transferred 92%
Similar papers in this journal
- Type I partition-related proteins enhance conjugative transfer through transcriptional activation and oriT region binding 95%
- Phage-plasmids spread antibiotic resistance genes through infection and lysogenic conversion 95%
- A CRISPRi-based genetic resource to study essential Staphylococcus aureus genes 94%
Similar papers in this journal
Similar papers in this journal
- Genetic Determinants of pOXA-48 Plasmid Maintenance and Propagation in Escherichia coli 95%
- Evolution of satellite plasmids can stabilize the maintenance of newly acquired accessory genes in bacteria 94%
- Efflux pump gene amplifications bypass necessity of multiple target mutations for resistance against dual-targeting antibiotic 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.