E. faecalis acquires resistance to antimicrobials and insect immunity via common mechanisms
OA Location
Author(s)
Wadhawan, Ashima
Simoes da Silva, Carolina J
Nunes, Catarina D
Edwards, Andrew M
Dionne, Marc S
Type
preprint
Abstract
Enterococcus faecalis is a normal member of the gut microbiota and an opportunistic pathogen of many animals, including mammals, birds, and insects. It is a common cause of nosocomial infections, and is particularly troublesome due to extensive intrinsic and acquired antimicrobial resistance. Using experimental evolution, we generated Drosophila-adapted E. faecalis strains, which exhibited immune resistance, resulting in increased in vivo growth and virulence. Resistance was characterised by mutations in bacterial pathways responsive to cell envelope stress. Drosophila-adapted strains exhibited changes in sensitivity to relevant antimicrobials, including daptomycin and vancomycin. Evolved daptomycin-resistant strains harboured mutations in the same signalling systems, with some strains showing increased virulence similar to Drosophila-adapted strains. Our results show that common mechanisms provide a route to resistance to both antimicrobials and host immunity in E. faecalis and demonstrate that the selection and emergence of antibiotic resistance in vivo does not require antibiotic exposure.
Date Issued
2022-08-17
Citation
Cold Spring Harbor Laboratory, 2022
Journal / Book Title
Cold Spring Harbor Laboratory
Copyright Statement
The copyright holder for this preprint is the author/funder, who has granted bioRxiv a license to display the preprint in perpetuity. It is made available under a CC-BY-NC 4.0 International license.
License URL
Publication Status
Published
