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Updated: Sep 11, 2025

Quantification of Plasmid-Mediated Antibiotic Resistance in an Experimental Evolution Approach
Published on: December 14, 2019
Optimized Plasmid Extraction Uncovers Novel and Mobilizable Plasmids in Staphylococcus nepalensis Sharing
Ana Luisa Andrade-Oliveira1,2, Francisco Prodocimi3, Rosane Silva4
1Instituto de Microbiologia Paulo de Góes, Universidade Federal do Rio de Janeiro, Rio de Janeiro, Rio de Janeiro, Brazil.
Abstract:
Plasmids are key vectors in the dissemination of antimicrobial resistance (AMR), often transcending species and genus boundaries through horizontal gene transfer. Staphylococcus nepalensis, typically regarded as a commensal species, has emerged as a potential reservoir of resistance genes. In this study, we optimized plasmid extraction protocols to enhance the recovery of low-copy plasmids and applied whole-genome sequencing to characterize plasmids from a S. nepalensis strain isolated from the oral microbiota of a healthy cat in Brazil. Plasmid-enriched extraction using the Qiagen miniprep kit, with an additional enzymatic lysis step, significantly improved assembly outcomes, enabling the recovery of four complete plasmids. Three of them carried mobilizable antimicrobial resistance genes (aadK, cat, and tetK), conferring resistance to streptomycin, chloramphenicol, and tetracycline, respectively. Comparative and phylogenetic analyses revealed a high sequence similarity between these plasmids and mobile elements found in diverse pathogenic and environmental bacteria, including Staphylococcus aureus, S. epidermidis, Enterococcus sp., and Pseudomonas aeruginosa, indicating plasmid circulation across bacterial genera. Additionally, one novel plasmid was identified, displaying limited similarity to any known sequence and suggesting the existence of uncharacterized plasmid lineages in commensal staphylococci. These findings highlight the underestimated role of S. nepalensis as a hidden reservoir of mobilizable resistance genes and reinforce the need to surveil non-pathogenic bacteria in AMR monitoring frameworks.
Insights
Commensal Staphylococcus nepalensis harbors plasmids carrying antimicrobial resistance genes. These plasmids circulate among diverse bacteria, highlighting the need to monitor non-pathogenic species for antimicrobial resistance (AMR).
Area of Science:
- Microbiology
- Genomics
- Antimicrobial Resistance
Background:
- Plasmids facilitate the spread of antimicrobial resistance (AMR) across bacterial species.
- Staphylococcus nepalensis, a commensal bacterium, is an emerging reservoir for resistance genes.
- Horizontal gene transfer mediated by plasmids is a significant driver of AMR.
Purpose of the Study:
- To optimize plasmid extraction for low-copy plasmids from Staphylococcus nepalensis.
- To characterize plasmids and identify antimicrobial resistance genes within S. nepalensis.
- To investigate the potential of commensal bacteria as reservoirs for mobilizable resistance genes.
Main Methods:
- Optimized plasmid extraction protocol using enzymatic lysis and Qiagen miniprep kit.
- Whole-genome sequencing of Staphylococcus nepalensis.
- Comparative and phylogenetic analyses of recovered plasmids.
Main Results:
- Successfully recovered four complete plasmids from S. nepalensis.
- Identified three plasmids carrying mobilizable antimicrobial resistance genes (aadK, cat, tetK).
- Demonstrated high sequence similarity of these plasmids to mobile elements in pathogenic and environmental bacteria, indicating broad circulation.
Conclusions:
- Staphylococcus nepalensis acts as a reservoir for mobilizable antimicrobial resistance genes.
- Plasmids from S. nepalensis can transfer resistance across bacterial genera.
- Commensal staphylococci harbor novel plasmid lineages, emphasizing their importance in AMR surveillance.
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