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Updated: Aug 9, 2025

Quantification of Plasmid-Mediated Antibiotic Resistance in an Experimental Evolution Approach
Published on: December 14, 2019
Systematic In Silico Assessment of Antimicrobial Resistance Dissemination across the Global Plasmidome
Miquel Sánchez-Osuna1, Jordi Barbé1, Ivan Erill2
1Departament de Genètica i de Microbiologia, Universitat Autònoma de Barcelona, 08193 Bellaterra, Spain.
Abstract:
The emergence of pathogenic strains resistant to multiple antimicrobials is a pressing problem in modern healthcare. Antimicrobial resistance is mediated primarily by dissemination of resistance determinants via horizontal gene transfer. The dissemination of some resistance genes has been well documented, but few studies have analyzed the patterns underpinning the dissemination of antimicrobial resistance genes. Analyzing the %GC content of plasmid-borne antimicrobial resistance genes relative to their host genome %GC content provides a means to efficiently detect and quantify dissemination of antimicrobial resistance genes. In this work we automate %GC content analysis to perform a comprehensive analysis of known antimicrobial resistance genes in publicly available plasmid sequences. We find that the degree to which antimicrobial resistance genes are disseminated depends primarily on the resistance mechanism. Our analysis identifies conjugative plasmids as primary dissemination vectors and indicates that most broadly disseminated genes have spread from single genomic backgrounds. We show that resistance dissemination profiles vary greatly among antimicrobials, oftentimes reflecting stewardship measures. Our findings establish %GC content analysis as a powerful, intuitive and scalable method to monitor the dissemination of resistance determinants using publicly available sequence data.
Insights
Antimicrobial resistance gene spread is mainly driven by the resistance mechanism, with conjugative plasmids acting as key vectors. This study uses %GC content analysis to track gene dissemination, revealing patterns linked to antimicrobial stewardship.
Area of Science:
- Genomics
- Microbiology
- Molecular Biology
Background:
- Antimicrobial resistance (AMR) is a critical global health threat.
- Horizontal gene transfer facilitates the spread of AMR determinants.
- Understanding AMR gene dissemination patterns is crucial for effective control.
Purpose of the Study:
- To analyze patterns of antimicrobial resistance gene dissemination.
- To investigate the role of %GC content in detecting gene spread.
- To identify primary dissemination vectors and genomic origins of AMR genes.
Main Methods:
- Automated %GC content analysis of plasmid-borne antimicrobial resistance genes.
- Comprehensive analysis of publicly available plasmid sequences.
- Comparison of gene %GC content relative to host genome %GC content.
Main Results:
- Dissemination extent of antimicrobial resistance genes correlates with resistance mechanisms.
- Conjugative plasmids are identified as major dissemination vectors.
- Most widely spread genes originate from single genomic backgrounds, with varied profiles across antimicrobials.
Conclusions:
- %GC content analysis is an effective method for monitoring antimicrobial resistance gene dissemination.
- Dissemination profiles reflect underlying resistance mechanisms and antimicrobial stewardship practices.
- This approach offers a scalable tool for analyzing public sequence data to combat AMR.
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