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.

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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