What do we know about plasmids carried by members of the Acinetobacter genus?

Marco A Brovedan1, María M Cameranesi1, Adriana S Limansky1

  • 1Instituto de Biología Molecular y Celular de Rosario (IBR, CONICET), Laboratorio de Resistencia a Antimicrobianos, Facultad de Ciencias Bioquímicas y Farmacéuticas, Universidad Nacional de Rosario, Rosario, Argentina.

Insights

Acinetobacter plasmids, crucial for spreading antimicrobial resistance genes (ARG) and virulence factors, vary in size and mobility. This study analyzes their traits to understand their role in healthcare-associated infections.

Area of Science:

  • Microbiology
  • Genetics
  • Infectious Diseases

Background:

  • Acinetobacter species are opportunistic pathogens causing healthcare-associated infections globally.
  • Their ability to acquire antimicrobial resistance genes (ARG) and virulence factors is facilitated by mobile genetic elements (MGE), particularly plasmids.
  • Despite numerous Acinetobacter plasmid sequences in databases, their basic traits remain underexplored.

Purpose of the Study:

  • To conduct a comprehensive analysis of the Acinetobacter plasmidome.
  • To characterize the basic traits and diversity of Acinetobacter plasmids.
  • To understand the role of plasmids in the evolution and dissemination of antimicrobial resistance and virulence in Acinetobacter.

Main Methods:

  • Bioinformatic analysis of 905 complete Acinetobacter plasmid sequences from NCBI-GenBank.
  • Classification of plasmids based on Rep protein homology (23 groups for A. baumannii, 16 for the genus).
  • Categorization of plasmids into size groups (<20 kb and >20 kb) to analyze their characteristics and mobility mechanisms.

Main Results:

  • A total of 905 Acinetobacter plasmids were analyzed, with 492 from Acinetobacter baumannii.
  • Plasmids range from 1.3 to 400 kb; 56% are smaller than 20 kb.
  • Smaller plasmids (<20 kb) often lack self-transmission genes but utilize alternative mobilization strategies, while larger plasmids (>20 kb) are frequently self-transmissible and carry ARGs within other MGEs or are phage-derived.

Conclusions:

  • Acinetobacter plasmids exhibit significant diversity in size, genetic content, and mobility mechanisms.
  • Plasmids play a critical role in the dissemination of ARGs and virulence factors, contributing to Acinetobacter's adaptability and persistence in clinical settings.
  • Understanding plasmid biology is essential for combating Acinetobacter-associated infections.

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