Insights into incompatible plasmids in multidrug-resistant Raoultella superbugs

Jiao Feng1, Changxin Wu1, Dongsheng Zhou2

  • 1Institute of Biomedical Sciences, The Key Laboratory of Medical Molecular Cell Biology of Shanxi Province, Shanxi University, Taiyuan, 030006, China.

BMC Microbiology
|January 30, 2025
PubMed

Insights

This study reveals novel incompatible plasmids in multidrug-resistant Raoultella, identifying new plasmid groups and mobile genetic elements. It also reports the first instance of mcr-9 in clinical Raoultella strains, enhancing understanding of antibiotic resistance.

Area of Science:

  • Microbiology
  • Genomics
  • Molecular Biology

Background:

  • Multidrug-resistant (MDR) Raoultella isolates contribute to the spread of antibiotic resistance genes (ARGs).
  • Plasmids are key mediators of ARG transmission in Raoultella, but their modular structures are understudied.
  • Understanding plasmid diversity is crucial for combating MDR bacteria.

Purpose of the Study:

  • To elucidate the genomic features of novel incompatible plasmids in MDR Raoultella.
  • To analyze the genetic makeup and diversity of plasmids within Raoultella isolates.
  • To identify novel mobile genetic elements and antibiotic resistance genes associated with these plasmids.

Main Methods:

  • Sequencing and analysis of 13 complete plasmids from four MDR Raoultella isolates.
  • Comparative analysis of these plasmids with 16 related plasmids from GenBank.
  • Classification of 29 plasmids into distinct incompatibility groups and identification of novel mobile genetic elements.

Main Results:

  • Twenty-nine plasmids were classified into five groups: IncFII, IncHI, IncR, and IncX8, with a new incompatible group, IncFIIp23141-CTXM, identified.
  • Five new Inc groups were designated, and four Inc groups were reported in Raoultella for the first time.
  • Novel mobile genetic elements, including transposons and insertion sequences, were discovered. The mcr-9 gene was reported in clinical Raoultella strains for the first time, alongside 49 ARGs on the 13 plasmids.

Conclusions:

  • This research provides a comprehensive genomic characterization of incompatible plasmids in MDR Raoultella.
  • The findings deepen the understanding of plasmid diversity and the mechanisms of antibiotic resistance in Raoultella.
  • The study serves as a valuable reference for future investigations into antibiotic resistance profiles and plasmid epidemiology in MDR Raoultella.