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Author Spotlight: Advancing Antibiotic Resistance Research Using an Efflux-Deficient Bacterial Strain and a Single-Copy Gene Expression System
Published on: January 5, 2024
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.
Abstract:
The emergence of multidrug-resistant (MDR) Raoultella isolates is linked to the acquisition of antibiotic resistance genes (ARGs) with plasmids playing a pivotal role in this process. While plasmid-mediated transmission of ARGs in Raoultella has been extensively reported, limited attention has been given to genetically dissecting the modular structures of plasmids. This study aims to elucidate the genomic features of novel incompatible plasmids in MDR Raoultella by presenting 13 complete plasmid sequences from four isolates, along with an analysis of 16 related plasmids from GenBank. These 29 plasmids were classified into five distinct groups: IncFII single-replicon plasmids, dual-replicon plasmids containing the IncFII replicon, IncHI plasmids, IncR plasmids, and IncX8 plasmids. A new incompatible group, IncFIIp23141-CTXM, was identified, alongside five newly designated Inc groups based on previously determined sequences, namely IncFIIpKPC2_EC14653, IncFIIpCP020359, IncFIIpCP024509, IncFIIpKOX-137, and IncFIIpKDO1. Furthermore, this research marks the first report of four Inc groups of plasmids within Raoultella, namely IncFIIp23141-CTXM plasmid, IncFIIpKPC2_EC14653 plasmid, IncX8 plasmid, and IncFIIpCP020359: IncFIB-7.1 dual-replicon plasmid. Moreover, novel mobile genetic elements, including two unit transposons (Tn6806 and Tn6891), one IS-based transposition unit (Tn6561), and four insertion sequences (ISRor6, ISRor7, ISRor8, and ISRor9) were discovered. Notably, this is the first report of mcr-9 in clinical Raoultella strains. At least 49 ARGs conferring resistance against 11 different categories of antimicrobials were identified on these 13 plasmids. Overall, this research deepens the understanding of incompatible plasmids in Raoultella, serving as a reference for exploring antibiotic resistance profiles and plasmid diversity in MDR Raoultella.
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.
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