Comparative genomic analysis of the bla OXA-23 -carrying plasmids

ABSTRACT The global dissemination of the carbapenem resistance gene bla OXA-23 is partly facilitated by plasmids, yet a comprehensive characterization of these vectors is lacking. This study analyzed the bla OXA-23 -carrying plasmids selected from the National Center for Biotechnology Information RefSeq database to elucidate their general characteristics and genomic diversity. The bla OXA-23 -carrying plasmids were predominantly hosted by Acinetobacter baumannii (94.06%), and their sizes varied widely, from 8.22 to 336.05 kb. Replicon typing revealed that the majority belonged to the RP Rep family, specifically RP-T1 (62 plasmids) and RP-T2 (23 plasmids) types. A key finding of this analysis was the assignment of these two major plasmid groups to distinct plasmid taxonomic units (PTUs): all RP-T1 plasmids were classified as PTU-Pse5, whereas all RP-T2 plasmids were classified as PTU-Pse1. The bla OXA-23 gene of the plasmids was located within four kinds of composite transposons, with Tn 2006 (33.67%), Tn 2008 (32.67%), and Tn 2009 (31.68%) being the predominant genetic contexts. Notably, the 62 plasmids of RP-T1 type (PTU-Pse5) and the 23 plasmids of RP-T2 type (PTU-Pse1), found predominantly in A. baumannii , carried genes encoding relaxases of the MOB F family, T4CPs of t4cp2, and type F T4SS, suggesting they are putatively conjugative. In addition, the 62 plasmids of RP-T1 type (PTU-Pse5) were identified in multiple countries within the data set, while the 23 plasmids of RP-T2 type (PTU-Pse1) were predominantly found in China. These findings provide a genomic view of bla OXA-23 plasmids, suggest their role in disseminating carbapenem resistance across species and regions, and offer a surveillance framework, highlighting key lineages for clinical intervention. IMPORTANCE The horizontal transfer of bla OXA-23 to Acinetobacter baumannii and other gram-negative pathogens has conferred high-level carbapenem resistance, posing significant therapeutic challenges in both hospital and community settings. Plasmids carrying conjugative transfer systems serve as key vehicles for the dissemination of bla OXA-23 among clinical isolates. In this study, we identified the plasmid lineages responsible for bla OXA-23 spread and categorized them into a limited number of groups. This finding underscores the considerable risk of horizontal gene transfer in propagating carbapenem resistance and provides a valuable framework for future surveillance efforts to track the transmission of these resistant plasmids. However, this study was based on current knowledge and available data. Given the ever-changing situation of antibiotic resistance, new plasmid variants or transfer mechanisms may emerge, potentially limiting the long‑term applicability and accuracy of our findings.

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Journal
Microbiology Spectrum
Published
2026-09-29
DOI
https://doi.org/10.1128/spectrum.01374-26
Primary Topic
Antibiotic Resistance in Bacteria
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Comparative genomic analysis of the bla OXA-23 -carrying plasmids

Xiaobin Li, Ziyue Yang, Shaofeng Zhan, Hui-Ting Huang et al.
Microbiology Spectrum
Antibiotic Resistance in Bacteria
article

Comparative genomic analysis of the bla OXA-23 -carrying plasmids

Xiaobin Li, Ziyue Yang, Shaofeng Zhan, Hui-Ting Huang, Jiahui Weng
article en

Abstract

ABSTRACT The global dissemination of the carbapenem resistance gene bla OXA-23 is partly facilitated by plasmids, yet a comprehensive characterization of these vectors is lacking. This study analyzed the bla OXA-23 -carrying plasmids selected from the National Center for Biotechnology Information RefSeq database to elucidate their general characteristics and genomic diversity. The bla OXA-23 -carrying plasmids were predominantly hosted by Acinetobacter baumannii (94.06%), and their sizes varied widely, from 8.22 to 336.05 kb. Replicon typing revealed that the majority belonged to the RP Rep family, specifically RP-T1 (62 plasmids) and RP-T2 (23 plasmids) types. A key finding of this analysis was the assignment of these two major plasmid groups to distinct plasmid taxonomic units (PTUs): all RP-T1 plasmids were classified as PTU-Pse5, whereas all RP-T2 plasmids were classified as PTU-Pse1. The bla OXA-23 gene of the plasmids was located within four kinds of composite transposons, with Tn 2006 (33.67%), Tn 2008 (32.67%), and Tn 2009 (31.68%) being the predominant genetic contexts. Notably, the 62 plasmids of RP-T1 type (PTU-Pse5) and the 23 plasmids of RP-T2 type (PTU-Pse1), found predominantly in A. baumannii , carried genes encoding relaxases of the MOB F family, T4CPs of t4cp2, and type F T4SS, suggesting they are putatively conjugative. In addition, the 62 plasmids of RP-T1 type (PTU-Pse5) were identified in multiple countries within the data set, while the 23 plasmids of RP-T2 type (PTU-Pse1) were predominantly found in China. These findings provide a genomic view of bla OXA-23 plasmids, suggest their role in disseminating carbapenem resistance across species and regions, and offer a surveillance framework, highlighting key lineages for clinical intervention. IMPORTANCE The horizontal transfer of bla OXA-23 to Acinetobacter baumannii and other gram-negative pathogens has conferred high-level carbapenem resistance, posing significant therapeutic challenges in both hospital and community settings. Plasmids carrying conjugative transfer systems serve as key vehicles for the dissemination of bla OXA-23 among clinical isolates. In this study, we identified the plasmid lineages responsible for bla OXA-23 spread and categorized them into a limited number of groups. This finding underscores the considerable risk of horizontal gene transfer in propagating carbapenem resistance and provides a valuable framework for future surveillance efforts to track the transmission of these resistant plasmids. However, this study was based on current knowledge and available data. Given the ever-changing situation of antibiotic resistance, new plasmid variants or transfer mechanisms may emerge, potentially limiting the long‑term applicability and accuracy of our findings.

Microbiology Spectrum
Guangzhou University of Chinese Medicine (CN), Beijing Institute of Technology (CN), Jinan University (CN), Zhuhai People's Hospital (CN), First Affiliated Hospital of Guangzhou University of Chinese Medicine (CN)
Openalex Percentile: Top 21%
Antibiotic Resistance in Bacteria
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