Antibiotic Resistance in Bacteria Open access Peer reviewed

An IS26-assembled three-module chimeric plasmid co-localizing blaNDM–1 and blaKPC–2 undergoes post-transfer rearrangement in Klebsiella pneumoniae

Zaikun Xiong, Rucai Chen, Caibing Zhao, Qianyi Cheng and 8 more

Frontiers in Microbiology | Sep 10, 2026

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It is hypothesized that this tri-modular plasmid may play an important role in the dissemination of carbapenemase genes, and therefore continued surveillance of this plasmid and its rearranged derivatives is warranted.

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Introduction Carbapenem-resistant Klebsiella pneumoniae (CRKP) poses a severe global public health threat, driven largely by plasmid-borne carbapenemase genes such as bla NDM–1 and bla KPC–2 . Although CRKP strains co-producing multiple carbapenemases are increasingly reported, the co-localization of these genes on a single plasmid remains rare, and the evolutionary dynamics and stability of such hybrid resistance plasmids are poorly understood. Methods In this study, we characterized a highly imipenem-resistant clinical ST11 CRKP isolate (W61) by combining whole-genome sequencing, conjugation assays, structural variation (SV) analysis, S1-PFGE, Southern blotting, and antibiotic susceptibility testing. Results The isolate harbored a novel 224-kbp chimeric plasmid (pW61_1) and exhibited an imipenem minimum inhibitory concentration (MIC) of 512 μg/mL. Plasmid pW61_1 was composed of three modules fused through IS 26 -mediated cointegration: module 1 (IncFIB), module 2 (IncFII, bla KPC–2 + ), and module 3 (IncN2, bla NDM–1 + ). Under laboratory conditions, W61 maintained a high carbapenem-resistance retention rate in its native host even after 10 days of serial passage without antibiotic exposure. In addition, pW61_1 retained high structural stability after 10 days of serial passage under high imipenem concentrations. In the K. pneumoniae recipient, pW61_1 rearranged into smaller, resistance-retaining SVs, including SV-D3 ( bla NDM–1 + ) and SV-D4 ( bla KPC–2 + ), primarily through IS 26 -driven replication-associated excision. In the Escherichia coli J53 recipient, only small rearranged derivatives of pW61_1 were retained, each carrying one or both carbapenemase genes. Discussion Our findings demonstrate that the tri-modular plasmid is transferable and undergoes post-transfer rearrangement under laboratory conditions. We hypothesize that this tri-modular plasmid may play an important role in the dissemination of carbapenemase genes, and therefore continued surveillance of this plasmid and its rearranged derivatives is warranted.

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Zaikun Xiong

first | Kunming Medical University | ORCID 0000-0002-4293-7462

Rucai Chen

middle | Kunming Medical University | ORCID 0000-0003-1440-7154

Caibing Zhao

middle | Kunming Medical University

Qianyi Cheng

middle | Kunming Medical University

Liang Xianyao

middle | Kunming Medical University

Ying Hu

middle | Kunming Medical University | ORCID 0000-0002-6330-8032

Xu Yang

middle | Kunming Medical University

Jinyuan Yan

middle | Kunming Medical University | ORCID 0000-0003-2046-5625

Wei He

middle | Kunming Medical University

Li Chen

middle | Kunming Medical University | ORCID 0000-0003-0977-2384

Xinwei Huang

middle | Kunming Medical University

Pengfei Wang

last | Kunming Medical University

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BibTeX

@article{Xiong2026IS26,
  title = {An IS26-assembled three-module chimeric plasmid co-localizing blaNDM–1 and blaKPC–2 undergoes post-transfer rearrangement in Klebsiella pneumoniae},
  author = {Zaikun Xiong and Rucai Chen and Caibing Zhao and Qianyi Cheng and Liang Xianyao and Ying Hu and Xu Yang and Jinyuan Yan and Wei He and Li Chen and Xinwei Huang and Pengfei Wang},
  journal = {Frontiers in Microbiology},
  year = {2026},
  doi = {10.3389/fmicb.2026.1916718},
  url = {https://doi.org/10.3389/fmicb.2026.1916718}
}

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