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This study characterises two blaIMP-1-carrying IncHI1 megaplasmids in Klebsiella isolates recovered in 2019 from routinely collected rectal swabs of inpatients in London and underscores the importance of longitudinal genomic surveillance of carbapenemase-encoding megaplasmids in healthcare settings.
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Introduction. Carbapenemase-producing Enterobacterales (CPE) represent a major threat to hospitalised patients worldwide. The dissemination of carbapenemase genes, such as blaIMP, is frequently mediated by mobile genetic elements including plasmids. During a previously described multispecies, healthcare-associated outbreak of blaIMP-positive CPE in North West London, two unusual isolates, IMP47 (Klebsiella grimontii) and IMP76 (K. pneumoniae), recovered in 2019 from routinely collected rectal swabs of inpatients, were predicted to harbour blaIMP-1-carrying IncHI1 megaplasmids. Aims. This study aimed to determine complete genomic sequences of IMP47 and IMP76, resolve the genetic context of blaIMP-1, and assess the conjugative mobility of blaIMP-1-carrying megaplasmids. Methods. Genomic sequences of both isolates were recovered through hybrid assembly of Oxford Nanopore and Illumina sequencing reads. Complete plasmid sequences were characterised to determine replicons, conjugation machinery, and genes encoding resistance to antimicrobials or other stress factors. Integrons and transposable elements (TEs) within flanking regions of blaIMP-1 were resolved through genome annotation and search against public databases. Liquid-mating experiments were performed to assess the mobility of blaIMP-1-carrying plasmids. Results. Completed genome assemblies were generated from both isolates, confirming two blaIMP-1-carrying megaplasmids, pIMP47 (391 kbp) and pIMP76_1 (519 kbp), of the replicon type IncHI1A(pNDM-CIT)/IncHI1B(pNDM-CIT). The blaIMP-1 locus was carried by nearly identical class 1 integrons in both plasmids and a closely related IncHI1 megaplasmid pEB3_IMP1 (361 kbp) previously identified in South West England. Comparative analysis revealed conserved genetic structures linking blaIMP-1 to mercury-resistance genes and TEs Tn6025, TnAs3, IS26, and IS5075, suggesting a history of recombination and potential for TE-mediated mobilisation. Conjugation experiments confirmed transfer of pIMP76_1 into a recipient K. pneumoniae strain, resulting in acquisition of ertapenem resistance, whereas transfer of pIMP47 was not observed under the tested conditions. Conclusion. Two IMP-producing IncHI1 megaplasmids in gut-colonising Klebsiella species revealed TE-mediated blaIMP-1 mobilisation. The co-localisation of blaIMP-1 and metal-resistance genes in both plasmids highlights the potential for co-selection of blaIMP-1 in environments enriched with metal ions. Our findings underscore the importance of longitudinal genomic surveillance of carbapenemase-encoding megaplasmids in healthcare settings.
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@article{Wan2026IncHI1,
title = {Two IncHI1 megaplasmids in Klebsiella species reveal transposable-element-mediated blaIMP-1 mobilisation},
author = {Yu Wan and Victoria T Orr and María Getino and Sophie Mannix and Chloe Heenan and Ebony Richmond-Mensah and Nicholas Harper and Joshua L. C. Wong and Rojus Urbonas and Martina O. Chukwu and Jane F. Turton and Katie L. Hopkins and Gad M. Frankel and Alison Holmes and Frances Davies and Elita Jauneikaite},
journal = {bioRxiv (Cold Spring Harbor Laboratory)},
year = {2026},
doi = {10.64898/2026.09.09.750360},
url = {https://doi.org/10.64898/2026.09.09.750360}
}
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