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Identification of IncA/C Plasmid Replication and Maintenance Genes and Development of a Plasmid Multilocus Sequence
Steven J Hancock1,2, Minh-Duy Phan3,2, Kate M Peters1,2
1Australian Infectious Diseases Research Centre, University of Queensland, Brisbane, Australia.
Abstract:
Plasmids of incompatibility group A/C (IncA/C) are becoming increasingly prevalent within pathogenic Enterobacteriaceae They are associated with the dissemination of multiple clinically relevant resistance genes, including blaCMY and blaNDM Current typing methods for IncA/C plasmids offer limited resolution. In this study, we present the complete sequence of a blaNDM-1-positive IncA/C plasmid, pMS6198A, isolated from a multidrug-resistant uropathogenic Escherichia coli strain. Hypersaturated transposon mutagenesis, coupled with transposon-directed insertion site sequencing (TraDIS), was employed to identify conserved genetic elements required for replication and maintenance of pMS6198A. Our analysis of TraDIS data identified roles for the replicon, including repA, a toxin-antitoxin system; two putative partitioning genes, parAB; and a putative gene, 053 Construction of mini-IncA/C plasmids and examination of their stability within E. coli confirmed that the region encompassing 053 contributes to the stable maintenance of IncA/C plasmids. Subsequently, the four major maintenance genes (repA, parAB, and 053) were used to construct a new plasmid multilocus sequence typing (PMLST) scheme for IncA/C plasmids. Application of this scheme to a database of 82 IncA/C plasmids identified 11 unique sequence types (STs), with two dominant STs. The majority of blaNDM-positive plasmids examined (15/17; 88%) fall into ST1, suggesting acquisition and subsequent expansion of this blaNDM-containing plasmid lineage. The IncA/C PMLST scheme represents a standardized tool to identify, track, and analyze the dissemination of important IncA/C plasmid lineages, particularly in the context of epidemiological studies.
Insights
Incompatibility group A/C (IncA/C) plasmids carrying blaNDM genes are spreading. A new plasmid multilocus sequence typing (PMLST) scheme effectively tracks these IncA/C plasmids, revealing a dominant lineage associated with blaNDM.
Area of Science:
- Microbiology
- Genetics
- Epidemiology
Background:
- Incompatibility group A/C (IncA/C) plasmids are increasingly found in pathogenic Enterobacteriaceae.
- These plasmids facilitate the spread of critical antibiotic resistance genes like blaCMY and blaNDM.
- Existing methods for IncA/C plasmid typing lack sufficient resolution.
Purpose of the Study:
- To sequence and analyze a blaNDM-1-positive IncA/C plasmid (pMS6198A) from a multidrug-resistant E. coli strain.
- To identify genetic elements essential for IncA/C plasmid replication and stable maintenance using transposon mutagenesis and TraDIS.
- To develop a novel plasmid multilocus sequence typing (PMLST) scheme for IncA/C plasmids.
Main Methods:
- Complete genome sequencing of pMS6198A.
- Hypersaturated transposon mutagenesis and transposon-directed insertion site sequencing (TraDIS) to identify essential genes.
- Construction and stability testing of mini-IncA/C plasmids.
- Development and application of a new IncA/C plasmid PMLST scheme.
Main Results:
- Identified key genetic elements for IncA/C plasmid maintenance: repA, a toxin-antitoxin system, parAB, and a putative gene 053.
- Confirmed that the 053 region is crucial for stable IncA/C plasmid maintenance.
- The new IncA/C PMLST scheme identified 11 sequence types (STs) among 82 plasmids.
- The majority of blaNDM-positive IncA/C plasmids (88%) belonged to ST1, indicating a successful lineage.
Conclusions:
- The identified genes (repA, parAB, 053) are essential for IncA/C plasmid stability.
- The developed IncA/C PMLST scheme provides a standardized method for tracking IncA/C plasmid lineages.
- The prevalence of blaNDM-positive plasmids in ST1 highlights a significant public health concern and a successful plasmid expansion.
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