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Published on: December 23, 2022
Draft genome sequence of emerging pathogen Morganella morganii strain PS00513 isolated from a chronic surgical wound
Kira N Allison1, Rayhane Mejlaoui1, Katrina G DeZeeuw2
1Department of Health Sciences, Carleton University, Ottawa, Ontario, Canada.
Abstract:
We report the draft genome sequence and antimicrobial resistance gene profile of Morganella morganii strain PS00513. This strain was isolated from a chronic surgical wound infection of an adult male patient. The chromosome is 3.87 Mb long and accompanied by a 9.6 kb plasmid, which both contain multiple antibiotic resistance genes.
Insights
We sequenced the genome of Morganella morganii strain PS00513, isolated from a surgical wound infection. The study identified multiple antibiotic resistance genes on both its chromosome and plasmid.
Area of Science:
- Microbiology and Genomics
- Infectious Diseases
Background:
- Morganella morganii is an opportunistic pathogen frequently associated with healthcare-associated infections.
- Understanding the genomic basis of antimicrobial resistance in M. morganii is crucial for effective treatment strategies.
Purpose of the Study:
- To perform whole-genome sequencing of Morganella morganii strain PS00513.
- To identify the antimicrobial resistance gene profile of this clinical isolate.
- To characterize the genetic elements (chromosome and plasmid) carrying resistance genes.
Main Methods:
- Draft genome sequencing of Morganella morganii strain PS00513.
- Bioinformatic analysis to identify antimicrobial resistance genes.
- Characterization of chromosomal and plasmid DNA sequences.
Main Results:
- The draft genome sequence of M. morganii strain PS00513 comprises a 3.87 Mb chromosome and a 9.6 kb plasmid.
- Multiple antimicrobial resistance genes were identified.
- Both the chromosome and the plasmid harbor antibiotic resistance genes, indicating a complex resistance mechanism.
Conclusions:
- The genomic data provides valuable insights into the genetic makeup of Morganella morganii.
- The presence of multiple resistance genes on both chromosomal and plasmid DNA highlights the potential for rapid dissemination of antibiotic resistance.
- This study contributes to understanding the antimicrobial resistance landscape of M. morganii in clinical settings.
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