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Testing the Role of Multicopy Plasmids in the Evolution of Antibiotic Resistance
Published on: May 2, 2018
Antibiotic resistance plasmids and mobile genetic elements of Clostridium perfringens
Vicki Adams1, Xiaoyan Han1, Dena Lyras1
1Infection and Immunity Program, Monash Biomedicine Discovery Institute and Department of Microbiology, Monash University, Clayton, VIC 3800, Australia.
Abstract:
Clostridium perfringens is an anaerobic bacterium that is a major human and animal pathogen. The key features of C. perfringens-mediated infections are that disease pathogenesis involves the production of protein toxins and that disease epidemiology generally involves the production of environmentally resistant endospores. Many of the toxins involved in these diseases are encoded on conjugative plasmids that are closely related to the paradigm tetracycline resistance plasmid pCW3. This plasmid encodes the Tet(P) tetracycline resistance determinant, and the tcp locus, which mediates conjugative transfer and is also present on the toxin plasmids. In addition to being directly responsible for the widely dispersed distribution of the Tet(P) determinant, which is not located on a transposable genetic element, this family of conjugative plasmids facilitates the spread of other mobile resistance elements. These elements include the chloramphenicol resistance integrative mobilisable elements typified by Tn4451, the bacitracin resistance integrative conjugative element typified by ICECp1, and the lincomycin resistance transferable insertion sequence typified by tISCpe8. Each of these elements are found on conjugative plasmids that are closely related to pCW3, providing evidence that this large plasmid family has a key role in the distribution of antibiotic resistance genes in C. perfringens.
Insights
Conjugative plasmids in Clostridium perfringens, a major pathogen, are key to spreading antibiotic resistance genes. These plasmids, related to pCW3, facilitate the distribution of various resistance elements in both human and animal infections.
Area of Science:
- Microbiology
- Genetics
- Molecular Biology
Background:
- Clostridium perfringens is a significant anaerobic pathogen in humans and animals.
- Infections are characterized by toxin production and environmentally resistant endospores.
- Many virulence factors are encoded on conjugative plasmids related to pCW3.
Purpose of the Study:
- To investigate the role of conjugative plasmids in the dissemination of antibiotic resistance genes in Clostridium perfringens.
- To identify the specific mobile genetic elements associated with these plasmids.
Main Methods:
- Plasmid analysis
- Gene sequencing
- Mobile genetic element characterization
Main Results:
- Conjugative plasmids related to pCW3 carry the Tet(P) tetracycline resistance determinant.
- These plasmids also harbor other mobile resistance elements, including integrative mobilizable elements (e.g., Tn4451) and transferable insertion sequences (e.g., tISCpe8).
- The tcp locus, involved in conjugative transfer, is present on these toxin plasmids.
Conclusions:
- A large family of conjugative plasmids, exemplified by pCW3, plays a crucial role in the distribution of antibiotic resistance genes in Clostridium perfringens.
- These plasmids act as vectors for various mobile resistance elements, contributing to the spread of antibiotic resistance in this pathogen.
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