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High resolution melt analysis to track infections due to ribotype 027 Clostridium difficile
Danilla Grando1, Mohamed M Said, Barrie C Mayall
1School of Applied Sciences, RMIT University, Bundoora, 3083, Australia. danilla.grando@rmit.edu.au
Abstract:
The increased prevalence of hypervirulent ribotype 027 Clostridium difficile requires rapid identification of isolates in order to implement timely infection control strategies. High resolution melt (HRM) analysis of PCR products can identify strain variation amongst genera of bacteria. The intergenic (16S-23S rDNA) spacer region contains sequence regions conserved within genera and other sequence region variables between species within genera. We wished to investigate whether HRM analysis of PCR ribotyping products could identify ribotype 027 C. difficile. Ribotyping was performed on 93 clinical isolates and five control strains and band patterns were analysed using GelCompar II (Applied Maths, USA). Real-time PCR using ribotyping primers was performed and normalised melt curves were generated. The HRM data was then imported into ScreenClust software (QIAGEN) to generate principal component analysis graphs depicting clustered relationships of strains. Ribotyping produced clear PCR bands for 88/98 isolates tested. Dendrograms generated by GelCompar showed a diversity of ribotype patterns amongst these 88 isolates with 18 groups identified with 70% homology. One clinical isolate showed 100% homology with the control 027 strains. ScreenClust analysis of the same 88 HRM results showed clustering of isolates, with 027 strains identifiable as a unique cluster. HRM analysis correctly identified the control 027 stains and the clinical isolate shown to be 027. HRM combined with ScreenClust analysis of real-time PCR products of the 16S-23S rDNA spacer region successfully identified ribotype 027 strains. For infection control purposes this was achieved within 2-3 h of colony isolation.
Insights
Rapidly identifying hypervirulent Clostridium difficile ribotype 027 is crucial for infection control. High-resolution melt (HRM) analysis of PCR ribotyping products effectively distinguishes this specific strain within hours of isolation.
Area of Science:
- Microbiology
- Molecular Biology
- Infectious Diseases
Background:
- Clostridium difficile ribotype 027 is a hypervirulent strain requiring swift identification for effective infection control.
- High-resolution melt (HRM) analysis offers a method for detecting bacterial strain variations.
- The 16S-23S rDNA spacer region presents a target for strain differentiation.
Purpose of the Study:
- To evaluate the efficacy of HRM analysis of PCR ribotyping products in identifying Clostridium difficile ribotype 027.
- To determine if HRM can provide a rapid method for distinguishing this specific hypervirulent strain.
Main Methods:
- Conventional ribotyping was performed on 93 clinical isolates and 5 control strains.
- Real-time PCR targeting the 16S-23S rDNA spacer region was conducted.
- HRM data was analyzed using ScreenClust software for strain clustering.
Main Results:
- Ribotyping identified diverse patterns, with one clinical isolate matching control 027 strains.
- HRM analysis combined with ScreenClust successfully clustered isolates, uniquely identifying ribotype 027 strains.
- This method achieved identification within 2-3 hours of colony isolation.
Conclusions:
- HRM analysis of real-time PCR products from the 16S-23S rDNA spacer region is a reliable method for identifying Clostridium difficile ribotype 027.
- This technique offers a rapid and effective tool for infection control strategies against hypervirulent strains.
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