Rapid identification of hypervirulent Clostridium difficile strains is essential for preventing their spread. Recent completion of several full-length C. difficile genomes provided an excellent opportunity to identify potentially unique genes that characterize hypervirulent strains. Based on sequence comparisons between C. difficile strains we describe two gene insertions into the genome of hypervirulent PCR ribotypes 078 and 027. Analysis of these regions, of 1.7 and 4.2 kb, respectively, revealed that they contain several interesting ORFs. The 078 region is inserted intergenically and introduces an enzyme that is involved in the biosynthesis of several antibiotics. The 027 insert disrupts the thymidylate synthetase (thyX) gene and replaces it with an equivalent, catalytically more efficient, thyA gene. Both gene insertions were used to develop ribotype-specific PCRs, which were validated by screening a large strain collection consisting of 68 different PCR ribotypes supplemented with diverse 078 and 027 strains derived from different geographical locations and individual outbreaks. The genetic markers were stably present in the hypervirulent PCR ribotypes 078 and 027, but were also found in several other PCR ribotypes. Comparative analysis of amplified fragment length polymorphisms, PCR ribotype banding patterns and toxin profiles showed that all PCR ribotypes sharing the same insert from phylogenetically coherent clusters. The identified loci are unique to these clusters, to which the hypervirulent ribotypes 078 and 027 belong. This provides valuable information on strains belonging to two distinct lineages within C. difficile that are highly related to hypervirulent strains.
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http://dx.doi.org/10.1099/mic.0.051953-0 | DOI Listing |
Curr Microbiol
January 2025
Coastar Therapeutics, San Diego, CA, 92126, USA.
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January 2025
The members of this group are listed under Acknowledgements.
Background infection (CDI) is a severe infection that needs to be monitored. This infection predominantly occurs in hospitalised patients after antimicrobial treatment, with high mortality in elderly patients.AimWe aimed at estimating the incidence of CDI in Italian hospitals over 4 months in 2022.
View Article and Find Full Text PDFAnaerobe
December 2024
Department of Bacteriology II, National Institute of Infectious Diseases, Tokyo 208-0011, Japan.
Clostridioides (Clostridium) difficile (C. difficile) infection (CDI), often severe when producing toxin A, toxin B, and CDT, can cause life-threatening fulminant infections, especially in vulnerable patients. This case report discusses a 39-year-old woman with no medical history who developed severe CDI after antibiotic treatment, leading to fatal hypovolemic shock.
View Article and Find Full Text PDFAnaerobe
December 2024
Canakkale Onsekiz Mart University Engineering Faculty Food Engineering, Canakkale, Turkey. Electronic address:
Introduction: The presence of Clostridioides difficile in water, soil, fertilizers, and animal feces suggests the potential existence of C. difficile in foods that come into contact with these sources or become contaminated through indirect means.
Material & Method: A total of 431 samples, consisting of spinach and carrots and raw milk and cheese obtained from cows, goats, buffalo, and sheep, were examined for the presence of C.
Anaerobe
November 2024
Department of Medical Microbiology, University of Pretoria, Pretoria, South Africa; National Health Laboratory Service (NHLS), Academic Division, Pretoria, South Africa. Electronic address:
Objectives: Clostridioides difficile infection is a serious healthcare-associated infection linked to antimicrobial use. The severity of the disease can be associated with hypervirulent ribotypes such as RT027. The study aimed to investigate the molecular epidemiology and genomic characteristics of C.
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