Further development of a bacteriocin typing system for Clostridium perfringens
H.G. Scott, David E. Mahony
Abstract
H.G. Scott, David E. Mahony
Abstract
Abstract The specificity of typing Clostridium perfringens with bacteriocins was improved by adding new bacteriocins and deleting others from the original typing set of ten. A total of 516 new isolates of Cl. perfringens were screened for bacteriocin production and, of these, 162 strains (31%) were found to be producers. The sensitivity patterns obtained by testing 40 bacteriocins against 200 isolates of Cl. perfringens were recorded and the data subjected to a computer analysis. A total of 18 bacteriocins capable of dividing the 200 isolates into 98 typing patterns was selected. The repro‐ducibility of the new system was tested by performing three sequential typings of 60 strains of Cl. perfringens. No variation was found in 73% of the strains, while a further 16% of the strains demonstrated a change in sensitivity to only one bacteriocin. Common serological types of Cl. perfringens were divisible into subtypes based upon both their ability to produce bacteriocins and their sensitivity to bacteriocins, suggesting a useful role for bacteriocin typing in conjunction with an already well‐established tool for typing Cl. perfringens.
OpenAlex reports 24 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
Abstract The specificity of typing Clostridium perfringens with bacteriocins was improved by adding new bacteriocins and deleting others from the original typing set of ten. A total of 516 new isolates of Cl. perfringens were screened for bacteriocin production and, of these, 162 strains (31%) were found to be producers. The sensitivity patterns obtained by testing 40 bacteriocins against 200 isolates of Cl. perfringens were recorded and the data subjected to a computer analysis. A total of 18 bacteriocins capable of dividing the 200 isolates into 98 typing patterns was selected. The repro‐ducibility of the new system was tested by performing three sequential typings of 60 strains of Cl. perfringens. No variation was found in 73% of the strains, while a further 16% of the strains demonstrated a change in sensitivity to only one bacteriocin. Common serological types of Cl. perfringens were divisible into subtypes based upon both their ability to produce bacteriocins and their sensitivity to bacteriocins, suggesting a useful role for bacteriocin typing in conjunction with an already well‐established tool for typing Cl. perfringens.
Key concepts: Bacteriocin, Clostridium perfringens, Typing, Microbiology, Biology, Bacteria, Genetics, Antimicrobial