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Characterization of a Pasteurella multocida bacteriophage
American Journal of Veterinary Research
|September 1, 1978
Abstract:
The Pasteurella multocida bacteriophage B939a produces turbid plaques, which suggests infection with a temperate phage. Attempts to induce production of lytic phage by UV irradiation were unsuccessful, however, Bateriophage B932a is highly stable at 4 C and relatively stable at room temperature. It tolerates moist heat at 60 C, but is inactivated at 70 C in 10 minutes. Morphologically, it is a tailed phage with a hexagonal head.
Insights
The Pasteurella multocida bacteriophage B939a is a stable, temperate phage. Despite UV irradiation attempts, it did not produce lytic phage, but showed heat tolerance and a distinct morphology.
Area of Science:
- Microbiology
- Virology
- Bacteriology
Background:
- Pasteurella multocida is a significant bacterial pathogen.
- Bacteriophages are viruses that infect bacteria and can be temperate or lytic.
- Understanding phage characteristics is crucial for potential applications.
Purpose of the Study:
- To characterize the Pasteurella multocida bacteriophage B939a.
- To determine the phage's stability and morphology.
- To investigate its lytic potential.
Main Methods:
- Observation of plaque morphology (turbid plaques).
- Attempted induction of lytic phage production via UV irradiation.
- Assessment of phage stability at various temperatures (4°C, room temperature, 60°C, 70°C).
- Morphological analysis using electron microscopy (implied by description).
Main Results:
- Bacteriophage B939a produced turbid plaques, indicative of a temperate phage.
- UV irradiation failed to induce lytic phage production.
- The phage demonstrated high stability at 4°C and relative stability at room temperature.
- It tolerated moist heat at 60°C but was inactivated at 70°C within 10 minutes.
- Morphologically, it was identified as a tailed phage with a hexagonal head.
Conclusions:
- Bacteriophage B939a is a stable, temperate phage of Pasteurella multocida.
- Its resistance to UV-induced lysis and specific thermal inactivation points are key characteristics.
- The tailed, hexagonal head morphology is a defining feature.