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The isolation of a staphylococcal phage variant susceptible to an unusual host control
Abstract:
A series of phage P(1) variants was isolated from plaques developing on S. aureus WF 145. One in particular, phage 14, was studied in detail because its host range appeared to be dependent on the previous host of production; i.e., it was subject to a host control. When this phage was produced on host K(1) its lysate assayed equally well on both 145 and K(1) cells. When produced on host 145, however, it assayed manyfold higher on 145 than on host K(1). All its particles adsorbed on K(1) cells, but only a small percentage were able to produce plaques. No differences could be found in adsorption rates, latent periods, or burst sizes of the phage on the two hosts. No extracellular inactivating substances could be detected which could account for such changes, nor could the results be explained readily on a mutational basis, since distinct phage strains could not be isolated. The change in virus properties was found to occur in the first burst of singly infected host 145 cells, regardless of the previous host or its prior lytic abilities. Heat inactivation destroyed activity for K(1) cells more rapidly than for 145 cells. This was found to be a property of both the stock phage P(1) and phage 14. Phage 14 could be heated until there remained particles which could multiply only on strain 145. When the plaques of such survivors were examined they were found to contain phage which could multiply on both hosts in a ratio characteristic of the original unheated preparation. The data suggest that the observed changes were caused by a host control over the formation of a phage material(s) necessary for successful infection of host K(1). Such a substance theoretically could be related to the labile material destroyed by heat and required for plaque formation on host K(1).
Insights
Bacteriophage P(1) variants exhibit host-controlled properties, affecting their plaque-forming ability on different Staphylococcus aureus strains. This suggests host control over essential phage material production for successful infection.
Area of Science:
- Microbiology
- Virology
- Bacteriophage Research
Background:
- Phage P(1) variants were isolated from Staphylococcus aureus WF 145.
- Phage 14 displayed host-controlled properties, influencing its plaque-forming efficiency on different bacterial hosts.
Purpose of the Study:
- To investigate the host control phenomenon observed in phage P(1) variants.
- To elucidate the mechanisms behind the altered host range and plaque-forming ability of phage 14.
Main Methods:
- Comparative analysis of phage 14 plaque formation on S. aureus strains 145 and K(1).
- Assessment of phage adsorption, latent period, and burst size on different hosts.
- Heat inactivation experiments to determine phage particle stability and activity.
Main Results:
- Phage 14 produced on host 145 showed significantly higher plaque formation on 145 than on K(1), while production on K(1) resulted in equal activity on both.
- No differences in adsorption, latent period, or burst size were observed, and no inactivating substances were detected.
- Heat inactivation data indicated a heat-labile substance required for K(1) infection, suggesting host control over its formation.
Conclusions:
- The observed changes in phage 14 properties are attributed to host control over the synthesis of a phage material essential for K(1) infection.
- This host-controlled material is likely heat-labile and crucial for successful plaque formation on host K(1).
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