Characteristic presence of polyunsaturated fatty acids in marine psychrophilic vibrios
Tetsuo Hamamoto, Nobuhisa Takata, Toshiaki Kudo, Koki Horikoshi
Abstract
Tetsuo Hamamoto, Nobuhisa Takata, Toshiaki Kudo, Koki Horikoshi
Abstract
The cellular fatty acid compositions of 22 psychrophilic and psychrotrophic vibrios isolated from deep-sea sediment samples were analyzed. Twelve isolates were shown to contain docosahexaenoic acid (22:6), and five isolates contained eicosapentaenoic acid (20:5). The presence of these polyunsaturated fatty acids and the maximum growth temperatures of the isolates were correlated. Those containing docosahexaenoic acid possessed the lowest maximum growth temperatures (lower than 20° C, Group I), while those containing eicosapentaenoic acid had maximum growth temperatures between 20 and 25° C (Group II). A group of five isolates which did not contain such polyunsaturated fatty acids had higher maximum growth temperatures (Group III). These results imply that those polyunsaturated fatty acids may play a role in low-temperature adaptation of marine vibrios and suggest that the presence of polyunsaturated fatty acids could be used to discriminate between psychrophilic and psychrotolerant marine bacteria.
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The cellular fatty acid compositions of 22 psychrophilic and psychrotrophic vibrios isolated from deep-sea sediment samples were analyzed. Twelve isolates were shown to contain docosahexaenoic acid (22:6), and five isolates contained eicosapentaenoic acid (20:5). The presence of these polyunsaturated fatty acids and the maximum growth temperatures of the isolates were correlated. Those containing docosahexaenoic acid possessed the lowest maximum growth temperatures (lower than 20° C, Group I), while those containing eicosapentaenoic acid had maximum growth temperatures between 20 and 25° C (Group II). A group of five isolates which did not contain such polyunsaturated fatty acids had higher maximum growth temperatures (Group III). These results imply that those polyunsaturated fatty acids may play a role in low-temperature adaptation of marine vibrios and suggest that the presence of polyunsaturated fatty acids could be used to discriminate between psychrophilic and psychrotolerant marine bacteria.
Key concepts: Psychrophile, Docosahexaenoic acid, Polyunsaturated fatty acid, Eicosapentaenoic acid, Biology, Food science, Fatty acid, Biochemistry