Stimulation of porphyrin production by application of an external magnetic field to a photosynthetic bacterium, Rhodobacter sphaeroides.

J Biosci Bioeng

Materials Science and Engineering, Graduate School of Engineering, Hiroshima Kokusai Gakuin University, 6-20-1 Nakano, Akiku, Hiroshima 739-0321, Japan.

Published: November 2005

The effects of an external magnetic field on the production of porphyrin were investigated using Rhodobacter sphaeroides IF012203 under anaerobic-light conditions. Upon application of a 0.13-0.3-T magnetic field, the growth was slightly suppressed and porphyrin extracellular production was activated at both the N and S poles, particularly at the N pole up to about 5.3 times that in the control experiment (6.7 mg/1) (without magnetic filed application). The maximum production was 35.8 mg/1 at the N pole with a magnetic field of 0.3 T. At the same time, the 5-aminolevulinic acid dehydratase (ALAD) concentration was enhanced in the cells at the N and S poles, but particularly at the the N pole. This suggested the possibility that the magnetic field might activate ALAD gene expression in R. sphaeroides IF012203 and result in enhanced porphyrin production.

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