HYDROGEN PHOTOEVOLUTION INDICATES AN INCREASE IN THE ANTENNA SIZE OF PHOTOSYSTEM-I IN CHLAMYDOBOTRYS-STELLATA DURING TRANSITION FROM AUTOTROPHIC TO PHOTOHETEROTROPHIC NUTRITION
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BOICHENKO, VA
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机构:HUNGARIAN ACAD SCI, BIOL RES CTR, H-6701 SZEGED, HUNGARY
BOICHENKO, VA
WIESSNER, W
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WIESSNER, W
KLIMOV, VV
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KLIMOV, VV
MENDE, D
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MENDE, D
DEMETER, S
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DEMETER, S
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[1] HUNGARIAN ACAD SCI, BIOL RES CTR, H-6701 SZEGED, HUNGARY
The changes in the light-harvesting antenna size of photosystem I were investigated in the green alga Chlamydobotrys stellata during transition from autotrophic to photoheterotrophic nutrition by measuring the light-saturation behavior of hydrogen evolution following single turnover flashes. It was found that during autotrophic-to-photoheterotrophic transition the antenna size of photosystem I increased from 180 to 250 chlorophyll. The chlorophyll (a + b)/P700 ratio decreased from 800 to 550. The electron transport of photosystem I measured from reduced 2,6-dichloro-phenolindophenol to methylviologen was accelerated 1.4 times. In the 77K fluorescence spectra, the photosystem II fluorescence yield was considerably lowered relative to the photosystem I fluorescence yield. It is suggested that the increased light-harvesting capacity and redistribution of absorbed excitation energy in favor of photosystem I is a response of photoheterotrophic algae to meet the ATP demand for acetate metabolism by efficient photosystem I cyclic electron transport when the noncyclic photophosphorylation is inhibited by CO2 deficiency.