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- W2086188214 abstract "State 1/State 2 transitions in 3-(3,4-dichlorophenyl)-1,1′-dimethylurea- (DCMU)-poisoned Anacystis cells were monitored using modulated fluorescence techniques. Measurements of fluorescence emission spectra of cells adapted to State 1 and State 2 showed that the fate of excitation energy absorbed by Photosystem II was independent of whether it was initially absorbed by phycocyanin or chlorophyll aII indicating that control of excitation energy distribution between the two photosystems is exercised at the level of chlorophyll proteins of the core complex rather than at that of the phycobilisome. Analysis of changes in the intensity dependence of State-1 adaptation in anaerobic and aerobic cells, and in aerobic cells held at different temperatures, suggested that the respiratory and photosynthetic electron-transport chains of the alga intersect at the level of the plastoquinone pool and that Photosystem I and cytochrome oxidase are in direct competition for electrons passing through this pool. This was confirmed by measurements involving the comparison of the intensity dependencies of State-1 adaptation and the light-dependent inhibition of respiration in DCMU-poisoned cells." @default.
- W2086188214 created "2016-06-24" @default.
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- W2086188214 date "1987-07-01" @default.
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- W2086188214 title "The role of respiratory electron flow in the control of excitation energy distribution in blue-green algae" @default.
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- W2086188214 doi "https://doi.org/10.1016/0005-2728(87)90230-1" @default.
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