首页> 外文期刊>Planta: An International Journal of Plant Biology >Photochemical efficiency of photosystem II, photon yield of O2evolution, photosynthetic capacity, and carotenoid composition during the midday depression of net CO2uptake inArbutus unedogrowing in Portugal
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Photochemical efficiency of photosystem II, photon yield of O2evolution, photosynthetic capacity, and carotenoid composition during the midday depression of net CO2uptake inArbutus unedogrowing in Portugal

机译:Photochemical efficiency of photosystem II, photon yield of O2evolution, photosynthetic capacity, and carotenoid composition during the midday depression of net CO2uptake inArbutus unedogrowing in Portugal

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During the “midday depression” of net CO2exchange in the mediterranean sclerophyllous shrubArbutus unedo, examined in the field in Portugal during August of 1987, several parameters indicative of photosynthetic competence were strongly and reversibly affected. These were the photochemical efficiency of photosystem (PS) II, measured as the ratio of variable to maximum chlorophyll fluorescence, as well as the photon yield and the capacity of photosynthetic O2evolution at 10 CO2, of which the apparent photon yield of O2evolution was most depressed. Furthermore, there was a strong and reversible increase in the content of the carotenoid zeaxanthin in the leaves that occurred at the expense of both violaxanthin and β-carotene. Diurnal changes in fluorescence characteristics were interpreted to indicate three concurrent effects on the photochemical system. First, an increase in the rate of radiationless energy dissipation in the antenna chlorophyll, reflected by changes in 77K fluorescence of PSII and PSI as well as in chlorophyll a fluorescence at ambient temperature. Second, a state shift characterized by an increase in the proportion of energy distributed to PSI as reflected by changes in PSI fluorescence. Third, an effect lowering the photon yield of O2evolution and PSII fluorescence at ambient temperature without affecting PSII fluorescence at 77K which would be expected from a decrease in the activity of the water splitting enzyme system, i.e. a donor side limita

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