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Journal ArticleDOI

Photochemical efficiency of photosystem II, photon yield of O2 evolution, photosynthetic capacity, and carotenoid composition during the midday depression of net CO2 uptake in Arbutus unedo growing in Portugal

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TLDR
During the “midday depression” of net CO2 exchange in the mediterranean sclerophyllous shrub Arbutus unedo, examined in the field in Portugal during August of 1987, several parameters indicative of photosynthetic competence were strongly and reversibly affected.
Abstract
During the “midday depression” of net CO2 exchange in the mediterranean sclerophyllous shrub Arbutus 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 O2 evolution at 10% CO2, of which the apparent photon yield of O2 evolution 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 O2 evolution 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 limitation.

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Citations
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Journal ArticleDOI

Ecophysiological responses of plants in ecosystems with mediterranean-like climate and high mountain environments

TL;DR: In this paper, a revision of the estudios en ecofisiologia in plantas of zonas con clima tipo mediterraneo, with enfasis in the fotosintesis frente a los multiples estres of estos ambientes.
Journal ArticleDOI

Stomatal and mesophyll limitations to photosynthesis in one evergreen and one deciduous Mediterranean oak species

TL;DR: The mesophyll limitation of photosynthesis seemed to be similar for both species, independently from the differences in leaf traits between them.
Journal ArticleDOI

Effects of elevated O3 and CO2 on chlorophyll fluorescence and gas exchange in Scots pine during the third growing season

TL;DR: Doubled ambient O(3) and CO(2) treatment did not lead to a significant change in the intrinsic capacity of photosynthesis, as manifested by no changes in PS II, the rate of electron transport, the maximal rate of photosynthetic rate and the apparent quantum yield of CO( 2) assimilation, however, elevated CO(1) increased the sensitivity of stomatal conductance to light and decreased maximal stomatic conductance.
Journal ArticleDOI

Paraheliotropism can protect water-stressed bean (Phaseolus vulgaris L.) plants against photoinhibition

TL;DR: It is concluded that paraheliotropism, present in the four bean cultivars, efficiently protects stressed plants from photoinhibition in the field and helps maintain leaf temperatures far below the ambient temperatures, however, it may also be responsible for low CO2 assimilation rates in watered plants.
Journal ArticleDOI

Leaf orientation and the response of the xanthophyll cycle to incident light

TL;DR: Daily changes in the components of the xanthophyll cycle that paralleled the daily changes in incident light in the leaves of E. kiautschovicus and A. uva-ursi are both consistent with the involvement of zeaxanthin in the photoprotection of the photosynthetic apparatus against damage due to excessive light.
References
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Journal ArticleDOI

Photon yield of O2 evolution and chlorophyll fluorescence characteristics at 77 K among vascular plants of diverse origins.

TL;DR: Determinations of the photon yield of O2 evolution and the Fv/FM, 692 ratio can serve as excellent quantitative measures of photoinhibition of overall photosynthetic energy-conversion system and of photochemistry of photosystem II, respectively.
Book ChapterDOI

Responses to Different Quantum Flux Densities

O. Björkman
TL;DR: In any habitat the quantum flux density varies seasonally, diurnally, and spatially (such as within a canopy of a given plant stand) as mentioned in this paper, which is the most conspicuous environmental variable with which plants must cope.
Journal ArticleDOI

Quenching of chlorophyll fluorescence and primary photochemistry in chloroplasts by dibromothymoquinone.

TL;DR: FO and FV are the same type of fluorescence, both emanating from the bulk chlorophyll of Photosystem II, according to simple theory, which predicts that the ratio FV/FM should equal phipo.
Journal ArticleDOI

Comparison of the effect of excessive light on chlorophyll fluorescence (77K) and photon yield of O2 evolution in leaves of higher plants.

TL;DR: It is proposed that high-light treatments can have at least two different, concurrent effects on 77K fluorescence in leaves, one results from damage to the photosystem II (PSII) reaction-center complex and leads to a rise in FO, 692; the other results from an increased non-radiative energy dissipation in the pigment bed.

Photoinhibition and zeaxanthin formation in intact leaves. A possible role of the xanthophyll cycle in the dissipation of excess light energy. [Populus balsamifera; Hedera; helix; Monstrosa deliciosa]

TL;DR: Comparative studies of chlorophyll a fluorescence and of the pigment composition of leaves suggest a specific role of zeaxanthin, a carotenoid formed in the xanthophyll cycle, in protecting the photosynthetic apparatus against the adverse effects of excessive light.
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