Search results for "PHOTOS"

showing 10 items of 701 documents

Changes in the Constitution of Thylakoid Membranes in Spruce Needles During an Open‐top Chamber Experiment

1992

The goal of the presented paper was to study the emission effects of natural air pollutants on the protein complexes of the thylakoid membrane. The tests were carried out in the frame of a long-term experiment in which spruce trees kept in open-top chambers with unfiltered ambient-air were compared to spruce trees in chambers with purified-air. The reaction centres of photosystem I (P-700), cytochrome f, cytochrome b-563, cytochrome b-559, as well as the oxidation speed of the antennae chlorophylls were quantified. The concentrations of the cytochromes f and b-563 indicate a marked annual rhythm with decreased concentrations during the summer months. The spruce trees in chambers with ambien…

Cytochrome fOzoneCytochromebiologyChemistryfungiPicea abiesPlant SciencePhotosystem Ibiology.organism_classificationchemistry.chemical_compoundPhotosynthetically active radiationEnvironmental chemistryThylakoidChlorophyllBotanybiology.proteinBotanica Acta
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The Variability of the Photosynthetic Unit in Chlorella Fusca

1984

The concept of the photosynthetic unit (PSIT) was introduced by Gaffron and Wohl (1936) on the basis of Emerson and Arnold’s flash light experiments (1932). The PSU was defined as the minimum of chlorophyll molecules required for the evolution of one O2. Later on, the PSU was considered to be the complex of one reaction center and its appropriate antenna of light harvesting chlorophyll molecules. Assuming that there is an equal number of the PS I and PS II reaction centers the PSU was mostly expressed as Chl/P-700. However, recently it could be shown that the ratio of PS II/PS I is variable depending on the light conditions during growth (Kawamura et al., 1979; Myers, Graham, 1982). Further…

Cytochrome fPhotosynthetic reaction centreLight intensitychemistry.chemical_compoundChlorellachemistrybiologyChlorophyllAnalytical chemistryRate-determining stepPhotosynthesisbiology.organism_classificationElectron transport chain
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The concentration of Cytochrome f and P700 in chlorophyll-deficient mutants of Chlorella fusca

1977

The ratio of Chlorophyll: Cytochrome f and of Chlorophyll: P700 (reaction center pigment in photosystem I) is essentially lower in chlorophyll-deficient mutants than in the normal green strain. On a dry weight basis, the mutants have the same or a higher content of redox enzymes than the normal form. The size of the photosynthetic unit of the mutants is 4 to 7 times smaller than that of the normal strains, due mainly to a deficiency of the light-harvesting chlorophyll-protein complex.

Cytochrome fPhotosynthetic reaction centreP700biologyLight-harvesting complexes of green plantsPlant Sciencebiology.organism_classificationPhotosystem IPhotosynthesisChlorellachemistry.chemical_compoundBiochemistrychemistryChlorophyllGeneticsPlanta
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Measurements of cytochrome f and P-700 in intact leaves of Sinapis alba grown under high-light and low-light conditions

1978

The oxidation and reduction of cytochrome f and P-700 is measured spectrophotometrically in leaves of low-light and high-light plants. After illumination with red light, an induction phenomenon for cytochrome f oxidation is observed which indicates a regulation of photosystem I activity through energy distribution between the pigment systems by the energy state of the membrane. After far-red excitation the reduction of cytochrome f in the dark is much slower in low-light leaves. This shows that cyclic electron transport is not improved in low-light plants under these conditions. P-700 is oxidized on excitation with far-red light. However, with high intensities of far-red light, P-700 is par…

Cytochrome fPhotosystem IICytochrome b6f complexSinapisfood and beveragesPlant ScienceBiologyPhotosynthesisPhotosystem IPhotochemistrybiology.organism_classificationElectron transport chainRedoxGeneticsPlanta
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Comparative Investigations on the Photosynthetic Electron Transport Chain of Spruce (Picea Abies) with Different Degrees of Damage in the Open Air

1988

Several components of the photosynthetic electron transport chain (P-700, cytochrome f, QB-protein) as well as the rate of electron transport and the chlorophyll content of the needles of spruce trees with different degrees of damage were investigated. The investigations were carried out in pair comparison at a location in the Hunsruck (West Germany). The rate of electron transport was determined as photoreduction of 2,6-dichlorophenolindophenol. Significant damage to the electron transport system is shown in the thylakoids of the damaged trees compared to the less severely damaged trees. In the spruce trees with more damage, the rates of electron transport are significantly lower. The inve…

Cytochrome fPhotosystem IIbiologyPicea abiesbiology.organism_classificationElectron transport chainchemistry.chemical_compoundchemistryDry weightChlorophyllThylakoidBotanyOxidizing agentBiophysics
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Studies on the Content of P 700 and Cytochromes in Sinapis alba During Growth Under Two Different Light Intensities

1975

Sinapis alba was grown under two extremely different light intensities. We obtained two different modifications which hold several physiological and biochemical characteristics comparable to the relations in light- and shade plants. In the strong light the maximum rate of CO2-uptake increases within five days to a three-fold rate. At the same time the content of several redox systems of photosynthetic electron transport increases while the content of P 700 remains equivalent in both types of plants. In the high-light plants we find a ratio P 700: Cytochrome f of 1 but a ratio of 3 in the low-light plants. These ratios could be probably essential features of various sun- and rainforest speci…

Cytochrome fbiologyChemistryBotanySinapisfood and beveragesRainforestbiology.organism_classificationPhotosynthesisElectron transport chainRedoxMaximum rate
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Study of electrostatic potential surface distribution of wild-type plastocyaninSynechocystissolution structure determined by homonuclear NMR

2003

Plastocyanin is a small (∼10 kDa), type I blue copper protein that works as an electron donor to photosystem I from cytochrome f in both chloroplast systems and in some strains of cyanobacteria. Comparative studies of the kinetic mechanisms of plastocyanins in different organisms show that the electron transfer from photosystem I happens by simple collision in cyanobacteria but through a intermediate transition complex in green algae and superior plants. Previous work has proved that this effect cannot be explained by structural variations across the different plastocyanins but it can be explained by differences in the electrostatic potential distribution at the protein surface. In that cas…

Cytochrome fbiologyChemistryOrganic ChemistrySynechocystisBiophysicsGeneral Medicinebiology.organism_classificationPhotosystem IBiochemistryElectron transport chainHomonuclear moleculeBiomaterialsCrystallographySide chainPlastocyaninTwo-dimensional nuclear magnetic resonance spectroscopyBiopolymers
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Changes in the Content of Chlorophyll and Redox Components of the Thylakoid Membrane during Development and Senescence of Beech (Fagus sylvatica) Lea…

1995

Abstract Leaves from 145-year-old and 44-year-old beech trees were harvested during 1991-1993. Chlorophyll (Chl) and redox components of the thylakoid membrane, including P-700, cytochrome f (Cyt f) and D1 protein, were determined with the following results. Chl a + b, P-700 and Cyt f per unit of fresh weight (FW), dry weight (DW) and leaf area (LA) increase significantly during leaf development. This can be attributed to a massive membrane syn­thesis and new thylakoid formation in the cells. The Chl a/Chl b ratio decreases with the synthesis of Chl during the development of beech leaves and is reduced further with Chl breakdown in the stage of senescence. When expressed on the basis of Chl…

Cytochrome fbiologybiology.organism_classificationPhotosynthesisRedoxGeneral Biochemistry Genetics and Molecular Biologychemistry.chemical_compoundchemistryFagus sylvaticaDry weightChlorophyllThylakoidBotanyBeechZeitschrift für Naturforschung C
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The Effect of Blue and Red Light on the Content of Chlorophyll, Cytochrome f, Soluble Reducing Sugars, Soluble Proteins and the Nitrate Reductase Act…

1980

The photosynthetic characteristics of many species of plants are influenced by the light intensity under which the plant is grown. This is shown by the light saturation curves for CO2 uptake. Both the light intensity required for saturation and the light-saturated rate of CO2 uptake increase with the light intensity under which the plant is grown. Photosynthetic adaptation to different light levels involves balanced changes of many leaf factors. Low-light and high-light plants differ in a number of component steps of photosynthesis as well as in the structure and composition of the photosynthetic apparatus and in the leaf anatomy (see reviews by Boardman 1977; Wild 1979).

Cytochrome fbiologyfungiSinapisfood and beveragesPhotosynthesisNitrate reductasebiology.organism_classificationHorticulturechemistry.chemical_compoundLight intensitychemistryChlorophyllBotanyRed lightSaturation (chemistry)
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Cyclic and noncyclic photophosphorylation during the ontogenesis of high-light and low-light leaves of Sinapis alba.

1981

Noncyclic electron transport to ferricyanide and photophosphorylation as well as the methylviologen mediated aerobic and anaerobic photophosphorylation with dichlorophenolindophenol-ascorbate as the electron donor of photosystem I were measured during the development of high-light and low-light adapted leaves of Sinapis alba. Anaerobic methylviologen-catalyzed phosphorylation is more than twice as high as aerobic phosphorylation. The difference between the rates of aerobic and anaerobic phosphorylation is sensitive to dibromothymoquinone. Thus, under anaerobic conditions, methylviologen mediates a cyclic phosphorylation including plastoquinone. All photochemical activities of high-light chl…

CytochromebiologyCytochrome b6f complexPlastoquinonePhotophosphorylationPlant SciencePhotosystem IElectron transport chainchemistry.chemical_compoundDibromothymoquinonechemistryBiochemistryChlorophyllGeneticsbiology.proteinPlanta
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