Search results for "photosynthesi"

showing 10 items of 310 documents

Grapevine physiological response to row orientation-induced spatial radiation and microclimate changes

2020

Terroir factors and vineyard practices largely determine canopy and root system functioning. In this study, changes in soil conditions, multi-level (vertical, horizontal) light interception (quantitative, photographic, schematic, 3D modelled), leaf water potential and photosynthetic activity were measured during the grape ripening period on NS, EW, NE-SW, and NW-SE orientated (Southern Hemisphere) vertically trellised Shiraz grapevine canopies. It was hypothesised that the spatial radiation interception angle and radiation distribution of differently orientated and vertically trained grapevine rows would affect soil conditions and vine physiological activity. Soil water content showed an in…

Canopycanopy modellingspatial radiationphotosynthesisMicroclimatelcsh:SRoot systemHorticulturecanopy microclimateVineyardleaf water potentiallcsh:QK1-989lcsh:AgricultureAgronomyPhotosynthetically active radiationgrapevine row orientationlcsh:BotanySoil waterEnvironmental scienceSoil horizonSoil conditionsSettore AGR/03 - ARBORICOLTURA GENERALE E COLTIVAZIONI ARBOREEInterceptionFood ScienceOENO One
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Global sensitivity analysis of the SCOPE model : what drives simulated canopy - leaving sun - induced fluorescence?

2015

This study provides insight into the key variables that drive sun-induced chlorophyll fluorescence (SIF) emanating from vegetation canopies, based on a global sensitivity analysis (GSA) of the Soil-Canopy Observation of Photosynthesis and Energy (SCOPE) balance model. An updated version of the SCOPE model was used here (v1.53) which contains novel leaf physiological modules for determination of the steady state fluorescence yield: a photosynthesis model coupled with (a) submodels having empirically derived relationships, identified as TB12 for unstressed and TB12-D for drought conditions and (b) a mechanistic (MD12) submodel based on theoretical relationships. By inspecting Sobol's total or…

Canopymodelchlorophyll fluorescenceSoil ScienceFluxGeologyVegetationgross primary productionPhotosynthetic capacityremote sensingphotosynthesiITC-ISI-JOURNAL-ARTICLE2023 OA procedureEnvironmental scienceMain effectShortwave radiationComputers in Earth SciencesLeaf area indexMETIS-311058Chlorophyll fluorescenceRemote sensingRemote sensing of environment
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Manganese carbonyl terpyridyl complexes: their synthesis, characterization and potential application as CO-release molecules

2014

MnI carbonyl terpyridyl complexes have been synthesized and characterized. The tricarbonyl derivative exhibits interesting behaviors for controlled CO-release by both thermal and photosynthetic pathways.

Carbon MonoxideManganeseLightMetals and Alloyschemistry.chemical_elementGeneral ChemistryManganesePhotosynthesisPhotochemistryCatalysisSurfaces Coatings and FilmsElectronic Optical and Magnetic MaterialsCharacterization (materials science)chemistry.chemical_compoundchemistryCoordination ComplexesMaterials ChemistryCeramics and CompositesMolecule[CHIM]Chemical SciencesCo releaseta116Derivative (chemistry)ComputingMilieux_MISCELLANEOUSChemical Communications
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Carbon autonomy of peach shoots determined by 13C-photoassimilate transport

2009

We used (13)CO(2) tracing and source-sink manipulation to determine if fruiting shoots of peach (Prunus persica (L.) Batsch) trees are autonomous or if they import carbon from neighboring shoots, and if the degree of shoot autonomy is influenced by the source-sink relationship of the shoot. In three experiments, leaf to fruit ratio (L:F) of selected fruiting shoots was moderately (2005 and 2006) or strongly (complete sink removal, 2006) altered to either enhance or inhibit movement of carbon from (13)C-labeled fruiting shoots (LFS) to adjacent non-labeled shoots (NLFS), both located within 10 cm on the same main scaffold of V-shaped peach trees. At Stages I and III of fruit growth, fruit an…

Carbon metabolismPhysiologyPlant ScienceBiologyPhotosynthesisSink (geography)Prunuschemistry.chemical_compoundBotanyCultivarPhotosynthesisCarbon Isotopesgeographygeography.geographical_feature_categoryBiological TransportCarbon DioxideCarbonPlant LeavesHorticulturePhotoassimilatechemistryFruitShootCarbon dioxidebranch girdling carbon dioxide fruit sink leaf area isotope tracing Prunus persica source-sink balancePrunusPlant ShootsTree Physiology
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Red and far-red sun-induced chlorophyll fluorescence as a measure of plant photosynthesis

2015

Remote estimation of Sun-induced chlorophyll fluorescence emitted by terrestrial vegetation can provide an unparalleled opportunity to track spatiotemporal variations of photosynthetic efficiency. Here we provide the first direct experimental evidence that the two peaks of the chlorophyll fluorescence spectrum can be accurately mapped from high-resolution radiance spectra and that the signal is linked to variations in actual photosynthetic efficiency. Red and far red fluorescence measured using a novel airborne imaging spectrometer over a grass carpet treated with an herbicide known to inhibit photosynthesis was significantly higher than the corresponding signal from an equivalent untreated…

Chemistry1900 General Earth and Planetary SciencesImaging spectrometerfood and beveragesFar-redPhotosynthetic efficiencyPhotosynthesisFluorescenceGEO/10 - GEOFISICA DELLA TERRA SOLIDA10122 Institute of GeographyGeophysicsRadianceddc:550General Earth and Planetary Sciences910 Geography & travel1908 GeophysicsControlled experimentfluorescence airborne sensor high resolution photosynthesisChlorophyll fluorescenceRemote sensing
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Growth and Photosynthesis of Nanochlorum eucaryotum, a New and Extremely Small Eucaryotic Green Alga

1982

Nanochlorum eucaryotum is a very small species of unicellular coccoid green algae (1.5 pm). The growth of Nanochlorum under different conditions of salinity, pH and light intensities was studied. Optimal growth rates were observed with normal sea water salinity and low light conditions at pH 7.0. The contents of chlorophylls, carotinoids, soluble proteins and the chlorophyll a to chlorophyll b ratio were measured. The light saturating curves of Nanochlorum cells grown under light intensities of 100 lx, 2000 lx and 10000 lx reveal a very narrow capacity of light adaptation. When cultured under higher light intensities, Nanochlorum was not able to reach high photosynthetic activities but unde…

ChemistryBotanyNanochlorum eucaryotumPhotosynthesisGeneral Biochemistry Genetics and Molecular BiologyZeitschrift für Naturforschung C
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Climate Over the Ages; Is the Environment Stable?

2010

As described in Chaps. 3 and 4, the advent of oxygenic photosynthesis triggered worldwide environmental changes. A world that had been reductive passed over into a state in which free dioxygen was available in the oceans and the atmosphere. We have already described the likely catastrophic effects on an anaerobic biota, but the changes were much broader than that. Dioxygen in the seas led to major changes in seawater chemistry. Iron, which had previously been soluble as ferrous salts, was precipitated in the ferric form. Copper, which had been insoluble in the anaerobic ocean as cuprous sulphide (Cu+-state), now became moderately soluble in the cupric form (Cu++-state).

ChemistryGreat Oxygenation EventEnvironmental chemistryFerrous saltsmedicineCambrian explosionFerricchemistry.chemical_elementSeawaterBiotaPhotosynthesisCoppermedicine.drug
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Effects of SO2 fumigations on photosynthetic CO2 gas exchange, chlorophyll a fluorescence emission and antioxidant enzymes in the lichens Evernia pru…

1999

The effects of elevated gaseous SO2 concentrations in the lichens Evernia prunastri (L.) Ach. and Ramalina farinacea (L.) Ach. were investigated by means of gas exchange, modulated chlorophyll fluorescence analysis and antioxidant enzyme assays. The response to SO2 of the studied species differed markedly. Net photosynthetic rates were more adversely affected in E. prunastri than in R. farinacea. In addition, processes dependent on thylakoid membrane integrity such as PSII-mediated electron flow and nonphotochemical quenching were reduced to a greater extent by exposure to SO2 in E. prunastri. Moreover, the ability to reoxidize the quinone pool was lower in this species. Finally, the activi…

Chlorophyll aAntioxidantbiologyEvernia prunastriPhysiologymedicine.medical_treatmentCell BiologyPlant ScienceGeneral MedicinePhotosynthesiscomplex mixturesEnzyme assayrespiratory tract diseasesRamalina farinaceachemistry.chemical_compoundchemistryThylakoidBotanyGeneticsmedicinebiology.proteinChlorophyll fluorescencePhysiologia Plantarum
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Folding in vitro of light-harvesting chlorophyll a/b protein is coupled with pigment binding.

2002

The major light-harvesting chlorophyll a/b protein (LHCIIb) of the plant photosynthetic apparatus is able to self-organise in vitro. When the recombinant apoprotein, Lhcb1, is solubilised in the denaturing detergent sodium (or lithium) dodecylsulfate (SDS or LDS) and then mixed with chlorophylls and carotenoids under renaturing conditions, structurally authentic LHCIIb forms. Assembly of functional LHCIIb, as indicated by the establishment of energy transfer between complex-bound chlorophyll molecules, occurs in two apparent kinetic steps with time constants of 10 to 30 seconds and 50 to 300 seconds, depending on the reaction conditions. Here, we use circular dichroism (CD) in the far-UV ra…

Chlorophyll aCircular dichroismProtein FoldingCircular DichroismPigment bindingProtein domainPhotosynthetic Reaction Center Complex ProteinsLight-Harvesting Protein ComplexesPhotochemistryPhotosynthesisProtein Structure SecondaryRecombinant Proteinschemistry.chemical_compoundPigmentchemistryStructural BiologyChlorophyllvisual_artvisual_art.visual_art_mediumMolecular BiologyProtein secondary structureMicellesSequence DeletionJournal of molecular biology
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Changes of Photosynthesis-Related Parameters and Productivity of Spring Oilseed Rape under Different Nitrogen and Sulphur Fertilizers Supply

2015

Fertilization with essential mineral elements is important to get high quality yield results. The lack of necessary mineral elements in soil can affect oilseed rape plant physiological functions, photosynthesis and plant productivity. Oilseed rape plants have high requirements for nitrogen and as oil crop – for sulphur. The aim of the investigation was to explain changes of chlorophyll a fluorescence parameters in spring oilseed rape leaves and yield changes under nitrogen and sulphur supply. During laboratory experiments changes of chlorophyll a fluorescence parameters and during field experiments changes of yield parameters under different nitrogen and sulphur supply were observed. Labora…

Chlorophyll aField experimentdigestive oral and skin physiologychemistry.chemical_elementPlant physiologyengineering.materialPhotosynthesisNitrogenchemistry.chemical_compoundHorticultureNutrientchemistryAgronomyChlorophyllbrassica napus; chlorophyll; fluorescence; nitrogen and sulphur top-dressing; yield;engineeringEnvironmental scienceFertilizerEnvironment. Technology. Resources. Proceedings of the International Scientific and Practical Conference
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