Search results for "Photosynthesis"

showing 10 items of 304 documents

Performance of Spectral Fitting Methods for vegetation fluorescence quantification

2010

The Fraunhofer Line Discriminator (FLD) principle has long been considered as the reference method to quantify solar-induced chlorophyll fluorescence (F) from passive remote sensing measurements. Recently, alternative retrieval algorithms based on the spectral fitting of hyperspectral radiance observations, Spectral Fitting Methods (SFMs), have been proposed. The aim of this manuscript is to investigate the performance of such algorithms and to provide relevant information regarding their use. FLD and SFMs were used to estimate F starting from Top Of Canopy (TOC) fluxes at very high spectral resolution (0.12 nm) and sampling interval (0.1 nm), exploiting the O2-B (687.0 nm) and O2-A (760.6 …

DiscriminatorreflectanceHyperspectral remote sensingSolar-induced chlorophyll fluorescenceMETIS-304492Soil Science550 - Earth sciencesFraunhofer Line Discriminatorin-vivoNoise (electronics)Spectral lineRadiative transfer simulationLaboratory of Geo-information Science and Remote SensingSampling (signal processing)luminescenceLaboratorium voor Geo-informatiekunde en Remote Sensinginduced chlorophyll fluorescenceComputers in Earth SciencesSpectral resolutionMathematicsRemote sensingcanopymodelphotosynthesisscatteringairborneHyperspectral imagingGeologySpectral Fitting MethodPE&RCAGR/14 - PEDOLOGIASpectroradiometerspectroradiometerRadianceREMOTE SENSING OF ENVIRONMENT
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Overload breakdown in models for photosynthesis

2015

In many models of the Calvin cycle of photosynthesis it is observed that there are solutions where concentrations of key substances belonging to the cycle tend to zero at late times, a phenomenon known as overload breakdown. In this paper we prove theorems about the existence and non-existence of solutions of this type and obtain information on which concentrations tend to zero when overload breakdown occurs. As a starting point we take a model of Pettersson and Ryde-Pettersson which seems to be prone to overload breakdown and a modification of it due to Poolman which was intended to avoid this effect.

Dynamical systems theoryGeneral MathematicsMolecular Networks (q-bio.MN)0206 medical engineeringZero (complex analysis)02 engineering and technologyDynamical Systems (math.DS)Photosynthesis01 natural sciencesComputer Science Applications010101 applied mathematics92C40FOS: Biological sciencesKey (cryptography)FOS: MathematicsQuantitative Biology - Molecular NetworksStatistical physics0101 mathematicsMathematics - Dynamical Systems020602 bioinformaticsMathematics
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Entropy

2008

Ecological indicatorDissipative structures; Entropy; Entropy production; Far-from-equilibrium systems; Negentropy; Photosynthesis; Thermodynamics' second lawFar-from-equilibrium systemsEntropyEntropy (information theory)Environmental scienceStatistical physicsPhotosynthesisNegentropyEntropy productionThermodynamics' second lawDissipative structures
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Some Critical Remarks on the Suitability of the Concept of the Photosynthetic Unit in Photosynthesis Research and Phytoplankton Ecology

1993

Based on the classical definition of the photosynthetic unit after Emerson and Arnold, new definitions are presented and their consistency subjected to critical reflection. Modern molecular approaches to determine the physiological condition or even the efficiency of the photosynthetic machinery via determination of the magnitude of the photosynthetic unit are discussed against the background of new data on the dynamics of the thylakoid membrane.

EcologyEcology (disciplines)ThylakoidPhytoplanktonPlant ScienceBiologyCritical reflectionPhotosynthesisPhotosynthetic capacityBotanica Acta
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Spatial, seasonal and long-term variability of phytoplankton photosynthesis in lakes

1994

EcologyEcologyAquatic ScienceSeasonalityPhotosynthesismedicine.diseaseTerm (time)LatitudeOceanographyPhytoplanktonmedicineEnvironmental scienceSpatial variabilityPhytoplankton photosynthesisEcology Evolution Behavior and SystematicsJournal of Plankton Research
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Photosynthesis and transpiration of healthy and diseased spruce trees in the course of three vegetation periods

1988

CO2- and H2O-gas exchange of 20- to 25-year-old spruce trees from a plantation in the Hunsruck mountains were investigated over a period of 3 years. All measurements were made as pair comparisons, i.e., in each case the gas exchange of a damaged tree and of a relatively healthy tree in its immediate vicinity was measured simultaneously. A second plantation in the Westerwald mountains consisted of 18-year-old apparently healthy spruce trees. Pair comparison at this location meant comparison of two healthylooking trees. The investigations at both locations included diurnal course measurements of photosynthesis and transpiration, and light saturation curves and CO2-saturation curves of photosy…

EcologyPhysiologyGrowing seasonPlant physiologyForestryPicea abiesPlant ScienceBiologyPhotosynthesisbiology.organism_classificationPhotosynthetic capacityHorticultureBotanyPhotorespirationWater-use efficiencyTranspirationTrees
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Spatio-temporal distribution and growth dynamics of phototrophic sulfur bacteria populations in the sulfide-rich Lake Arcas

2000

Lake Arcas exhibits a thermal stratification from April to October. A sulfide-rich anoxic hypolimnion is then formed between the deeper part of the thermocline and the lake bottom, and high population densities of phototrophic microorganisms are found at the oxic-anoxic interface. Chromatium weissei, a large rod, 8 × 4 μm in size, was the dominant phototrophic bacterium, reaching densities of up to 1.84 × 106 cells ml-1. Other phototrophic sulfur bacteria, such as Amoebobacter cf. purpureus, Thiocapsa sp., and Pelodictyon clathratiforme were also present in the anoxic hypolimnion, but their cell size and population densities were much lower. Net growth rates (0.125 to —0.123 d-1) and freque…

EcologybiologyPhototrophChromatiumAquatic SciencePhotosynthesisbiology.organism_classificationChemoclineAnoxic watersAnoxygenic photosynthesisPurple sulfur bacteriaBotanyHypolimnionEcology Evolution Behavior and SystematicsWater Science and TechnologyAquatic Sciences
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Die Anpassung des Photosyntheseapparates h�herer Pflanzen an die Lichtbedingungen

1985

EcophysiologyChemistryBotanyGeneral MedicineAdaptationPhotosynthesisEcology Evolution Behavior and SystematicsLight effectNaturwissenschaften
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The impact of winter flooding with saline water on foliar carbon uptake and the volatile fraction of leaves and fruits of lemon (Citrus limon) trees

2012

We investigated the consequences of recurrent winter flooding with saline water on a lemon (Citrus × limon (L.) Burm.f.) orchard, focussing on photosynthesis limitations and emission of secondary metabolites (isoprenoids) from leaves and fruits. Measurements were carried out immediately after flooding (December), at the end of winter (April) and after a dry summer in which plants were irrigated with optimal quality water (September). Photosynthesis was negatively affected by flooding. The effect was still visible at the end of winter, whereas the photosynthetic rate was fully recovered after summer, indicating an unexpected resilience capacity of flooded plants. Photosynthesis inhibition by…

EcophysiologyStomatal conductanceLimoneneSettore AGR/05 - Assestamento Forestale E SelvicolturaFlooding (psychology)fungifood and beveragesPlant ScienceBiologyPhotosynthesisSaline waterTerpenoidhumanitiesSettore AGR/03 - Arboricoltura Generale E Coltivazioni ArboreeHorticulturechemistry.chemical_compoundchemistryCitrus; isoprenoids; photosynthesisBotanyparasitic diseasesCitrus isoprenoids photosynthesisOrchardAgronomy and Crop Sciencegeographic locations
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Grain legume seed filling in relation to nitrogen acquisition: A review and prospects with particular reference to pea

2001

International audience; Seed filling depends not only on the instantaneous supply of C and N, but also on their remobilisation from vegetative organs. C supply during seed filling depends mostly on current photosynthesis, but N assimilation and N$_2$ fixation decline during seed filling, with newly acquired N generally insufficient for the high seed demand. As seeds are strong sinks for mobilised nutrients, seed growth becomes metabolically closely associated with N remobilisation. N remobilisation from vegetative tissues to filling seeds interacts with photosynthesis since it induces senescence, which reduces the seed filling period. Hence improved grain legume seed filling requires either…

Ecophysiology[SDV.SA]Life Sciences [q-bio]/Agricultural sciencesN assimilationFixation symbiotique[SDV]Life Sciences [q-bio]chemistry.chemical_elementsénescenceBiologyPhotosynthesis03 medical and health sciencesSymbiosisBotanyMineral particlesAssimilation d'azoteLegumeComputingMilieux_MISCELLANEOUS030304 developmental biology2. Zero hunger[SDV.EE]Life Sciences [q-bio]/Ecology environment0303 health sciences[SDV.SA] Life Sciences [q-bio]/Agricultural sciencesRemobilisationAssimilation (biology)04 agricultural and veterinary sciencesNitrogenRemplissage des grainesSymbiotic fixationAgronomychemistrySeed filling040103 agronomy & agricultureNitrogen fixation0401 agriculture forestry and fisheriesAgronomy and Crop Science
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