Search results for "absorptio"

showing 10 items of 2815 documents

FluorMODleaf: A new leaf fluorescence emission model based on the PROSPECT model

2010

International audience; A new model of chlorophyll a fluorescence emission by plant leaves, FluorMODleaf, is presented. It is an extension of PROSPECT, a widely used leaf optical properties model that regards the leaf as a pile of N absorbing and diffusing elementary plates. In FluorMODleaf, fluorescence emission of an infinitesimal layer of thickness dx is integrated over the entire elementary plate. The fluorescence source function is based on the excitation spectrum of diluted isolated thylakoids and on the emission spectra of isolated photosystems, PSI and PSII, which are the main pigment–protein complexes involved in the initial stages of photosynthesis. Scattering within the leaf is p…

Chlorophyll aMaterials scienceTeledetecció010504 meteorology & atmospheric sciencesAnalytical chemistrySoil Science01 natural sciences010309 opticschemistry.chemical_compoundOptics0103 physical sciences[SDV.BV]Life Sciences [q-bio]/Vegetal BiologyEmission spectrumComputers in Earth SciencesChlorophyll fluorescence0105 earth and related environmental sciencesRemote sensing[PHYS.PHYS.PHYS-OPTICS]Physics [physics]/Physics [physics]/Optics [physics.optics]Scatteringbusiness.industryAbsorption cross sectionGeologyFluorescenceFluorescènciachemistryChlorophyllQuantum efficiencybusiness
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Molecular structures of chlorophyll a aggregates: spectroscopic and molecular modeling study

1993

Molecular structures of chlorophyll a aggregates have been studied. Spectroscopic properties of these aggregates have been studied by absorption and fluorescence spectroscopy in hydrocarbon solution at various temperatures. Observed spectroscopic shifts were interpreted in terms of simple exciton theory. Exciton splittings were estimated from computer optimized models of previously suggested Chl a aggregate structures.

Chlorophyll aMolecular model010405 organic chemistryExcitonAnalytical chemistry010402 general chemistry01 natural sciencesFluorescence spectroscopy0104 chemical sciences3. Good healthchemistry.chemical_compoundchemistryChemical physicsMoleculeAbsorption (electromagnetic radiation)SpectroscopyLuminescenceSPIE Proceedings
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Circular and linear dichroism of aggregates of chlorophyll a and chlorophyll b in 3-methylpentane and paraffin oil.

1996

A circular (CD) and linear dichroism (LD) study of the water adducts of the green plant chlorophylls a (Chl a) and b (Chl b) in hydrocarbon solvents 3-methylpentane and paraffin oil is presented. A strong red shift of the Qy-absorption band from 663 to 746 nm (1678 cm−1) is observed as the water adduct of Chl a is formed. The Chl a-water adduct shows a strong, nonconservative CD signal, which is characterized by a positive peak at 748 nm and two negative peaks at 720 and 771 nm. The maximum CD (AL - AR) is only one order of magnitude smaller than the isotropic absorption maximum. We propose that this exceptionally strong signal is the so-called psi-type CD. The LD spectrum was measured in a…

Chlorophyll bChlorophyll a010304 chemical physicsChemistryAnalytical chemistryfood and beveragesmacromolecular substancesGeneral Medicine010402 general chemistryPhotochemistryLinear dichroism01 natural sciencesBiochemistry0104 chemical sciencesAdductRed shiftchemistry.chemical_compoundAbsorption band0103 physical sciencespolycyclic compoundsPhysical and Theoretical ChemistryAbsorption (chemistry)3-MethylpentanePhotochemistry and Photobiology
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Refinement of a structural model of a pigment-protein complex by accurate optical line shape theory and experiments.

2007

Time-local and time-nonlocal theories are used in combination with optical spectroscopy to characterize the water-soluble chlorophyll binding protein complex (WSCP) from cauliflower. The recombinant cauliflower WSCP complexes reconstituted with either chlorophyll b (Chl b) or Chl a/Chl b mixtures are characterized by absorption spectroscopy at 77 and 298 K and circular dichroism at 298 K. On the basis of the analysis of these spectra and spectra reported for recombinant WSCP reconstituted with Chl a only (Hughes, J. L.; Razeghifard, R.; Logue, M.; Oakley, A.; Wydrzynski, T.; Krausz, E. J. Am. Chem. Soc. U.S.A. 2006, 128, 3649), the "open-sandwich" model proposed for the structure of the pig…

Chlorophyll bChlorophyllModels MolecularCircular dichroismOptics and PhotonicsAbsorption spectroscopyChemistryDimerExcitonChlorophyll ACircular DichroismSpectrum AnalysisStatic ElectricityLight-Harvesting Protein ComplexesBrassicaSpectral lineSurfaces Coatings and Filmschemistry.chemical_compoundCrystallographyKineticsModels ChemicalMaterials ChemistryChlorophyll bindingPhysical and Theoretical ChemistrySpectroscopyThe journal of physical chemistry. B
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Chlorophyll b is involved in long-wavelength spectral properties of light-harvesting complexes LHC I and LHC II.

2001

AbstractChlorophyll (Chl) molecules attached to plant light-harvesting complexes (LHC) differ in their spectral behavior. While most Chl a and Chl b molecules give rise to absorption bands between 645 nm and 670 nm, some special Chls absorb at wavelengths longer than 700 nm. Among the Chl a/b-antennae of higher plants these are found exclusively in LHC I. In order to assign this special spectral property to one chlorophyll species we reconstituted LHC of both photosystem I (Lhca4) and photosystem II (Lhcb1) with carotenoids and only Chl a or Chl b and analyzed the effect on pigment binding, absorption and fluorescence properties. In both LHCs the Chl-binding sites of the omitted Chl species…

Chlorophyll bChlorophyllPhotosystem IIPigment bindingPhotosynthetic Reaction Center Complex ProteinsBiophysicsLight-Harvesting Protein ComplexesPhotosystem IPhotochemistryBiochemistryAbsorptionLight-harvesting complexReconstitutionchemistry.chemical_compoundSolanum lycopersicumStructural BiologySpinacia oleraceaGeneticsChlorophyll bindingCentrifugation Density GradientMolecular BiologyChlorophyll fluorescenceLong-wavelength chlorophyllBinding SitesPhotosystem I Protein ComplexChemistryChlorophyll ATemperaturePhotosystem II Protein ComplexLight-harvesting complexes of green plantsCell BiologyPigments BiologicalPlant LeavesSpectrometry FluorescenceLight-harvesting complexChlorophyll fluorescenceChlorophyll bindingProtein BindingFEBS letters
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Pigment−Pigment and Pigment−Protein Interactions in Recombinant Water-Soluble Chlorophyll Proteins (WSCP) from Cauliflower

2007

Plants contain water-soluble chlorophyll-binding proteins (WSCPs) that function neither as antennas nor as components of light-induced electron transfer of photosynthesis but are likely constituents of regulatory protective pathways in particular under stress conditions. This study presents results on the spectroscopic properties of recombinant WSCP from cauliflower reconstituted with chlorophyll b (Chl b) alone or with mixtures of Chl a and Chl b. Two types of experiments were performed: (a) measurements of stationary absorption spectra at 77 and 298 K and CD spectra at 298 K and (b) monitoring of laser flash-induced transient absorption changes with a resolution of 200 fs in the time doma…

Chlorophyll bCircular dichroismAbsorption spectroscopyCircular DichroismLasersDimerKineticsLight-Harvesting Protein ComplexesBrassicaPigments BiologicalRecombinant ProteinsSurfaces Coatings and FilmsKineticschemistry.chemical_compoundCrystallographyElectron transferchemistryUltrafast laser spectroscopyChlorinMaterials ChemistryLinear Energy TransferSpectrophotometry UltravioletPhysical and Theoretical ChemistryThe Journal of Physical Chemistry B
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Spectral attenuation of solar ultraviolet radiation in humic lakes in Central Finland

2003

The attenuation of solar ultraviolet (UV) radiation in five lakes in Central Finland was evaluated through field measurements and/or by determining the optical properties of the lake water during summer 1999. Spectral UV irradiance in the air and at several depths underwater was measured in three lakes (Lake Palosjärvi, Konnevesi, and Jyväsjärvi) with dissolved organic carbon (DOC) ranging from 4.9 to 8.7 mg l(-1) and chlorophyll a ranging from 1.6 to 16 g l(-1). According to the field measurements, 99% of the UV-B radiation was attenuated in approximately a half meter water column in the clearest lake. In the UV-A region at 380 nm, the corresponding attenuation occurred in the upper one me…

ChlorophyllChlorophyll aEnvironmental EngineeringUltraviolet RaysHealth Toxicology and MutagenesisIrradianceFresh WaterRadiationmedicine.disease_causeAbsorptionchemistry.chemical_compoundWater columnDissolved organic carbonmedicineEnvironmental ChemistryFinlandAttenuationPublic Health Environmental and Occupational HealthGeneral MedicineGeneral ChemistryPollutionchemistryEnvironmental chemistryAttenuation coefficientEnvironmental scienceUltravioletChemosphere
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Decreasing the chlorophyll a/b ratio in reconstituted LHCII: Structural and functional consequences

1999

Trimeric (bT) and monomeric (bM) light-harvesting complex II (LHCII) with a chlorophyll a/b ratio of 0.03 were reconstituted from the apoprotein overexpressed in Escherichia coli. Chlorophyll/xanthophyll and chlorophyll/protein ratios of bT complexes and 'native' LHCII are rather similar, namely, 0.28 vs 0. 27 and 10.5 +/- 1.5 vs 12, respectively, indicating the replacement of most chlorophyll a molecules with chlorophyll b, leaving one chlorophyll a per trimeric complex. The LD spectrum of the bT complexes strongly suggests that the chlorophyll b molecules adopt orientations similar to those of the chlorophylls a that they replace. The circular dichroism (CD) spectra of bM and bT complexes…

ChlorophyllChlorophyll bProtein FoldingChlorophyll aCircular dichroismPhotosynthetic Reaction Center Complex ProteinsLight-Harvesting Protein Complexesmedicine.disease_causeBiochemistryAbsorptionStructure-Activity Relationshipchemistry.chemical_compoundThermolysinmedicineEscherichia colichemistry.chemical_classificationPigmentationChlorophyll ACircular DichroismCrystallographySpectrometry FluorescenceMonomerEnergy TransferchemistrySpectrophotometryChlorophyllXanthophyllBiochemistry
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Filling the “green gap” of the major light-harvesting chlorophyll a/b complex by covalent attachment of Rhodamine Red

2009

AbstractThe major light-harvesting chlorophyll a/b complex (LHCII) greatly enhances the efficiency of photosynthesis in green plants. Recombinant LHCII can be assembled in vitro from its denatured, bacterially expressed apoprotein and plant pigments. This makes it an interesting candidate for biomimetic light-harvesting in photovoltaic applications. Due to its almost 20 pigments bound per apoprotein, LHCII absorbs efficiently in the blue and red spectral domains of visible light but less efficiently in the green domain, the so-called “green gap” in its absorption spectrum. Here we present a hybrid complex of recombinant LHCII with organic dyes that add to LHCII absorption in the green spect…

ChlorophyllLHCIIProtein FoldingFRET (Förster resonance energy transfer)Chlorophyll aAbsorption spectroscopyBiophysicsPhotosynthesisPhotochemistryBiochemistryRhodamineLight-harvesting complexchemistry.chemical_compoundPhotosynthesisFluorescent DyesRhodaminesChlorophyll Afood and beveragesSite-specific labelingCell BiologyMaleimide dyeB vitaminsSolar spectrumchemistryChlorophyllVisible spectrumBiochimica et Biophysica Acta (BBA) - Bioenergetics
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Semiempirical PM5 molecular orbital study on chlorophylls and bacteriochlorophylls: Comparison of semiempirical,ab initio, and density functional res…

2003

The semiempirical PM5 method has been used to calculate fully optimized structures of magnesium-bacteriochlorin, magnesium-chlorin, magnesium-porphin, mesochlorophyll a, chlorophylls a, b, c(1), c(2), c(3), and d, and bacteriochlorophylls a, b, c, d, e, f, g, and h with all homologous structures. Hartree-Fock/6-31G* ab initio and density functional B3LYP/6-31G* methods were used to optimize structures of methyl chlorophyllide a, chlorophyll c(1), and methyl bacteriochlorophyllides a and c for comparison. Spectroscopic transition energies of the chromophores and their 1:1 or 1:2 solvent complexes were calculated with the Zindo/S CIS method. The self-consistent reaction field model was used t…

ChlorophyllModels MolecularAb initioGeneral ChemistryPorphyrinStructure-Activity RelationshipComputational Mathematicschemistry.chemical_compoundchemistryAbsorption bandComputational chemistryAtomPhysical chemistryMoleculeMagnesiumZINDOMolecular orbitalBacteriochlorophyllBacteriochlorophyllsJournal of Computational Chemistry
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