Search results for "phytochrome"

showing 10 items of 44 documents

Author response: The primary structural photoresponse of phytochrome proteins captured by a femtosecond X-ray laser

2020

X-ray laserPrimary (chemistry)Materials sciencePhytochromebusiness.industryFemtosecondOptoelectronicsbusiness
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GENETIC AND PHYSIOLOGICAL STUDIES OF THE EFFECT OF LIGHT ON THE DEVELOPMENT OF THE MOSS, PHYSCOMITRELLA PATENS

1978

Abstract The germination of Physcomitrella patens spores only occurs when wet spores are exposed to light. Depending on their ripeness, spores require from 44 to 64 h illumination to bring about maximum germination. There is a lag period of about 15 h between the reception of sufficient light to elicit germination before germination can be observed. Wavelengths in the range 640-680 nm are much more effective in inducing germination than longer or shorter wavelengths, but far-red reversal of red light induction of germination has not been demonstrated. Light also has very marked effects on protonemal and gametophore development. In darkness, only caulonemata are produced, and these grow nega…

biologyPhytochromeGeneral MedicinePhyscomitrella patensbiology.organism_classificationBiochemistrySporeGerminationDarknessBotanyGametophorePhysical and Theoretical ChemistryProtonemaPhototropismPhotochemistry and Photobiology
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Connection between Absorption Properties and Conformational Changes in Deinococcus radiodurans Phytochrome

2014

Phytochromes consist of several protein domains and a linear tetrapyrrole molecule, which interact as a red-light-sensing system. In this study, size-exclusion chromatography and light-scattering techniques are combined with UV-vis spectroscopy to investigate light-induced changes in dimeric Deinococcus radiodurans bacterial phytochrome (DrBphP) and its subdomains. The photosensory unit (DrCBD-PHY) shows an unusually stable Pfr state with minimal dark reversion, whereas the histidine kinase (HK) domain facilitates dark reversion to the resting state. Size-exclusion chromatography reveals that all phytochrome fragments remain as dimers in the illuminated state and dark state. Still, the elut…

biologyPhytochromeProtein ConformationElutionProtein domainHistidine kinaseta1182Deinococcus radioduransSDG 10 - Reduced Inequalitiesbiology.organism_classificationBiochemistryTetrapyrroleProtein Structure Tertiarychemistry.chemical_compoundDark stateBacterial ProteinsBiochemistrychemistry/dk/atira/pure/sustainabledevelopmentgoals/reduced_inequalitiesBiophysicsMoleculeSpectrophotometry UltravioletDeinococcusPhytochromeBiochemistry
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Red : far-red light ratio and UV-B radiation: their effects on leaf phenolics and growth of silver birch seedlings

2004

The natural variation in quantity and quality of light modifies plant morphology, growth rate and concentration of biochemicals. The aim of two growth-room experiments was to study the combined effects of red (R) and far-red (FR) light and ultraviolet-B (UV-B) radiation on the concentrations of leaf phenolics and growth and morphology of silver birch (Betula pendula Roth) seedlings. Analysis by high-performance liquid chromatography showed that the leaves exposed to supplemental FR relative to R contained higher concentrations of total chlorogenic acids and a cinnamic acid derivative than the leaves treated with supplemental R relative to FR. In contrast, concentration of a flavonoid, querc…

chemistry.chemical_classificationPhytochromePhysiologyFlavonoidFar-redPlant SciencePhenolic acidBiologyCinnamic acidPetiole (botany)Horticulturechemistry.chemical_compoundchemistryChlorogenic acidPlant morphologyBotanyPlant, Cell and Environment
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The Effect of Light on the Growth of Pea Plants and the Subsequent Influence in Shikimate Oxidoreductase (EC 1.1.1.25) Activity

1981

Summary Pea plants were cultured in white light, red and far red light, and in the dark during a period of three weeks. At several states of development we investigated the activity of the enzyme shikimate oxidoreductase, the amount of fresh and dry matter, and the contents of protein in stem, leaves, cotyledons, and roots. The enzyme activity was found to be distributed organ-specifically and uninfluenced by the phytochrome system, but it was significantly depressed in plants grown in the dark compared to plants grown in white light. Enzyme activity occurred also in non photosynthetic plants. Regarding the different light conditions the activity of shikimate oxidoreductase was found to cor…

chemistry.chemical_classificationbiologyPhytochromefood and beveragesFar-redGeneral MedicinePhotosynthesisEnzyme assayHorticultureEnzymechemistryOxidoreductaseBotanybiology.proteinWhite lightDry matterZeitschrift für Pflanzenphysiologie
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The primary structural photoresponse of phytochrome proteins captured by a femtosecond X-ray laser

2020

Please check the README file for more information about the dataset.

chromophore-binding domains of Bacterial phytochromeX-ray Free-electorn LasersXFELData_FILESBL3: EH2Serial Femtosecond CrystallographyGeneralLiterature_MISCELLANEOUSComputingMethodologies_COMPUTERGRAPHICSSACLA
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The room temperature crystal structure of a bacterial phytochrome determined by serial femtosecond crystallography

2016

Scientific reports 6, 35279 (2016). doi:10.1038/srep35279

crystal structure000Protein ConformationREARRANGEMENTSTemperaturePROTEINCrystallography X-RayphytochromeskidetiedeTRANSDUCTIONArticleX-RAY-DIFFRACTIONCHROMOPHORE-BINDING DOMAINGROUND-STATEddc:000RED LIGHT3111 BiomedicineDeinococcusPhytochromesense organsBACTERIOPHYTOCHROMEFLUORESCENCEroom temperatureCrystallizationPHOTOCONVERSION
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Light induces expression of a dehydrin-encoding gene during seedling de-etiolation in sunflower (Helianthus annus L.)

2007

The effects of light quality on the expression of a sunflower dehydrin-encoding gene, HaDhn1, were studied during seedling de-etiolation. Seeds were germinated in the dark and, after 5 days, seedlings were maintained well watered and de-etiolated under different lights for 3, 6, 12, and 24h. Exposure to white light stimulated HaDhn1 transcript accumulation in the cotyledons of these seedlings, contrary to seedlings grown in the dark. HaDhn1 transcripts increased also treating plantlets with monochromatic lights, especially red light. The increase of HaDhn1 transcripts is provoked by the formation of the active form of phytochrome. Further experiments, performed saturating active phytochrome…

dehydrinsunflowerPhysiologyMolecular Sequence DataPlant ScienceBiologyCryptochromeGene Expression Regulation PlantTranscription (biology)Settore AGR/07 - Genetica AgrariaBotanyHelianthus annuusGene expressionNon disponibiliPlant ProteinsPhotoreceptorBase SequencePhytochromebiology.organism_classificationMolecular biologySeedlingsGerminationSeedlingEtiolationHelianthusde-etiolationlighttranscriptionAgronomy and Crop Science
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Conserved histidine and tyrosine determine spectral responses through the water network in Deinococcus radiodurans phytochrome

2022

Funding Information: This work was supported by Academy of Finland grants 285461 (H.T.), 330678 (H.T., J.R.), 277194 (H.L.), and 290677 (S.M.). We acknowledge the European Synchrotron Radiation Facility (ESRF) for providing synchrotron access for crystal data collection. We thank Prof. Janne Ihalainen (University of Jyväskylä) for all the help in all aspects of the paper, Prof. Gerrit Groenhof (University of Jyväskylä) for support, and Prof. Nikolai V. Tkachenko (Tampere University) for help and facilities for time-resolved absorption spectroscopy. We also thank M.Sc. Alli Liukkonen (University of Jyväskylä) and Dr. Heikki Häkkänen (University of Jyväskylä) for the assistance in laboratory …

fytokromitphytochrome structureProtein ConformationPhytochrome structureSpectral responsesspektroskopiafotobiologiabakteeritBacterial ProteinsHistidinePhysical and Theoretical ChemistryBinding Sites221 Nanotechnologyspectral responsesWaterBiliverdin protonationsäteilyWater networkkidetiedewater networkTyrosine1182 Biochemistry cell and molecular biologyPhytochromeDeinococcusproteiinitvalokemiabiliverdin protonationvalo
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Photoinduced changes in phytochromes studied by means of low temperature UV-Vis spectroscopy

2018

Phytochromes are a major family of red-light-sensing kinases that control diverse cellular functions in plants, bacteria and fungi. These proteins must relay structural signals from the sensory site over large distances to regulatory output domains. To accomplish this function, they undergo rather large structural changes from one state to another. The general aim of this work was to study these structural changes and possible protonation states of the photosensory core of the bacteriophytochrome from Deinococcus radiodurans in the intermediate states of the photoreaction, which became possible to observe under low temperatures. Moreover, it was interesting to investigate the role Serine272…

phytochromeDeinococcus radioduransintermediateslow temperature UV-Vis spectroscopyphotocycle
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