Search results for "antheraxanthin"

showing 9 items of 9 documents

A functional zeaxanthin epoxidase from red algae shedding light on the evolution of light-harvesting carotenoids and the xanthophyll cycle in photosy…

2017

The epoxy-xanthophylls antheraxanthin and violaxanthin are key precursors of light-harvesting carotenoids and participate in the photoprotective xanthophyll cycle. Thus, the invention of zeaxanthin epoxidase (ZEP) catalyzing their formation from zeaxanthin has been a fundamental step in the evolution of photosynthetic eukaryotes. ZEP genes have only been found in Viridiplantae and chromalveolate algae with secondary plastids of red algal ancestry, suggesting that ZEP evolved in the Viridiplantae and spread to chromalveolates by lateral gene transfer. By searching publicly available sequence data from eleven red algae covering all currently recognized red algal classes we identified ZEP cand…

0301 basic medicineZeaxanthin epoxidasePlant ScienceXanthophyllsGenes Plant03 medical and health scienceschemistry.chemical_compoundBotanyGeneticsViridiplantaePlastidPhotosynthesisPhylogenychemistry.chemical_classificationbiologyAntheraxanthinCell Biologybiology.organism_classificationBiological EvolutionZeaxanthin030104 developmental biologychemistryPhotoprotectionXanthophyllRhodophytabiology.proteinOxidoreductasesMetabolic Networks and PathwaysViolaxanthinThe Plant journal : for cell and molecular biology
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Chlorophyll a Fluorescence Emission, Xanthophyll Cycle Activity, and Net Photosynthetic Rate Responses to Ozone in Some Foliose and Fruticose Lichen …

2000

The lichens Parmelia quercina, Parmelia sulcata, Evernia prunastri, Hypogymnia physodes, and Anaptychia ciliaris were exposed to ozone (O3) in controlled environment cuvettes designed to maintain the lichens at optimal physiological activity during exposure. Measurements of gas exchange, modulated chlorophyll (Chl) fluorescence, and pigment analysis were conducted before and after exposure to 300 mm3 (O3) m−3, 4 h per d for 14 d. No changes in the efficiency of photosystem 2 (PS2) photochemistry, the reduction state of QA, or the electron flow through PS2, measured by Chl fluorescence, were detected in any of the five lichen species studied. Additionally, neither photosynthetic CO2 assimila…

Chlorophyll aParmeliaintegumentary systembiologyPhysiologyAntheraxanthinPlant SciencePhotosynthetic pigmentbiology.organism_classificationEverniachemistry.chemical_compoundchemistryChlorophyllParmelia sulcataBotanyskin and connective tissue diseasesFruticose lichenPhotosynthetica
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Degradation of Carotenoids in Apricot (Prunus armeniaca L.) During Drying Process

2013

"Carotenoids are natural compounds whose nutritional importance comes from the provitamin A activity of some of them and their protection against several serious human disorders. The degradation of carotenoids was investigated during apricot drying by microwave and convective hot-air at 60 and 70 A degrees C. Seven carotenoids were identified: antheraxanthin, lutein, zeaxanthin, beta-cryptoxanthin, 13-cis-beta-carotene, all-trans-beta-carotene and 9-cis-beta-carotene; among these, all-trans-beta-carotene was found to be about 50 % of total carotenoids. First-order kinetic models were found to better describe all-trans-beta-carotene reduction during drying, with a degradation rate constant (…

LuteinHot TemperatureFood HandlingDry basisXanthophyllschemistry.chemical_compoundDrug StabilityIsomerismZeaxanthinsBotanyFood scienceDesiccationCarotenoidCryptoxanthinschemistry.chemical_classificationbiologyAntheraxanthinLuteinPlant physiologybiology.organism_classificationbeta CarotenePrunus armeniacaCarotenoidsZeaxanthinKineticschemistryChemistry (miscellaneous)FruitDegradation (geology)PrunusNutritive ValueBiomarkersFood Science
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Effects of mountain grassland maturity stage and grazing management on carotenoids in sward and cow's milk

2006

Carotenoids are involved in the sensorial and nutritional values of dairy products. In grazing systems, both herbage maturity stage and grazing management may affect the amount of carotenoid ingested, thus these factors may affect carotenoid concentrations in milk. Two homogenous plots of mountain grassland (1.4 and 2.0 ha) were grazed during two cycles of growth by 6 dairy cows in mid lactation, in strip (SG) and rotational grazing (RG), respectively. We monitored the changes in carotenoid concentrations in sward and milk, measured by HPLC twice a week. Seven carotenoids were identified in the sward: violaxanthin, antheraxanthin, epilutein, lutein, zeaxanthin, ß-carotene and 13-cis ß-carot…

Lutein[SDV.SA.ZOO]Life Sciences [q-bio]/Agricultural sciences/ZootechnyForageMATURITY STAGECAROTENOID;COW'S MILK;MOUNTAIN GRASSLAND;MATURITY STAGE;GRAZING MANAGEMENT;CAROTENOÏDE;LAIT DE VACHE;PRAIRIE DE MONTAGNE;STADE DE L'HERBE;MODE DE PATURAGEBiology03 medical and health scienceschemistry.chemical_compoundLactationGrazingmedicineCOW'S MILKCarotenoidLAIT DE VACHEComputingMilieux_MISCELLANEOUSDairy cattle030304 developmental biology2. Zero hungerchemistry.chemical_classification0303 health sciencesCAROTENOÏDEGRAZING MANAGEMENTAntheraxanthin0402 animal and dairy sciencefood and beveragesPRAIRIE DE MONTAGNEScience des productions animales04 agricultural and veterinary sciences15. Life on landSTADE DE L'HERBE040201 dairy & animal scienceMOUNTAIN GRASSLANDmedicine.anatomical_structurechemistryAgronomyXanthophyll[SDV.SA.SPA]Life Sciences [q-bio]/Agricultural sciences/Animal production studiesCAROTENOIDAnimal Science and ZoologyMODE DE PATURAGE[SDV.SA.ZOO] Life Sciences [q-bio]/Agricultural sciences/ZootechnyAnimal production studies
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Anteroxanthin concentration during refrigerated storage in orange juice treated by PEF

2009

Pulsed Electric Field (PEF) processing inactivates microorganisms without significant adverse effects on flavor and nutrients. In this work was studied the transformations of antheraxanthin and mutatoxanthin when natural orange juice is treated by pasteurisation (90°C, 20 s) or PEF (30 kV/cm, 100 µs), and also its evolution during seven weeks of storage in refrigeration at two different temperatures (2°C and 10°C). The results showed that antheraxanthin concentration decreased during the storage. The decrease was greater in the untreated, pasteurised and PEF-treated orange juices stored at 10°C and this carotenoid was not detected from the 6 th week onwards. The same result was observed in …

Orange juicechemistry.chemical_classificationAntheraxanthinPasteurization04 agricultural and veterinary sciencesOrange (colour)040401 food sciencelaw.inventionchemistry.chemical_compoundHorticulture0404 agricultural biotechnologychemistrylawFood scienceCarotenoidFlavorFood Science
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Degradation of carotenoids in orange juice during microwave heating

2010

Degradation of carotenoids in orange juice was monitored during microwave (MW) heating at different time/temperature conditions. Various carotenoids were identified and quantified by HPLC. Degradation rate of carotenoids was influenced by MW heating temperatures: at 60 degrees C and 70 degrees C for 10 min violaxanthin and antheraxanthin were the compounds most unstable, while lutein and provitamin A carotenoids were more stable. At 85 degrees C a decrease of about 50% was observed for almost all carotenoids after 1 min of MW heating. Temperature sensitivity (z value) for total carotenoids was 14.2 degrees C, for single compounds z values ranged between 10.9 degrees C for beta-carotene and …

Orange juicechemistry.chemical_classificationLuteinAntheraxanthinOrange (colour)chemistry.chemical_compoundchemistryBiochemistrybeta-CaroteneZ-valueFood scienceCarotenoidFood ScienceViolaxanthin
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Pigment composition of PS II pigment protein complexes purified by anion exchange chromatography. identification of xanthophyll cycle pigment binding…

1997

Summary The pigment composition of the chlorophyll binding proteins of Photosystem II (PS II) of spinach ( Spinacea oleracea L.) has been determined using sucrose gradient ultracentrifugation, anion exchange chromatography and HPLC based pigment analysis. The xanthophyll cycle pigments violaxanthin, antheraxanthin and zeaxanthin were exclusively found in the proteins of the outer PS II antenna, with the highest amounts being present in the minor chlorophyll alb binding proteins CP 29 and CP 26. PS II core particles containing the reaction centre proteins D1, D2, cytochrome b 559 and the proteins of the inner antenna CP 47 and CP 43 bind β-carotene as the only carotenoid. The presence of the…

chemistry.chemical_classificationChromatographyPhotosystem IIPhysiologyAntheraxanthinPigment bindingPlant ScienceZeaxanthinchemistry.chemical_compoundBiochemistrychemistryXanthophyllChlorophyll bindingsense organsChlorophyll Binding ProteinsAgronomy and Crop ScienceViolaxanthinJournal of Plant Physiology
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De-epoxidation of Violaxanthin after Reconstitution into Different Carotenoid Binding Sites of Light-harvesting Complex II

2001

In higher plants, the de-epoxidation of violaxanthin (Vx) to antheraxanthin and zeaxanthin is required for the pH-dependent dissipation of excess light energy as heat and by that process plays an important role in the protection against photo-oxidative damage. The de-epoxidation reaction was investigated in an in vitro system using reconstituted light-harvesting complex II (LHCII) and a thylakoid raw extract enriched in the enzyme Vx de-epoxidase. Reconstitution of LHCII with varying carotenoids was performed to replace lutein and/or neoxanthin, which are bound to the native complex, by Vx. Recombinant LHCII containing either 2 lutein and 1 Vx or 1.6 Vx and 1.1 neoxanthin or 2.8 Vx per mono…

chemistry.chemical_classificationLuteinBinding SitesAntheraxanthinPhotosynthetic Reaction Center Complex Proteinsfood and beveragesCell BiologyXanthophyllsbeta CaroteneBiochemistryZeaxanthinKineticschemistry.chemical_compoundchemistryNeoxanthinBiochemistryThylakoidXanthophyllBiophysicsEpoxy CompoundsMolecular BiologyCarotenoidViolaxanthinJournal of Biological Chemistry
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Combined dynamics of the 500–600 nm leaf absorption and chlorophyll fluorescence changes in vivo: Evidence for the multifunctional energy quenching r…

2021

Carotenoids (Cars) regulate the energy flow towards the reaction centres in a versatile way whereby the switch between energy harvesting and dissipation is strongly modulated by the operation of the xanthophyll cycles. However, the cascade of molecular mechanisms during the change from light harvesting to energy dissipation remains spectrally poorly understood. By characterizing the in vivo absorbance changes (Delta A) of leaves from four species in the 500-600 nm range through a Gaussian decomposition, while measuring passively simultaneous Chla fluorescence (F) changes, we present a direct observation of the quick antenna adjustments during a 3-min dark-to-high-light induction. Underlying…

delta-pH0106 biological sciencesBiophysicsxanthophyll cyclesXanthophyllslight-harvesting complex01 natural sciencesBiochemistryFluorescenceEnergy quenchingAbsorbanceabsorbency changes03 medical and health scienceschemistry.chemical_compoundSpectroscopyChlorophyll fluorescenceantheraxanthin030304 developmental biologychemistry.chemical_classification4112 Forestrya fluorescence0303 health sciencesChlorophyll AAntheraxanthincarotenoidsdissipationCell BiologyFluorescencephotoprotectionzeaxanthinchemistrysinglet excited chlaChemical physicsExcited stateXanthophylldynamic quenchingleavesspectral fittinglutein epoxide cycle010606 plant biology & botanyBiochimica et Biophysica Acta (BBA) - Bioenergetics
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