Search results for "Phytoene"

showing 8 items of 8 documents

Synthetic conversion of leaf chloroplasts into carotenoid-rich plastids reveals mechanistic basis of natural chromoplast development

2020

Plastids, the defining organelles of plant cells, undergo physiological and morphological changes to fulfill distinct biological functions. In particular, the differentiation of chloroplasts into chromoplasts results in an enhanced storage capacity for carotenoids with industrial and nutritional value such as beta-carotene (provitamin A). Here, we show that synthetically inducing a burst in the production of phytoene, the first committed intermediate of the carotenoid pathway, elicits an artificial chloroplast-to-chromoplast differentiation in leaves. Phytoene overproduction initially interferes with photosynthesis, acting as a metabolic threshold switch mechanism that weakens chloroplast i…

0106 biological sciences0301 basic medicineChloroplastsNuclear gene[SDV]Life Sciences [q-bio]ArabidopsisProtein EngineeringPhotosynthesis01 natural sciences03 medical and health scienceschemistry.chemical_compoundPhytoeneTobaccoChromoplast[SDV.BV]Life Sciences [q-bio]/Vegetal BiologyPlastidsPlastidCarotenoidComputingMilieux_MISCELLANEOUSPlant Proteinschemistry.chemical_classificationCarotenoidPhytoeneMultidisciplinarySyntheticfood and beveragesCell DifferentiationChromoplastBiological Sciencesbeta CarotenePlant cellCarotenoidsCell biology02.- Poner fin al hambre conseguir la seguridad alimentaria y una mejor nutrición y promover la agricultura sosteniblePlant LeavesChloroplastGENETICA030104 developmental biologychemistryDifferentiationChromoplat010606 plant biology & botanyProceedings of the National Academy of Sciences
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Salinity impairs photosynthetic capacity and enhances carotenoid-related gene expression and biosynthesis in tomato (Solanum lycopersicum L. cv. Micr…

2020

Carotenoids are essential components of the photosynthetic antenna and reaction center complexes, being also responsible for antioxidant defense, coloration, and many other functions in multiple plant tissues. In tomato, salinity negatively affects the development of vegetative organs and productivity, but according to previous studies it might also increase fruit color and taste, improving its quality, which is a current agricultural challenge. The fruit quality parameters that are increased by salinity are cultivar-specific and include carotenoid, sugar, and organic acid contents. However, the relationship between vegetative and reproductive organs and response to salinity is still poorly…

0106 biological sciencesStomatal conductanceTomato fruitsSalt stressPhytoene Synthaselcsh:MedicinePlant SciencePhotosynthesis01 natural sciencesGeneral Biochemistry Genetics and Molecular BiologyLycopene Cyclase-Isomerase03 medical and health scienceschemistry.chemical_compoundLycopeneGeneticsPhotosynthesisAgricultural ScienceMolecular BiologyCarotenoid030304 developmental biologychemistry.chemical_classification0303 health sciencesbiologyChemistryGeneral Neurosciencelcsh:Rfood and beveragesGeneral Medicinebiology.organism_classificationAbiotic stressCarotenoidsPhotosynthetic capacityLycopeneSalinityHorticultureSolanumGeneral Agricultural and Biological SciencesBiotechnology010606 plant biology & botanyViolaxanthin
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Effect of high-pressure processing on carotenoids profile, colour, microbial and enzymatic stability of cloudy carrot juice

2019

Abstract The objective of this work was to assess the impact of high-pressure processing (HPP) on the carotenoid profile, colour as well as the microbial and enzymatic stability of cloudy carrot juice. The predominant carotenoids in the fresh juices were by far the provitamin A carotenoids β-carotene and α-carotene. Others were ζ-carotene, phytofluene, phytoene and lutein. HPP at 300 MPa in three cycles caused the highest carotenoids degradation (41%) whereas the lowest degradation (26%) was achieved at 600 MPa. The highest inactivation of POD (31%) and PPO (57%) was achieved with 600 MPa and 300 MPa applied in three cycles, respectively what indicates that POD is more responsible for carot…

Carrot juiceLuteinMicroorganismColor01 natural sciencesAnalytical ChemistryPascalizationchemistry.chemical_compound0404 agricultural biotechnologyPhytoeneEnzyme StabilityPressureFood-Processing IndustryFood scienceCarotenoidchemistry.chemical_classification010401 analytical chemistry04 agricultural and veterinary sciencesGeneral MedicineCarotenoids040401 food sciencePhytoflueneDaucus carota0104 chemical sciencesFruit and Vegetable JuicesPoint of deliveryFood StoragechemistryCatechol OxidaseFood ScienceFood Chemistry
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Antioxidant capacity in fruit of Citrus cultivars with marked differences in pulp coloration: Contribution of carotenoids and vitamin C.

2020

The purpose of this study was to evaluate the specific contribution of carotenoids and vitamin C to the lipophilic and hydrophilic antioxidant capacity, respectively, of the pulp of citrus fruits using the genetic diversity in pigmentation and in the carotenoid complement. To this end, six citrus varieties were selected: two mandarins, Clemenules (Citrus clementina) and Nadorcott (C. reticulata); two grapefruits (C. paradisi), Marsh and Star Ruby; and two sweet oranges (C. sinensis), Valencia late and Valencia Ruby. Total carotenoid content and composition in the pulp of fruits were very different, in relation to their color singularities. Valencia Ruby and Nadorcott had the highest caroten…

Citrus030309 nutrition & dieteticsDPPHGeneral Chemical EngineeringColorAscorbic Acidengineering.materialIndustrial and Manufacturing EngineeringAntioxidants03 medical and health scienceschemistry.chemical_compound0404 agricultural biotechnologyPhytoeneVitamin CFood scienceCarotenoidchemistry.chemical_classification0303 health sciencesABTSVitamin CChemistryPulp (paper)food and beverages04 agricultural and veterinary sciences040401 food scienceCarotenoidsPhytoflueneLycopeneAntioxidant capacityFruitengineeringCitrus fruitFood ScienceCitrus sinensisFood science and technology international = Ciencia y tecnologia de los alimentos internacional
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Physiological and molecular analysis of the maturation process in fruits of Clementine Mandarin and one of its late-ripening mutants

2009

Peel color is one of the main features affecting citrus quality. Clementine is a widespread citrus species with several mutants showing a delay in pigmentation and harvesting. This work characterizes the fruit development and ripening of two clementine clones, 'Comune', a widespread variety, and one of its natural mutations, 'Tardivo', which differ by a delayed color-break and extended harvest period. Morphological, chemical, and molecular analyses were carried out on fruits of both genotypes during the whole maturation process. Analysis showed that mutation did not affect ripening characteristics such as juice acidity and TSS. However, biochemical and molecular analysis revealed marked dif…

CitrusMutantCitruGene ExpressionBiologychemistry.chemical_compoundPhytoeneethyleneGeneCarotenoidchemistry.chemical_classificationChlorophyllaseAlkyl and Aryl Transferasescarotenogenesifood and beveragesRipeningGeneral ChemistryEthylenesCarotenoidschemistryBiochemistryXanthophyllFruitGeranylgeranyl-Diphosphate GeranylgeranyltransferaseMutationchlorophyllaseHPLCGeneral Agricultural and Biological SciencesClementine
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Carotenoid bioaccessibility in pulp and fresh juice from carotenoid-rich sweet oranges and mandarins.

2015

Citrus fruits are a good source of carotenoids for the human diet; however, comparative studies of carotenoids in different citrus food matrices are scarce. In this work the concentration and bioaccessibility of carotenoids in sweet oranges and mandarins with marked differences in carotenoid composition were evaluated in pulp and compared to those in fresh juice. The pulp and juice of the red-fleshed Cara Cara sweet orange variety was highly rich in carotenes (mainly lycopene and phytoene) compared to standard Navel orange, while β-cryptoxanthin and phytoene predominated in mandarins. Total carotenoid content in the pulp of the ordinary Navel orange and in the red-fleshed Cara Cara orange, …

Crops AgriculturalDietary FiberCitrusFood storageOrange (colour)Models BiologicalIntestinal absorptionchemistry.chemical_compoundPhytoeneLycopenestomatognathic systemSpecies SpecificityRefrigerationHumansFood scienceCarotenoidCryptoxanthinsOrange juicechemistry.chemical_classificationfood and beveragesGeneral MedicinePigments BiologicalCarotenoidsLycopeneFruit and Vegetable JuiceschemistryFood StorageIntestinal AbsorptionSpainFruitPostharvestDigestionNutritive ValueFood ScienceCitrus sinensisFoodfunction
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Deploying Genome Editing Tools for Dissecting the Biology of Nut Trees

2019

Walnuts are among the most important nut crops grown in temperate regions of the world. Commercial production in California, and increasingly worldwide, relies on only few clonally grafted scion genotypes, particularly “Chandler,” and more recently clonally propagated disease-resistant rootstocks. Diseases, nematodes, insect pests, abiotic stresses, and other nutritional and environmental factors, can reduce walnut productivity and quality, affecting grower profitability. The California Walnut Breeding Program at UC Davis has developed and released scion cultivars and rootstocks to help address some of these problems. Sequencing of the walnut genome is expected to speed walnut breeding by f…

Phytoene desaturaseCRISPR-Cas9; gene-editing; gRNA; nut crops; oxidative stress; phytoene desaturase; plastid healthBreeding programnut cropgRNAgene-editinglcsh:TX341-641HorticultureManagement Monitoring Policy and LawBiologyGenomeCropGenome editingSettore AGR/07 - Genetica Agrariaoxidative stressGlobal and Planetary Changeoxidative strelcsh:TP368-456Ecologybusiness.industryfungifood and beveragesPhenotypic traitBiotechnologySettore AGR/03 - Arboricoltura Generale E Coltivazioni Arboreelcsh:Food processing and manufacturephytoene desaturaseplastid healthCRISPR-Cas9nut cropsRootstockbusinesslcsh:Nutrition. Foods and food supplyAgronomy and Crop ScienceHickory nutFood Science
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Highly Efficient Virus-induced Gene Silencing (VIGS) in California Poppy (Eschscholzia californica): An Evaluation of VIGS as a Strategy to Obtain Fu…

2007

†Background and Aims Eschscholzia californica (California poppy) is an emerging model plant for ‘evo‐devo’ studies from the basal eudicot clade of Papaveraceae. California poppy has a relatively small genome, a short life cycle and, most importantly, it is amenable for transformation. However, since this transformation protocol is time consuming, virus-induced gene silencing (VIGS) was evaluated as a fast method to obtain functional data for California poppy genes. †Methods Commercially available California poppy plants were infiltrated with Agrobacterium tumefaciens carrying the tobacco rattle virus plasmids pTRV1 and pTRV2. pTRV2 contained part of the eschscholzia Phytoene Desaturase (EcP…

The Evolution of Plant DevelopmentRegulation of gene expressionGeneticsPhytoene desaturaseEschscholziabiologyCalifornia Poppyfungifood and beveragesFlowersPlant ScienceAgrobacterium tumefaciensbiology.organism_classificationEschscholziaPlant VirusesPlant LeavesGene Expression Regulation PlantTobacco rattle virusBotanyPapaveraceaeGene silencingGene SilencingOxidoreductasesAnnals of Botany
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