Search results for "noi"

showing 10 items of 4761 documents

In vivo photoprotection mechanisms observed from leaf spectral absorbance changes showing VIS–NIR slow-induced conformational pigment bed changes

2019

Abstract Regulated heat dissipation under excessive light comprises a complexity of mechanisms, whereby the supramolecular light-harvesting pigment–protein complex (LHC) shifts state from light harvesting towards heat dissipation, quenching the excess of photo-induced excitation energy in a non-photochemical way. Based on whole-leaf spectroscopy measuring upward and downward spectral radiance fluxes, we studied spectrally contiguous (hyperspectral) transient time series of absorbance A(λ,t) and passively induced chlorophyll fluorescence F(λ,t) dynamics of intact leaves in the visible and near-infrared wavelengths (VIS–NIR, 400–800 nm) after sudden strong natural-like illumination exposure. …

0106 biological sciences0301 basic medicineChlorophyllMaterials sciencePassive chlorophyll a fluorescencePigment–protein dynamicsLightHyperspectral remote sensingAnalytical chemistryJuglansPlant Science01 natural sciencesBiochemistryEnergy quenchingFluorescenceAbsorbance03 medical and health sciencesTransmittanceFiber Optic TechnologySpectroscopyChlorophyll fluorescencechemistry.chemical_classificationSpectroscopy Near-InfraredAbsorbed photosynthetic active radiation (APAR)Non-photochemical quenching (NPQ)Cell BiologyGeneral MedicineEquipment DesignPigments BiologicalPhotochemical ProcessesCarotenoidsPlant LeavesWavelength030104 developmental biologychemistryXanthophyllRadianceOriginal ArticleAbsorbance shiftMorusControlled heat dissipation010606 plant biology & botanyPhotosynthesis Research
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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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2017

By the possession of unique exocrine scent glands, Opiliones (harvestmen) arise as a perfect model for studies on the evolutionary history of secretion chemistry. Among gland compounds of harvestmen, it is the quinones that represent recurring elements across the secretions of all suborders. Reliable data on quinone-distribution, however, is only known for Laniatores (benzoquinones) and Cyphophthalmi (naphthoquinones). We here unraveled the quinone-distribution across scent gland secretions of the third large harvestman suborder, the Palpatores (= Eu- and Dyspnoi): Naphthoquinones were found in phalangiid Eupnoi across all subfamilies as well as in nemastomatid (and at least one ischyropsal…

0106 biological sciences0301 basic medicineEcologybiologyEupnoiPhalangiidaeAmilenusSclerosomatidaeZoologyOpilionesbiology.organism_classification010603 evolutionary biology01 natural sciencesCyphophthalmi03 medical and health sciences030104 developmental biologyDyspnoiEcology Evolution Behavior and SystematicsLaniatoresFrontiers in Ecology and Evolution
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Carotenoids and Some Other Pigments from Fungi and Yeasts †

2021

Carotenoids are an essential group of compounds that may be obtained by microbiological synthesis. They are instrumental in various areas of industry, medicine, agriculture, and ecology. The increase of carotenoids’ demand at the global market is now essential. At the moment, the production of natural carotenoids is more expensive than obtaining their synthetic forms, but several new approaches/directions on how to decrease this difference were developed during the last decades. This review briefly describes the information accumulated until now about the beneficial effects of carotenoids on human health protection, their possible application in the treatments of various diseases, and their…

0106 biological sciences0301 basic medicineEndocrinology Diabetes and Metabolismpigmentslcsh:QR1-502macromolecular substancesReviewBiologyyeast01 natural sciencesBiochemistrylcsh:Microbiology03 medical and health sciencesHuman health010608 biotechnologyMolecular BiologyBeneficial effectsCarotenoidchemistry.chemical_classificationbusiness.industrycarotenoidsfood and beveragesBiotechnology030104 developmental biologychemistryAgriculturebusinessMetabolites
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Identification of Stress Associated microRNAs in Solanum lycopersicum by High-Throughput Sequencing

2019

Tomato (Solanum lycopersicum) is one of the most important crops around the world and also a model plant to study response to stress. High-throughput sequencing was used to analyse the microRNA (miRNA) profile of tomato plants undergoing five biotic and abiotic stress conditions (drought, heat, P. syringae infection, B. cinerea infection, and herbivore insect attack with Leptinotarsa decemlineata larvae) and one chemical treatment with a plant defence inducer, hexanoic acid. We identified 104 conserved miRNAs belonging to 37 families and we predicted 61 novel tomato miRNAs. Among those 165 miRNAs, 41 were stress-responsive. Reverse transcription quantitative PCR (RT-qPCR) was used to valida…

0106 biological sciences0301 basic medicineEstrèslcsh:QH426-470ATP-binding cassette transporter01 natural sciencesbehavioral disciplines and activitiesDNA sequencingdifferential expression03 medical and health sciencesDifferential expressionSolanum lycopersicummicroRNAGeneticsTomàquetsGeneGenetics (clinical)Abiotic componentGeneticsbiotic and abiotic stress responseHigh-throughput sequencingbiologyAbiotic stressfungi<i>Solanum lycopersicum</i>food and beverageshigh-throughput sequencingbiology.organism_classificationlcsh:Genetics030104 developmental biologyReal-time polymerase chain reactionmiRNAsBiotic and abiotic stress responseSolanumHexanoic acidhexanoic acidmiRNA targets010606 plant biology & botanyGenes
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Selenium biofortification and grafting modulate plant performance and functional features of cherry tomato grown in a soilless system

2021

Abstract Selenium (Se) is an essential trace element for humans due to its importance in a number of enzymes. Vegetable grafting is a valuable tool to overcome biotic and/or abiotic issues and to increase vigour, yield traits and fruit quality. The present work aimed at testing both different Se concentrations (0.0, 1.0, 2.0 and 4.0 μmol Se L−1) supplied via fertigation and grafting on cherry tomato in soilless culture. Se at 2.0 μmol L−1 improved total fruit yield by 60.0 % and 31.4 % in ungrafted and grafted plants, respectively as compared to the control. Marketable yield was positively affected by Se-biofortification and grafting. Se at 2.0 μmol L−1 improved N use efficiency by 60.3 % a…

0106 biological sciences0301 basic medicineFunctional attributeBiofortificationHorticulture01 natural sciences03 medical and health scienceschemistry.chemical_compoundDry weightCherry tomatoCarotenoidchemistry.chemical_classificationbiologyfood and beveragesSe-biofortificationSolanum lycopersicum L.Hydroponicsbiology.organism_classificationAscorbic acidGraftingHealth-promoting compoundLycopeneHorticulture030104 developmental biologychemistryRootstock010606 plant biology & botanyScientia Horticulturae
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Neurosporaxanthin Overproduction by Fusarium fujikuroi and Evaluation of Its Antioxidant Properties

2020

17 Páginas.-- 5 Figuras

0106 biological sciences0301 basic medicineFusariumAntioxidantPhysiologymedicine.medical_treatmentClinical BiochemistryMutantquenchingfree radicalsFree radicalsXanthophylls01 natural sciencesBiochemistryNeurospora03 medical and health sciencesQuenching010608 biotechnologymedicineoxidative stressMolecular BiologyCarotenoidMyceliumchemistry.chemical_classificationbiologyChemistrylcsh:RM1-950carotenoidsFungifood and beveragesCell Biologybiology.organism_classificationCarotenoidslcsh:Therapeutics. Pharmacology030104 developmental biologyBiochemistryOxidative stressXanthophyllLiposomesGibberellinfungixanthophyllsAntioxidants
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Colorado potato beetle chymotrypsin genes are differentially regulated in larval midgut in response to the plant defense inducer hexanoic acid or the…

2019

When Colorado potato beetle larvae ingested potato plants treated with the plant defense inducer compound hexanoic acid, midgut chymotrypsin enzyme activity increased, and the corresponding chymotrypsin genes were differentially expressed, evidence of the larval digestive proteolytic system's plasticity. We previously reported increased susceptibility to Cry3Aa toxin in larvae fed hexanoic acid treated plants. Here we show that the most expressed chymotrypsin gene in larvae fed hexanoic acid treated plants, CTR6, was dramatically downregulated in Cry3Aa intoxicated larvae. lde-miR-965-5p and lde-miR-9a-5p microRNAs, predicted to target CTR6, might be involved in regulating the response to h…

0106 biological sciences0301 basic medicineGenes Insectmedicine.disease_cause01 natural sciencesMicrobiologyHemolysin Proteins03 medical and health scienceschemistry.chemical_compoundBacterial ProteinsBacillus thuringiensisPlant defense against herbivorymedicineAnimalsChymotrypsinCaproatesEcology Evolution Behavior and SystematicsSolanum tuberosumHexanoic acidChymotrypsinBacillus thuringiensis ToxinsbiologyToxinfungiColorado potato beetlefood and beveragesMidgutbiology.organism_classificationEnzyme assayColeopteraEndotoxins010602 entomology030104 developmental biologyGene Expression RegulationchemistryLarvabiology.proteinDigestive SystemJournal of Invertebrate Pathology
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Dynamics of Monoterpene Formation in Spike Lavender Plants

2017

The metabolic cross-talk between the mevalonate (MVA) and the methylerythritol phosphate (MEP) pathways was analyzed in spike lavender (Lavandula latifolia Med) on the basis of 13CO2-labelling experiments using wildtype and transgenic plants overexpressing the 3-hydroxy-3-methylglutaryl CoA reductase (HMGR), the first and key enzyme of the MVA pathway. The plants were labelled in the presence of 13CO2 in a gas chamber for controlled pulse and chase periods of time. GC/MS and NMR analysis of 1,8-cineole and camphor, the major monoterpenes present in their essential oil, indicated that the C5-precursors, isopentenyl diphosphate (IPP) and dimethylallyl diphosphate (DMAPP) of both monoterpenes …

0106 biological sciences0301 basic medicineLavenderEndocrinology Diabetes and MetabolismMonoterpeneLavandula latifolialcsh:QR1-502Reductase01 natural sciencesBiochemistryArticlelcsh:Microbiologylaw.inventionessential oils; isotopologue profiling; lamiaceae; <i>Lavandula latifolia</i>; spike lavender; terpenoid biosynthesis; mevalonate; CO<sub>2</sub>terpenoid biosynthesislamiaceae03 medical and health sciencesCamphorchemistry.chemical_compoundmevalonatelawMolecular Biologyessential oilsEssential oilchemistry.chemical_classificationbiologyChemistrybiology.organism_classificationddc:spike lavender030104 developmental biologyEnzymeisotopologue profilingBiochemistryLamiaceaeCO2Lavandula latifolia010606 plant biology & botanyMetabolites
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Changes in lipid and carotenoid metabolism in Chlamydomonas reinhardtii during induction of CO2-concentrating mechanism: Cellular response to low CO2…

2020

Photosynthetic organisms strictly depend on CO2 availability and the CO2:O2 ratio, as both CO2/O2 compete for catalytic site of Rubisco. Green alga Chlamydomonas reinhardtii, can overcome CO2 shortage by inducing CO2-concentrating mechanism (CCM). Cells transferred to low-CO2 are subjected to light-driven oxidative stress due to decrease in the electron sink. Response to environmental perturbations is mediated to some extent by changes in the lipid and carotenoid metabolism. We thus hypothesize that when cells are challenged with changes in CO2 availability, changes in the lipidome and carotenoids profile occur. These changes expected to be transient, when CCM is activated, CO2 limitation w…

0106 biological sciences0301 basic medicineLow-CO stressChlamydomonas reinhardtiimedicine.disease_cause01 natural sciences03 medical and health sciencesCarotenogenesisLipid dropletmedicineBetaine lipidsCarotenoidchemistry.chemical_classificationCCMbiologyRuBisCOChlamydomonasBiochemistry and Molecular BiologyLipid metabolismLipidomebiology.organism_classificationLipid droplets030104 developmental biologyMicrobiology (Microbiology in the medical area to be 30109)chemistryBiochemistryXanthophyllbiology.proteinAgronomy and Crop ScienceOxidative stressBiokemi och molekylärbiologi010606 plant biology & botany
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