Search results for "leaves"

showing 10 items of 267 documents

Does short-term potassium fertilization improve recovery from drought stress in laurel?

2014

Xylem hydraulic conductance varies in response to changes in sap solute content, and in particular of potassium (K(+)) ion concentration. This phenomenon, known as the 'ionic effect', is enhanced in embolized stems, where it can compensate for cavitation-induced loss of hydraulic conductance. Previous studies have shown that in well-watered laurel plants (Laurus nobilis L.), potassium concentration of the xylem sap and plant hydraulic conductance increased 24 h after fertilization with KCl. The aim of this work was to test whether water-stressed laurel plants, grown under low potassium availability, could recover earlier from stress when irrigated with a KCl solution instead of potassium-fr…

Irrigationhydraulic conductancehydraulic conductance ionic effect Laurus nobilis L. xylem sapPhysiologyPotassiumTurgor pressurechemistry.chemical_elementPlant ScienceLaurusxylem sapLaurus nobilisfoodHydraulic conductivityStress PhysiologicalXylemSettore BIO/04 - Fisiologia VegetaleFertilizersTranspirationfungifood and beveragesXylemWaterPlant Transpirationfood.foodDroughtshydraulic conductance; ions; xylem sapPlant LeavesHorticultureAgronomychemistryShootPotassiumionsion
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Chemical composition of the essential oil from the aerial parts of Ononis reclinata L. (Fabaceae) grown wild in Sicily

2016

In the present study, the chemical composition of the essential oil from aerial parts of Ononis reclinata L., a species not previously investigated, collected in Sicily was evaluated by GC and Gas chromatography-Mass spectrometry. The main components of O. reclinata were menthone (43.6%), isopimpinellin (38.4%) and pulegone (11.2%). The comparison with other studied oils of genus Ononis showed a peculiar and characteristic profile.

IsopimpinellinChromatography GasmenthoneFlowersPlant ScienceBiology01 natural sciencesBiochemistryPlant StemGas Chromatography-Mass SpectrometryAnalytical Chemistrylaw.inventionchemistry.chemical_compoundGenuslawOnonisBotanyOils VolatileOnoniSicilyChemical compositionEssential oilpulegoneOnonis reclinataPlant Stems010405 organic chemistryOrganic ChemistryFabaceaeFabaceaeisopimpinellinPlant Components Aerialbiology.organism_classificationMenthone0104 chemical sciencesPlant Leavesvolatile component010404 medicinal & biomolecular chemistrychemistryChromatography GaFlowerOnonisPlant LeavePulegoneNatural Product Research
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Priming for JA-dependent defenses using hexanoic acid is an effective mechanism to protect Arabidopsis against B. cinerea

2011

Abstract Soil drench treatments with hexanoic acid can effectively protect Arabidopsis plants against Botrytis cinerea through a mechanism based on a stronger and faster accumulation of JA-dependent defenses. Plants impaired in ethylene, salicylic acid, abscisic acid or glutathion pathways showed intact protection by hexanoic acid upon B. cinerea infection. Accordingly, no significant changes in the SA marker gene PR-1 in either the SA or ABA hormone balance were observed in the infected and treated plants. In contrast, the JA signaling pathway showed dramatic changes after hexanoic acid treatment, mainly when the pathogen was present. The impaired JA mutants, jin1-2 and jar1 , were unable …

Jasmonic acid pathwaysPhysiologyMutantArabidopsisCyclopentanesPlant ScienceMicrobiologyDefensinschemistry.chemical_compoundBotrytis cinereaAnti-Infective AgentsPlant Growth RegulatorsHexanoic AcidGene Expression Regulation PlantArabidopsisEndopeptidasesPlant ImmunityOxylipinsCaproatesGlucansAbscisic acidPlant DiseasesPlant ProteinsBotrytis cinereaHexanoic acidbiologyArabidopsis ProteinsJasmonic acidCallosefungiAlternariafood and beveragesArabidopsis mutantsEthylenesPlants Genetically Modifiedbiology.organism_classificationGlutathionePlant LeaveschemistryBiochemistryPrimingMutationBotrytisSalicylic AcidAgronomy and Crop ScienceSalicylic acidAbscisic AcidSignal Transduction
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Responses of Prunus ferganensis, Prunus persica and two interspecific hybrids to moderate drought stress

2003

Prunus ferganensis (Kost. & Riab) Kov. & Kost, a close relative of the cultivated peach (Prunus persica (L.) Batsch.), is native to arid regions of central Asia and may possess traits valuable for improving drought tolerance of commercial peach varieties. One distinguishing feature of P. ferganensis is its prominent, elongated, unbranched leaf venation pattern, which behaves as a simple recessive trait in segregating populations of P. ferganensis x P. persica hybrids. To understand whether this trait could be used as a marker in breeding for drought tolerance, we investigated the association between leaf morphological and physiological parameters related to drought response in P. ferganensi…

L-Iditol 2-DehydrogenaseSpecific leaf areaPhysiologyClimatic adaptationDrought tolerancePlant ScienceBiologyTreesPrunusDry weightSorbitolLeaf sizePhotosynthesisgas exchange non-hydraulic signals peach photosynthesis sorbitol water potentialHybridDehydrationfungiWaterfood and beveragesPlant TranspirationPlant LeavesSettore AGR/03 - Arboricoltura Generale E Coltivazioni ArboreeAgronomyPrunusRootstockSugar Alcohol DehydrogenasesTree Physiology
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Geochemical behaviour of rare earths in Vitis vinifera grafted onto different rootstocks and growing on several soils.

2014

The geochemical behaviour of lanthanides and yttrium (Rare Earth Elements, REEs) has been investigated mainly in geological systems where these elements represent the best proxies of processes involving the occurrence of an interface between different media. This behaviour is assessed according to features recorded in sequences of REE concentrations along the REE series normalised with respect to a reference material. In this study, the geochemical behaviour of REE was investigated in different parts of Vitis vinifera specimens grown off-soil, on soils of different nature and grafted onto several rootstocks in order to evaluate effects induced by these changes. The results indicated that ro…

LanthanideEnvironmental Engineeringmedia_common.quotation_subjectMineralogychemistry.chemical_elementVitis vinifera Rare Earth Elements Geochemical behavior SoilPlant RootsSoilEnvironmental ChemistrySoil PollutantsVitisVitis viniferaWaste Management and Disposalmedia_commonMineralXylemYttriumPollutionSettore GEO/08 - Geochimica E VulcanologiaPlant LeavesSpeciationchemistryModels ChemicalEnvironmental chemistrySoil waterMetals Rare EarthRootstockGeologyThe Science of the total environment
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Enhanced levels of S-linalool by metabolic engineering of the terpenoid pathway in spike lavender leaves

2013

Transgenic Lavandula latifolia plants overexpressing the linalool synthase (LIS) gene from Clarkia breweri, encoding the LIS enzyme that catalyzes the synthesis of linalool were generated. Most of these plants increased significantly their linalool content as compared to controls, especially in the youngest leaves, where a linalool increase up to a 1000% was observed. The phenotype of increased linalool content observed in young leaves was maintained in those T1 progenies that inherit the LIS transgene, although this phenotype was less evident in the flower essential oil. Cross-pollination of transgenic spike lavender plants allowed the generation of double transgenic plants containing the …

LavenderAcyclic MonoterpenesLavandulaTransgeneLavandula latifoliaBioengineeringGenetically modified cropsClarkiaBiologyApplied Microbiology and Biotechnologylaw.inventionchemistry.chemical_compoundLinaloollawBotanyTransgenesHydro-LyasesEssential oilPlant ProteinsPlants Genetically Modifiedbiology.organism_classificationTerpenoidPlant LeavesErythritolLavandulachemistryMonoterpenesSugar PhosphatesBiotechnologyMetabolic Engineering
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Expression of spearmint limonene synthase in transgenic spike lavender results in an altered monoterpene composition in developing leaves.

2008

We generated transgenic spike lavender (Lavandula latifolia) plants constitutively expressing the limonene synthase (LS) gene from spearmint (Mentha spicata), encoding the LS enzyme that catalyzes the synthesis of limonene from geranyl diphosphate. Overexpression of the LS transgene did not consistently affect monoterpene profile in pooled leaves or flowers from transgenic T(0) plants. Analyses from cohorts of leaves sampled at different developmental stages showed that essential oil accumulation in transgenic and control plants was higher in developing than in mature leaves. Furthermore, developing leaves of transgenic plants contained increased limonene contents (more than 450% increase c…

LavenderMonoterpeneTransgeneLavandula latifoliaBioengineeringGenetically modified cropsBiologyProtein EngineeringApplied Microbiology and BiotechnologyMentha spicatalaw.inventionchemistry.chemical_compoundlawBotanyIntramolecular LyasesGeneEssential oilLimonenefood and beveragesbiology.organism_classificationPlants Genetically ModifiedRecombinant ProteinsPlant LeavesGenetic EnhancementLavandulachemistryMonoterpenesBiotechnologyMetabolic engineering
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Essential oil of Cyphostemma juttae (Vitaceae): Chemical composition and antitumor mechanism in triple negative breast cancer cells

2019

The genus Cyphostemma (Planch.) Alston (Vitaceae) includes about 150 species distrib- uted in eastern and southern Africa and Madagascar. Some species are used in traditional medicine and their biological activities, including antiproliferative effects against cancer cell lines, have been demonstrated. To date no investigations on Cyphostemma essential oils have been carried out. Essential oils, which play important roles in plant defenses have been demonstrated to be active in the treatment of several human diseases and to enhance bioavability of other drugs. The aim of this paper was to identify the chemical composition of the essential oil of the leaves of Cyphostemma juttae (Dinter &amp…

LeavesChemical CompositionTriple Negative Breast NeoplasmsPlant ScienceBiochemistryNF-κBAntioxidantsMass Spectrometrylaw.inventionAnalytical ChemistryTerpenechemistry.chemical_compound0302 clinical medicineSpectrum Analysis Techniquespro-oxidantlawBreast TumorsPlant defense against herbivoryMedicine and Health Sciencesantitumor0303 health sciencesMultidisciplinarybiologyTraditional medicineOrganic CompoundsPlant AnatomyQChromatographic TechniquesCell CycleRNF-kappa BLipidsChemistryOncologyVitaceaeCell Processes030220 oncology & carcinogenesisCyphostemmaPhysical SciencesMedicinecytotoxic effectterpenoidResearch ArticleCell SurvivalScienceVitaceaeResearch and Analysis Methodsessential oilGas Chromatography-Mass SpectrometryCell Growthphytol03 medical and health sciencesPhytolCyphostemma juttaeCell Line TumorBreast CancerOils VolatileHumansEssential oil030304 developmental biologyCell ProliferationCell growthTerpenesOrganic ChemistryChemical CompoundsBiology and Life SciencesCancers and NeoplasmsCell Biologybiology.organism_classificationAntineoplastic Agents PhytogenicPlant LeaveschemistrySettore BIO/03 - Botanica Ambientale E ApplicataSettore BIO/14 - FarmacologiaReactive Oxygen SpeciesOilsPLoS ONE
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Volatile Compounds in Citrus Essential Oils: A Comprehensive Review

2019

[EN] The essential oil fraction obtained from the rind of Citrus spp. is rich in chemical compounds of interest for the food and perfume industries, and therefore has been extensively studied during the last decades. In this manuscript, we provide a comprehensive review of the volatile composition of this oil fraction and rind extracts for the 10 most studied Citrus species: C. sinensis (sweet orange), C. reticulata (mandarin), C. paradisi (grapefruit), C. grandis (pummelo), C. limon (lemon), C. medica (citron), C. aurantifolia (lime), C. aurantium (bitter orange), C. bergamia (bergamot orange), and C. junos (yuzu). Forty-nine volatile organic compounds have been reported in all 10 species,…

Leavescitrus essential oilFlowersOrange (colour)Plant ScienceReviewlcsh:Plant cultureSesquiterpene01 natural scienceslaw.inventionBergamot orangechemistry.chemical_compound0404 agricultural biotechnologylawAnalytical methodsBIOQUIMICA Y BIOLOGIA MOLECULARlcsh:SB1-1110volatile compoundsEssential oilCitrus essential oilflowers010401 analytical chemistry04 agricultural and veterinary sciences040401 food scienceRindTerpenoid0104 chemical sciencesHorticulturerindanalytical methodschemistryVolatile compoundsleavesbusinessbusiness.product_ingredientFrontiers in Plant Science
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Transmission modes affect the population structure of potato virus Y in potato.

2020

Transmission is a crucial part of a viral life cycle and transmission mode can have an important impact on virus biology. It was demonstrated that transmission mode can influence the virulence and evolution of a virus; however, few empirical data are available to describe the direct underlying changes in virus population structure dynamics within the host. Potato virus Y (PVY) is an RNA virus and one of the most damaging pathogens of potato. It comprises several genetically variable strains that are transmitted between plants via different transmission modes. To investigate how transmission modes affect the within-plant viral population structure, we have used a deep sequencing approach to …

LeavesvirusesPotyvirusPlant Sciencelaw.inventionlawVegetablesBiology (General)Flowering PlantsGenetics0303 health sciencesEcologyPlant Anatomy030302 biochemistry & molecular biologyEukaryotafood and beveragesPlantsPlant TubersTransmission (mechanics)Potato virus YViral evolutionPotatoResearch ArticleNicotianaEcological MetricsQH301-705.5ImmunologyVirulenceBiologyViral StructureSolanumModels BiologicalMicrobiologyVirusViral Evolution03 medical and health sciencesViral life cycleVirologyGeneticsMolecular Biology030304 developmental biologyPlant DiseasesSolanum tuberosumEvolutionary BiologyTubersPopulation BiologyHost (biology)Ecology and Environmental SciencesfungiOrganismsBiology and Life SciencesRNA virusSpecies DiversityRC581-607biology.organism_classificationOrganismal EvolutionPlant LeavesMicrobial EvolutionParasitologyImmunologic diseases. AllergyPopulation GeneticsPLoS Pathogens
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