Search results for "metabolites"

showing 10 items of 182 documents

Polyamine Oxidase 5 loss-of-function mutations in Arabidopsis thaliana trigger metabolic and transcriptional reprogramming and promote salt stress to…

2017

The family of polyamine oxidases (PAO) in Arabidopsis (AtPAO1-5) mediates polyamine (PA) back-conversion, which reverses the PA biosynthetic pathway from spermine, and its structural isomer thermospermine (tSpm), into spermidine and then putrescine. Here, we have studied the involvement of PA back-conversion in Arabidopsis salinity tolerance. AtPAO5 is the Arabidopsis PAO gene member most transcriptionally induced by salt stress. Two independent loss-of-function mutants (atpao5-2 and atpao5-3) were found to exhibit constitutively higher tSpm levels, with associated increased salt tolerance. Using global transcriptional and metabolomic analyses, the underlying mechanisms were studied. Stimul…

0106 biological sciences0301 basic medicineTranscription GeneticArabidopsis thalianaPhysiologyArabidopsisSperminePlant ScienceSodium Chloride01 natural scienceschemistry.chemical_compoundGene Expression Regulation PlantLoss of Function MutationArabidopsisPolyaminesMetabolitesArabidopsis thalianaPoliaminesAbscisic acidPrincipal Component AnalysisbiologyAgricultural SciencesSalt ToleranceMetabòlitsmetabolomicsPhenotypeBiochemistryMultigene FamilyMetabolomeCitric Acid CycleSalsCyclopentanes03 medical and health sciencesStress PhysiologicalOxylipinsRNA MessengerIonssalt toleranceArabidopsis ProteinsGene Expression ProfilingSodiumHydrogen PeroxideAgriculture Forestry and Fisheriesbiology.organism_classificationSpermidineGene Ontology030104 developmental biologychemistrythermosperminePutrescineSpermineSaltsOxidoreductases Acting on CH-NH2 Group DonorsTranscriptomejasmonatesPolyaminePolyamine oxidaseAbscisic Acid010606 plant biology & botany
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Increased illumination levels enhance biosynthesis of aloenin A and aloin B in Aloe arborescens Mill., but lower their per-plant yield

2021

Abstract Leaves of Aloe arborescens Mill. are a relevant source of secondary metabolites of pharmaceutical relevance. Notwithstanding, specialized cultivations of A. arborescens are still rather limited, and a straightforward agronomical research addressed to the obtainment of high-quality material is lacking. With the purpose to fill this gap, from 2016 to 2018, a trial was arranged to evaluate the growth and development of A. arborescens, along with the production of four active metabolites (aloin A and B, aloenin A, and isoaloeresin D) with varying some growth conditions. Two growth substrates (“A”- a commercial substrate, and “B”- the same substrate + 20 % perlite), two durations of pre…

0106 biological sciencesAloe arborescensAloin01 natural scienceschemistry.chemical_compoundaloinAloe arborescensLeaf sizeDry matterbiology010405 organic chemistrysecondary metabolitesCrop yieldbiology.organism_classificationaloenin0104 chemical sciencesAloe arborescens Aloenin Aloin Cultivation Secondary metabolites ShadingHorticultureLight intensitychemistrycultivationPerliteShadingAgronomy and Crop Scienceshading010606 plant biology & botany
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Effects of temperature on total phenolic compounds in Cystoseira amentacea (C. Agardh) Bory (Fucales, Phaeophyceae) from southern Mediterranean Sea

2015

The aim of this study was to test the effects of temperature on phenolic content of the brown seaweed Cystoseira amentacea. Phenolic compounds are secondary metabolites involved in different protection mechanisms as, for example, against grazers, epiphytes and UV radiation. Seasonal variations of phenolic content in C. amentacea were analysed and laboratory experiments, in which C. amentacea was exposed to an increase of temperature (25°C and 30°C), were performed. Total phenolic content (TPC) was determined colorimetrically with the Folin–Ciocalteu reagent. In C. amentacea, a seasonal pattern in TPC was observed, with a maximum value in winter-spring. C. amentacea responded significantly t…

0106 biological sciencesCystoseira amentacea Mediterranean Sea phenols secondary metabolites temperature variations010504 meteorology & atmospheric sciencesbiology010604 marine biology & hydrobiologySettore BIO/02 - Botanica SistematicaCystoseira amentaceaPlant Sciencebiology.organism_classification01 natural sciencesMediterranean seaBrown seaweedBotanySettore BIO/04 - Fisiologia VegetaleEpiphyteFucalesEcology Evolution Behavior and Systematics0105 earth and related environmental sciences
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Variations of essential oil constituents in oregano (Origanum vulgare subsp. viridulum (= o. heracleoticum) over cultivation cycles

2020

Oregano is&mdash

0106 biological sciencesHarvest timearomatic plants cultivationPlant Science01 natural sciencesessential oillaw.inventionactive metabolitechemistry.chemical_compoundlawthymolThymolSicilyEcology Evolution Behavior and SystematicsEssential oilEcologybiology010405 organic chemistryBotanyactive metabolitesOriganumbiology.organism_classification0104 chemical sciencesSettore AGR/02 - Agronomia E Coltivazioni ErbaceeHorticulturechemistryQK1-989Composition (visual arts)oreganoharvest time010606 plant biology & botany
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Cultivating for the Industry: Cropping Experiences with Hypericum perforatum L. in a Mediterranean Environment

2021

Hypericum perforatum is an intensively studied medicinal plant, and much experimental activity has been addressed to evaluate its bio-agronomical and phytochemical features as far. In most cases, plant material used for experimental purposes is obtained from wild populations or, alternatively, from individuals grown in vases and/or pots. When Hypericum is addressed to industrial purposes, the most convenient option for achieving satisfactory amounts of plant biomass is field cultivation. Pot cultivation and open field condition, however, are likely to induce different responses on plant’s metabolism, and the obtained yield and composition are not necessarily the same. To compare these manag…

0106 biological sciencesMediterranean climate<i>Hypericum perforatum</i>Agriculture (General)BiomassSt. John’s wortPlant ScienceBiology01 natural sciencesS1-972Secondary metaboliteYield (wine)cropping techniqueHypericum perforatumPhytochemical compositionSt. John's wortsecondary metabolitesHypericum perforatumbiology.organism_classification0104 chemical sciences010404 medicinal & biomolecular chemistryHorticulturePhytochemicalHypericumAgronomy and Crop ScienceCropping010606 plant biology & botanyFood ScienceAgriculture
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Impact of Nitrogen Addition on Wine Fermentation by S. cerevisiae Strains with Different Nitrogen Requirements

2021

In modern oenology, supplementation of nitrogen sources is an important strategy to prevent sluggish or stuck fermentation. The present study thoroughly determined the effect of nitrogen addition timing and nitrogen source type on fermentation kinetics and aroma production, carried out by yeast strains with low and high nitrogen requirements. The results revealed that yeast strains with different nitrogen requirements have divergent reactions to nitrogen addition. Nitrogen addition clearly shortened the fermentation duration, especially for the high-nitrogen-demanding yeast strain. Nitrogen addition at 1/3 fermentation was the most effective in terms of fermentation activity, nitrogen assim…

0106 biological sciencesNitrogenNitrogen assimilationchemistry.chemical_elementS. cerevisiaeWine01 natural sciencesFood scienceWinemakingOenologyFermentation in winemakingSecondary metabolites010401 analytical chemistryfood and beveragesGeneral ChemistryNitrogenStuck fermentationYeast0104 chemical scienceschemistryFermentationVolatile compoundsFermentationGeneral Agricultural and Biological Sciences010606 plant biology & botany
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Innovative Alcoholic Drinks Obtained by Co-Fermenting Grape Must and Fruit Juice

2019

In this study, Cabernet Sauvignon and Chardonnay musts, and fruit juices from cherry, kiwi, peach, and strawberry were co-fermented with Saccharomyces cerevisiae EC1118 and Torulaspora delbrueckii UMY196 at two different proportions (80:20 (v/v) and 60:40 (v/v)). The most pleasant fruit-based drink was obtained with Cabernet Sauvignon must and kiwi juice in a proportion of 60:40 and fermented with T. delbrueckii. This beverage was produced in higher volume to simulate a scale-up, and the aromatic profile, sensory description, and consumer acceptability were determined. The most powerful odorants of the kiwi-based drink were ethyl octanoate, phenylethanal, ethyl hexanoate, vinyl-guaiacol, be…

0106 biological sciencesNonanalEndocrinology Diabetes and Metabolismlcsh:QR1-502yeastssecondary metabolite01 natural sciencesBiochemistrySensory analysisfruit wineslcsh:MicrobiologyArticlechemistry.chemical_compound0404 agricultural biotechnologyTorulaspora delbrueckii010608 biotechnologyFood sciencegrape mustMolecular Biologyfruit winebiologysecondary metabolitesEthyl hexanoatefood innovation04 agricultural and veterinary sciencesbiology.organism_classification040401 food sciencechemistryOdorKiwikiwi juiceFermentationFruit juice
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Experimental climate warming alters the relationship between fungal root symbiosis and Sphagnum litter phenolics in two peatland microhabitats

2017

International audience; Belowground interactions between plants and microorganisms are involved in numerous ecosystems processes such as carbon and nutrient cycling. Understanding their responses to on-going climate warming is thus of paramount importance to better predict future ecosystem functioning. We hypothesized that climate warming alters the interactions between Sphagnum litter phenolics and the fungal root symbiosis of the Ericale plant Andromeda polifolia in a Jura mountain peatland (France). We initiate a climate warming treatment (+1°C) in April 2008 in two microhabitats (lawns and hummocks). We measured polyphenolic contents, mycorrhizal and dark septate endophyte (DSE) root co…

0106 biological sciencesPeatSoil SciencephenoloxidaseperoxidaseDark septate endophyte01 natural sciencesMicrobiologySphagnum[ SDE ] Environmental Sciencesdark septate endophyteSymbiosisBotanyEcosystembryophyteRhizospherebiologyEcologyGlobal warmingplant secondary metabolites (PSM)04 agricultural and veterinary sciences15. Life on landbiology.organism_classification13. Climate actionericoid mycorrhizae[SDE]Environmental Sciences040103 agronomy & agricultureLitter0401 agriculture forestry and fisheries010606 plant biology & botany
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Chlamyphilone, a Novel Pochonia chlamydosporia Metabolite with Insecticidal Activity

2019

Metabolites from a collection of selected fungal isolates have been screened for insecticidal activity against the aphid Acyrthosiphon pisum. Crude organic extracts of culture filtrates from six fungal isolates (Paecilomyces lilacinus, Pochonia chlamydosporia, Penicillium griseofulvum, Beauveria bassiana, Metarhizium anisopliae and Talaromyces pinophilus) caused mortality of aphids within 72 h after treatment. In this work, bioassay-guided fractionation has been used to characterize the main bioactive metabolites accumulated in fungal extracts. Leucinostatins A, B and D represent the bioactive compounds produced by P. lilacinus. From P. griseofulvum and B. bassiana extracts, griseofulvin an…

0106 biological sciencesPenicillium griseofulvumInsecticidesMagnetic Resonance SpectroscopyMetabolitePharmaceutical ScienceMetarhizium anisopliaeBeauveria bassianabeneficial microbesBassiana01 natural sciencesArticleAnalytical Chemistrylcsh:QD241-441chemistry.chemical_compoundAscomycotalcsh:Organic chemistryDrug DiscoveryFood sciencePhysical and Theoretical ChemistryBiological ProductsbiologyMolecular Structure010405 organic chemistryChemistrysecondary metabolitesOrganic Chemistryfungifood and beveragespea aphidbiology.organism_classificationGriseofulvinazaphilonesBeauvericin0104 chemical sciencesAcyrthosiphon pisum010602 entomologybeneficial microbesChemistry (miscellaneous)Molecular Medicinesecondary metabolites; beneficial microbes; pea aphid; azaphilonesMolecules
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Interspecific variation in total phenolic content in temperate brown algae

2017

Marine algae synthesize secondary metabolites such as polyphenols that function as defense and protection mechanisms. Among brown algae, Fucales and Dictyotales (Phaeophyceae) contain the highest levels of phenolic compounds, mainly phlorotannins, that play multiple roles. Four temperate brown algae (Cystoseira amentacea, Cystoseira compressa, Dictyopteris polypodioides and Padina pavonica) were studied for total phenolic contents. Total phenolic content was determined colorimetrically with the Folin-Ciocalteu reagent. Significant differences in total phenolic content were observed between leathery and sheetlike algae and also within each morphological group. Among the four species, the she…

0106 biological sciencesPhaeophyceaePadina pavonicamacromolecular substancesPlant Science010501 environmental sciencesBiology01 natural sciencesGeneral Biochemistry Genetics and Molecular BiologySecondary metaboliteAlgaeBotanyMediterranean SeaTemperate climateSettore BIO/04 - Fisiologia Vegetalelcsh:QH301-705.5External and internal factorTotal phenolic content0105 earth and related environmental sciencesExternal and internal factorsSecondary metabolitesSettore BIO/02 - Botanica Sistematica010604 marine biology & hydrobiologyBiochemistry (medical)DictyotalesInterspecific competitionbiology.organism_classificationBrown algaelcsh:Biology (General)PolyphenolSettore BIO/03 - Botanica Ambientale E ApplicataFucalesJournal of Biological Research - Bollettino della Società Italiana di Biologia Sperimentale
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