Search results for "Veterinary Sciences"

showing 10 items of 2309 documents

Agro-Morphological Characterization of Sicilian Chili Pepper Accessions for Ornamental Purposes

2020

The species belonging to the genus Capsicum have been widely used as decorative vegetables, however only a few genotypes are available for this purpose. The goal of the present work was the agro-morphological characterization of several chili pepper accessions cultivated into different pot sizes (10, 14, 18 or 20 cm diameters). The agro-morphological characterization of 19 accessions was performed following IPGR (International Plant Genetic Resources Institute) descriptors: plant height (PH), plant canopy width (PCW), PH/PCW ratio, plant growth habit, plant visual quality, first flower emission, fruiting start, end of harvest, fruit number, fruit length, fruit width, fruit color at mature s…

0106 biological sciencesPlant growthChili pepperCapsicum generaCapsicum generachili pepperSettore AGR/04 - Orticoltura E FloricolturaPlant ScienceBiology01 natural sciencesArticle0404 agricultural biotechnologyGenetic resourcesOrnamental plantcharacterizationornamental plantsEcology Evolution Behavior and SystematicsEcologyornamental plantBotany04 agricultural and veterinary sciences040401 food scienceSettore AGR/02 - Agronomia E Coltivazioni ErbaceeHorticultureMature stageQK1-989Habit (biology)<i>Capsicum</i> generalocal genetic variabilityPlant canopychili pepper010606 plant biology & botanyPlants
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Multitrophic interactions in the rhizosphere Rhizosphere microbiology: at the interface of many disciplines and expertises.

2008

The rhizosphere – the soil compartment influenced by the root, including the root itself – is the most-active microbial habitat in soils. Indeed, the release by plant roots of a significant part of their photosynthates promotes microbial abundance and activities in the rhizosphere. This investment made by plants is paid back by microbial functions, which contribute to plant nutrition and protection against soil-borne diseases. Indeed, rhizosphere microorganisms play a major role in plant growth and health and, …

0106 biological sciencesPlant growthMICROBIOLOGYMicroorganismPLANT ZOOLOGYBiology01 natural sciencesApplied Microbiology and BiotechnologyPlant RootsBotanyMICROBIAL COMMUNITIESRELATION PLANTE-MICROORGANISMEMolecular BiologyComputingMilieux_MISCELLANEOUSEcosystemPlant Physiological PhenomenaSoil Microbiology2. Zero hungerRhizosphereMicroscopyEcologyPlant rootsEcologyfungiSignificant partfood and beveragesRHIZOSPHERE04 agricultural and veterinary sciencesPLANT PATHOLOGY15. Life on landPlantsPLANT PHYSIOLOGY[SDV.MP]Life Sciences [q-bio]/Microbiology and ParasitologySoil water040103 agronomy & agriculture0401 agriculture forestry and fisheriesPhyllospherePlant nutrition010606 plant biology & botanyFEMS microbiology ecology
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Mycorrhizae differentially influence the transfer of nitrogen among associated plants and their competitive relationships

2021

Abstract The formation of a common mycorrhizal network among roots of different plant species growing close to each other can influence plant community dynamics, regulating plant relationships through the differential transfer of nutrients from one plant to another. However, knowledge of the mechanisms that regulate this process is poor. Here we quantify the contribution of arbuscular mycorrhizae to the transfer of N among heterospecific plants growing adjacent to each other and examine whether the differential transfer of N within the plant community via mycorrhizae can alter competitive relationships among plant species. Plants of four species (wheat, pea, flax, and chicory) were grown in…

0106 biological sciencesPlant-plant interaction15N labellingMicroorganismSoil Sciencechemistry.chemical_elementBiology01 natural sciencesNutrientSymbiosisBotanyMycorrhizal networkCommon Mycorrhizal NetworkEcologyArbuscular Mycorrhizal SymbiosiNitrogen transferPlant community04 agricultural and veterinary sciencesAgricultural and Biological Sciences (miscellaneous)NitrogenSettore AGR/02 - Agronomia E Coltivazioni Erbaceechemistry040103 agronomy & agriculturePlant species0401 agriculture forestry and fisheriesArbuscular mycorrhizal010606 plant biology & botany
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Einstein and Twentieth-Century Politics: ‘A Salutary Moral Influence’

2017

0106 biological sciencesPoliticssymbols.namesakeHistory and Philosophy of Science040103 agronomy & agriculturesymbols0401 agriculture forestry and fisheries04 agricultural and veterinary sciencesSociologyEinsteinReligious studies01 natural sciences010606 plant biology & botanyAnnals of Science
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Bees increase oilseed rape yield under real field conditions

2018

prod 2018-210 EA GESTAD INRA; International audience; Oilseed rape (OSR, Brassica napus L.) is a common crop found in many European agricultural landscapes. It ispollinated by a wide variety of insects, but the reported contribution of pollinators to yield varies widely betweenstudies (from 0 to 50%). Moreover, such a contribution has seldom been estimated at the field scale in realfarming conditions. We analysed OSR yields in response to insect pollination; over four years, at two differentscales: farm fields and individual plants. We used both empirical and experimental approaches along a gradientof pollinator diversity and abundance. The empirical approach was based on farm surveys (151 …

0106 biological sciencesPollinationHoneybee010603 evolutionary biology01 natural sciencesLasioglossumAbundance (ecology)PollinatorSelf-pollinationEcosystem servicesHoverflyPollinationBumblebeeBumblebee2. Zero hungerEcologybiology04 agricultural and veterinary sciences15. Life on landbiology.organism_classificationLasioglossumAgronomyAnemophily[SDE]Environmental Sciences040103 agronomy & agriculture0401 agriculture forestry and fisheriesAnimal Science and ZoologyHoverflyAgronomy and Crop ScienceAgroecology
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The effect of abrasive pretreatment on the drying kinetics and phenolic compounds in goji berries ( Lycium barbarum L.)

2020

The paper investigated the effect of a physical surface abrasion of goji berries on drying kinetics and the evolution of phenolic compounds at 323, 333, and 343 K. A diffusion model was developed to describe the drying process. The effective diffusion coefficient estimated by the model ranged from 7.5 × 10–9 to 4.2 × 10–8 m2/s for cylinder and 2.0 × 10–9 to 1.15 × 10–8 m2/s for sphere for untreated samples (UTR). Higher values were found for treated samples (TR) (from 2.50 × 10–8 to 1.20 × 10–7 m2/s for cylinder and 8.0 × 10–9 to 2.70 × 10–8 m2/s for sphere). For the UTR samples, the values of activation energy were found to be 79.5 and 80.8 kJ/mol, respectively, in the cylinder and sphere …

0106 biological sciencesPreservativeAbrasion (mechanical)General Chemical Engineeringantioxidant activityabrasive pretreatment; drying; kinetics; phenolic compounds; gojiphenolic compoundsphenolsBerry01 natural scienceschemistry.chemical_compound0404 agricultural biotechnologyfood010608 biotechnologydryingPhenolsFood scienceWaxGojiMoisturebiologyChemistrymodelationGoji berryabrasive pretreatmentSettore AGR/15 - Scienze E Tecnologie Alimentari04 agricultural and veterinary sciencesGeneral Chemistrybiology.organism_classification040401 food sciencefood.foodkineticsvisual_artvisual_art.visual_art_mediumLyciumFood ScienceJournal of Food Processing and Preservation
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Aflatoxins and A. flavus Reduction in Loaf Bread through the Use of Natural Ingredients

2018

In this study, the antifungal activity of yellow mustard (YMF) and oriental mustard (OMF) meal extracts against 14 strains of fungi was tested on a solid medium. The results obtained with the YMF were next confirmed in liquid medium determining the minimum inhibitory concentration (MIC) and the minimum fungicide concentration (MFC). Finally, the use of YMF as a natural preservative to extend the useful life of bread was evaluated. Breads with different concentrations of YMF (2, 4, 6 and 8 g/kg) were prepared and contaminated with Aspergillus flavus ISPA 8111 and Penicillium nordicum CECT 2320. For 10 days the formation of mycelium was observed, and after that the fungal growth and the mycot…

0106 biological sciencesPreservativeAflatoxinaflatoxinsAntifungal AgentsMustard CompoundsPharmaceutical ScienceAspergillus flavusMicrobial Sensitivity TestsShelf life01 natural sciencesArticleAnalytical Chemistrylcsh:QD241-441chemistry.chemical_compound0404 agricultural biotechnologylcsh:Organic chemistry010608 biotechnologyDrug DiscoveryFood sciencePhysical and Theoretical ChemistryLC-MS/MSMycotoxinMyceliumMolecular Structurebiologymycotoxin reductionOrganic Chemistrydigestive oral and skin physiologyPenicilliumfood and beveragesBread04 agricultural and veterinary sciencesbiology.organism_classification040401 food sciencemustard flourFungicideFood StoragechemistryChemistry (miscellaneous)Sodium propionateFood MicrobiologyFood PreservativesMolecular Medicineshelf lifePropionatesAspergillus flavusMolecules
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Obtaining antioxidants and natural preservatives from food by-products through fermentation: A review

2021

Industrial food waste has potential for generating income from high-added-value compounds through fermentation. Solid-state fermentation is promising to obtain a high yield of bioactive compounds while requiring less water for the microorganism’s growth. A number of scientific studies evinced an increase in flavonoids or phenolics from fruit or vegetable waste and bioactive peptides from cereal processing residues and whey, a major waste of the dairy industry. Livestock, fish, or shellfish processing by-products (skin, viscera, fish scales, seabass colon, shrimp waste) also has the possibility of generating antioxidant peptides, hydrolysates, or compounds through fermentation. These bioacti…

0106 biological sciencesPreservativeAntioxidantantioxidantMicroorganismmedicine.medical_treatmentFermentation industries. Beverages. AlcoholFood spoilagePlant ScienceAntifungal01 natural sciencesBiochemistry Genetics and Molecular Biology (miscellaneous)Hydrolysate0404 agricultural biotechnology010608 biotechnologymedicineBioreactorFood sciencefermentationFood by-productsTP500-660Chemistryfood and beverages04 agricultural and veterinary sciences040401 food scienceFood wasteFermentationFermentationfood by-productsAntioxidantantifungalFood ScienceFermentation
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An overview of natural antimicrobials role in food

2017

The present paper aims to review the natural food preservatives with antimicrobial properties emphasizing their importance for the future of food manufacturing and consumers' health. The extraction procedures applied to natural antimicrobials will be considered, followed by the description of some natural preservatives' antimicrobial mechanism of action, including (i) membrane rupture with ATP-ase activity inhibition, (ii) leakage of essential biomolecules from the cell, (iii) disruption of the proton motive force and (iiii) enzyme inactivation. Moreover, a provenance-based classification of natural antimicrobials is discussed by considering the sources of origin for the major natural prese…

0106 biological sciencesPreservativeFood industryAntimicrobial peptidesMicrobial Sensitivity Tests01 natural sciences0404 agricultural biotechnologyMicrobial resistanceAnti-Infective AgentsParasitic Sensitivity Tests010608 biotechnologyDrug DiscoveryAgrártudományokAnimalsHumansParasitesPharmacologyBiological ProductsBacteriaÉlelmiszertudományokChemistrybusiness.industryActivity inhibitionOrganic ChemistryFungi04 agricultural and veterinary sciencesGeneral MedicineAntimicrobialFood safetyBiopreservation040401 food scienceBiotechnologyFood PreservativesbusinessEuropean Journal of Medicinal Chemistry
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Active packaging with antifungal activities.

2016

International audience; There have been many reviews concerned with antimicrobial food packaging, and with the use of antifungal compounds, but none provided an exhaustive picture of the applications of active packaging to control fungal spoilage. Very recently, many studies have been done in these fields, therefore it is timely to review this topic. This article examines the effects of essential oils, preservatives, natural products, chemical fungicides, nanopartides coated to different films, and chitosan in vitro on the growth of moulds, but also in vivo on the mould free shelf-life of bread, cheese, and fresh fruits and vegetables. A short section is also dedicated to yeasts. All the ap…

0106 biological sciencesPreservativeFood-additivesAntifungal AgentsControlled-release[ SDV.AEN ] Life Sciences [q-bio]/Food and NutritionFood spoilageActive packaging01 natural sciencesIn-vitroCheeseYeasts[SDV.IDA]Life Sciences [q-bio]/Food engineeringFood scienceFood PreservativesNatural productsbiologyChemistryNatural essential oils[ SDV.IDA ] Life Sciences [q-bio]/Food engineeringFood Packaging04 agricultural and veterinary sciencesGeneral MedicineBread040401 food scienceFood packagingCinnamon essential oilAspergillusEssential oilsPackagingPenicilliumfood.ingredientPotassium sorbateEnvironmentShelf lifeMicrobiology0404 agricultural biotechnologyfood010608 biotechnologyFood PreservationBotrytis-cinereaOils VolatileStarch edible filmsMouldChitosanFood additiveFungiPenicilliumbiology.organism_classificationshelf-lifeFoodFood PreservativesNanoparticles[SDV.AEN]Life Sciences [q-bio]/Food and NutritionPreservativesAspergillus-nigerFood ScienceInternational journal of food microbiology
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