Search results for " vegetable"

showing 10 items of 146 documents

Evolution of shelf life parameters of ready-to-eat escarole (Cichorium endivia var. latifolium) subjected to different cutting operations

2019

Abstract The present work was carried out to investigate the microbiological and physicochemical parameters of minimally processed escarole (Cichorium endivia var. latifolium) subjected to two different transformation processes, a classic ready-to-eat process (cut leaves, CL) and a process that excluded the cutting operation (entire leaves, EL) as control trial. Both trials were monitored during the refrigerated (4 °C) storage extended until 15 d. Total mesophilic microorganisms, total psychrotrophic microorganisms and pseudomonads were detected at the highest cell densities in all samples. The genotypic characterization of the dominating microbial populations resulted in the identification…

0106 biological sciences0301 basic medicineEscaroleMicrobial biodiversitybiologyPseudomonas grimontiiFresh cut vegetablePseudomonasTitratable acidVegetable decaySettore AGR/04 - Orticoltura E FloricolturaHorticulturebiology.organism_classificationAscorbic acid01 natural sciences03 medical and health sciences030104 developmental biologyCichorium endiviaPseudomonas marginalisPseudomonas fragiPseudomonas poaeFood science010606 plant biology & botanySettore AGR/16 - Microbiologia Agraria
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Oxygen Availability during Growth Modulates the Phytochemical Profile and the Chemo-Protective Properties of Spinach Juice.

2018

Fruits and vegetables are a good source of potentially biologically active compounds. Their regular consumption in the human diet can help reduce the risk of developing chronic diseases such as cardiovascular diseases and cancer. Plants produce additional chemical substances when subject to abiotic stress or infected by microorganisms. The phytochemical profile of spinach leaves (Spinacia oleracea L.), which is a vegetable with widely recognized health-promoting activity, has been affected by applying root hypoxic and re-oxygenation stress during plant growth. Leaf juice at different sampling times has been subject to liquid chromatography mass spectrometry (LC-MSn) analysis and tested on t…

0106 biological sciences0301 basic medicineSpinaciaAntioxidantHT29 cell lineCell Survivalmedicine.medical_treatmentLiquid Chromatography-Mass Spectrometry<i>Spinacia oleracea</i> L.lcsh:QR1-502antioxidant activitySpinacia oleracea L.Anti-proliferative activity; Antioxidant activity; Comet Assay; HT29 cell line; Liquid Chromatography-Mass Spectrometry; Spinacia oleracea L;medicine.disease_cause01 natural sciencesBiochemistrylcsh:MicrobiologyAntioxidantsMass SpectrometryArticle03 medical and health sciencesSpinacia oleraceamedicineHumansFood scienceMolecular BiologyCell ProliferationbiologyAbiotic stressChemistryChemistry PhysicalPlant Extractsfood and beveragesBiological activitybiology.organism_classificationAntineoplastic Agents PhytogenicComet assayFruit and Vegetable JuicesOxygen030104 developmental biologyPhytochemicalSpinachanti-proliferative activityComet AssayDrug Screening Assays AntitumorHT29 CellsOxidative stress010606 plant biology & botanyChromatography LiquidBiomolecules
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Protein hydrolysates and mo-biofortification interactively modulate plant performance and quality of ‘canasta’ lettuce grown in a protected environme…

2021

Since the use of protein hydrolysates (PHs) enhances overall plant performance and quality of vegetables, they might be considered as a toll to face a number of concerns essentially associated to the growing request of premium quality foodstuff realized in agreement with eco-friendly agriculture practices. Molybdenum (Mo) is considered a fundamental trace element for human body. Thus, its shortage determines several disorders mainly related to neurological lesion and esophageal cancer. Biofortification of fruiting and leafy vegetables is a promising tool to prevent Mo deficiency in the human diet. The current study was carried out to assess the interactive effect of plant-derived PHs and Mo…

0106 biological sciences<i>Lactuca sativa</i> L.Biofortificationchemistry.chemical_elementPlant-derived PHsSettore AGR/04 - Orticoltura E Floricolturanitrogen indicesnutritional traitsNitrogen indice01 natural scienceschemistry.chemical_compoundNutritional traitSoluble solidsLactuca sativa LFood scienceProtein hydrolysatesCarotenoidchemistry.chemical_classificationSMolybdenum-enrichmentplant-based biostimulantsAgriculture04 agricultural and veterinary sciencesAscorbic acidNitrogenFunctional qualityPlant-based biostimulantchemistryChlorophyll040103 agronomy & agriculture0401 agriculture forestry and fisheriesLactuca sativa L.Leafy vegetablesAgronomy and Crop ScienceBiofortification010606 plant biology & botany
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An Appraisal of Calcium Cyanamide as Alternative N Source for Spring-Summer and Fall Season Curly Endive Crops: Effects on Crop Performance, NUE and …

2020

A two-year study was conducted in both spring-summer and fall seasons to evaluate calcium cyanamide (CaCN2) as an alternative nitrogen (N) source for curly endive (Cichorium endivia L. var. crispum) grown in a Mediterranean environment. Four types of N applications were administered: (i) pre-transplanting base application of 100 kg N ha&minus

0106 biological sciencesFertigationCaCNAmmonium nitrate2cultivation seasonchemistry.chemical_elementSettore AGR/04 - Orticoltura E FloricolturaCaCN201 natural sciencesCroplcsh:Agriculturechemistry.chemical_compoundAnimal scienceCichorium endiviaDry matterCichorium endivia L. var. crispumFunctional propertieleafy green vegetablesMathematicsfunctional propertiesLeafy green vegetableCalcium cyanamidelcsh:S04 agricultural and veterinary sciencesCaCN<sub>2</sub>Ascorbic acidNitrogenSettore AGR/02 - Agronomia E Coltivazioni Erbaceechemistry<i>Cichorium endivia</i> L. var. <i>crispum</i>040103 agronomy & agriculture0401 agriculture forestry and fisheriesAgronomy and Crop Sciencenitrogen fertilizer010606 plant biology & botanyAgronomy
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Fertigation Management and Growth-Promoting Treatments Affect Tomato Transplant Production and Plant Growth after Transplant

2020

Plant biostimulants are of interest as they can stimulate plant growth and increase resource utilization. There is still no information on the use of plant growth-promoters under variable nutritional conditions in the nursery and the effects on tomato seedling growth and plant performance after transplant. This study aimed to evaluate the suitability of gibberellic acid (GA3) or bacterial biostimulant treatments to enhance the growth and quality of greenhouse-grown tomato (Solanum lycopersicum &lsquo

0106 biological sciencesFertigationPlant growthvegetable nurserypre-transplanting nutritional conditioningSettore AGR/04 - Orticoltura E Floricolturaengineering.materialpost-transplant growth01 natural sciencestransplant productionlcsh:Agriculturechemistry.chemical_compoundNutrientbacterial biostimulantGibberellic acidbiologyInoculationSolanum lycopersicum ‘Marmande’ tomato seedlings vegetable nursery transplant production pre-transplanting nutritional conditioning bacterial biostimulant Bacillus spp. PGPR gibberellic acid post-transplant growthfungilcsh:Sfood and beverages04 agricultural and veterinary sciencesbiology.organism_classificationHorticulturetomato seedlingschemistrySeedling<i>Solanum lycopersicum</i> ‘Marmande’PGPR040103 agronomy & agricultureengineering0401 agriculture forestry and fisheriesFertilizerSolanum<i>Bacillus</i> spp.Agronomy and Crop Sciencegibberellic acid010606 plant biology & botany
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Celery (Apium graveolens L.) performances as subjected to different sources of protein hydrolysates

2020

The vegetable production sector is currently fronting several issues mainly connected to the increasing demand of high quality food produced in accordance with sustainable horticultural technologies. The application of biostimulants, particularly protein hydrolysates (PHs), might be favorable to optimize water and mineral uptake and plant utilization and to increase both production performance and quality feature of vegetable crops. The present study was carried out on celery plants grown in a tunnel to appraise the influence of two PHs, a plant-derived PH (P-PH), obtained from soy extract and an animal PH (A-PH), derived from hydrolyzed animal epithelium (waste from bovine tanneries) on yi…

0106 biological sciencesFunctional featuresAnimal-derived protein hydrolysateSettore AGR/13 - Chimica AgrariaFunctional featurePlant ScienceSettore AGR/04 - Orticoltura E FloricolturaVegetable cropsMineral composition01 natural sciencesHydrolysis<i>Apium graveolens</i> L.Mineral compositionanimal-derived protein hydrolysatesProtein hydrolysatesFood scienceEcology Evolution Behavior and SystematicsApium graveolens LEcologyChemistryApium graveolens L.BotanyApium graveolensfood and beveragesSustainable vegetable production04 agricultural and veterinary sciencesPlant-derived protein hydrolysateAscorbic acidfunctional featuresApium graveolens L. plant-derived protein hydrolysates animal-derived protein hydrolysates sustainable vegetable production mineral composition functional featuresQK1-989040103 agronomy & agriculture0401 agriculture forestry and fisheriesFood qualityplant-derived protein hydrolysates010606 plant biology & botany
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Influence of Preharvest Gibberellic Acid Treatments on Postharvest Quality of Minimally Processed Leaf Lettuce and Rocket

2019

Plant growth regulators are used in high-value vegetable crops during cultivation and after harvest to increase yield, enhance crop management, and improve or retain the produce quality. The aim of this work was to evaluate the quality characteristics during cold storage of minimally processed leaf lettuce and rocket, obtained from plants grown in a hydroponic floating system with mineral nutrient solutions (MNS) containing different levels of gibberellic acid (GA3). Plants were grown in greenhouse conditions on nutrient solutions containing 0, 10&minus

0106 biological sciencesNitrate contentFloating systemShelf lifeCold storageTitratable acidSettore AGR/04 - Orticoltura E FloricolturaPlant Sciencelcsh:Plant cultureHorticultureShelf life01 natural scienceschemistry.chemical_compound0404 agricultural biotechnologyGA3Postharvestlcsh:SB1-1110Minimally processed vegetableGibberellic acidleafy vegetablesGA<sub>3</sub>Gibberellic acidHydroponicChemistryfungiLeafy vegetablefood and beverageshydroponics04 agricultural and veterinary sciencesHydroponicsAscorbic acid040401 food scienceHorticultureRocketPostharvestAscorbic acidminimally processed vegetablesPreharvestLeaf lettuce010606 plant biology & botanyHorticulturae
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Inhibitory Effect of Azamacrocyclic Ligands on Polyphenol Oxidase in Model and Food Systems

2020

[EN] Enzymatic browning is one of the main problems faced by the food industry due to the enzyme polyphenol oxidase (PPO) provoking an undesirable color change in the presence of oxygen. Here, we report the evaluation of 10 different azamacrocyclic compounds with diverse morphologies as potential inhibitors against the activity of PPO, both in model and real systems. An initial screening of 10 ligands shows that all azamacrocyclic compounds inhibit to some extent the enzymatic browning, but the molecular structure plays a crucial role on the power of inhibition. Kinetic studies of the most active ligand (L2) reveal a S-parabolic I-parabolic noncompetitive inhibition mechanism and a remarkab…

0106 biological sciencesPPOTECNOLOGIA DE ALIMENTOSMacrocyclic polyaminesLigands01 natural sciencesPolyphenol oxidaseQUIMICA ORGANICANon-competitive inhibitionBrowningEnzyme InhibitorsInhibitory effectIC50InhibitionPlant Proteinschemistry.chemical_classificationEnzymatic activityChemistryReal systemsLigand010401 analytical chemistryGeneral Chemistry0104 chemical sciencesFruit and Vegetable JuicesKineticsEnzymeBiochemistryFruitMalusGeneral Agricultural and Biological SciencesCatechol Oxidase010606 plant biology & botanyJournal of Agricultural and Food Chemistry
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Effect of Gibberellic Acid on Growth, Yield, and Quality of Leaf Lettuce and Rocket Grown in a Floating System

2019

Gibberellins (GAs) are growth hormones strongly involved in a wide variety of physiological activities. Currently, gibberellins are commercially used to enhance phenotypic characteristics, earliness, and productivity of many vegetable and ornamental crops. In this work, the efficacy of supplementation of low levels of gibberellic acid (0, 10&minus

0106 biological sciencesStomatal conductanceBiomasschemistry.chemical_elementSettore AGR/04 - Orticoltura E Floricoltura01 natural scienceslcsh:Agricultureleafy vegetablechemistry.chemical_compoundfloating systemGA3Ornamental plantleafy vegetablesWater-use efficiencyGA<sub>3</sub>Gibberellic acidlcsh:Sfood and beverageshydroponics04 agricultural and veterinary scienceshydroponicHydroponicsNitrogenlettuceHorticulturechemistryrocket040103 agronomy & agriculture0401 agriculture forestry and fisheriesGibberellinAgronomy and Crop Sciencegibberellic acid010606 plant biology & botanyAgronomy
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Use of Gibberellic Acid to Increase the Salt Tolerance of Leaf Lettuce and Rocket Grown in a Floating System

2020

Hydroponics need water of good quality to prepare a balanced nutrient solution that could allow plants to reach their maximum yield potential. The rising difficulties in finding water with good quality have led to the compelling necessity of identifying sustainable ways to use saline water, limiting its negative effect on crop yield and quality. The exogenous supplementation of plant growth regulators, such as gibberellic acid (GA3), can be effective in increasing plant growth and vigor, thus helping plants to better cope with salt stress. The aim of this study was to evaluate the feasibility to increase the salt tolerance of leaf lettuce and rocket grown in a floating system by adding GA3 …

0106 biological sciencesStomatal conductancesaline waterLactuca sativa L. var. CrispaBiomassSettore AGR/04 - Orticoltura E FloricolturaEruca sativa L.01 natural scienceslcsh:Agriculturechemistry.chemical_compoundGA3nitrateleafy vegetablesGibberellic acidCrop yieldfungilcsh:Sfood and beverageshydroponics04 agricultural and veterinary sciencesHydroponicsAscorbic acidSaline waterSalinityHorticulturechemistry040103 agronomy & agriculture0401 agriculture forestry and fisheriesascorbic acidAgronomy and Crop ScienceAscorbic acid Eruca sativa L GA3 Hydroponics Lactuca sativa L. var. Crispa Leafy vegetables Nitrate Saline water010606 plant biology & botanyAgronomy
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