Search results for "winemaking."

showing 10 items of 152 documents

Selection of indigenous yeast strains for the production of sparkling wines from native Apulian grape varieties.

2018

We report the first polyphasic characterization of native Saccharomyces cerevisiae in order to select candidate strains for the design of starter cultures tailored for Apulian sparkling wines obtained from local grape variety. In addition, it is the first survey in our region that propose the selection of autochthonous starter cultures for sparkling wine i) including a preliminary tailored genotypic and technological screening, and ii) monitoring analytical contribution during secondary fermentation in terms of volatile compounds (VOCs). Furthermore, we exploit the potential contribute of autochthonous cultures throughout the productive chain, including the possible improvement of base wine…

0106 biological sciences0301 basic medicineSparkling wine production030106 microbiologyWineSaccharomyces cerevisiaeAutochthonous grape varietiesrr01 natural sciencesMicrobiologyInterdelta03 medical and health sciencesStarterSparkling wine010608 biotechnologyVitisFood scienceSelection (genetic algorithm)Fermentation in winemakingWineindigenous yeastsbiologyautochthonous starter culturesfood and beveragesGeneral Medicinebiology.organism_classificationggYeastFermentationFood MicrobiologyFermentationFood ScienceBiotechnologyInternational journal of food microbiology
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A Knowledge-Based System as a Sustainable Software Application for the Supervision and Intelligent Control of an Alcoholic Fermentation Process

2020

One goal of specialists in food processing is to increase production efficiency in accordance with sustainability by optimising the consumption of raw food materials, water, and energy. One way to achieve this purpose is to develop new methods for process monitoring and control. In the winemaking industry, there is a lack of procedures regarding the common work based on knowledge acquisition and intelligent control. In the present article, we developed and tested a knowledge-based system for the alcoholic fermentation process of white winemaking while considering the main phases: the latent phase, exponential growth phase, and decay phase. The automatic control of the white wine&rsquo

0106 biological sciencesAutomatic controlComputer scienceGeography Planning and DevelopmentTJ807-830BiomassManagement Monitoring Policy and LawEthanol fermentationTD194-19501 natural sciencesRenewable energy sourcesKnowledge-based systems0404 agricultural biotechnology010608 biotechnologyBioreactorGE1-350knowledge-based systemProcess engineeringWinemakingEnvironmental effects of industries and plantsRenewable Energy Sustainability and the Environmentbusiness.industrysustainable intelligent controlProcess (computing)food and beverages04 agricultural and veterinary sciences040401 food scienceKnowledge acquisitionSubstrate concentrationwinemakingEnvironmental sciencesalcoholic fermentation processFood processingFermentationbusinessIntelligent controlSustainability
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Use of Kluyveromyces marxianus to Increase Free Monoterpenes and Aliphatic Esters in White Wines

2021

An increasing interest in novel wine productions is focused on non-Saccharomyces yeasts due to their potential in improving sensory profiles. Although Kluyveromyces marxianus has been originally isolated from grapes and its enzymatic activities are used in oenology, rarely it has been used as co-starter. The K. marxianus Km L2009 strain has been characterized here and selected as a co-starter both at laboratory- and winery-scale fermentation. The Km L2009 strain showed growth of up to 40 (mg/L) of sulfites and 6% (v/v) of ethanol. Gas chromatographic analysis demonstrates that wines produced by mixed fermentation contain remarkably higher quantities of free monoterpenes and aliphatic esters…

0106 biological sciencesKluyveromyces marxianunon-<i>Saccharomyces</i>Fermentation industries. Beverages. AlcoholPlant Science01 natural sciencesBiochemistry Genetics and Molecular Biology (miscellaneous)03 medical and health scienceschemistry.chemical_compoundKluyveromyces marxianus010608 biotechnologyVolatile organic compoundFood science030304 developmental biologyOenologyWinemakingWinechemistry.chemical_classificationTP500-6600303 health sciencesEthanolnon-SaccharomycesbiologyChemistrymixed fermentationfood and beveragesbiology.organism_classificationwinemakingFermentationComposition (visual arts)<i>Kluyveromyces marxianus</i>Food Science
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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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Effect on the Antioxidant, Lipoperoxyl Radical Scavenger Capacity, Nutritional, Sensory and Microbiological Traits of an Ovine Stretched Cheese Produ…

2021

An innovative ovine cheese enriched with red grape pomace powder (GPP) was produced to improve the functional properties of Vastedda cheese typology. Vastedda cheese making was performed adding GPP and four selected Lactococcus lactis strains (Mise36, Mise94, Mise169 and Mise190). For each strain, 40 L of pasteurized ewe’s milk was divided into two aliquots representing control and experimental trials. Control cheese (CC) production did not contain GPP, while the experimental cheese (EC) production was enriched with 1% (w/w) GPP. GPP did not slow down starter development and acid generation. Plate counts and randomly amplified polymorphic DNA (RAPD)-PCR analysis confirmed the dominance of t…

0106 biological sciencesSettore AGR/19 - Zootecnica SpecialeAntioxidantGrape pomace powderPhysiologymedicine.medical_treatmentSettore AGR/13 - Chimica AgrariaClinical BiochemistryPasteurizationLipoperoxyl radical scavenger capacity01 natural sciencesBiochemistryArticleAntioxidantslaw.invention0404 agricultural biotechnologyStarterLipid oxidationlawSettore BIO/10 - Biochimica010608 biotechnologymedicineVolatile organic compoundsFood scienceMolecular BiologyWinemakingOvine stretched cheesebiologyChemistrylcsh:RM1-950Lactococcus lactisPomacePolyphenolsfood and beverages04 agricultural and veterinary sciencesCell Biologybiology.organism_classification040401 food scienceLactococcus lactislcsh:Therapeutics. PharmacologyPolyphenolSettore AGR/16 - Microbiologia AgrariaAntioxidants
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The Use of Winery by-Products to Enhance the Functional Aspects of the Fresh Ovine “Primosale” Cheese

2021

Fresh ovine “primosale” cheese was processed with the addition of grape pomace powder (GPP). Cheese making was performed using pasteurized ewes’ milk and four selected Lactococcus lactis strains (Mise36, Mise94, Mise169 and Mise190) inoculated individually. For each strain the control cheese (CCP) was not added with GPP, while the experimental cheese (ECP) was enriched with 1% (w/w) GPP. GPP did not influence the starter development that reached levels of 109 CFU/g in all final cheeses. The comparison of the bacterial isolates by randomly amplified polymorphic DNA (RAPD)-PCR showed the dominance of the added strains over indigenous milk bacteria resistant to pasteurization. GPP addition red…

0106 biological sciencesSettore AGR/19 - Zootecnica SpecialeHealth (social science)Settore AGR/13 - Chimica AgrariaPasteurizationPlant Sciencephysicochemical propertieslcsh:Chemical technology01 natural sciencesHealth Professions (miscellaneous)MicrobiologyArticlelaw.invention0404 agricultural biotechnologyStarterLipid oxidationlaw010608 biotechnologySettore BIO/10 - Biochimicavolatile organic compoundslcsh:TP1-1185Food sciencepolyphenolsWinemakingbiologyChemistryLactococcus lactisPomace04 agricultural and veterinary sciencesfunctional ovine cheesebiology.organism_classification040401 food scienceantioxidant propertiesLactococcus lactisgrape pomace powderDigestionBacteriaFood ScienceSettore AGR/16 - Microbiologia AgrariaFoods
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How to Deal with Uninvited Guests in Wine: Copper and Copper-containing Oxidases

2020

Copper is one of the most frequently occurring heavy metals in must and wine. It is introduced by pesticides, brass fittings, and as copper sulphate for treatment of reductive off-flavors. At higher concentrations, copper has harmful effects on the wine. It contributes to the oxidation of wine ingredients, browning reactions, cloudiness, inhibition of microorganisms, and wine fermentation. Last but not least, there is also a danger to the consumer. At present, some physicochemical methods exist to reduce the copper content in must and wine, but they all have their shortcomings. A possible solution is the biosorption of metals by yeasts or lactobacilli. Copper can also reach must and wine in…

0106 biological sciencesTyrosinasechemistry.chemical_elementcopper <i>casse</i>wine browningPlant Science01 natural sciencesBiochemistry Genetics and Molecular Biology (miscellaneous)0404 agricultural biotechnologytannins010608 biotechnologyBrowningFood scienceBotrytis cinereaWineLaccaseFermentation in winemakinglcsh:TP500-660biologyChemistrybentoniteBiosorption04 agricultural and veterinary sciencesbiology.organism_classificationlcsh:Fermentation industries. Beverages. Alcohol040401 food scienceCopperphenoloxidasesFood SciencebiosorptionFermentation
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Anhydrobiosis: Inside yeast cells

2018

International audience; Under natural conditions yeast cells as well as other microorganisms are regularly subjected to the influence of severe drought, which leads to their serious dehydration. The dry seasons are then changed by rains and there is a restoration of normal water potential inside the cells. To survive such seasonal changes a lot of vegetative microbial cells, which belong to various genera and species, may be able to enter into a state of anhydrobiosis, in which their metabolism is temporarily and reversibly suspended or delayed. This evolutionarily developed adaptation to extreme conditions of the environment is widely used for practical goals - for conservation of microorg…

0106 biological scienceslipid-phaseCell Survivaldesiccation toleranceMicroorganismBiophysicsBioengineeringSaccharomyces cerevisiaeBiology01 natural sciencesApplied Microbiology and BiotechnologyDehydration-rehydrationDesiccation tolerance03 medical and health scienceswine yeastIntracellular protective reactions010608 biotechnology[SDV.IDA]Life Sciences [q-bio]/Food engineeringOrganelle[SPI.GPROC]Engineering Sciences [physics]/Chemical and Process Engineeringwater replacement hypothesisLaboratorium voor PlantenfysiologieDesiccationCryptobiosismembrane phase-transitions030304 developmental biology0303 health sciencesDehydrationWaterendoplasmic-reticulumplasma-membraneAnhydrobiosisYeastYeastDehydration–rehydrationYeast in winemaking[SDV.MP]Life Sciences [q-bio]/Microbiology and ParasitologyBiofysicaCellular MicroenvironmentIntracellular changesBiochemistryglass-transitioncandida-utilis cellsEPSAdaptationDesiccationsaccharomyces-cerevisiae cellsLaboratory of Plant PhysiologyBiotechnologyBiotechnology Advances
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Starter cultures as biocontrol strategy to prevent Brettanomyces bruxellensis proliferation in wine

2017

Brettanomyces bruxellensis is a common and significant wine spoilage microorganism. B. bruxellensis strains generally detain the molecular basis to produce compounds that are detrimental for the organoleptic quality of the wine, including some classes of volatile phenols that derive from the sequential bioconversion of specific hydroxycinnamic acids such as ferulate and p-coumarate. Although B. bruxellensis can be detected at any stage of the winemaking process, it is typically isolated at the end of the alcoholic fermentation (AF), before the staring of the spontaneous malolactic fermentation (MLF) or during barrel aging. For this reason, the endemic diffusion of B. bruxellensis leads to c…

0301 basic medicineCoumaric Acids030106 microbiologyFood spoilageOrganolepticMalatesBrettanomyces bruxellensisBrettanomycesWineFood ContaminationSaccharomyces cerevisiaeEthanol fermentationApplied Microbiology and Biotechnology03 medical and health sciencesSaccharomycesmalolactic fermentation (MLF)PhenolsLactobacillalesMalolactic fermentationLactic acid bacteriaVitisFood scienceWinemakingWinebiologyBrettanomyces bruxellensis; Wine; Saccharomyces; malolactic fermentation (MLF); Lactic acid bacteriadigestive oral and skin physiologyfood and beveragesGeneral MedicineMini-Reviewbiology.organism_classificationYeastBrettanomyces bruxellensisBiological Control AgentsAlcoholsFermentationFood MicrobiologyMLFSettore AGR/16 - Microbiologia AgrariaBiotechnologyApplied Microbiology and Biotechnology
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Chemical Transfers Occurring Through Oenococcus oeni Biofilm in Different Enological Conditions

2019

International audience; Chardonnay wine malolactic fermentations were carried out to evaluate the chemical transfers occurring at the wood/wine interface in the presence of two different bacterial lifestyles. To do this, Oenococcus oeni was inoculated into must and wine in its planktonic and biofilm lifestyles, whether adhering or not to oak chips, leading to three distinct enological conditions: (i) post-alcoholic fermentation inoculation in wine in the absence of oak chips, (ii) post-alcoholic fermentation inoculation in wine in the presence of oak chips, and (iii) co-inoculation of both Saccharomyces cerevisiae and O. oeni directly in Chardonnay musts in the presence of oak chips. Classi…

0301 basic medicineEndocrinology Diabetes and Metabolism030209 endocrinology & metabolismlcsh:TX341-641Ethanol fermentationbiofilm03 medical and health sciences0302 clinical medicineMalolactic fermentationchemical transfersFood scienceWinemakingOenococcus oeniWineoptical indices030109 nutrition & dieteticsNutrition and DieteticsbiologyChemistryBiofilmfood and beveragesbiology.organism_classificationmalolactic fermentationPolyphenolFermentationplanktonic[SDV.AEN]Life Sciences [q-bio]/Food and NutritionO. oenilcsh:Nutrition. Foods and food supplyFood SciencewoodFrontiers in Nutrition
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