Search results for "Malolactic fermentation"

showing 10 items of 78 documents

Dynamics of Microbial Populations during Fermentation of Wines from the Utiel-Requena Region of Spain

1989

The dynamics of fungi, yeasts, and lactic acid bacteria during fermentation of four musts were studied. Fungi disappeared quickly in the fermenting must. The lactic acid bacteria population diminished during alcoholic fermentation, then they increased and performed malolactic fermentation. Yeasts grew quickly, reaching maximum populations at different times depending on the vinification treatment.

Fermentation in winemakingeducation.field_of_studyEcologyPopulationfood and beveragesBiologyEthanol fermentationbiology.organism_classificationApplied Microbiology and BiotechnologyYeastLactic acidcarbohydrates (lipids)chemistry.chemical_compoundchemistryFood MicrobiologyMalolactic fermentationFermentationFood scienceeducationBacteriaFood ScienceBiotechnologyApplied and Environmental Microbiology
researchProduct

Interactions micro-organismes - bois et impact sur les propriétés physico-chimiques du vin : fermentation malolactique par le biofilm de Oenococcus o…

2015

Malolactic fermentation improves wine quality, mainly by decreasing acidity. It is carried out by lactic acid bacteria, mainly Oenococcus oeni. This species is favored for its efficiency and its organoleptic outcome. O. oeni ability to withstand wine stress and to keep its fermentation activity is a subject of major interest.Samples of oak showed that O. oeni adheres to wood and is able to persist for several months in wine. However, in the majority of natural habitats, microorganisms grow attached to a surface, within a structured ecosystem called biofilm. In this form of life, cells benefit from an increased stress resistance.These two properties, adherence to a surface and stress resista…

Fermentation malolactiqueBiofilmFût de chêne[ SDV.IDA ] Life Sciences [q-bio]/Food engineeringWineMalolactic Fermentation[SDV.IDA] Life Sciences [q-bio]/Food engineeringElevageMalolactic FermentationOak barrel aging[SDV.IDA]Life Sciences [q-bio]/Food engineeringAromasVinArômesOenococcus oeni
researchProduct

The Antarctic yeast Candida sake: Understanding cold metabolism impact on wine

2017

Current winemaking trends include low-temperature fermentations and using non-Saccharomyces yeasts as the most promising tools to produce lower alcohol and increased aromatic complexity wines. Here we explored the oenological attributes of a C. sake strain, H14Cs, isolated in the sub-Antarctic region. As expected, the cold sea water yeast strain showed greater cold growth, Na+-toxicity resistance and freeze tolerance than the S. cerevisiae QA23 strain, which we used as a commercial wine yeast control. C. sake H14Cs was found to be more sensitive to ethanol. The fermentation trials of low-sugar content must demonstrated that C. sake H14Cs allowed the cold-induced lag phase of growth to be el…

Glycerol0301 basic medicine030106 microbiologyAroma of wineWineSugars in wineFructoseSaccharomyces cerevisiaeBiologyMicrobiology03 medical and health sciencesYeast DriedMalolactic fermentationBiomassFood scienceCandidaWinemakingWineFermentation in winemakingEthanolSodiumfood and beveragesGeneral MedicineWine faultCulture MediaCold TemperatureYeast in winemakingGlucoseFermentationFood ScienceInternational Journal of Food Microbiology
researchProduct

Increase of sulfite tolerance in Oenococcus oeni by means of acidic adaptation

1998

International audience; Sulfite is an antimicrobial agent used at the beginning of winemaking to avoid development of undesirable microorganisms. However, Oenococcus oeni, which is mainly responsible for the malolactic fermentation, has to grow in wine and therefore has to be resistant to sulfite. This study showed that acid-adapted cells of O. oeni survived better than non-adapted cells in the presence of a high sulfite concentration (30 mg l-1). Addition of a sub-lethal concentration of sulfite (15 mg l31) during the adaptation step in acidic medium increases the sulfite tolerance. Moreover, sulfite appeared to be able to induce a heat shocklike response. Our results suggest that pH homeo…

Microorganism[SDV]Life Sciences [q-bio]Microbiology03 medical and health scienceschemistry.chemical_compoundSulfite[SDV.IDA]Life Sciences [q-bio]/Food engineeringGeneticsMalolactic fermentation[SPI.GPROC]Engineering Sciences [physics]/Chemical and Process EngineeringMolecular Biology030304 developmental biologyWinemakingOenococcus oeniWine0303 health sciencesbiologyHeat shock protein030306 microbiologyChemistryMalolactic fermentationbiology.organism_classificationAntimicrobialBiochemistrySulfite toleranceOenococcus oeniBacteria
researchProduct

A selective medium for the isolation of malolactic mutants of Leuconostoc oenos

1994

We have developed a selective medium for the isolation of Leuconostoc oenos mutants defective in malolactic fermentation. Forty per cent of colonies isolated directly on selective plates after UV mutagenesis had lost their ability to degrade malate. None of the tested mutants showed any detectable malolactic activity and all lacked a protein band corresponding in size to that of the malolactic enzyme. The availability of such mutants provides a valuable tool both for physiological and genetic research on malolactic fermentation.

MutationbiologyMutantfood and beveragesbiology.organism_classificationmedicine.disease_causeIsolation (microbiology)StreptococcaceaeApplied Microbiology and BiotechnologyMalolactic enzymeMicrobiologyBiochemistrymedicineMalolactic fermentationLeuconostocBacteria
researchProduct

Peptidases specific for proline-containing peptides and their unusual peptide-dependent regulation in Oenococcus oeni

2009

International audience; Growth of the lactic acid bacterium (LAB) Oenococcus oeni, which is involved in malolactic fermentation during the winemaking process, is stimulated by peptides originating from yeast. In this study, we investigated the impact of peptides on O. oeni growth, peptidase activity and the expression of genes encoding the studied peptidases. Low levels of PepN activity and very high levels of PepI activity were observed in O. oeni, whereas levels of PepX activity were intermediate. The level of biosynthesis of these O. oeni peptidases was shown to depend on peptides present in the culture medium. These results were confirmed by transcriptional analyses of putative pep gene…

NitrogenPeptideElectrophoretic Mobility Shift AssayBiologyApplied Microbiology and Biotechnology[ CHIM ] Chemical Sciences03 medical and health scienceschemistry.chemical_compoundBiosynthesisGene expressionMalolactic fermentation[CHIM]Chemical SciencesPromoter Regions GeneticChromatography High Pressure LiquidOenococcus030304 developmental biologyOenococcus oeniDNA Primerschemistry.chemical_classification0303 health sciences030306 microbiologyReverse Transcriptase Polymerase Chain ReactionGeneral MedicineSequence Analysis DNAbiology.organism_classificationYeastEnzymechemistryBiochemistryGene Expression RegulationFermentationBiotechnologyPeptide Hydrolases
researchProduct

Technological properties of Oenococcus oeni strains isolated from typical southern Italian wines.

2010

Aims:  To isolate indigenous Oenococcus oeni strains suitable as starters for malolactic fermentation (MLF), using a reliable polyphasic approach. Methods and Results: Oenococcus oeni strains were isolated from Nero di Troia wines undergoing spontaneous MLF. Samples were taken at the end of alcoholic fermentation and during MLF. Wine samples were diluted in a sterile physiological solution and plated on MRS and on modified FT80. Identification of O. oeni strains was performed by a polymerase chain reaction (PCR) experiment using strain-specific primers. Strains were further grouped using a multiplex RAPD-PCR analysis. Then, six strains were inoculated in two wine-like media with two differe…

OrganolepticMalatesmalic acidregional winesWineBiologyEthanol fermentationApplied Microbiology and BiotechnologyPolymerase Chain ReactionMicrobiologychemistry.chemical_compoundStarterStress PhysiologicalMalolactic fermentationSulfitesFood scienceLactic Acidmalolactic starterOenococcusOenococcus oeniWineEthanolLo18food and beveragesHydrogen-Ion Concentrationbiology.organism_classificationRandom Amplified Polymorphic DNA TechniquechemistryFermentationFermentationMalic acidOenococcus oeniLetters in applied microbiology
researchProduct

Multispectral fluorescence sensitivity to acidic and polyphenolic changes in Chardonnay wines – The case study of malolactic fermentation

2022

International audience; In this study, stationary and time-resolvedfluorescence signatures, were statistically and chemometrically analyzed among three typologies of Chardonnay wines (A, B and C) with the objectives to evaluate their sensitivity to acidic and polyphenolic changes. For that purpose, a dataset was built using Excitation Emission Matrices of fluorescence (N = 103) decomposed by a Parallel Factor Analysis (PARAFAC), andfluorescence decays (N = 22), mathematically fitted, using the conventional exponential modeling and the phasor plot representation. Wine PARAFAC component C4 coupledwith its phasor plot g and s values enable the description of malolactic fermentation (MLF) occur…

PARAFAC componentsMultispectral imageMalatesWine010402 general chemistry01 natural sciencesFluorescenceAnalytical Chemistrychemistry.chemical_compoundFluorescence lifetimeOrganic acidsMalolactic fermentationPhenol[SDV.BBM]Life Sciences [q-bio]/Biochemistry Molecular BiologyWineExcitation emission matrixQuenching (fluorescence)ChromatographyChemistryMalolactic fermentation010401 analytical chemistryPhasor plotTraceabilityGeneral MedicineFluorescence0104 chemical sciencesPolyphenolFermentation[SDV.AEN]Life Sciences [q-bio]/Food and NutritionFood ScienceFood Chemistry
researchProduct

Application of HPP in food fermentation processes

2020

Abstract High pressure processing (HPP) is widely used in the food industry for nonthermal pasteurization of juices, ready-to-eat meals, dairy products, pet food, etc. The pasteurization effect is induced by damaging the membranes of microorganisms (leading to cell lysis) as well as by protein denaturation, thus interrupting cellular functions such as nutrient uptake, DNA replication, etc. Nevertheless, as a thermodynamic variable, pressure can also be used to enhance the fermentative processes if applied at sublethal levels (up to 50/60 MPa) to induce metabolic shifts in microorganisms, This allows accelerating the fermentative processes or even obtaining different compounds resulting from…

PascalizationbiologyChemistryHydrostatic pressureMalolactic fermentationfood and beveragesClostridium thermocellumFermentationFood sciencebiology.organism_classificationFermentation in food processingLactic acid fermentationOenococcus oeni
researchProduct

Effects of yeast proteolytic activity on Oenococcus oeni and malolactic fermentation

2006

International audience; Alcoholic fermentation of synthetic must was performed using either Saccharomyces cerevisiae or a mutant Delta pep4, which is deleted for the proteinase A gene. Fermentation with the mutant Delta pep4 resulted in 61% lower levels of free amino acids, and in 62% lower peptide concentrations at the end of alcoholic fermentation than in the control. Qualitative differences in amino acid composition were observed. Changes observed in amino acids in peptides were mainly quantitative. After alcoholic fermentation each medium was inoculated with Oenococcus oeni. Malolactic fermentation in the medium with the Delta pep4 strain took 10 days longer than the control. This diffe…

Saccharomyces cerevisiae ProteinsNitrogenMalatesWineSaccharomyces cerevisiaeEthanol fermentationMicrobiology03 medical and health sciencesMalate DehydrogenaseProteinase APEP4EndopeptidasesGeneticsMalolactic fermentationLactic acid bacteriaNitrogen metabolismAmino AcidsMolecular Biology030304 developmental biologyOenococcus oenichemistry.chemical_classification0303 health sciencesbiology030306 microbiologyProteolytic enzymesfood and beveragesFree amino nitrogenbiology.organism_classificationYeastYeastAmino acidGram-Positive Cocci[SDV.MP]Life Sciences [q-bio]/Microbiology and ParasitologychemistryBiochemistryFermentationPeptideFermentation
researchProduct