Search results for "Metschnikowia"

showing 10 items of 13 documents

A Metagenomic-Based Approach for the Characterization of Bacterial Diversity Associated with Spontaneous Malolactic Fermentations in Wine

2019

This study reports the first application of a next generation sequencing (NGS) analysis. The analysis was designed to monitor the effect of the management of microbial resources associated with alcoholic fermentation on spontaneous malolactic consortium. Together with the analysis of 16S rRNA genes from the metagenome, we monitored the principal parameters linked to MLF (e.g., malic and lactic acid concentration, pH). We encompass seven dissimilar concrete practices to manage microorganisms associated with alcoholic fermentation: Un-inoculated must (UM), pied-de-cuve (PdC), Saccharomyces cerevisiae (SC), S. cerevisiae and Torulaspora delbrueckii co-inoculated and sequentially inoculated, as…

0301 basic medicineEthanol fermentation<i>Lactobacillus plantarum</i>16S rRNA metataxonomy; lactic acid bacteria; Lactobacillus plantarum; malolactic consortium; malolactic fermentation; Metschnikowia pulcherrima; Oenococcus oeni; Saccharomyces cerevisiae; Torulaspora delbrueckii; wine<i>Oenococcus oeni</i>malolactic consortiumlcsh:Chemistrychemistry.chemical_compoundLactobacillalesRNA Ribosomal 16SFood sciencelcsh:QH301-705.5SpectroscopyOenococcus oeniCommunicationfood and beverages16S rRNA metataxonomyGeneral MedicineMetschnikowia pulcherrimaComputer Science Applicationsmalolactic fermentation030106 microbiologyTorulaspora delbrueckiiSaccharomyces cerevisiaeBiologyCatalysisInorganic Chemistry<i>Saccharomyces cerevisiae</i>03 medical and health sciencesTorulaspora delbrueckiiMalolactic fermentationPhysical and Theoretical ChemistrywineMolecular BiologyOrganic Chemistry<i>Metschnikowia pulcherrima</i>Torulasporabiology.organism_classificationlactic acid bacteria030104 developmental biologychemistrylcsh:Biology (General)lcsh:QD1-999FermentationMetagenomeFermentationMalic acidAcetobacterOenococcus oeniMetschnikowia pulcherrimaSettore AGR/16 - Microbiologia AgrariaLactobacillus plantarum<i>Torulaspora delbrueckii</i>International Journal of Molecular Sciences
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FT-IR spectroscopy : A powerful tool for studying the inter- and intraspecific biodiversity of cultivable non-Saccharomyces yeasts isolated from grap…

2016

International audience; The efficiency of the FT-IR technique for studying the inter- and intra biodiversity of cultivable non-Saccharomyces yeasts (NS) present in different must samples was examined. In first, the capacity of the technique FF-IR to study the global diversity of a given sample was compared to the pyrosequencing method, used as a reference technique. Seven different genera (Aureobasidium, Candida, Cryptococcus, Hanseniaspora, Issatchenkia, Metschnikowia and Pichia) were identified by FT-IR and also by pyrosequencing. Thirty-eight other genera were identified by pyrosequencing, but together they represented less than 6% of the average total population of 6 musts. Among the sp…

0301 basic medicineIdentification[ SDV.AEN ] Life Sciences [q-bio]/Food and NutritionBiodiversityWineHanseniasporaSaccharomycesMicrobial ecology[ SDV.MP ] Life Sciences [q-bio]/Microbiology and ParasitologyYeastsSpectroscopy Fourier Transform InfraredVitisDNA FungalMycological Typing TechniquesPhylogenyCandidaIntragenomic variationbiologySp-nov.Pyrolysis mass-spectrometryPyrosequencingBiodiversityCandida zemplininaYeast in winemaking[SDV.MP]Life Sciences [q-bio]/Microbiology and ParasitologyFT-IR spectroscopyMetschnikowiaAlcoholic fermentationMicrobiology (medical)food.ingredientWine yeast030106 microbiologyMicrobiologyIntraspecific competitionCandida-zemplininaSaccharomyces03 medical and health sciencesfoodBotanyRNA Ribosomal 18SMolecular BiologyBase SequenceComputational BiologySequence Analysis DNAbiology.organism_classificationGreen lacewingsStrain typingPyrosequencingTransform-infrared-spectroscopy[SDV.AEN]Life Sciences [q-bio]/Food and NutritionBotrytis-affected wine
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Influence of freezing temperatures prior to freeze-drying on viability of yeasts and lactic acid bacteria isolated from wine

2017

Aims To determine the effect of three different freezing temperatures on post-freeze-drying survival rates of wine yeasts and lactic acid bacteria (LAB). To know if a similar freeze-drying protocol can be used for both micro-organisms. Methods and Results Cells from liquid culture media were recovered and concentrated in appropriate lyoprotectants. Aliquots of each strain were frozen at −20, −80 and −196°C before vacuum drying. Viable cell counts were done before freezing and after freeze-drying. Survival rates were calculated. Freezing temperatures differently affected yeast and bacteria survival. The highest survival rates were obtained at −20 and −80°C for yeasts, but at −196°C for LAB. …

0301 basic medicineLactobacillus paracasei030106 microbiologyyeastsWinefreezingsurvivalApplied Microbiology and BiotechnologyMicrobiology03 medical and health sciencesFreeze-dryingSpecies SpecificityStress PhysiologicalYeastsMalolactic fermentationLactic AcidFood sciencewineWinebiologyChemistryPichia membranifaciensfood and beveragesGeneral Medicinebiology.organism_classificationYeastCold Temperaturelactic acid bacteriaYeast in winemakingFreeze Drying030104 developmental biologyfreeze-dryingMetschnikowia pulcherrimaBiotechnologyJournal of Applied Microbiology
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Native Vineyard Non-Saccharomyces Yeasts Used for Biological Control of Botrytis cinerea in Stored Table Grape

2021

Postharvest spoilage fungi, such as Botrytis cinerea, are considered the main cause of losses of fresh fruit quality and vegetables during storage, distribution, and consumption. The current control strategy is the use of SO2 generator pads whose application is now largely under observation. A high quantity of SO2 can be deleterious for fresh fruits and vegetables and it is not allowed in organic agriculture. For this reason, great attention has been recently focused on identifying Biological Control Agents (BCA) to implement biological approaches devoid of chemicals. In this direction, we carried out our study in isolating five different non-Saccharomyces yeast strains from local vineyards…

0301 basic medicineMicrobiology (medical)030106 microbiologyFood spoilageCold storagebiological controlyeastsMicrobiologySaccharomycesArticle040501 horticulture03 medical and health sciencesBotrytis cinereaLachancea thermotoleransVirologyFood sciencePectinaselcsh:QH301-705.5Botrytis cinereabiologyChemistry04 agricultural and veterinary sciencesbiology.organism_classificationMetschnikowia pulcherrimaYeastlcsh:Biology (General)Postharvest0405 other agricultural sciencestable grapeMetschnikowia pulcherrimaMicroorganisms
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2017

Previous studies reported that the use of Metschnikowia pulcherrima in sequential culture fermentation with Saccharomyces cerevisiae mainly induced a reduction of volatile acidity in wine. The impact of the presence of this yeast on the metabolic pathway involved in pyruvate dehydrogenase (PDH) bypass and glycerol production in S. cerevisiae has never been investigated. In this work, we compared acetic acid and glycerol production kinetics between pure S. cerevisiae culture and its sequential culture with M. pulcherrima during alcoholic fermentation. In parallel, the expression levels of the principal genes involved in PDH bypass and glyceropyruvic fermentation in S. cerevisiae were investi…

0301 basic medicineMicrobiology (medical)Fermentation in winemaking030106 microbiologyfood and beveragesBiologyEthanol fermentationbiology.organism_classificationPyruvate dehydrogenase complexMicrobiologyYeast03 medical and health sciencesBiochemistrybiology.proteinFermentationPyruvate decarboxylaseMetschnikowia pulcherrimaAlcohol dehydrogenaseFrontiers in Microbiology
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Microbial Succession in Spontaneously Fermented Grape Must Before, During and After Stuck Fermentation

2016

The microbial succession in spontaneously fermenting Riesling must was investigated from the beginning (pressing) until the end (sulphuring) of the fermentation in two harvest years (2008 and 2009) at a Moselle winery (Germany). In both years, the fermentation was interrupted by a stuck period. The length of the stuck period varied considerably (20 weeks in 2008 and one week in 2009). Different yeasts (Candida, Debaryomyces, Pichia, Hanseniaspora, Saccharomyces, Metschnikowia, Cryptococcus, Filobasidium and Rhodotorula) and bacteria (Gluconobacter, Asaia, Acetobacter, Oenococcus, Lactobacillus, Bacillus and Paenibacillus) were isolated successively by plating. The main fermenting organism w…

0301 basic medicinefood.ingredientbiologyDebaryomycesfood and beveragesRhodotorulabiology.organism_classificationHanseniasporaStuck fermentationMicrobiology03 medical and health sciences030104 developmental biologyfoodLactobacillusFermentationFood scienceMetschnikowiaOenococcusSouth African Journal of Enology and Viticulture
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Physico-Chemical Characterization of an Exocellular Sugars Tolerant Β-Glucosidase from Grape Metschnikowia pulcherrima Isolates

2023

A broad variety of microorganisms with useful characteristics in the field of biotechnology live on the surface of grapes; one of these microorganisms is Metschnikowia pulcherrima. This yeast secretes a &beta;-glucosidase that can be used in fermentative processes to liberate aromatic compounds. In this work, the synthesis of an exocellular &beta;-glucosidase has been demonstrated and the optimal conditions to maximize the enzyme&rsquo;s effectiveness were determined. There was a maximum enzymatic activity at 28 &deg;C and pH 4.5. Furthermore, the enzyme presents a great glucose and fructose tolerance, and to a lesser extent, ethanol tolerance. In addition, its activity was stimulated by ca…

<i>Metschnikowia pulcherrima</i>; grapes; characterization; β-glucosidaseMicrobiology (medical)VirologyMicrobiologiaMicrobiologyMicroorganisms
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Evolution of microbiological and chemical parameters during red wine making with extended post-fermentation maceration.

2014

Abstract The aim of the present work was to investigate the microbiological, chemical, and sensory characteristics of red wine subjected to post-fermentation maceration that was extended to 90 days. For this purpose, the ‘Aglianico di Taurasi’ grape was used as a case study. The total yeast concentration increased until day 40 of maceration and decreased thereafter, whereas the concentration of lactic acid bacteria slightly increased. Dekkera/Brettanomyces spp. and acetic acid bacteria were not detected. The yeast community was composed of Saccharomyces cerevisiae, Zygosaccharomyces bisporus, Metschnikowia pulcherrima, Hanseniaspora guilliermondii, Hanseniaspora uvarum, Pichia guilliermondi…

BrettanomycesFood HandlingColony CountColony Count MicrobialWineSaccharomyces cerevisiaeMicrobiologyTimechemistry.chemical_compoundMicrobialYeastsBotanyLactic acid bacteriaMaceration (wine)Lactic acid bacteria; Polyphenols; Prolonged post-fermentation maceration; Red wine production; Saccharomyces cerevisiae; Yeasts; Acetic Acid; Alcohols; Colony Count Microbial; Humans; Mycological Typing Techniques; Polyphenols; Saccharomyces cerevisiae; Taste; Time; Vitis; Wine; Yeasts; Fermentation; Food Handling; Food Microbiologyred wine long maceration microorganismsHumansVitisFood scienceRed wine productionAcetic acid bacteriaMycological Typing TechniquesAcetic AcidWinebiologyProlonged post-fermentation macerationfood and beveragesPolyphenolsSettore AGR/15 - Scienze E Tecnologie AlimentariGeneral Medicinebiology.organism_classificationchemistryAlcoholsTasteFermentationFood MicrobiologyHanseniaspora guilliermondiiFermentationMalic acidMetschnikowia pulcherrimaSettore AGR/16 - Microbiologia AgrariaFood ScienceInternational journal of food microbiology
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Transformation of Ochratoxin A by Microorganisms Isolated from Tempranillo Grapes in Wine Systems

2020

Mycotoxins are toxic metabolites produced by various genera of fungi. Fungi belonging to species of the genera Aspergillus and Penicillium are the main source of ochratoxin A (OTA) in wine. The reduction of OTA in must and wine has been studied using physical, chemical, and biological technologies. In this paper, we report on the capacity of different cultures isolated from Tempranillo winegrapes contaminated with fungus to degrade OTA in tryptic soy broth (TSB) medium at pH 3.5 and 6.5. We studied the interaction between OTA and four isolates during alcoholic fermentation of red wine. This study showed that microorganism isolates reduced the content of OTA in TSB medium and in the wine exp…

Fermentation in winemakingWineOchratoxin Abiologyfood and beverages04 agricultural and veterinary sciencesHorticultureEthanol fermentationbiology.organism_classificationTryptic soy broth040501 horticulturechemistry.chemical_compoundchemistryPenicilliumFood science0405 other agricultural sciencesMetschnikowia pulcherrimaFood ScienceWinemakingAmerican Journal of Enology and Viticulture
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Yeast–yeast interactions revealed by aromatic profile analysis of Sauvignon Blanc wine fermented by single or co-culture of non-Saccharomyces and Sac…

2012

International audience; There has been increasing interest in the use of selected non-Saccharomyces yeasts in co-culture with Saccharomyces cerevisiae. The main reason is that the multistarter fermentation process is thought to simulate indigenous fermentation, thus increasing wine aroma complexity while avoiding the risks linked to natural fermentation. However, multistarter fermentation is characterised by complex and largely unknown interactions between yeasts. Consequently the resulting wine quality is rather unpredictable. In order to better understand the interactions that take place between non-Saccharomyces and Saccharomyces yeasts during alcoholic fermentation, we analysed the vola…

MESH : Coculture TechniquesWine aroma[ SDV.AEN ] Life Sciences [q-bio]/Food and NutritionWineEthanol fermentation7. Clean energySaccharomycesMESH : SaccharomycesMESH : MetschnikowiaMESH : Volatile Organic CompoundsFood scienceVolatile thiolsCandida0303 health sciencesbiologyfood and beveragesMetschnikowia pulcherrimaCandida zemplininaMESH : WineNon-SaccharomycesAroma of wineTorulaspora delbrueckiiMetschnikowiaMicrobiologyMESH: FermentationMESH: Volatile Organic CompoundsMESH: Coculture TechniquesSaccharomyces03 medical and health sciencesTorulaspora delbrueckiiMESH: CandidaMESH : FermentationBotany030304 developmental biologyWineVolatile Organic CompoundsMESH: SaccharomycesMESH: Metschnikowia030306 microbiologyCandida zemplinina15. Life on landbiology.organism_classificationCoculture TechniquesMESH: WineYeastYeast interactionsFermentation[SDV.AEN]Life Sciences [q-bio]/Food and NutritionMESH : CandidaMetschnikowia pulcherrimaFood ScienceFood Microbiology
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