Search results for "Chardonnay Wine"

showing 7 items of 7 documents

Impact of Oak Wood Barrel Tannin Potential and Toasting on White Wine Antioxidant Stability

2019

International audience; Wines aged in oak wood barrels with various uniform tannin contents (which were classified according to their total ellagitannins contents as predicted by Near Infrared Spectroscopy on the untoasted wood) and different toasting levels (high precision toasting by radiation) were distinguished according to their overall abilities to resist against oxidation. Wine trials were carried out on two different vintages (2015, 2016) and three grape varieties (Sauvignon blanc, Sémillon, Chardonnay). Regardless of the vintage and the wine matrix, a relationship was established between wine oxidative stability (based on EPR spin trapping methodology) and oak barrel tannin potenti…

0106 biological sciencesVintageAntioxidantFood Handlingoxidationmedicine.medical_treatmentWinephenolic compounds01 natural sciencesAntioxidantsMass Spectrometrychemistry.chemical_compoundQuercusPhenolsellagitanninsmedicineTanninVitisFood sciencePhenolsradical chemistryglutathioneChromatography High Pressure Liquidchemistry.chemical_classificationWine010401 analytical chemistryGeneral Chemistrychardonnay wineWood0104 chemical sciencesBarrelsauvignon winechemistryWhite WinePolyphenolsulfur compoundsEPRGeneral Agricultural and Biological SciencesTannins[SDV.AEN]Life Sciences [q-bio]/Food and Nutrition010606 plant biology & botany
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Inoculation of Torulaspora delbrueckii as a bio-protection agent in winemaking

2018

International audience; In oenology, bio-protection consists in adding bacteria, yeasts or a mixture of microorganisms on grape must before fermentation in order to reduce the use of chemical compounds such as sulphites. More particularly, non-Saccharvinyces yeasts are used as a total or partial alternative to sulphites. However, scientific data capable of proving the effectiveness of adding these yeasts on grape must is lacking. This study reports the analysis of antimicrobial and antioxidant effects of one non-Saccharamyces yeast, Torulaspora delbruecicii, inoculated at the beginning of the white winemaldng process in two Burgundian wineries as an alternative to sulphiting. The implantati…

0301 basic medicinesulfur-dioxideMicroorganism030106 microbiologyTorulaspora delbrueckiiwhite winesWinechardonnay winesAntioxidants03 medical and health sciencesTorulaspora delbrueckiialcoholic fermentationOxidation[SDV.IDA]Life Sciences [q-bio]/Food engineeringVitisFood sciencecerevisiaeOenologyWinemakingWinebiologyChemistrysequential inoculationfood and beveragesTorulasporaWine bio-protectionribosomal-rna genenon-saccharomyces yeastsbiology.organism_classificationAntimicrobialYeastwine fermentationNon-Saccharomyces yeastFermentationFood MicrobiologyFermentationmixed culturesAlternative to sulphitesFood ScienceFood Research International
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Molecular Characterization of White Wines Antioxidant Metabolome by Ultra High Performance Liquid Chromatography High-Resolution Mass Spectrometry

2020

International audience; The knowledge about the molecular fraction contributing to white wines oxidative stability is still poorly understood. However, the role of S- and N-containing compounds, like glutathione and other peptides, as a source of reductant in many oxidation reactions, and acting against heavy metals toxicity, or lipid and polyphenol oxidation as ROS-scavenger is today very well established. In that respect, the aim of the present study is to introduce an original analytical tool for the direct determination of the available nucleophilic compounds in white wine under acidic pH conditions. One step derivatization of nucleophiles has been realized directly in wines using 4-met…

AntioxidantUHPLC-QqTOF-MSPhysiologymedicine.medical_treatmentClinical BiochemistrynucleophilesMass spectrometry01 natural sciencesBiochemistryArticlechemistry.chemical_compound0404 agricultural biotechnologymedicineMetabolomeDerivatizationuntargeted analysisMolecular BiologyMETLINthiolsWineChromatographyChardonnay wine oxidationChemistry010401 analytical chemistrylcsh:RM1-950food and beverages04 agricultural and veterinary sciencesCell Biology040401 food science0104 chemical sciencesQuinonelcsh:Therapeutics. PharmacologyPolyphenolpeptides[SDV.AEN]Life Sciences [q-bio]/Food and Nutrition
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Non-Saccharomyces Yeasts nitrogen source preferences: Impact on sequential fermentation and wine volatile compounds profile

2017

International audience; Nitrogen sources in the must are important for yeast metabolism, growth, and performance, and wine volatile compounds profile. Yeast assimilable nitrogen (YAN) deficiencies in grape must are one of the main causes of stuck and sluggish fermentation. The nitrogen requirement of Saccharomyces cerevisiae metabolism has been described in detail. However, the YAN preferences of non-Saccharomyces yeasts remain unknown despite their increasingly widespread use in winemaking. Furthermore, the impact of nitrogen consumption by non-Saccharomyces yeasts on YAN availability, alcoholic performance and volatile compounds production by S. cerevisiae in sequential fermentation has b…

Effect of nitrogen on plantsaroma compoundsEfecte del nitrògen sobre les plantesSaccharomycetaceaeco-fermentation[ SDV.IDA ] Life Sciences [q-bio]/Food engineeringlcsh:QR1-502Winechardonnay winesnon-Saccharomyces yeastsyeast interactionslcsh:Microbiologysauvignon blancalcoholic fermentationnitrogen sources[SDV.IDA]Life Sciences [q-bio]/Food engineeringamino-acidViSacaromicetàciesvolatile compoundswineassimilable nitrogencerevisiaecatabolite repressiongrape juice
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The Chardonnay wine olfactory concept revisited: A stable core of volatile compounds, and fuzzy boundaries

2011

Abstract An earlier study by the same team showed that Chardonnay wines have common olfactory properties by which wine experts can recognize them. The specific Chardonnay olfactory space was also tentatively linked to the relative concentrations of 29 volatile compounds, regarded as possible aroma-impact compounds. The question now is whether or not those initial results hold independently of the sample under consideration, that is, whether these sensory and chemical spaces are vintage-specific. A series of investigations was conducted on a new set of 46 wines (23 Chardonnay wines and 23 non Chardonnay wines) using the same sensory (wine typicality level) and physico-chemical (Gas Chromatog…

Wine0303 health sciencestypicality level030309 nutrition & dieteticsChemistrysensory evaluation[ SDV.IDA ] Life Sciences [q-bio]/Food engineeringChemical datagas chromatography mass04 agricultural and veterinary scienceschardonnay wine040401 food sciencevin Chardonnayniveau typique 03 medical and health sciences0404 agricultural biotechnologyOdorexpertchemical space[SDV.IDA]Life Sciences [q-bio]/Food engineeringspectrometry ion monitoring(CG-MS-SIM)Food sciencevolatile compoundsFood Science
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Sulfites and the Wine Metabolome

2017

International audience; In a context of societal concern about food preservation, the reduction of sulfite input plays a major role in the wine industry. To improve the understanding of the chemistry involved in the SO2 protection, a series of bottle aged Chardonnay wines made from the same must, but with different concentrations of SO2 added at pressing were analyzed by ultrahigh resolution mass spectrometry (FT-ICR-MS) and excitation emission matrix fluorescence (EEMF).Metabolic fingerprints from FT-ICR-MS data could discriminate wines according to the added concentration to the must but they also revealed chemistry-related differences according to the type of stopper, providing a wine me…

business.product_categoryWineContext (language use)01 natural sciencesSpearman's rank correlation coefficientMass Spectrometry040501 horticultureAnalytical Chemistrychemistry.chemical_compoundMetabolomicsSulfite[SDV.IDA]Life Sciences [q-bio]/Food engineeringMetabolomeBottleSulfitesWineChromatographySulfur Compounds010401 analytical chemistryChardonnay wine[ SDV.IDA ] Life Sciences [q-bio]/Food engineeringSulfur metabolome04 agricultural and veterinary sciencesGeneral Medicine0104 chemical sciencesMassEEMFchemistryMetabolome0405 other agricultural sciencesbusinessFT-ICR-MSFood Science
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Yeast interaction on Chardonnay wine composition: Impact of strain and inoculation time.

2022

Abstract It is of great importance to understand the molecular characteristics and substantial chemical transformations due to yeast-yeast interaction. Non-targeted metabolomics was used to unravel must in fermentation composition, inoculated with non-Saccharomyces (NS) yeasts and Saccharomyces cerevisiae (S) for sequential fermentation. ultrahigh-resolution mass spectrometry was able to distinguish thousands of metabolites and provides deep insights into grape must composition allowing better understanding of the yeast-yeast interactome. The dominance of S, characterized by a metabolic richness not found with NS, is dependent on inoculation time and on the yeast species present. Co-inocula…

chemistry.chemical_classificationWineChardonnay Wine ; Inoculation Time ; Metabolomics ; Sequential Fermentation ; Yeast-yeast InteractionbiologyChemistrySaccharomyces cerevisiaeWineSaccharomyces cerevisiaeGeneral MedicinePentose phosphate pathwaybiology.organism_classificationInteractomeYeastAnalytical ChemistryMetabolomicsYeast DriedBiochemistryFermentationVitisFermentationAmino acid synthesisFood Science
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