Search results for " Fermentation"

showing 10 items of 283 documents

Direct and Rapid Detection and Quantification of Oenococcus oeni Cells in Wine by Cells-LAMP and Cells-qLAMP

2018

Fast detection and enumeration of Oenococcus oeni in winemaking are necessary to determine whether malolactic fermentation (MLF) is likely to be performed or not and to decide if the use of a commercial starter is needed. In other wines, however, performing MLF can be detrimental for wine and should be avoided. The traditional identification and quantification of this bacteria using culture-dependent techniques in wine-related matrices require up to 14 days to yield results, which can be a very long time to perform possible enological operations. Loop-mediated isothermal amplification (LAMP) is a novel culture-independent technique that amplifies nucleic acid sequences under isothermal cond…

0301 basic medicineMicrobiology (medical)cells-LAMPLysislcsh:QR1-502Loop-mediated isothermal amplificationdetectionMicrobiologylcsh:Microbiology03 medical and health sciencesMalolactic fermentationgrape mustwineOenococcus oeniWinemakingOriginal ResearchWineChromatographybiologyChemistryfood and beveragesbiology.organism_classificationquantification030104 developmental biologyYield (chemistry)cells-qLAMPFermentationO. oeniFrontiers in Microbiology
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Flor Yeast Diversity and Dynamics in Biologically Aged Wines

2018

International audience; Wine biological aging is characterized by the development of yeast strains that form a biofilm on the wine surface after alcoholic fermentation. These yeasts, known as flor yeasts, form a velum that protects the wine from oxidation during aging. Thirty-nine velums aged from 1 to 6 years were sampled from "Vin jaune" from two different cellars. We show for the first time that these velums possess various aspects in term of color and surface aspects. Surprisingly, the heterogeneous velums are mostly composed of one species, S. cerevisiae. Scanning electron microscope observations of these velums revealed unprecedented biofilm structures and various yeast morphologies f…

0301 basic medicineMicrobiology (medical)vin jaune030106 microbiologySaccharomyces cerevisiaelcsh:QR1-502FlorSaccharomyces cerevisiaeEthanol fermentationMicrobiologySaccharomyceslcsh:Microbiologybiofilmvelum formationsherry wines03 medical and health sciencesexpression[SDV.IDA]Life Sciences [q-bio]/Food engineeringFood sciencewinefermentationsaccharomyces-cerevisiae strainschromosomal rearrangementsOriginal ResearchWinefor yeastadaptive evolutionbiologyBiofilmgenetic diversitybiology.organism_classificationFLO11Yeastflor yeastliquid biofilm formationidentificationFermentationscanning electron microscopy
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Use of autochthonous yeasts and bacteria in order to control Brettanomyces bruxellensis in wine

2017

Biocontrol strategies for the limitation of undesired microbial developments in foods and beverages represent a keystone toward the goal of more sustainable food systems. Brettanomyces bruxellensis is a wine spoilage microorganism that produces several compounds that are detrimental for the organoleptic quality of the wine, including some classes of volatile phenols. To control the proliferation of this yeast, sulfur dioxide is commonly employed, but the efficiency of this compound depends on the B. bruxellensis strain; and it is subject to wine composition and may induce the entrance in a viable, but nonculturable state of yeasts. Moreover, it can also elicit allergic reactions in humans. …

0301 basic medicineMicroorganism030106 microbiologyFood spoilageVolatile phenolsBrettanomyces bruxellensisWineSaccharomyces cerevisiaePlant ScienceBiochemistry Genetics and Molecular Biology (miscellaneous)Aliments Microbiologia03 medical and health sciencesMalolactic fermentationFood scienceNon- SaccharomycesOenologyOenococcus oeniWinelcsh:TP500-660non-Saccharomycesbiology<i>Brettanomyces bruxellensis</i>; volatile phenols; biocontrol; <i>Saccharomyces cerevisiae</i>; non-<i>Saccharomyces</i>; <i>Oenococcus oeni</i>; wineBiocontrolfood and beverageslcsh:Fermentation industries. Beverages. Alcoholbiology.organism_classificationYeastBrettanomyces bruxellensisViniculturaBiocontrol; Brettanomyces bruxellensis; Non- Saccharomyces; Oenococcus oeni; Saccharomyces cerevisiae; Volatile phenols; WineOenococcus oeniSettore AGR/16 - Microbiologia AgrariaFood Science
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Reply to Comment on Huang, X., et al. “Sourdough Fermentation Degrades Wheat Alpha-Amylase/Trypsin Inhibitor (ATI) and Reduces Pro-Inflammatory Activ…

2020

We thank Dr [...]

0301 basic medicineReplyHealth (social science)INTESTINAL INFLAMMATIONTrypsin inhibitoreducationPlant Sciencelcsh:Chemical technologyHealth Professions (miscellaneous)MicrobiologyACTIVATION03 medical and health sciences0302 clinical medicineIntestinal inflammationlcsh:TP1-1185Food science2. Zero hungerbiologyChemistrySourdough fermentationn/a030104 developmental biology416 Food Sciencebiology.protein030211 gastroenterology & hepatologyAlpha-amylaseFood ScienceFoods
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Performances of Different Metabolic Lactobacillus Groups During the Fermentation of Pizza Doughs Processed from Semolina

2018

The main hypothesis of this work is that facultative and obligate heterofermentative Lactobacillus species can differently impact the final characteristics of pizza. The objective was to evaluate separately the behaviors of the obligate heterofermentative species (OHS), such as Lactobacillus sanfranciscensis, Lactobacillus brevis, and Lactobacillus rossiae, and the facultative heterofermentative species (FHS), including Lactobacillus plantarum, and Lactobacillus curvatus, in the sourdoughs to be used for pizza production. The production of the experimental pizzas was carried out with semolina (Triticum turgidum L. ssp. durum). The acidification process—which was followed by pH, total titrat…

0301 basic medicineSeasoningsourdough fermentationfacultative heterofermentative species030106 microbiologyLactobacillus sanfranciscensisTitratable acidPlant ScienceBiochemistry Genetics and Molecular Biology (miscellaneous)03 medical and health scienceschemistry.chemical_compoundLactobacilluspizzavolatile organic compoundsFood scienceobligate heterofermentative specieobligate heterofermentative specieslcsh:TP500-660biologyfacultative heterofermentative speciefood and beveragesSettore AGR/15 - Scienze E Tecnologie Alimentaribiology.organism_classificationlcsh:Fermentation industries. Beverages. AlcoholLactic acidlactic acid bacteriachemistryFermentationshape descriptorshape descriptorsBacteriaLactobacillus plantarumFood ScienceSettore AGR/16 - Microbiologia Agraria
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The individual contribution of starter and non-starter lactic acid bacteria to the volatile organic compound composition of Caciocavallo Palermitano …

2017

Abstract The contribution of two starter ( Lactobacillus delbrueckii and Streptococcus thermophilus ) and nine non-starter ( Enterococcus casselliflavus , Enterococcus faecalis , Enterococcus durans , Enterococcus gallinarum , Lactobacillus casei , Lactobacillus paracasei , Lactobacillus rhamnosus , Pediococcus acidilactici and Pediococcus pentosaceus ) species of lactic acid bacteria (LAB) to the volatile organic compounds (VOCs) of Caciocavallo Palermitano cheese was investigated. The strains used in this study were isolated during the production/ripening of the stretched cheese and tested in a cheese-based medium (CBM). The fermented substrates were analyzed for the growth of the single …

0301 basic medicineStreptococcus thermophilusLactobacillus caseiSettore AGR/19 - Zootecnica SpecialeCheese based mediumLactobacillus paracaseiButanols030106 microbiologyCaciocavallo PalermitanoCaciocavallo Palermitano; Cheese based medium; Lactic acid bacteria; Ripened cheese; Volatile organic compounds; Food Science; MicrobiologyDiacetylXylenesMicrobiology03 medical and health sciencesEnterococcus gallinarumLactobacillus rhamnosusCheeseLactobacillusLactic acid bacteriaAnimalsLactobacillus rhamnosusStreptococcus thermophilusFood scienceLactobacillus delbrueckiiVolatile Organic CompoundsbiologyChemistryLacticaseibacillus rhamnosusPediococcus acidilacticifood and beveragesGeneral MedicineVolatile organic compoundbiology.organism_classificationCaciocavallo Palermitano; Cheese based medium; Lactic acid bacteria; Ripened cheese; Volatile organic compounds; Animals; Butanols; Butanones; Cheese; Diacetyl; Enterococcus; Fermentation; Hexanols; Lactobacillus casei; Lactobacillus delbrueckii; Lactobacillus rhamnosus; Milk; Streptococcus thermophilus; Volatile Organic Compounds; Xylenes; Food Science; MicrobiologyEnterococcus duransRipened cheeseButanonesLactic acid bacteria Caciocavallo Palermitano Ripened cheese Volatile organic compounds Cheese based mediumLacticaseibacillus casei030104 developmental biologyMilkFermentationbacteriaHexanolsLactobacillus caseiEnterococcusSettore AGR/16 - Microbiologia AgrariaFood Science
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Yeast thioredoxin reductase Trr1p controls TORC1-regulated processes

2018

The thioredoxin system plays a predominant role in the control of cellular redox status. Thioredoxin reductase fuels the system with reducing power in the form of NADPH. The TORC1 complex promotes growth and protein synthesis when nutrients, particularly amino acids, are abundant. It also represses catabolic processes, like autophagy, which are activated during starvation. We analyzed the impact of yeast cytosolic thioredoxin reductase TRR1 deletion under different environmental conditions. It shortens chronological life span and reduces growth in grape juice fermentation. TRR1 deletion has a global impact on metabolism during fermentation. As expected, it reduces oxidative stress tolerance…

0301 basic medicineThioredoxin Reductase 1Estrès oxidatiuThioredoxin reductaseScienceMicrobiologiaMechanistic Target of Rapamycin Complex 1Grape Juice FermentationArticleAntioxidants03 medical and health scienceschemistry.chemical_compoundTORC1 PathwayYeastsAmino AcidsMultidisciplinary030102 biochemistry & molecular biologyKinaseAutophagyChronological Life SpanQFungal geneticsRGlutathioneMetabolismTORC1 ComplexThioredoxin SystemYeastCell biology030104 developmental biologychemistryMedicineThioredoxinGene DeletionSignal TransductionScientific Reports
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A new fear in wine: Isolation of Staphylococcus epidermidis histamine producer

2016

Abstract Biogenic amines (BAs) are undesirable compounds in all foods and beverages because they may induce food-borne intoxications when consumed at high concentrations. The aim of this study was to identify the organism responsible for the synthesis of histamine in a Tempranillo red wine from Ribera de Duero D.O. (Denomination of origin), Spain. Bacteria present in wines after malolactic fermentation were isolated, identified and typed. Four strains of the species Oenococcus oeni and two strains of Staphylococcus epidermidis were found. None of the O. oeni strains produced histamine, cadaverine or putrescine, but one of the S. epidermidis strains (Pa) was able to produce all three in synt…

0301 basic medicineWineCadaverinebiologydigestive oral and skin physiology030106 microbiologyfood and beveragesBacteria Presentbiology.organism_classificationMicrobiology03 medical and health scienceschemistry.chemical_compoundchemistryStaphylococcus epidermidisPutrescineMalolactic fermentationHistamineFood ScienceBiotechnologyOenococcus oeniFood Control
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On the origins and industrial applications ofSaccharomyces cerevisiae×Saccharomyces kudriavzeviihybrids

2017

Companies based on alcoholic fermentation products, such as wine, beer and biofuels, use yeasts to make their products. Each industrial process utilizes different media conditions, which differ in sugar content, the presence of inhibitors and fermentation temperature. Saccharomyces cerevisiae has traditionally been the main yeast responsible for most fermentation processes. However, the market is changing due to consumer demand and external factors such as climate change. Some processes, such as biofuel production or winemaking, require new yeasts to solve specific challenges, especially those associated with sustainability, novel flavours and altered alcohol content. One of the proposed so…

0301 basic medicineWinebiologybusiness.industry030106 microbiologySaccharomyces cerevisiaefood and beveragesBioengineeringEthanol fermentationbiology.organism_classificationApplied Microbiology and BiotechnologyBiochemistrySaccharomycesYeastBiotechnology03 medical and health sciencesGeneticsFermentationbusinessSaccharomyces kudriavzeviiBiotechnologyWinemakingYeast
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The Antisense RNA Approach: a New Application for In Vivo Investigation of the Stress Response of Oenococcus oeni, a Wine-Associated Lactic Acid Bact…

2015

ABSTRACT Oenococcus oeni is a wine-associated lactic acid bacterium mostly responsible for malolactic fermentation in wine. In wine, O. oeni grows in an environment hostile to bacterial growth (low pH, low temperature, and ethanol) that induces stress response mechanisms. To survive, O. oeni is known to set up transitional stress response mechanisms through the synthesis of heat stress proteins (HSPs) encoded by the hsp genes, notably a unique small HSP named Lo18. Despite the availability of the genome sequence, characterization of O. oeni genes is limited, and little is known about the in vivo role of Lo18. Due to the lack of genetic tools for O. oeni , an efficient expression vector in O…

0301 basic medicine[SDV.BIO]Life Sciences [q-bio]/Biotechnology[ SDV.AEN ] Life Sciences [q-bio]/Food and Nutrition030106 microbiologyLactobacillus-plantarumWineEscherichia-coliApplied Microbiology and Biotechnologymolecular characterization03 medical and health sciencesGrowth-phaseBacterial ProteinsMembrane stabilizationHeat shock protein[SDV.BBM.GTP]Life Sciences [q-bio]/Biochemistry Molecular Biology/Genomics [q-bio.GN]Antisense TechnologyGene expression[SDV.IDA]Life Sciences [q-bio]/Food engineeringMalolactic fermentationEnvironmental MicrobiologyRNA AntisenseGene-expressionLactic AcidHeat-Shock ProteinsOenococcusOenococcus oeniLeuconostoc-oenosEcologybiologyEthanolLactococcus lactisMalolactic fermentation[ SDV.BIO ] Life Sciences [q-bio]/BiotechnologyGene Expression Regulation Bacterialbiology.organism_classification[SDV.MP.BAC]Life Sciences [q-bio]/Microbiology and Parasitology/BacteriologyAntisense RNABiochemistryLactococcus-lactisHeat-shock-proteinFermentationOenococcusFood ScienceBiotechnology
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