Search results for "Rhodotorula"

showing 8 items of 8 documents

Microbial Enzymes: Relevance for Winemaking

2017

Production of wine from grape juice is predominantly the result of complex enzymatic reactions. The primary bioconversion of grape sugar to ethanol and CO2 by the yeast Saccharomyces cerevisiae is catalyzed by cytosolic enzymes. In spontaneous must fermentations, also strains of Saccharomyces bayanus or interspecies hybrids may dominate, probably because of better adaptation to specific environmental conditions. In addition, various enzymes released into the must influence the final composition, color, and sensory properties of wines. These enzymes originate from the grape itself, from epiphytic fungi like Botrytis cinerea, and from yeasts and bacteria associated with vineyards and wine cel…

0301 basic medicineWinebiologyChemistryfungi030106 microbiologyDebaryomycesSaccharomyces bayanusfood and beveragesZygosaccharomycesRhodotorulabiology.organism_classificationHanseniasporaYeast03 medical and health sciences030104 developmental biologyFood scienceWinemaking
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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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The intestinal mycobiota and its relationship with overweight, obesity and nutritional aspects

2021

[Background]: The fungal community of the gastrointestinal tract has recently become of interest, and knowledge of its relationship with the development of obesity is scarce. The present study aimed to evaluate the cultivable fungal fraction from the microbiota and to analyze its relationship with obesity.

AdultMale0301 basic medicineColony Count MicrobialMedicine (miscellaneous)030209 endocrinology & metabolismOverweightCandida parapsilosis03 medical and health sciences0302 clinical medicineWeight lossYeastsCandida kruseimedicineHumansObesityFood scienceCandida albicansCandida030109 nutrition & dieteticsNutrition and DieteticsbiologyCandida glabratabusiness.industryFungiDiscriminant AnalysisRhodotorulaOverweightbiology.organism_classificationmedicine.diseaseObesityGastrointestinal TractSpectrometry Mass Matrix-Assisted Laser Desorption-IonizationFemalemedicine.symptombusinessWeight gainMycobiome
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Yeasts vectored by migratory birds collected in the Mediterranean island of Ustica and description of Phaffomyces usticensis f.a. sp. nov., a new spe…

2014

Nine yeast species belonging to genera Candida , Cryptococcus , Phaffomyces , Rhodotorula and Wickerhamomyces , and one species of Aureobasidium genus were isolated from the cloaca of migratory birds. Candida glabrata and C. inconspicua were the species most frequently isolated and Wickerhamomyces sylviae , which has recently been described as a new species isolated from bird cloaca, was again found. The majority of isolates showed the ability to grow up to 40 °C and/or at pH 3.0, two environmental conditions typical of the digestive tract of birds. The phylogenetic analysis of the D1/D2 domain of 26S rRNA gene placed the cultures of Phaffomyces in a new lineage that differed from the close…

Cactaceaephenotypic characterizationMolecular Sequence DataCryptococcusAureobasidiumRhodotorulaApplied Microbiology and BiotechnologyMicrobiologyNew species Yeast birdsBirdscactus-yeastMediterranean IslandsWickerhamomycesAscomycotaGenusPhaffomyces usticensis sp. novBotanyAnimalsPhylogenyRibosomalPhylogenetic treebiologyCandida glabrataphylogenetic analysisGeneral Medicinebiology.organism_classificationnovel speciesDelichon urbicumSettore AGR/11 - Entomologia Generale E ApplicataPhenotypeRNA RibosomalCactusRNADelichon urbicum; Phaffomyces usticensis sp. nov.; cactus-yeast; novel species; phenotypic characterization; phylogenetic analysis; Animals; Ascomycota; Birds; Cactaceae; Mediterranean Islands; Molecular Sequence Data; Phenotype; Phylogeny; RNA RibosomalSettore AGR/16 - Microbiologia Agraria
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Identification of yeasts by RFLP analysis of the 5.8S rRNA gene and the two ribosomal internal transcribed spacers

1999

The identification and classification of yeasts have traditionally been based on morphological, physiological and biochemical traits. Various kits have been developed as rapid systems for yeast identification, but mostly for clinical diagnosis. In recent years, different molecular biology techniques have been developed for yeast identification, but there is no available database to identify a large number of species. In the present study, the restriction patterns generated from the region spanning the internal transcribed spacers (ITS1 and ITS2) and the 5.8S rRNA gene were used to identify a total of 132 yeast species belonging to 25 different genera, including teleomorphic and anamorphic a…

GeneticsbiologyGenes FungalGeneral MedicineSpacer DNARibosomal RNARhodotorulabiology.organism_classificationPolymerase Chain ReactionMicrobiologySaccharomycesYeastRNA Ribosomal 5.8SYeastsIdentification (biology)Internal transcribed spacerRestriction fragment length polymorphismPolymorphism Restriction Fragment LengthEcology Evolution Behavior and Systematics
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Physiological properties of some yeast strains

2006

Twenty yeast strains have recently been isolated in pure cultures from natural and industrial sources and identified based mainly on physiological properties. The majority of the strains (15) are alcohologenic belonging to the genus Saccharomyces and comprise two brewer's (beer) yeast strains (S. carlsbergensis= S. uvarum A and B), two baker's yeast strains (S. cerevisiae CA and CP), one spirit yeast strain (S. cerevisiae CF) and ten wine yeast strains (S. cerevisiae var. ellipsoideus = S. ellipsoideus 1, 3, 4, 6, 8 and 9; S. oviformis 2, 5 and 7; and S. uvarum 10). The other 5 yeast strains belong to different species: Kloeckera apiculate, Candida mycoderma (Mycoderma vini), Pichia membran…

Genus SaccharomycesCarbohydratesfood and beveragesBiologyYeast strainRhodotorulabiology.organism_classificationGeneral Biochemistry Genetics and Molecular BiologyYeastMicrobiologyYeast in winemakingNeurologyAlcoholsYeastsFermentationFood MicrobiologyFood microbiologyFermentationCell ShapePichia membranaefaciensGeneral Environmental ScienceActa Biologica Hungarica
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Polyphasic identification of yeasts isolated from bark of cork oak during the manufacturing process of cork stoppers.

2003

A two-step protocol was used for the identification of 52 yeasts isolated from bark of cork oak at initial stages of the manufacturing process of cork stoppers. The first step in the identification was the separation of the isolates into groups by their physiological properties and RFLPs of the ITS-5.8S rRNA gene. The second step was the sequencing of the D1/D2 domains of the 26S rRNA gene of selected isolates representing the different groups. The results revealed a predominance of basidiomycetous yeasts (11 species), while only two species represented the ascomycetous yeasts. Among the basidiomycetous yeasts, members representing the species Rhodosporidium kratochvilovae and Rhodotorula n…

MycologyCorkengineering.materialRhodotorulaApplied Microbiology and BiotechnologyMicrobiologyDNA RibosomalPolymerase Chain ReactionRhodotorula mucilaginosaQuercusYeastsDebaryomyces hanseniiBotanyTrichosporon mucoidesDNA FungalMycological Typing TechniquesRibosomal DNAbiologyBase SequenceFungal geneticsGeneral Medicinebiology.organism_classificationPhenotypevisual_artvisual_art.visual_art_mediumengineeringPlant BarkBarkPolymorphism Restriction Fragment LengthFEMS yeast research
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Role of yeasts in table olive production

2008

Table olives are a traditional fermented vegetable of the Mediterranean countries, but their production and consumption are now spread all around the world. Yeasts can play a double role in this food. They are present throughout the fermentative process and it is generally accepted that they can produce compounds with important organoleptic attributes determining the quality and flavour of the final product. However, yeasts can also be spoilage microorganisms in olive fermentation/storage and packing causing gas pockets, swollen containers, cloudy brines and off-flavours and off-odours. Candida boidinii, Debaryomyces hansenii, Pichia anomala, P. membranifaciens, Rhodotorula glutinis and Sac…

Pichia anomalaFood HandlingMicroorganismFood spoilageColony Count MicrobialFood ContaminationRhodotorulaMicrobiology03 medical and health sciences0404 agricultural biotechnologyOleaYeastsDebaryomyces hanseniiFood microbiologyFood science2. Zero hunger0303 health sciencesbiology030306 microbiologybusiness.industryfood and beverages04 agricultural and veterinary sciencesGeneral MedicineFatty Acids Volatilebiology.organism_classification040401 food scienceYeastBiotechnologyConsumer Product SafetyFermentationFood MicrobiologyFermentationbusinessFood ScienceInternational Journal of Food Microbiology
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