Search results for "Yeasts"

showing 10 items of 151 documents

Effects of hydrostatic pressure on yeasts isolated from deep-sea hydrothermal vents

2015

International audience; Hydrostatic pressure plays a significant role in the distribution of life in the biosphere. Knowledge of deep-sea piezotolerant and (hyper)piezophilic bacteria and archaea diversity has been well documented, along with their specific adaptations to cope with high hydrostatic pressure (HHP). Recent investigations of deep-sea microbial community compositions have shown unexpected micro-eukaryotic communities, mainly dominated by fungi. Molecular methods such as next-generation sequencing have been used for SSU rRNA gene sequencing to reveal fungal taxa. Currently, a difficult but fascinating challenge for marine mycologists is to create deep-sea marine fungus culture c…

[SDV]Life Sciences [q-bio]Hydrostatic pressurePiezotoleranceMicrobiologyDimorphismHydrothermal VentsAscomycotaStress PhysiologicalYeasts[SDV.IDA]Life Sciences [q-bio]/Food engineeringSeawaterMolecular BiologyHydrostatic pressureSsu rrna genebiologyMarineEcologyBasidiomycotaGeneral Medicinebiology.organism_classificationMicrobial PhysiologyFungus cultureMicrobial population biologyFilamentation13. Climate actionBacteriaArchaeaHydrothermal vent
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High-throughput sequencing of amplicons for monitoring yeast biodiversity in must and during alcoholic fermentation

2014

Abstract We compared pyrosequencing technology with the PCR-ITS-RFLP analysis of yeast isolates and denaturing gradient gel electrophoresis (DGGE). These methods gave divergent findings for the yeast population. DGGE was unsuitable for the quantification of biodiversity and its use for species detection was limited by the initial abundance of each species. The isolates identified by PCR-ITS-RFLP were not fully representative of the true population. For population dynamics, high-throughput sequencing technology yielded results differing in some respects from those obtained with other approaches. This study demonstrates that 454 pyrosequencing of amplicons is more relevant than other methods …

[SDV]Life Sciences [q-bio]PopulationBioengineeringBiologyEthanol fermentationPolymerase Chain ReactionApplied Microbiology and BiotechnologyDNA sequencing03 medical and health sciencesYeasts[SDV.IDA]Life Sciences [q-bio]/Food engineering[SDV.BV]Life Sciences [q-bio]/Vegetal BiologyVitis[SPI.GPROC]Engineering Sciences [physics]/Chemical and Process Engineeringeducation030304 developmental biologyGenetics0303 health scienceseducation.field_of_studyEthanolDenaturing Gradient Gel Electrophoresis030306 microbiologybusiness.industryHigh-Throughput Nucleotide Sequencingfood and beveragesBiodiversityYeastBiotechnologyDNA profilingFermentation[SDE]Environmental SciencesPyrosequencingFermentationbusinessTemperature gradient gel electrophoresisBiotechnology
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Non-

2017

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 been little studied. With…

alcoholic fermentationnitrogen sourcesvolatile compoundsnon-Saccharomyces yeastswineyeast interactionsMicrobiologyOriginal ResearchFrontiers in microbiology
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The influence of yeast glycosylated proteins on tannins aggregation in model solution

2004

<p style="text-align: justify;">The incidence of glycosylated yeast proteins on tannins aggregation in model solution was investigated using the spectrophotometric method (absorbance 700 nm). Glycosylated proteins released by two commercial <em>Saccharomyces cerevisiae</em> strains (RC212 and BM 45) during alcoholic fermentation in synthetic media, glycosylated proteins extracted by Peat’s method and industrial glycosylated proteins purified and separated by chromatography on Sepharose Concanavalin A were used to visualize effects on tannins aggregation. Results showed that tannins aggregation was limited by the glycosylated proteins according to their origin and their mod…

animal structuresSaccharomyces cerevisiaeyeastsMannosemacromolecular substancesprecipitationHorticultureEthanol fermentationglycosylated proteinslcsh:AgricultureAbsorbanceSepharosechemistry.chemical_compoundtanninslcsh:BotanyMannanChromatographybiologyChemistryaggregationlcsh:Sstability coefficientbiology.organism_classificationYeastlcsh:QK1-989carbohydrates (lipids)BiochemistryConcanavalin Abiology.proteinlipids (amino acids peptides and proteins)Food ScienceOENO One
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Dairy Debaryomyces hansenii strains produce the antihypertensive casein-derived peptides LHLPLP and HLPLP

2015

The ability of dairy Debaryomyces hansenii, Kluyveromyces lactis and Kluyveromyces marxianus strains to release the casein-derived antihypertensive sequences RYLGY, AYFYPEL, LHLPLP, HLPLP, VPP and/or IPP was examined. Yeast strains were grown in medium with casein as sole nitrogen source and the yeast casein hydrolysates (CSHs) were analysed by HPLC-MS/MS to search for the six antihypertensive sequences. Only LHLPLP and HLPLP were identified in CSHs and exclusively in D. hansenii Dh1 and Dh14 hydrolysates in which both antihypertensive sequences represented approximately 6 (CSH Dh1) and 10% (CSH Dh14) of total peptide content. In addition, a complete analysis of selected CSHs by HPLC-MS/MS …

chemistry.chemical_classificationKluyveromyces lactisDebaryomyces hanseniiMolecular massbiologyDairy yeastsKluyveromyces lactisPeptidebiology.organism_classificationYeastHydrolysateCasein-derived antihypertensive peptideschemistryBiochemistryKluyveromyces marxianusCaseinDebaryomyces hanseniiKluyveromyces marxianusFood Science
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Development of molecular approaches for direct detection and quantification of wine-related microorganisms

2018

En esta tesis doctoral se han desarrollado procedimientos para la detección y cuantificación de levaduras y bacterias acéticas totales y, en concreto, de las especies más importantes en la vinificación como Saccharomyces cerevisiae, Brettanomyces bruxellensis, Zygosaccharomyces bailii, L. plantarum, y O. oeni. Las estrategias que se han utilizado para el desarrollo de nuevos métodos se centran fundamentalmente en la supresión del paso de extracción previa de ADN y de los procedimientos de eliminación de inhibidores de la reacción de PCR presentes en las muestras. Para llevar a cabo este objetivo general, se establecieron los siguientes objetivos específicos; 1, desarrollo de un método de qP…

lactic acid bacteriaqPCRLAMPmolecular approachesUNESCO::CIENCIAS DE LA VIDAyeastsacetic acid bacteriawine:CIENCIAS DE LA VIDA [UNESCO]
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Sourdough and cereal-based foods: traditional and innovative products

2017

Cereals represent the main crop of the five continents and contribute greatly to the diet of several populations. Cereals often undergo a fermentation before eating. This process is fundamental to confer high sensory quality, as well as to preserve and enhance the nutritional and safety aspects of the resulting products. Fermented cereal based foods are complex microbial ecosystems, mainly represented by lactic acid bacteria and yeasts. Among these products, sourdough is worldwide applied to produce breads. Sourdough technology is also used to improve the final characteristics of fortified and gluten–free breads. This chapter focuses on the use of cereals to produce the most relevant fermen…

lactic acid bacteriasourdoughstarter selectionfortified breadcereal based-foods; cereal fermentation; fortified breads; gluten-free products; lactic acid bacteria; sourdough; starter cultures; starter selection; yeastsgluten-free productstarter cultureyeastscereal based-foodcereal fermentationSettore AGR/16 - Microbiologia Agraria
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Genome Characterization of natural Saccharomyces hybrids of biotechnological interest

2012

At present, the genus Saccharomyces comprises seven species according to their patterns of breeding. The species boundaries are not clear due to the description of several reticulate events due to introgression and hybridization. In the last decade, new natural hybrids have been described in wine and brewing, such as S. cerevisiae x S. kudriavzevii. Due to new practices in wine and beer production, together with consequences in grape properties due to climatic change, led biotechnological companies to search for new yeast strains. In this context, hybrids have become of importance to biotechnological industries because they show good fermentative performance at low temperatures and produce …

saccharomyces:CIENCIAS DE LA VIDA::Genética ::Genética de poblaciones [UNESCO]yeasts; molecular genetics; Saccharomycesmolecular geneticsyeastsfood and beverages:CIENCIAS DE LA VIDA::Biología molecular ::Biología molecular de microorganismos [UNESCO]UNESCO::CIENCIAS DE LA VIDA::Biología molecular ::Biología molecular de microorganismosUNESCO::CIENCIAS DE LA VIDA::Genética ::Genética de poblaciones
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Advances in Wine Fermentation

2021

Fermentation is a well-known natural process that has been used by humanity for thousands of years, with the fundamental purpose of making alcoholic beverages such as wine, and also other non-alcoholic products. From a strictly biochemical point of view, fermentation is a process of central metabolism in which an organism converts a carbohydrate, such as starch or sugar, into an alcohol or an acid. The fermentation process turns grape juice (must) into wine. This is a complex chemical reaction whereby the yeast interacts with the sugars (glucose and fructose) in the must to create ethanol and carbon dioxide. Fermentation processes to produce wines are traditionally carried out with Saccharo…

vesselsFermentation industries. Beverages. AlcoholyeastsPlant ScienceBiochemistry Genetics and Molecular Biology (miscellaneous)chemistry.chemical_compoundFermentacióFood sciencewineSugarfermentationWineFermentation in winemakingTP500-660EthanolChemistryfood and beveragesFructoseYeastLactic acidcarbohydrates (lipids)lactic acid bacteriaViniculturaFermentationmicro-oxygenationFood ScienceFermentation
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Yeast microbiota associated with spontaneous fermentation of traditional wheat sourdough breads of Abruzzo region (Italy)

2010

yeasts sourdough bread
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