Search results for "Ethanol tolerance"

showing 5 items of 5 documents

Aneuploidy and Ethanol Tolerance in Saccharomyces cerevisiae

2019

Response to environmental stresses is a key factor for microbial organism growth. One of the major stresses for yeasts in fermentative environments is ethanol. Saccharomyces cerevisiae is the most tolerant species in its genus, but intraspecific ethanol-tolerance variation exists. Although, much effort has been done in the last years to discover evolutionary paths to improve ethanol tolerance, this phenotype is still hardly understood. Here, we selected five strains with different ethanol tolerances, and used comparative genomics to determine the main factors that can explain these phenotypic differences. Surprisingly, the main genomic feature, shared only by the highest ethanol-tolerant st…

0301 basic medicineChromosome IIIlcsh:QH426-470Saccharomyces cerevisiaeAneuploidycomparative genomicsSaccharomyces cerevisiaeEthanol toleranceBiologyTranscriptome03 medical and health sciences0302 clinical medicineGeneticsmedicineaneuploidyGenetics (clinical)Wine yeastsGeneticsComparative genomicsComparative genomicsStrain (biology)chromosome IIIChromosomewine yeastsAneuploidybiology.organism_classificationmedicine.diseasePhenotypeethanol tolerancelcsh:Genetics030104 developmental biology030220 oncology & carcinogenesisMolecular MedicinePloidyFrontiers in Genetics
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Differential Contribution of the Parental Genomes to a S. cerevisiae × S. uvarum Hybrid, Inferred by Phenomic, Genomic, and Transcriptomic Analyses, …

2020

In European regions of cold climate, S. uvarum can replace S. cerevisiae in wine fermentations performed at low temperatures. S. uvarum is a cryotolerant yeast that produces more glycerol, less acetic acid and exhibits a better aroma profile. However, this species exhibits a poor ethanol tolerance compared with S. cerevisiae. In the present study, we obtained by rare mating (non-GMO strategy), and a subsequent sporulation, an interspecific S. cerevisiae × S. uvarum spore-derivative hybrid that improves or maintains a combination of parental traits of interest for the wine industry, such as good fermentation performance, increased ethanol tolerance, and high glycerol and aroma productions. G…

0301 basic medicineMating typeHistologylcsh:BiotechnologySaccharomyces cerevisiaeBiomedical EngineeringBioengineeringLocus (genetics)Ethanol tolerance02 engineering and technologySaccharomyces cerevisiaeBiologyGenome sequencingGenome03 medical and health scienceslcsh:TP248.13-248.65Artificial hybridWine fermentationHybridFermentation in winemakingGeneticsfungifood and beverages021001 nanoscience & nanotechnologybiology.organism_classificationYeastethanol tolerancegenome sequencing030104 developmental biologyS. uvarumwine fermentationartificial hybridRNA-seqPloidy0210 nano-technologyBiotechnologyFrontiers in Bioengineering and Biotechnology
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Aneuploidy and Ethanol Tolerance in

2018

Response to environmental stresses is a key factor for microbial organism growth. One of the major stresses for yeasts in fermentative environments is ethanol. Saccharomyces cerevisiae is the most tolerant species in its genus, but intraspecific ethanol-tolerance variation exists. Although, much effort has been done in the last years to discover evolutionary paths to improve ethanol tolerance, this phenotype is still hardly understood. Here, we selected five strains with different ethanol tolerances, and used comparative genomics to determine the main factors that can explain these phenotypic differences. Surprisingly, the main genomic feature, shared only by the highest ethanol-tolerant st…

Geneticschromosome IIIwine yeastsSaccharomyces cerevisiaeaneuploidycomparative genomicsethanol toleranceOriginal ResearchFrontiers in genetics
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Susceptibility and resistance to ethanol in Saccharomyces strains isolated from wild and fermentative environments

2010

11 pages, 3 figures, 3 tables.-- Article first published online: 8 SEP 2010

Gompertz functionWineBioengineeringEthanol toleranceBiologyApplied Microbiology and BiotechnologyBiochemistrySaccharomycesParadoxusSaccharomyceschemistry.chemical_compoundMinimum inhibitory concentrationDrug Resistance FungalBotanyEnvironmental MicrobiologyGeneticsFood scienceAdaptationStatistical modellingEthanolEthanolbiology.organism_classificationYeastOleic acidchemistryFermentationFermentationBiotechnologyYeast
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Differential Contribution of the Parental Genomes to a

2019

In European regions of cold climate, S. uvarum can replace S. cerevisiae in wine fermentations performed at low temperatures. S. uvarum is a cryotolerant yeast that produces more glycerol, less acetic acid and exhibits a better aroma profile. However, this species exhibits a poor ethanol tolerance compared with S. cerevisiae. In the present study, we obtained by rare mating (non-GMO strategy), and a subsequent sporulation, an interspecific S. cerevisiae × S. uvarum spore-derivative hybrid that improves or maintains a combination of parental traits of interest for the wine industry, such as good fermentation performance, increased ethanol tolerance, and high glycerol and aroma productions. G…

genome sequencingS. uvarumwine fermentationartificial hybridfungifood and beveragesBioengineering and BiotechnologySaccharomyces cerevisiaeRNA-seqethanol toleranceOriginal ResearchFrontiers in bioengineering and biotechnology
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