The processes of yeast selection for using as wine fermentation starters have revealed a great phenotypic diversity both at interspecific and intraspecific level, which is explained by a corresponding genetic variation among different yeast isolates. Thus, the mechanisms involved in promoting these genetic changes are the main engine generating yeast biodiversity. Currently, an important task to understand biodiversity, population structure and evolutionary history of wine yeasts is the study of the molecular mechanisms involved in yeast adaptation to wine fermentation, and on remodeling the genomic features of wine yeast, unconsciously selected since the advent of winemaking. Moreover, the availability of rapid and simple molecular techniq...
Published Early Online February 11, 2016.Humans have been consuming wines for more than 7000 yr . Fo...
Saccharomyces cerevisiae and related species, the main workhorses of wine fermentation, have been ex...
Combination of molecular genetic analysis (karyotyping, PCR-RFLP of MET2, the ITS1-ITS2 region and t...
The processes of yeast selection for using as wine fermentation starters have revealed a great pheno...
In this study, wild Saccharomyces cerevisiae strains, isolated from spontaneously fermenting grapes ...
[Aims]: To analyse the diversity of wild yeast in spontaneous fermentations of a white wine and to s...
Wine yeast breeding programs utilizing interspecific hybridization deliver cost-effective tools to w...
Saccharomyces cerevisiae strains frequently exhibit rather specific phenotypic features needed for a...
Numerous studies have described the yeast biota of grapes, and grape must in order to understand bet...
International audienceThe story of biotechnology of wine yeasts started a long time ago. The selecti...
For the last century, the availability of pure culture yeast has improved reproducibility in wine fe...
Traditionally, Saccharomyces cerevisiae has been associated with wine, beer and bread production, ye...
Apresentação efectuada nas "XXXI Jornadas Portuguesas de Genética", em Oeiras, Portugal, em 2004.Win...
Wine yeast have been exposed to harsh conditions for millennia, which have led to adaptive evolution...
The use of commercial S. cerevisiae wine strains as fermentation starters has been extensively gener...
Published Early Online February 11, 2016.Humans have been consuming wines for more than 7000 yr . Fo...
Saccharomyces cerevisiae and related species, the main workhorses of wine fermentation, have been ex...
Combination of molecular genetic analysis (karyotyping, PCR-RFLP of MET2, the ITS1-ITS2 region and t...
The processes of yeast selection for using as wine fermentation starters have revealed a great pheno...
In this study, wild Saccharomyces cerevisiae strains, isolated from spontaneously fermenting grapes ...
[Aims]: To analyse the diversity of wild yeast in spontaneous fermentations of a white wine and to s...
Wine yeast breeding programs utilizing interspecific hybridization deliver cost-effective tools to w...
Saccharomyces cerevisiae strains frequently exhibit rather specific phenotypic features needed for a...
Numerous studies have described the yeast biota of grapes, and grape must in order to understand bet...
International audienceThe story of biotechnology of wine yeasts started a long time ago. The selecti...
For the last century, the availability of pure culture yeast has improved reproducibility in wine fe...
Traditionally, Saccharomyces cerevisiae has been associated with wine, beer and bread production, ye...
Apresentação efectuada nas "XXXI Jornadas Portuguesas de Genética", em Oeiras, Portugal, em 2004.Win...
Wine yeast have been exposed to harsh conditions for millennia, which have led to adaptive evolution...
The use of commercial S. cerevisiae wine strains as fermentation starters has been extensively gener...
Published Early Online February 11, 2016.Humans have been consuming wines for more than 7000 yr . Fo...
Saccharomyces cerevisiae and related species, the main workhorses of wine fermentation, have been ex...
Combination of molecular genetic analysis (karyotyping, PCR-RFLP of MET2, the ITS1-ITS2 region and t...