Industrial yeast strains of economic importance used in winemaking and beer production are genomically diverse and subjected to harsh environmental conditions during fermentation. In the present study, we investigated wine yeast adaptation to chronic mild alcohol stress when cells were cultured for 100 generations in the presence of non-cytotoxic ethanol concentration. Ethanol-induced reactive oxygen species (ROS) and superoxide signals promoted growth rate during passages that was accompanied by increased expression of sirtuin proteins, Sir1, Sir2 and Sir3, and DNA-binding transcription regulator Rap1. Genome-wide array-CGH analysis revealed that yeast genome was shaped during passages. The gains of chromosomes I, III and VI and significan...
Wine fermentation presents a unique environment in which strains of the budding yeast Saccharomyces ...
<div><p>This work was designed to identify yeast cellular functions specifically affected by the str...
Saccharomyces spp. are widely used for ethanol production; however, fermentation productivity is neg...
Response to environmental stresses is a key factor for microbial organism growth. One of the major s...
Industrial yeast performance is often compromised during alcoholic fermentations due to bi-product i...
Tolerance to high levels of ethanol is an ecologically and industrially relevant phenotype of microb...
Tolerance to high levels of ethanol is an ecologically and industrially relevant phenotype of microb...
Abstract Background Yeast viability and vitality are essential for different industrial processes wh...
Saccharomyces cerevisiae is traditionally used for alcoholic beverage and bioethanol production; how...
Saccharomyces cerevisiae is traditionally used for alcoholic beverage and bioethanol production; how...
Wine yeasts are subjected to stress conditions that change continuously during a dynamic process suc...
During industrial processes, yeasts are exposed to harsh conditions, which eventually lead to adapta...
One of the major yeast stressors during fermentation is ethanol accumulation. Ethanol stress is asso...
This work was designed to identify yeast cellular functions specifically affected by the stress fact...
The nucleolus is considered to be a stress sensor and rDNA-based regulation of cellular senescence a...
Wine fermentation presents a unique environment in which strains of the budding yeast Saccharomyces ...
<div><p>This work was designed to identify yeast cellular functions specifically affected by the str...
Saccharomyces spp. are widely used for ethanol production; however, fermentation productivity is neg...
Response to environmental stresses is a key factor for microbial organism growth. One of the major s...
Industrial yeast performance is often compromised during alcoholic fermentations due to bi-product i...
Tolerance to high levels of ethanol is an ecologically and industrially relevant phenotype of microb...
Tolerance to high levels of ethanol is an ecologically and industrially relevant phenotype of microb...
Abstract Background Yeast viability and vitality are essential for different industrial processes wh...
Saccharomyces cerevisiae is traditionally used for alcoholic beverage and bioethanol production; how...
Saccharomyces cerevisiae is traditionally used for alcoholic beverage and bioethanol production; how...
Wine yeasts are subjected to stress conditions that change continuously during a dynamic process suc...
During industrial processes, yeasts are exposed to harsh conditions, which eventually lead to adapta...
One of the major yeast stressors during fermentation is ethanol accumulation. Ethanol stress is asso...
This work was designed to identify yeast cellular functions specifically affected by the stress fact...
The nucleolus is considered to be a stress sensor and rDNA-based regulation of cellular senescence a...
Wine fermentation presents a unique environment in which strains of the budding yeast Saccharomyces ...
<div><p>This work was designed to identify yeast cellular functions specifically affected by the str...
Saccharomyces spp. are widely used for ethanol production; however, fermentation productivity is neg...