Abstract Background Stress-tolerant yeasts are highly desirable for cost-effective bioprocessing. Several strategies have been documented to develop robust yeasts, such as genetic and metabolic engineering, artificial selection, and natural selection strategies, among others. However, the significant drawbacks of such techniques have motivated the exploration of naturally occurring stress-tolerant yeasts. We previously explored the biodiversity of non-conventional dung beetle-associated yeasts from extremophilic and pristine environments in Botswana (Nwaefuna AE et.al., Yeast, 2023). Here, we assessed their tolerance to industrially relevant stressors individually, such as elevated concentrations of osmolytes, organic acids, ethanol, and ox...
BACKGROUND: During industrial fermentation of lignocellulose residues to produce bioethanol, microor...
During active dry yeast (ADY) production process, cells are exposed to multiple stresses, such as th...
Industrial yeasts face many stress conditions during their biotechnological use for food production....
Background Stress-tolerant yeasts are highly desirable for cost-efective bioprocessing. Several stra...
Abstract Background Non-conventional yeasts present a huge, yet barely exploited, resource of yeast ...
BACKGROUND: Non-conventional yeasts present a huge, yet barely exploited, resource of yeast biodiver...
<div><p>The budding yeast <i>Saccharomyces cerevisiae</i> is a platform organism for bioethanol prod...
Yeast-insect interactions are increasingly becoming an attractive source of discovery for previously...
Saccharomyces cerevisiae is the organism of choice for many food and beverage fermentations because ...
Saccharomyces cerevisiae has been used for millennia in the production of food and beverages and is ...
Implementation of very high gravity (VHG) fermentation technology in second generation bioethanol pr...
Stress-tolerant fungi that can thrive under various environmental extremes are highly desirable for ...
Second generation bioethanol production using lignocellulosic agricultural residues like wheat and r...
Sixty six indigenous Saccharomyces cerevisiae strains were evaluated in stressful conditions (temper...
Stress-tolerant fungi that can thrive under various environmental extremes are highly desirable for ...
BACKGROUND: During industrial fermentation of lignocellulose residues to produce bioethanol, microor...
During active dry yeast (ADY) production process, cells are exposed to multiple stresses, such as th...
Industrial yeasts face many stress conditions during their biotechnological use for food production....
Background Stress-tolerant yeasts are highly desirable for cost-efective bioprocessing. Several stra...
Abstract Background Non-conventional yeasts present a huge, yet barely exploited, resource of yeast ...
BACKGROUND: Non-conventional yeasts present a huge, yet barely exploited, resource of yeast biodiver...
<div><p>The budding yeast <i>Saccharomyces cerevisiae</i> is a platform organism for bioethanol prod...
Yeast-insect interactions are increasingly becoming an attractive source of discovery for previously...
Saccharomyces cerevisiae is the organism of choice for many food and beverage fermentations because ...
Saccharomyces cerevisiae has been used for millennia in the production of food and beverages and is ...
Implementation of very high gravity (VHG) fermentation technology in second generation bioethanol pr...
Stress-tolerant fungi that can thrive under various environmental extremes are highly desirable for ...
Second generation bioethanol production using lignocellulosic agricultural residues like wheat and r...
Sixty six indigenous Saccharomyces cerevisiae strains were evaluated in stressful conditions (temper...
Stress-tolerant fungi that can thrive under various environmental extremes are highly desirable for ...
BACKGROUND: During industrial fermentation of lignocellulose residues to produce bioethanol, microor...
During active dry yeast (ADY) production process, cells are exposed to multiple stresses, such as th...
Industrial yeasts face many stress conditions during their biotechnological use for food production....