Acetic acid stress represents a frequent challenge to counteract for yeast cells under several environmental conditions and industrial bioprocesses. The molecular mechanisms underlying its response have been mostly elucidated in the budding yeast Saccharomyces cerevisiae, where acetic acid can be either a physiological substrate or a stressor. This review will focus on acetic acid stress and its response in the context of cellular transport, pH homeostasis, metabolism and stress-signalling pathways. This information has been integrated with the results obtained by multi-omics, synthetic biology and metabolic engineering approaches aimed to identify major cellular players involved in acetic acid tolerance. In the production of biofuels and r...
BackgroundYeast strains that are tolerant to multiple environmental stresses are highly desired for ...
Our focus will be on the complex trait of acetic acid tolerance in yeast. The molecular basis of ace...
Yeast cells need to respond to a variety of stresses found in such different conditions as gastroint...
Acetic acid stress represents a frequent challenge to counteract for yeast cells under several envir...
Acetic acid stress represents a frequent challenge to counteract for yeast cells under several envir...
Beyond its classical biotechnological applications such as food and beverage production or as a cell...
Beyond its classical biotechnological applications such as food and beverage production or as a cell...
Biomass derived products will play a significant role in the development towards a sustainable socie...
Graduation date: 2014Access restricted to the OSU Community, at author's request, from June 16, 2014...
Biomass derived products will play a significant role in the development towards a sustainable socie...
BACKGROUND: Acetic acid tolerance is crucial for the development of robust cell factories for conver...
CRISPR interference (CRISPRi) is a powerful tool to study cellular physiology under different growth...
Acetic acid has long been considered a molecule of great interest in the yeast research field. It is...
<p>Background: Acetic acid, released during hydrolysis of lignocellulosic feedstocks for second gene...
AbstractBackgroundYeast strains that are tolerant to multiple environmental stresses are highly desi...
BackgroundYeast strains that are tolerant to multiple environmental stresses are highly desired for ...
Our focus will be on the complex trait of acetic acid tolerance in yeast. The molecular basis of ace...
Yeast cells need to respond to a variety of stresses found in such different conditions as gastroint...
Acetic acid stress represents a frequent challenge to counteract for yeast cells under several envir...
Acetic acid stress represents a frequent challenge to counteract for yeast cells under several envir...
Beyond its classical biotechnological applications such as food and beverage production or as a cell...
Beyond its classical biotechnological applications such as food and beverage production or as a cell...
Biomass derived products will play a significant role in the development towards a sustainable socie...
Graduation date: 2014Access restricted to the OSU Community, at author's request, from June 16, 2014...
Biomass derived products will play a significant role in the development towards a sustainable socie...
BACKGROUND: Acetic acid tolerance is crucial for the development of robust cell factories for conver...
CRISPR interference (CRISPRi) is a powerful tool to study cellular physiology under different growth...
Acetic acid has long been considered a molecule of great interest in the yeast research field. It is...
<p>Background: Acetic acid, released during hydrolysis of lignocellulosic feedstocks for second gene...
AbstractBackgroundYeast strains that are tolerant to multiple environmental stresses are highly desi...
BackgroundYeast strains that are tolerant to multiple environmental stresses are highly desired for ...
Our focus will be on the complex trait of acetic acid tolerance in yeast. The molecular basis of ace...
Yeast cells need to respond to a variety of stresses found in such different conditions as gastroint...