International audienceEnvironmental heat stress impacts on the physiology and viability of microbial cells with concomitant implications for microbial activity and diversity. Previously, it has been demonstrated that gradual heating of Saccharomyces cerevisiae induces a degree of thermal resistance, whereas a heat shock results in a high level of cell death. Here, we show that the impact of exogenous nutrients on acquisition of thermal resistance differs between strains.Using single‐cell methods, we demonstrate the extent of heterogeneity of the heat‐stress response within populations of yeast cells and the presence of subpopulations that are reversibly damaged by heat stress. Such cells represent potential for recovery of entire population...
The heat-shock response in cells, involving increased transcription of a specific set of genes in re...
The niche of microorganisms is determined by where their populations can expand. Populations can fai...
Microorganisms evolved adaptive responses to survive stressful challenges in ever-changing environme...
International audienceEnvironmental heat stress impacts on the physiology and viability of microbial...
International audienceEnvironmental heat stress impacts on the physiology and viability of microbial...
International audienceEnvironmental heat stress impacts on the physiology and viability of microbial...
International audienceEnvironmental heat stress impacts on the physiology and viability of microbial...
International audienceEnvironmental heat stress impacts on the physiology and viability of microbial...
Environmental heat stress impacts on the physiology and viability of microbial cells with concomitan...
Environmental heat stress impacts on the physiology and viability of microbial cells with concomitan...
Surviving the heat: heterogeneity of response in Saccharomyces cerevisiae provides insight into ther...
Microorganisms evolved adaptive responses to survive stressful challenges in ever-changing environme...
International audienceWe studied the mechanisms involved in heat gradient-induced thermotolerance of...
In most organisms a mild sub-lethal stress increases the capacity for survival during a subsequent l...
The niche of microorganisms is determined by where their populations can expand. Populations can fai...
The heat-shock response in cells, involving increased transcription of a specific set of genes in re...
The niche of microorganisms is determined by where their populations can expand. Populations can fai...
Microorganisms evolved adaptive responses to survive stressful challenges in ever-changing environme...
International audienceEnvironmental heat stress impacts on the physiology and viability of microbial...
International audienceEnvironmental heat stress impacts on the physiology and viability of microbial...
International audienceEnvironmental heat stress impacts on the physiology and viability of microbial...
International audienceEnvironmental heat stress impacts on the physiology and viability of microbial...
International audienceEnvironmental heat stress impacts on the physiology and viability of microbial...
Environmental heat stress impacts on the physiology and viability of microbial cells with concomitan...
Environmental heat stress impacts on the physiology and viability of microbial cells with concomitan...
Surviving the heat: heterogeneity of response in Saccharomyces cerevisiae provides insight into ther...
Microorganisms evolved adaptive responses to survive stressful challenges in ever-changing environme...
International audienceWe studied the mechanisms involved in heat gradient-induced thermotolerance of...
In most organisms a mild sub-lethal stress increases the capacity for survival during a subsequent l...
The niche of microorganisms is determined by where their populations can expand. Populations can fai...
The heat-shock response in cells, involving increased transcription of a specific set of genes in re...
The niche of microorganisms is determined by where their populations can expand. Populations can fai...
Microorganisms evolved adaptive responses to survive stressful challenges in ever-changing environme...