In this article, we aim to find an explanation for the surprisingly thin line, with regard to temperature, between cell growth, growth arrest and ultimately loss of cell viability. To this end, we used an integrative approach including both experimental and modelling work. We measured the shortand long-term effects of increases in growth temperature from 28 degrees C to 37, 39, 41, 42 or 43 degrees C on the central metabolism of Saccharomyces cerevisiae. Based on the experimental data, we developed a kinetic mathematical model that describes the metabolic and energetic changes in growing bakers' yeast when exposed to a specific temperature upshift. The model includes the temperature dependence of core energy-conserving pathways, trehalose s...
Yeasts have been widely used in the industry as a way to convert biomass into useful materials thro...
Background: Thermotolerance is a highly desirable trait of microbial cell factories and has been the...
<div><p>The article demonstrates that computational modeling has the capacity to convert metabolic s...
In this article, we aim to find an explanation for the surprisingly thin line, with regard to temper...
In this article, we aim to find an explanation for the surprisingly thin line, with regard to temper...
Background Temperature strongly affects microbial growth, and many microorganisms have to deal with ...
Temperature is an environmental parameter that greatly affects the growth of microorganisms, due to ...
Canonized view on temperature effects on growth rate of microorganisms is based on assumption of pro...
A major challenge in systems biology lies in the integration of processes occurring at different lev...
A major challenge in systems biology lies in the integration of processes occurring at different lev...
Exposed to changes in their environment, microorganisms will adapt their phenotype, including metabo...
A phenotypic screening of 12 industrial yeast strains and the well-studied laboratory strain CEN.PK1...
Microbial metabolism is strongly dependent on the environmental conditions. While these can be well ...
Open questions are whether life can be enabled in uninhabitable environments, and whether there is a...
Elucidation of temperature tolerance mechanisms in yeast is essential for enhancing cellular robustn...
Yeasts have been widely used in the industry as a way to convert biomass into useful materials thro...
Background: Thermotolerance is a highly desirable trait of microbial cell factories and has been the...
<div><p>The article demonstrates that computational modeling has the capacity to convert metabolic s...
In this article, we aim to find an explanation for the surprisingly thin line, with regard to temper...
In this article, we aim to find an explanation for the surprisingly thin line, with regard to temper...
Background Temperature strongly affects microbial growth, and many microorganisms have to deal with ...
Temperature is an environmental parameter that greatly affects the growth of microorganisms, due to ...
Canonized view on temperature effects on growth rate of microorganisms is based on assumption of pro...
A major challenge in systems biology lies in the integration of processes occurring at different lev...
A major challenge in systems biology lies in the integration of processes occurring at different lev...
Exposed to changes in their environment, microorganisms will adapt their phenotype, including metabo...
A phenotypic screening of 12 industrial yeast strains and the well-studied laboratory strain CEN.PK1...
Microbial metabolism is strongly dependent on the environmental conditions. While these can be well ...
Open questions are whether life can be enabled in uninhabitable environments, and whether there is a...
Elucidation of temperature tolerance mechanisms in yeast is essential for enhancing cellular robustn...
Yeasts have been widely used in the industry as a way to convert biomass into useful materials thro...
Background: Thermotolerance is a highly desirable trait of microbial cell factories and has been the...
<div><p>The article demonstrates that computational modeling has the capacity to convert metabolic s...