A major challenge for the production of ethanol from biomass-derived feedstocks is to develop yeasts that can sustain growth under the variety of inhibitory conditions present in the production process, e.g., high osmolality, high ethanol titers, and/or elevated temperatures (>40 degrees C). Using adaptive laboratory evolution, we previously isolated seven Saccharomyces cerevisiae strains with improved growth at 40 degrees C. Here, we show that genetic adaptations to high temperature caused a growth trade-off at ancestral temperatures, reduced cellular functions, and improved tolerance of other stresses. Thermotolerant yeast strains showed horizontal displacement of their thermal reaction norms to higher temperatures. Hence, their optimal a...
Elucidation of temperature tolerance mechanisms in yeast is essential for enhancing cellular robustn...
Background: Thermotolerance is a highly desirable trait of microbial cell factories and has been the...
Elucidation of temperature tolerance mechanisms in yeast is essential for enhancing cellular robustn...
ABSTRACT A major challenge for the production of ethanol from biomass-derived feedstocks is to devel...
A major challenge for the production of ethanol from biomass-derived feedstocks is to develop yeasts...
Exposure to long-term environmental changes across >100s of generations results in adapted phenotype...
Many traits of industrial and basic biological interest arose long ago, and manifest now as fixed di...
The use of thermotolerant yeast strains is an important attribute for a cost-effective high temperat...
The use of thermotolerant yeast strains is an important attribute for a cost-effective high temperat...
Some of the most unique and compelling survival strategies in the natural world are fixed in isolate...
Ethanol production for use as a biofuel is mainly achieved through simultaneous saccharification and...
Ethanol production for use as a biofuel is mainly achieved through simultaneous saccharification and...
The present work was aimed at developing industrial S. cerevisiae strains with improved tolerance to...
It is important to understand the basis of thermotolerance in yeasts to broaden their application in...
A phenotypic screening of 12 industrial yeast strains and the well-studied laboratory strain CEN.PK1...
Elucidation of temperature tolerance mechanisms in yeast is essential for enhancing cellular robustn...
Background: Thermotolerance is a highly desirable trait of microbial cell factories and has been the...
Elucidation of temperature tolerance mechanisms in yeast is essential for enhancing cellular robustn...
ABSTRACT A major challenge for the production of ethanol from biomass-derived feedstocks is to devel...
A major challenge for the production of ethanol from biomass-derived feedstocks is to develop yeasts...
Exposure to long-term environmental changes across >100s of generations results in adapted phenotype...
Many traits of industrial and basic biological interest arose long ago, and manifest now as fixed di...
The use of thermotolerant yeast strains is an important attribute for a cost-effective high temperat...
The use of thermotolerant yeast strains is an important attribute for a cost-effective high temperat...
Some of the most unique and compelling survival strategies in the natural world are fixed in isolate...
Ethanol production for use as a biofuel is mainly achieved through simultaneous saccharification and...
Ethanol production for use as a biofuel is mainly achieved through simultaneous saccharification and...
The present work was aimed at developing industrial S. cerevisiae strains with improved tolerance to...
It is important to understand the basis of thermotolerance in yeasts to broaden their application in...
A phenotypic screening of 12 industrial yeast strains and the well-studied laboratory strain CEN.PK1...
Elucidation of temperature tolerance mechanisms in yeast is essential for enhancing cellular robustn...
Background: Thermotolerance is a highly desirable trait of microbial cell factories and has been the...
Elucidation of temperature tolerance mechanisms in yeast is essential for enhancing cellular robustn...