Abstract Background Pyruvate-decarboxylase negative (Pdc-) strains of Saccharomyces cerevisiae combine the robustness and high glycolytic capacity of this yeast with the absence of alcoholic fermentation. This makes Pdc-S. cerevisiae an interesting platform for efficient conversion of glucose towards pyruvate-derived products without formation of ethanol as a by-product. However, Pdc- strains cannot grow on high glucose concentrations and require C2-compounds (ethanol or acetate) for growth under conditions with low glucose concentrations, which hitherto has limited application in industry. Results Genetic analysis of a Pdc- strain previously evolved to overcome these deficiencies revealed a 225bp in-frame internal deletion in MTH1, encodin...
As a result of ancestral whole-genome and small-scale duplication events, the genomes of Saccharomyc...
Dicarboxylic acids are important bio-based building blocks, and Saccharomyces cerevisiae is postulat...
As a result of ancestral whole-genome and small-scale duplication events, the genomes of Saccharomyc...
Background Pyruvate-decarboxylase negative (Pdc-) strains of Saccharomyces cerevisiae combine the ro...
Background Pyruvate-decarboxylase negative (Pdc-) strains of Saccharomyces cerevisiae combine the ro...
Background: A Saccharomyces cerevisiae strain carrying deletions in all three pyruvate decarboxylase...
A Saccharomyces cerevisiae strain carrying deletions in all three pyruvate decarboxylase genes (also...
An internal deletion in MTH1 enables growth on glucose of pyruvate-decarboxylase negative, romyces c...
Abstract Background The yeast Saccharomyces cerevisiae is a promising host cell for producing a wide...
Saccharomyces cerevisiae (S. cerevisiae) is the yeast cell factory of choice for the production of m...
Malic acid is a potential biomass-derivable "building block" for chemical synthesis. Since wild-type...
Malic acid is a potential biomass-derivable "building block" for chemical synthesis. Since wild-type...
Malic acid is a potential biomass-derivable "building block" for chemical synthesis. Since wild-type...
Malic acid is a potential biomass-derivable "building block" for chemical synthesis. Since wild-type...
Malic acid is a potential biomass-derivable "building block" for chemical synthesis. Since wild-type...
As a result of ancestral whole-genome and small-scale duplication events, the genomes of Saccharomyc...
Dicarboxylic acids are important bio-based building blocks, and Saccharomyces cerevisiae is postulat...
As a result of ancestral whole-genome and small-scale duplication events, the genomes of Saccharomyc...
Background Pyruvate-decarboxylase negative (Pdc-) strains of Saccharomyces cerevisiae combine the ro...
Background Pyruvate-decarboxylase negative (Pdc-) strains of Saccharomyces cerevisiae combine the ro...
Background: A Saccharomyces cerevisiae strain carrying deletions in all three pyruvate decarboxylase...
A Saccharomyces cerevisiae strain carrying deletions in all three pyruvate decarboxylase genes (also...
An internal deletion in MTH1 enables growth on glucose of pyruvate-decarboxylase negative, romyces c...
Abstract Background The yeast Saccharomyces cerevisiae is a promising host cell for producing a wide...
Saccharomyces cerevisiae (S. cerevisiae) is the yeast cell factory of choice for the production of m...
Malic acid is a potential biomass-derivable "building block" for chemical synthesis. Since wild-type...
Malic acid is a potential biomass-derivable "building block" for chemical synthesis. Since wild-type...
Malic acid is a potential biomass-derivable "building block" for chemical synthesis. Since wild-type...
Malic acid is a potential biomass-derivable "building block" for chemical synthesis. Since wild-type...
Malic acid is a potential biomass-derivable "building block" for chemical synthesis. Since wild-type...
As a result of ancestral whole-genome and small-scale duplication events, the genomes of Saccharomyc...
Dicarboxylic acids are important bio-based building blocks, and Saccharomyces cerevisiae is postulat...
As a result of ancestral whole-genome and small-scale duplication events, the genomes of Saccharomyc...