A recent effort to improve malic acid production by Saccharomyces cerevisiae by means of metabolic engineering resulted in a strain that produced up to 59 g liter1 of malate at a yield of 0.42 mol (mol glucose)1 in calcium carbonate-buffered shake flask cultures. With shake flasks, process parameters that are important for scaling up this process cannot be controlled independently. In this study, growth and product formation by the engineered strain were studied in bioreactors in order to separately analyze the effects of pH, calcium, and carbon dioxide and oxygen availability. A near-neutral pH, which in shake flasks was achieved by adding CaCO3, was required for efficient C4 dicarboxylic acid production. Increased calcium concentrations, ...
White biotechnologies have been developing quickly during the last decades, aiming at replacing chem...
Background: The microbial production of succinic acid (SA) from renewable carbon sources via the rev...
White biotechnologies have been developing quickly during the last decades, aiming at replacing chem...
A recent effort to improve malic acid production by Saccharomyces cerevisiae by means of metabolic e...
A recent effort to improve malic acid production by Saccharomyces cerevisiae by means of metabolic e...
A recent effort to improve malic acid production by Saccharomyces cerevisiae by means of metabolic e...
A recent effort to improve malic acid production by Saccharomyces cerevisiae by means of metabolic e...
A recent effort to improve malic acid production by Saccharomyces cerevisiae by means of metabolic e...
Biotechnological production of chemicals from renewable feedstocks offers a sustainable alternative ...
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...
Biotechnological production of chemicals from renewable feedstocks offers a sustainable alternative ...
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...
White biotechnologies have been developing quickly during the last decades, aiming at replacing chem...
Background: The microbial production of succinic acid (SA) from renewable carbon sources via the rev...
White biotechnologies have been developing quickly during the last decades, aiming at replacing chem...
A recent effort to improve malic acid production by Saccharomyces cerevisiae by means of metabolic e...
A recent effort to improve malic acid production by Saccharomyces cerevisiae by means of metabolic e...
A recent effort to improve malic acid production by Saccharomyces cerevisiae by means of metabolic e...
A recent effort to improve malic acid production by Saccharomyces cerevisiae by means of metabolic e...
A recent effort to improve malic acid production by Saccharomyces cerevisiae by means of metabolic e...
Biotechnological production of chemicals from renewable feedstocks offers a sustainable alternative ...
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...
Biotechnological production of chemicals from renewable feedstocks offers a sustainable alternative ...
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...
White biotechnologies have been developing quickly during the last decades, aiming at replacing chem...
Background: The microbial production of succinic acid (SA) from renewable carbon sources via the rev...
White biotechnologies have been developing quickly during the last decades, aiming at replacing chem...