Rational and evolutionary engineering of Saccharomyces cerevisiae for production of dicarboxylic acids from lignocellulosic biomass and exploring genetic mechanisms of the yeast tolerance to the biomass hydrolysate
Journal article, 2022
Dicarboxylic acids
Next generation sequencing
Hardwood spent sulfite liquor
Xylose
Industrial yeast
Biorefineries
Adaptive evolution
Author
Vratislav Stovicek
Technical University of Denmark (DTU)
Laura Dato
River Stone Biotech ApS
Technical University of Denmark (DTU)
Henrik Almqvist
Institutionen för Kemiteknik
Marie Schöpping
Chr. Hansen
Chalmers, Biology and Biological Engineering, Industrial Biotechnology
Institutionen för Kemiteknik
Ksenia Chekina
Technical University of Denmark (DTU)
Lasse Ebdrup Pedersen
Technical University of Denmark (DTU)
Anna Koza
Chr. Hansen
Technical University of Denmark (DTU)
Diogo Figueira
Biotrend S.A.
Freddy Tjosås
Borregaard ApS
Bruno Sommer Ferreira
Biotrend S.A.
J. Forster
Technical University of Denmark (DTU)
G. Liden
Institutionen för Kemiteknik
I. Borodina
Technical University of Denmark (DTU)
Biotechnology for Biofuels and Bioproducts
27313654 (eISSN)
Vol. 15 1 22Subject Categories
Chemical Process Engineering
Microbiology
Biocatalysis and Enzyme Technology
DOI
10.1186/s13068-022-02121-1
PubMed
35219341
Related datasets
Additional file 3 of Rational and evolutionary engineering of Saccharomyces cerevisiae for production of dicarboxylic acids from lignocellulosic biomass and exploring genetic mechanisms of the yeast tolerance to the biomass hydrolysate [dataset]
DOI: 10.6084/m9.figshare.19243446