Evolutionary engineering of Saccharomyces cerevisiae for efficient aerobic xylose consumption
Journal article, 2012
xylitol dehydrogenase
pichia-stipitis
chemostat cultures
ethanol-production
cytosolic nadh
directed evolution
metabolic engineering
reductase-activity
gene-expression
Saccharomyces
xylose
transcriptional regulation
pentose-phosphate pathway
genome database
Author
Gionata Scalcinati
Chalmers, Chemical and Biological Engineering, Life Sciences
José Manuel Otero
Chalmers, Chemical and Biological Engineering, Life Sciences
J. R. H. Van Vleet
University of Wisconsin Madison
T. W. Jeffries
University of Wisconsin Madison
USDA Forest Products Laboratory
Lisbeth Olsson
Chalmers, Chemical and Biological Engineering, Industrial biotechnology
Jens B Nielsen
Chalmers, Chemical and Biological Engineering, Life Sciences
FEMS Yeast Research
1567-1356 (ISSN) 1567-1364 (eISSN)
Vol. 12 5 582-597Driving Forces
Sustainable development
Areas of Advance
Energy
Life Science Engineering (2010-2018)
Subject Categories
Chemical Engineering
DOI
10.1111/j.1567-1364.2012.00808.x