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Journal of Biotechnology, ISSN 0168-1656, 04/2012, Volume 158, Issue 4, pp. 203 - 210
The cost of the lignocellulose-hydrolyzing enzymes used in the saccharification process of ethanol production from biomass accounts for a relatively high... 
Bioethanol | Biomass | Lignocellulose | Cell surface display | XYLANASE | ACID | FUEL ETHANOL | COFERMENTATION | HYDROLYSATE | LIQUID HOT-WATER | PRETREATMENT | BIOTECHNOLOGY & APPLIED MICROBIOLOGY | CONSTRUCTION | FERMENTATION | EXPRESSION | Aldehyde Reductase - genetics | Xylans - metabolism | D-Xylulose Reductase - genetics | Oryza - metabolism | Saccharomyces cerevisiae - genetics | Endo-1,4-beta Xylanases - genetics | Polysaccharides - genetics | Glucuronates - metabolism | D-Xylulose Reductase - metabolism | Pichia - enzymology | Xylose - genetics | Saccharomyces cerevisiae - metabolism | Pichia - metabolism | Lignin - metabolism | beta-Glucosidase - genetics | Glucuronates - genetics | Escherichia coli - metabolism | beta-Glucosidase - metabolism | Aldehyde Reductase - metabolism | Endo-1,4-beta Xylanases - metabolism | Metabolic Engineering - methods | Xylose - metabolism | Ethanol - metabolism | Phosphotransferases (Alcohol Group Acceptor) - genetics | Trichoderma - genetics | Oligosaccharides - metabolism | Saccharomyces cerevisiae Proteins - genetics | Fermentation | Phosphotransferases (Alcohol Group Acceptor) - metabolism | Polysaccharides - metabolism | Hydrolysis | Xylans - genetics | Aspergillus oryzae - genetics | Escherichia coli - genetics | Saccharomyces cerevisiae Proteins - metabolism | Saccharomyces cerevisiae - enzymology | Lignin - genetics | Aspergillus oryzae - metabolism | Oligosaccharides - genetics | Trichoderma - metabolism | Xylitol | Enzymes | Alcohol, Denatured | Alcohol | Production processes | Sugars | Production data | Rice | Alcohols | Monosaccharides
Journal Article
Microbial Cell Factories, ISSN 1475-2859, 05/2017, Volume 16, Issue 1, pp. 82 - 15
Efficient xylose utilization is one of the most important pre-requisites for developing an economic microbial conversion process of terrestrial lignocellulosic... 
Xylose | Metabolic engineering | Saccharomyces cerevisiae | PENTOSE-PHOSPHATE PATHWAY | LACTIC-ACID PRODUCTION | XYLITOL DEHYDROGENASE | PHOSPHOKETOLASE PATHWAY | PICHIA-STIPITIS | ENHANCED BIOFUEL PRODUCTION | COENZYME SPECIFICITY | BIOTECHNOLOGY & APPLIED MICROBIOLOGY | METABOLIC FLUX ANALYSIS | IMPROVES ETHANOL-PRODUCTION | LACTATE-DEHYDROGENASE GENE | Metabolic Engineering | Biotechnology | Xylose - metabolism | Ethanol - metabolism | Saccharomyces cerevisiae - genetics | Lactic Acid - metabolism | Fatty Alcohols - metabolism | D-Xylulose Reductase - metabolism | Biofuels | Fermentation | Acetyl Coenzyme A - metabolism | Saccharomyces cerevisiae - metabolism | Glucose - metabolism | Aldehyde Reductase - metabolism | Aldose-Ketose Isomerases - metabolism | Assimilation | Yeasts | Phosphorylation | Catabolite repression | Yeast | Dehydrogenases | Alternative energy | Oxidoreductase | Terrestrial environments | Pyruvic acid | Biochemistry | Biomass | Xylose reductase | Glucose | Fuels | Kinases | Dehydrogenase | Xylitol dehydrogenase | Engineering | Glucose metabolism | Microorganisms | Pathways | Metabolites | Lignocellulose | Robustness | Sugar | Productivity | Economics | Enzymes | Genetically engineered microorganisms | Ethanol | Metabolism | Gene expression | Carbon | Conversion | Chemicals | Hydrolysates | Xylose isomerase | Biodiesel fuels | Yield | Lactic acid | Bypasses | Evolution & development | Commercialization
Journal Article
Journal of Biotechnology, ISSN 0168-1656, 04/2012, Volume 158, Issue 4, pp. 184 - 191
► Cofactor-imbalance is a problem in xylose metabolism by recombinant ► NADH-preferable XR, NAD-dependent XDH and XK were overexpressed in Balanced expression... 
Xylose | NADH-preferable xylose reductase | Ethanol | Saccharomyces cerevisiae | STRAINS | XYLITOL DEHYDROGENASE | CONVERSION | PICHIA-STIPITIS | XYLULOKINASE ACTIVITY | PATHWAY | BIOTECHNOLOGY & APPLIED MICROBIOLOGY | GLUCOSE | GROWTH | FERMENTATION | IMPROVEMENT | Aldehyde Reductase - genetics | D-Xylulose Reductase - genetics | Saccharomyces cerevisiae - genetics | Saccharomyces cerevisiae Proteins - biosynthesis | D-Xylulose Reductase - metabolism | Pichia - enzymology | Xylose - genetics | Saccharomyces cerevisiae - metabolism | Pichia - metabolism | Recombination, Genetic | Aldehyde Reductase - metabolism | Genes, Fungal | NADP - metabolism | NAD - metabolism | Transaldolase - genetics | Gene Expression | Metabolic Engineering - methods | NAD - genetics | Xylose - metabolism | Aerobiosis | Ethanol - metabolism | Phosphotransferases (Alcohol Group Acceptor) - genetics | Aldehyde Oxidoreductases - genetics | Saccharomyces cerevisiae Proteins - genetics | Fermentation | Mutation - genetics | Transaldolase - metabolism | Aldehyde Oxidoreductases - metabolism | Phosphotransferases (Alcohol Group Acceptor) - metabolism | Xylitol - genetics | D-Xylulose Reductase - biosynthesis | Pichia - genetics | Saccharomyces cerevisiae Proteins - metabolism | Saccharomyces cerevisiae - enzymology | Xylitol - metabolism | NADP - genetics | Enzymes | Xylitol | Alcohol, Denatured | Alcohol | Sugars | Production data | Monosaccharides
Journal Article
Journal Article
PLoS ONE, ISSN 1932-6203, 02/2013, Volume 8, Issue 2, p. e57048
Economic bioconversion of plant cell wall hydrolysates into fuels and chemicals has been hampered mainly due to the inability of microorganisms to efficiently... 
NADP(+)-DEPENDENT XYLITOL DEHYDROGENASE | PENTOSE-PHOSPHATE PATHWAY | RECOMBINANT | MULTIDISCIPLINARY SCIENCES | LIGNOCELLULOSIC HYDROLYSATE | PICHIA-STIPITIS | REDUCTASE | IMPROVES ETHANOL-PRODUCTION | ACETIC-ACID | EXPRESSION | HEXOSE TRANSPORTERS | Xylose - metabolism | D-Xylulose Reductase - genetics | Saccharomyces cerevisiae - genetics | Acetates - metabolism | D-Xylulose Reductase - metabolism | Gene Dosage | Aldehyde Oxidoreductases - genetics | Saccharomyces cerevisiae Proteins - genetics | Fermentation | Aldehyde Oxidoreductases - metabolism | Saccharomyces cerevisiae - metabolism | Genetic Engineering | Metabolic Networks and Pathways | Gene Deletion | Saccharomyces cerevisiae Proteins - metabolism | Polymorphism, Single Nucleotide | Xylitol | Enzymes | Genomics | Physiological aspects | Genetic engineering | Glucose | Dextrose | Acetaldehyde | Xylulokinase | Phosphates | Hexose | Yeast | Toxicity | Biological evolution | Genomes | Dephosphorylation | Saccharomyces | Fuels | Accumulation | Optimization | Gene sequencing | Engineering | Microorganisms | Clonal deletion | Pentose | Xylulose | Deletion | Strains (organisms) | Carbon sources | Sugars | Nutrition | Ethanol | Cell walls | Acetaldehyde dehydrogenase | Bioconversion | Lag time | Gene expression | Metabolism | Chemicals | Hydrolysates | Xylose | Metabolic engineering | Industrial strains | Mutation | Genetic recombination | Acetic acid | Saccharomyces cerevisiae
Journal Article
Enzyme and Microbial Technology, ISSN 0141-0229, 09/2014, Volume 63, pp. 13 - 20
Journal Article
Journal Article