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Transforming Lactococcus lactis into a microbial cell factory
Kia Vest Petersen
Research output
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Book/Report
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Ph.D. thesis
3
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Dive into the research topics of 'Transforming Lactococcus lactis into a microbial cell factory'. Together they form a unique fingerprint.
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Agricultural and Biological Sciences
Arabinose
4%
Arginine
28%
Arginine Deiminase
9%
Biomass
9%
Cells
100%
Chromosomes
4%
Codon
4%
Counters
4%
DNA
4%
Evolution
4%
Fermentation
4%
Fossil Fuel
9%
Genes
33%
Genetic Engineering
4%
Lactococcus Lactis
100%
Metabolism
9%
Mutants
4%
Mutation
4%
Organisms
19%
Parents
14%
Phosphoketolase
28%
Sequencing
4%
Strains
52%
Sugars
4%
Symporter
4%
Technology
4%
Transaldolase
14%
Xylose
100%
Biochemistry, Genetics and Molecular Biology
Aptitude
4%
Arabinose
4%
Arginine
28%
Arginine Deiminase
9%
Bacillus subtilis
4%
Bacteriophage
4%
Biomass
9%
Catabolism
4%
Chromosome
4%
Codon
4%
Contrast
9%
Cotransporter
4%
DNA
4%
Electric Potential
4%
Evolutionary Adaptation
4%
Experiment
4%
Fermentation
4%
Fossil
9%
Genetic Engineering
4%
Growth
23%
Growth Rate
14%
Lactococcus Lactis
100%
Metabolic Pathway
9%
Motivation
4%
Mutant
4%
Mutation
4%
Nested Gene
33%
Organisms
19%
Pentose Phosphate Pathway
14%
Phosphate
4%
Plant
4%
Plasmid
9%
Regulatory Mechanism
4%
Sequencing
4%
Time
9%
Transaldolase
14%
Transformation Efficiency
4%
Xylose
100%
Chemistry
% Metabolized
9%
Acetate
14%
Acid
4%
Arabinose
4%
Arginine
38%
Atom
14%
Bioconversion
4%
Biofuel
9%
Biomass
9%
Chemical Reaction Product
38%
Chemical Transformation
4%
Concentration
14%
D-Xylose
4%
Deoxyribonucleic Acid
4%
Drop
4%
Engineering Process
4%
Ethanol
14%
Fermentation
4%
Formate
14%
Fossil Fuel
9%
Industry
4%
Lactate
14%
Marker
4%
Mutation
4%
Optimization
4%
Pentose
4%
Pentose Phosphate
14%
Pharmacological Metabolism
9%
Phase Composition
19%
Phosphate
4%
Potential
4%
Rate
14%
Reaction Yield
9%
Strain
52%
Time
9%
Xylose
95%