Explore how genome-wide analysis of redox reactions is revolutionizing metabolic engineering for D-lactate production in E. coli through systematic gene knockout studies.
Discover how scientists are reprogramming yeast's cellular machinery to produce valuable aromatic compounds like trans-cinnamic acid and hydrocinnamyl alcohol.
Explore how scientists are engineering microorganisms for consolidated bioprocessing to create sustainable manufacturing solutions through synthetic biology and metabolic engineering.
How scientists are reprogramming bacteria to turn agricultural leftovers into biodegradable plastics, offering a glimmer of hope for our polluted planet.
Discover how synthetic biology and metabolic engineering are transforming yeast into powerful cell factories for sustainable fuel and chemical production.
Exploring the capabilities and limitations of Bayesian Metabolic Control Analysis in understanding and engineering cellular metabolism.
Discover how genetic engineering and evolutionary adaptation transformed baker's yeast into an efficient xylose-consuming microbe for biofuel production.
Exploring how bacterial small RNAs are transforming metabolic engineering with their precise gene regulation capabilities.
Discover how metabolic engineering of Corynebacterium glutamicum is revolutionizing L-cysteine production, replacing unethical hair hydrolysis with sustainable fermentation.
How scientists engineered Sphingobium chlorophenolicum to degrade the persistent pollutant hexachlorobenzene (HCB) through metabolic engineering.