Discover how scientists are engineering Acinetobacter baylyi ADP1 bacteria to convert agricultural waste into valuable wax esters through metabolic engineering.
Explore how metabolic engineering transforms microorganisms into microscopic factories for sustainable biofuels, pharmaceuticals, and materials through pathway optimization and gene discovery.
Explore how metabolic engineering transforms bacteria into sustainable factories for oleochemical production, replacing petroleum and palm oil with microbial solutions.
Discover how metabolic engineering is revolutionizing the production of essential medicines from plants, addressing global drug shortages through innovative biotechnology.
Explore how metabolic engineering transforms lactic acid bacteria into efficient cell factories for producing valuable chemicals, medicines, and sustainable materials.
Learn how metabolic engineering of reducing equivalents in E. coli enables sustainable biochemical production through strategic electron flow management.
Discover how scientists use 13C-NMR, Mass Spectrometry, and Metabolic Flux Analysis to engineer cells for biotechnology applications.
How scientists are programming living cells to fight disease and fuel the future through metabolic engineering, synthetic biology, and systems biology.
Discover how scientists genetically rewire E. coli bacteria to overproduce threonine, a crucial amino acid for animal feed and sustainable production.
Explore how metabolic engineering of Shewanella oneidensis is revolutionizing microbial fuel cell technology for sustainable energy production.