Explore how Yarrowia lipolytica, an oleaginous yeast, is engineered to produce sustainable oils for biofuels, nutrition, and cosmetics through advanced metabolic engineering.
Discover how scientists are reprogramming baker's yeast to produce resveratrol, a promising health-promoting compound, through metabolic engineering.
Discover how multivariate modular metabolic engineering enhances β-alanine production in E. coli through systematic pathway optimization and sustainable biomanufacturing approaches.
Discover how metabolic engineering is transforming Gluconobacter oxydans, increasing biomass yield and revolutionizing industrial biotechnology.
How scientists are reprogramming Corynebacterium glutamicum to efficiently produce ethanol fuel under oxygen-deprived conditions through metabolic engineering.
Discover how scientists are reprogramming microorganisms to efficiently produce resveratrol, nature's promising health compound, through metabolic engineering.
Explore how PacC and Nuc-1 transcription factors are revolutionizing microbial metabolic engineering for sustainable bioproduction.
Discover how engineered E. coli bacteria transform lysine into δ-valerolactam, a key monomer for sustainable nylon production, through advanced metabolic engineering.
Explore how genetic engineering of Clostridium acetobutylicum's butyrate kinase gene revolutionized biofuel production and challenged scientific models.
Explore how innovative science is enhancing CoQ10 production, examining its crucial properties, and revealing its expanding applications in medicine and health.