Explore how metabolic engineering is revolutionizing flavonoid production, unlocking nature's chemical treasures for medicine, nutrition, and sustainable manufacturing.
Discover how metabolic engineering is revolutionizing paclitaxel production, turning tobacco plants into sustainable factories for this essential cancer drug.
Explore how systems biology and computational modeling are transforming metabolic engineering, enabling predictive design of microbial cell factories for sustainable production.
Explore how large-scale data approaches are transforming microbial cell factories into efficient producers of medicines, fuels, and materials through predictive engineering and AI.
Explore how RetroPath2.0 is transforming synthetic biology through automated retrosynthesis workflows for metabolic engineering
Discover how scientists are using viral proteins and genetic engineering to reprogram plant lipid metabolism for sustainable fuel production and medical applications.
Discover how scientists are engineering bacteria to convert plant waste into biodegradable plastics, creating a sustainable alternative to petroleum-based materials.
Discover how scientists are engineering microbes to produce biodegradable polymers as a sustainable alternative to petroleum-based plastics.
Discover how scientists are reprogramming baker's yeast to sustainably produce valuable aromatic compounds like cinnamon, transforming sustainable manufacturing.
Discover how systems metabolic engineering is transforming microorganisms into factories for sustainable bio-nylon production, reducing reliance on petrochemicals.