How scientists are reprogramming Corynebacterium glutamicum to efficiently produce ethanol fuel under oxygen-deprived conditions through metabolic engineering.
Explore how genetic engineering of Clostridium acetobutylicum's butyrate kinase gene revolutionized biofuel production and challenged scientific models.
Discover how scientists are reprogramming Pichia pastoris yeast to produce sustainable isobutanol biofuel through metabolic engineering.
Discover how genetically engineered E. coli bacteria are being transformed into efficient biofuel producers through metabolic engineering and adaptive evolution.
Discover how scientists are engineering yeast to efficiently convert plant waste into biofuels by solving metabolic bottlenecks.
Discover how scientists are engineering baker's yeast to produce triacylglycerol for sustainable biofuel production through synthetic biology.
How tweaking a single chemical gear can revolutionize how we make energy by engineering Clostridium thermocellum for improved biofuel production.
Exploring how metabolic engineering transforms E. coli into a bio-butanol producer through pathway construction and promoter optimization.
Discover how a novel wild yeast from Ethiopian sugar factories could revolutionize lignocellulosic bioethanol production through natural adaptation and non-GMO solutions.
Discover how scientists are engineering yeast to produce n-butanol, a promising biofuel, through coordinated metabolic pathways.