Discover how genetic engineering of Saccharomyces cerevisiae creates efficient cytosolic isobutanol biosynthesis for sustainable biofuel production.
Discover how scientists are engineering specialized platform strains and pioneering new tools to transform organic waste into renewable biofuel through anaerobic bioprocessing.
Discover how metabolic engineers are transforming E. coli into microscopic factories that convert biodiesel waste into n-butanol, a superior biofuel.
Discover how scientists are engineering Clostridium thermocellum to transform plant waste into n-butanol, a superior biofuel.
Discover how marine microalgae Chlamydomonas sp. JSC4 can be optimized for biodiesel production using innovative salinity-gradient strategies and metabolic profiling.
How scientists are engineering heat-loving bacteria to produce sustainable biofuel alternatives like 1-butanol through metabolic engineering.
Discover how scientists are engineering oleaginous fungi and bacteria to produce fatty acid alkyl esters - the molecules that constitute biodiesel - through advanced fermentation processes.
Explore how metabolic engineering and iterative self-cloning are revolutionizing biofuel production from Coccomyxa microalgae for sustainable energy solutions.
Explore how computational models and in silico predictions are revolutionizing biofuel production by engineering E. coli for efficient 1-butanol synthesis.
Discover how genome-scale modeling and cofactor balancing are transforming engineered yeast into efficient biofuel producers from plant waste materials.