How synthetic biologists are using modular genetic devices and enzymes to break down lignocellulosic biomass for sustainable energy and chemicals.
How pathway engineering and molecular tinkering turned E. coli into a sustainable biocatalyst capable of near-perfect phenylpyruvic acid production
Discover how Komagataeibacter xylinus DSM 2325 produces bacterial cellulose nanofibers through genomic and metabolic analysis
Explore how metabolic engineering is transforming vitamin production through microbial cell factories, with breakthroughs in vitamin A engineering and sustainable manufacturing.
Exploring how genomic location affects gene expression in microbes and its implications for biotechnology
Discover how chromosome-scale genome sequencing reveals the evolutionary secrets behind indigo biosynthesis in Strobilanthes cusia, the legendary blue dye plant.
How metabolic engineers reprogrammed Gluconobacter oxydans to produce 2-KLG in one step, revolutionizing vitamin C production
Exploring how cross-pollination of ideas between scientific disciplines is driving revolutionary breakthroughs in agriculture, robotics, and computational biology.
Exploring how bovine collagen type I is transforming urinary tract repair through tissue engineering, with breakthrough results in minipig models.
Exploring the revolutionary fusion of protein engineering and artistic design through protein calligraphy, the new frontier of molecular innovation.