Discover how sustainable metabolic engineering is transforming biotechnology by turning living cells into microscopic factories programmed for sustainability.
Explore how Dof transcription factors act as genetic conductors in tomatoes, coordinating carbon-nitrogen balance to enhance growth, yield, and climate resilience.
Explore how scientists are engineering microorganisms to produce plant-derived polyphenols, revolutionizing sustainable production of these health-promoting compounds.
Discover how genetic engineering is revolutionizing biologic drug production by teaching CHO cells to create precise human-like sugar tags on therapeutic proteins.
Explore how scientists are reprogramming microbes through bioconversion and metabolic engineering to create sustainable solutions for medicine, energy, and materials.
Discover how transcriptomic and metabolomic analyses revealed how polylysine synthetase influences the metabolism of Streptomyces albulus to produce natural food preservatives.
Discover how CRISPR/dCpf1 technology is revolutionizing metabolic engineering in Gluconobacter oxydans, enabling precise gene control for industrial biotechnology.
How scientists used carbon tracers to uncover the secret life of Methylobacterium extorquens AM1, a plant-loving microbe.
Discover how metabolic engineering transforms Pichia pastoris into a sustainable factory for producing ricinoleic acid, a valuable industrial hydroxy fatty acid.
Discover how scientists optimize growth conditions for Moritella marina MP-1 to produce sustainable DHA omega-3 fatty acids