Beta-glucosidase enzymes hydrolyze cellobiosan into levoglucosan and glucose to enable biological upgrading of pyrolysis oils.
Transient CRISPR delivery into plant meristematic cells enables precise genome modification without chromosomal integration.
Engineered polynucleotides and polypeptides enable alkaloid production in host cells, replacing low-yield extraction with cost-effective biosynthesis.
Native enzyme autofermentation cleaves high-molecular compounds in honey, resolving low bioavailability without adding external catalysts.
RNA-guided nucleases introduce site-specific breaks in plant genomes, eliminating unwanted genetic variation from extensive crossing.
Targeted amino acid substitutions resolve the contradiction between enzyme stability and productivity, maintaining residual activity at elevated temperatures.
A Ser172Ala porcine trypsin variant cleaves pre-pro-insulin at arginine residues to produce insulin precursors.
The CLJ01 aromatic rice cultivar achieves 30% higher yields than conventional lines by resisting red rice contamination via imidazolinone herbicides.
AUSlofty rose shrub produces profuse apricot blooms with strong tea fragrance through selective breeding and asexual propagation.