See how succinylated plant proteins dissolved in polyurethane replicate natural leather's mecha
Reducing Slmyc2 activity alters tomato glandular hairs and terpene emission so predatory mites can establish and control whiteflies and thrips.
A WOP1 mutant enables seedless watermelon fruit set without pollination, removing pollenizer plants to raise yield and simplify harvest.
CRISPR-Cas9 mutation of the rice GMS2 gene creates stable male sterility without cytoplasmic or photo-thermo-sensitive breeding limits.
Chemically inducible RKD2 or RKD4 delivery boosts transient plant genome editing and regeneration without stable foreign DNA integration.
Recombinant DNA constructs and sterile genes enable targeted male and female sterility control for hybrid seed production in crops.
Silencing the PagPB gene improves nitrogen uptake and utilization in poplar roots, boosting biomass and nitrate reductase activity.
By reducing or altering GSL5 activity, crucifer breeding gains broad-spectrum clubroot resistance with shorter breeding cycles.
Targeted cis-regulatory promoter editing shifts crop flowering time without broad transcription factor side effects on yield and hormones.
Targeting the GRMZM2G083504 gene increases maize root cortical aerenchyma to improve abiotic stress tolerance with lower carbon costs.
Targeting the TaCaM-3A negative regulator with CRISPR or RNA interference improves wheat sprouting resistance while supporting grain size and yield.
Overexpressing AAP and LHT transporters boosts amino acid flow into potato tubers, raising essential amino acid and protein content.
ALA-induced MdPHY7 expression reveals a control point for apple anthocyanin buildup, improving fruit coloring through gene regulation.
Targeted alpha gliadin amino acid substitutions reduce DQ2/DQ8 binding and celiac T-cell activation while preserving gluten function.
Morphogenic sequences boost sugarcane transformation and genome editing while reducing genotype-dependent recalcitrance in elite varieties.
A mutant Cullin1 gene creates shorter internodes and smaller leaves in watermelon, enabling denser planting with less pruning and better cultivation efficiency.
Linked herbicide resistance, gene silencing, and anthocyanin markers enable 100% sterile sporophyte lines with faster, lower-cost purity screening.
Marker-assisted selection around Zm00001d029550 and SNP_75791466 helps raise maize kernel oil content with faster, more precise breeding.