Novel antimicrobial compositions target Candidatus Liberibacter spp. to reduce citrus greening and potato zebrachip symptoms with lower environmental harm.
CO2-grown Cupriavidus necator biomass is hydrolyzed with pH, heat, and protease control to produce low-residue protein hydrolysates at scale.
Phage-resistant bacterial strains keep biocontrol fermentation viable and preserve plant disease and pest control under agrochemical exposure.
A film-forming repellent with methyl N,N dimethylanthranilate and vanillin extends arthropod deterrence while avoiding DEET-related skin and environmental harm.
Hollow glucan or yeast cell wall microparticles encapsulate highly potent active agents at high loading without trapping molecules that cut payload.
Novel imidazole compounds use targeted substituent changes to improve weed control selectivity while limiting harm to crop plants.
Novel sulfoxaflor crystal forms X and Y use adjusted diastereomer ratios to raise water solubility while maintaining formulation stability.
Combining humic substances, alga extract, and Bacillus, Azotobacter, and Rhizobium helps crops handle stress while improving soil health.
Water-soluble capsules deliver Verticillium dahliae through inoculated seeds to kill invasive Ailanthus altissima without chemical herbicides.
A polymeric dispersant keeps nanosilver evenly distributed in contact lenses, improving antibacterial durability, comfort, and moisture retention.
Combining humic substances, seaweed, spice, and beneficial microbes boosts soil biomass, stress resistance, and nutrient availability.
A synergistic imazethapyr mixture broadens post-emergent weed control, including PPOi-resistant weeds, while supporting crop compatibility.
A skin sanitizing composition uses polypeptides or natural extracts to raise antimicrobial peptides while avoiding irritation and inflammation.
A lightweight disposable aluminum cartridge replaces bulky refillable gas tanks with a pierceable sterile canister that preserves medical gas purity.
Microbial seed coatings use Bacillus and other strains to suppress fungal pathogens while improving seed viability, plant growth, and yield.
A three-herbicide sugarcane formulation improves broad-leaf and gramineous weed control while reducing resistance, usage, and cost.
Combining formula (I) with a second herbicide broadens weed and grass control at lower application rates while improving crop tolerance.
A Bacillus velezensis strain suppresses fire blight and rice blast while avoiding the soil buildup and resistance risks of chemical pesticides.
A polysaccharide-modified polymer binder keeps seed coatings film-forming and durable while avoiding microplastic generation.
Polysaccharide-assisted polymer seed coatings maintain film-forming strength while improving water solubility and preventing microplastic formation.
A squalane-based composition kills lice and eggs without harsh insecticides, reducing toxicity, resistance, and re-infestation.
Structured triazine and pyrimidine thioamide variants broaden fungal control while keeping toxicity low and selectivity high.
Non-esterified vegetable oils, PEG fatty acid esters, and phyllosilicates create pourable agricultural concentrates with stable storage and easy dilution.
A film-forming emulsion combines bactericidal agents and plant nutrients to block huanglongbing spread and restore diseased citrus trees.
Combining copper compounds with hydroxyl amino acids helps plants resist disease while lowering copper use, phytotoxicity, and environmental impact.
Genetically modified sentinel plants and image analysis detect and predict crop stress across large fields for targeted intervention.
Specific co-surfactants and cloud-point control keep agrochemical formulations single-phase, pourable, and stable from -10°C to 50°C.
Specific quinazolinones inhibit plant PARP enzymes to improve drought tolerance, supporting growth, osmotic adjustment, and ROS detoxification.
A root-colonizing Bacillus strain boosts plant growth, nutrient uptake, and stress tolerance while reducing fertilizer-linked soil acidification.
C3-C5 N-alkyl-gamma-butyrolactams cut microbial load on surfaces while avoiding peroxygen compounds, chloroacetamide, and harmful residues.
Combining herbicide A with glufosinate and optional herbicide C broadens post-emergent weed control while lowering rates and improving crop compatibility.
Combining formula (I) with partner fungicides broadens fungal control while lowering application rates, environmental impact, and crop stress.
Structured DNA polymerase IIIC inhibitors improve druggability while blocking DNA replication in resistant Gram-positive bacteria.
Controlled PMD release extends insect protection to at least 24 hours while lowering odor, irritancy, and active ingredient concentration.
A dry salt blend replaces water and polyol solvents to improve handling, solubility, and antimicrobial use in cosmetic formulations.
A lemon juice, phenoxyethanol, and surfactant blend removes chlorophyll and plant residues quickly while reducing skin stress.
Mesoionic compounds control potato invertebrate pests with a new mode of action that addresses resistance while remaining safer for pollinators.
Heterocyclyl-substituted pyridazine compounds deliver broad-spectrum fungal control with low toxicity, high selectivity, and low application rates.
Green pulsed light selectively removes the leaf wax cuticle, improving agrochemical penetration while avoiding epidermis damage.
Engineered beneficial microbes continuously express plant effector proteins, extending disease resistance and growth benefits beyond unstable liquid harpin sprays.
A thermoreversible gel made from renewable oil and a gel-forming agent coats granules to cut dust and agglomeration with biodegradable performance.
Amphiphilic quaternary ammonium nanostructures extend circulation time and speed membrane penetration for stronger antimicrobial and antiviral action.
Electrolyzed water reacted with amines forms a broad-spectrum biocide that controls microbes while lowering detectable chlorine and toxicity.
Propylene glycol solubilizes trolamine salicylate into Form I, speeding dermal absorption for rapid, longer-lasting pain relief.
Fish scale peptides made with Bacillus velezensis improve Gramineae seedling vigor while avoiding zoonoses risk and batch inconsistency.
A slow-release microbial blend denitrifies waste, oxidizes H2S, and decomposes guano to improve swiftlet house air quality and nesting conditions.
Combining phytosterols, sucrose fatty acid esters, and fungicides improves soybean fungal control while protecting harvest yield.
Combining L-glufosinate with complementary herbicides improves control of resistant Eleusine weeds while lowering dosage and crop phytotoxicity.
A multi-oil composition in carrier oil improves residual insect, bacterial, and fungal control while reducing frequent reapplication.
A glycosidic conjugate slows evaporation of volatile alcohol repellents, extending protection while reducing frequent application and irritancy.