Resumen de: AU2024404132A1
The present invention relates to asymmetric RNA molecules, precursors thereof, and their use in gene silencing.
Resumen de: US20260215433A1
0000 A slow-release biodegradable particulate larvicide composition for controlling larvae of Culicoides biting midges and mosquitoes comprises silver nanoparticles, Bacillus thuringiensis israelensis, a juvenile-hormone-analog insect growth regulator, a chitosan-alginate matrix cross-linked with calcium chloride, and one or more larval attractants and/or carbon-dioxide-releasing components. The composition may be provided as granules or microparticles for application to saline, brackish, intermittently flooded, or other moist larval habitats, including coastal salt-marsh habitats and standing-water sites. The matrix retains the active ingredients in the treatment zone and meters release upon hydration. Also disclosed are methods of preparing the particulate composition and methods of controlling biting-midge and mosquito larvae by applying the composition to larval habitat.
Resumen de: US20260215435A1
0000 A compound microbial consortium H2 antagonistic to multiple pathogenic fungi of potato is provided, along with an application and a preparation method thereof, all pertaining to the field of biological control. The compound microbial consortium H2 is prepared by mixing Bacillus subtilis, Bacillus atrophaeus, and Bacillus wiedmannii, and has a relatively strong inhibitory effect on Alternaria solani and Alternaria alternata, which are pathogenic fungi of potato early blight; Fusarium solani, Fusarium oxysporum, and Fusarium equiseti, which are pathogenic fungi of wilt/dry rot; and Didymella glomerata, which is a pathogenic fungus of leaf/stem spot, with all the fungal inhibition 10 rates higher than 46%, and with the Alternaria alternata inhibition rate being the highest at 75.97%. H2 is also relatively good at promoting plant growth. Thus, H2 contains high-quality strains for comprehensive prevention and control of potato soil-borne diseases and has promising prospects in field application.
Resumen de: US20260217621A1
Methods for stimulating plant growth and/or promoting plant health using free enzymes or recombinant microorganisms that overexpress enzymes are provided. Plant seeds coated with free enzymes or recombinant microorganisms that overexpress enzymes are also provided. Compositions comprising a fertilizer and an enzyme or a recombinant microorganism that overexpresses an enzyme are provided. Modified enzymes having ACC deaminase activity, recombinant microorganisms expressing the modified enzymes, plant seeds treated with the modified enzymes or recombinant microorganisms, and methods for stimulating plant growth and/or promoting plant health using the modified enzymes or recombinant microorganisms are also provided.
Resumen de: US20260218224A1
The present invention provides constructs for enhancing the autophagy pathway in plants. The constructs comprise polynucleotides encoding the proteins Autophagy-related protein 1 (ATG1), Autophagy-related protein 9 (ATG9), Autophagy-related protein 12 (ATG12), Autophagy-related protein (ATG8a), and bZIP transcription factor 87 (bZIP87). Plants comprising the constructs and methods of using the plants are also provided.
Resumen de: US20260215436A1
The present disclosure provides isolated Paenibacillus strains useful for fixing atmospheric nitrogen and enhancing crop yield, as well as inoculant compositions comprising one or more of the isolated strains, seeds that have been treated with one or more of the isolated strains, and methods of using the isolated strains to improve nitrogen content, crop yield, etc.
Resumen de: US20260215417A1
Insect control nanobodies are provided. Accordingly there is provided a nanobody which specifically binds to an insect polypeptide selected from the group consisting of: a polypeptide comprising a chitin binding domain (CBD), V-ATPase subunit c, trehalase, cytochrome p450 monooxygenase, chitin deacetylase, chitin synthase and NPC1 sterol transporter, wherein binding of the nanobody to the insect polypeptide confers an insect control activity to the nanobody. Also provided are polynucleotides encoding the nanobody, host cells expressing the nanobody and methods of using it.
Resumen de: US20260218134A1
0000 The invention relates to a composition comprising a bacteriophage or comprising a combination of bacteriophages for preventing, treating or controlling contamination with, and/or growth of, Listeria spp. in a food product, on food processing equipments, or on food storage containers. The invention also discloses the use of said composition for the treatment of an infection of Listeria spp. and for the detection of Listeria spp.
Resumen de: US20260215419A1
0000 Plant extracts enriched with Rhein and/or a glycosylated derivative thereof, which exhibit at least a herbicidal activity, processes of preparing same, and uses thereof, are provided.
Resumen de: US20260215434A1
The application concerns methods for improving a plant growth feature of plants using certain bacteria or agricultural active compositions comprising the bacteria. Plants and plant parts treated with or heterologously disposed with said bacteria or compositions are also disclosed. Further, novel bacterial strains, and populations and agricultural active compositions comprising the same are provided.
Resumen de: US20260215437A1
Compositions of Pseudomonas argentinensis strain SA190 (hereinafter, SA190), alone or in combination with Enterobacter sp. SA187 are provided. The compositions can be used to provide seeds or plants with resistance or tolerance to drought stress. Compositions containing SA190, alone or in combination with SA187 can be used to enhance plant development and yield under environmental stress conditions resulting from drought. Plant substrates for example, soil, peat, compost, vermiculite, perlite, sand, clay and combinations thereof containing effective amounts of SA190 and/or SA187 to confer drought tolerance to the plant following colonization of the plant are also provided.
Resumen de: US20260215421A1
0000 Compositions and methods for modulating a microbiome are disclosed.
Resumen de: WO2026109704A1
The present invention relates to a mixture, blend or combination, comprising at two, preferably at least three, chosen from the following compounds: (A) a pyrone derivative, (B) a tropolone derivative, (C) a phenylpropanoid, (D) a monoterpene or monoterpenoid, (E) an aromatic acid or salt, (F) a dipeptide, and (G) an alkanediol, and its use as chelating mixture.
Resumen de: BE1033254A1
De huidige uitvinding betreft een werkwijze voor het optimaliseren van zaden met een eiwithydrolysaat, waarbij het eiwithydrolysaat afkomstig is van pluimvee, en waarbij het eiwithydrolysaat sequentieel, separaat of simultaan met de zaden gezaaid wordt.
Resumen de: EP4781828A1
0001 The present invention relates to a genetically modified Bacillus thuringiensis strains having an improved spectrum of action against insect crop pests and its use as a biopesticide. More specifically, these strains are such that they do not form viable and resistant spores and do not express endogenous N-acetylmuramoyl-L-alanine amidases regulated by VipR.
Resumen de: BE1033253A1
De huidige uitvinding betreft een eiwithydrolysaat, waarbij minstens 90 gew.% van de peptiden in het eiwithydrolysaat een moleculaire massa van ten meeste 500 Dalton heeft, en waarbij tussen 35 en 55 gew.% van de peptiden een moleculaire massa heeft gelegen tussen 204 en 300 Dalton.
Resumen de: WO2025061953A1
The present invention relates to a protein hydrolysate of residual Escherichia coli cells from a fermentation process for the production of chemical intermediates or polyhydroxyalkanoates, the process of obtaining it, use of this protein hydrolysate as a biostimulant, and the biostimulants comprising it.
Resumen de: WO2025064616A1
This disclosure relates to the field of molecular biology. Provided are novel genes that encode pesticidal proteins. These pesticidal proteins and the nucleic acid sequences that encode them are useful in preparing pesticidal formulations and in the production of transgenic pest-resistant plants. Methods to create or alter pesticidal proteins are provided for altered or enhanced pesticidal activity.
Resumen de: WO2025061272A1
A method of manufacturing an agricultural composition for application to a target plant species, said method comprising the steps of: - Identifying the relative concentration of n phytosterols in target plant species and selecting the two phytosterols present in the highest relative concentration, - Providing an agricultural composition comprising: o a mixture of phytosterols obtained by blending at least two (2) different sources of phytosterols, said mixture comprising at least 2 phytosterols being identical in nature to the at least 2 phytosterols identified in step a., wherein the mixture of phytosterols represents between 0.2% and 10% of the agricultural composition by weight, and o at least one surfactant. An agricultural composition for use in the method
Resumen de: WO2025061271A1
A method of manufacturing an agricultural composition for application to a target plant species, said method comprising the steps of: a. Identifying the relative concentration of n phytosterols in target plant species selected from the group of phytosterols consisting of beta-sitosterol, campesterol, brassicasterol, and stigmasterol, and selecting the two phytosterols present in the highest relative concentration, b. Providing an agricultural composition comprising: i. a mixture of phytosterols obtained by blending at least one natural source of phytosterols, comprising at least 2 phytosterols being identical in nature to the at least 2 phytosterols identified in step a., wherein the the natural source of phytosterols is obtained from the group consisting of trees, sunflower, rapeseed extracts, ii. at least one surfactant.
Resumen de: AU2026204760A1
The disclosure relates to isolated microorganisms—including novel strains of the microorganisms, microbial consortia, and agricultural compositions comprising the same. Furthermore, the disclosure teaches methods of utilizing the described microorganisms, microbial consortia, and agricultural compositions comprising the same, in methods for imparting beneficial properties to target plant species. In particular aspects, the disclosure provides methods of increasing desirable plant traits in agronomically important crop species. un u n
Resumen de: WO2026153969A1
The present invention relates to a combination of active components. Wherein the active components comprise (i) a polypeptide with cell membrane interacting properties and (ii) a polycationic polymer. The present invention further relates to mixtures and (agrochemical) compositions comprising the combination of the current invention. The invention further provides methods of application and use of the combination, mixture or (agrochemical) composition to protect or treat a plant field, plant, or part of the plant from or for an infection by a plant pathogenic fungus.
Resumen de: US20260206747A1
The subject invention relates to the use of sophorolipids and novel sophorolipid derivatives as tank mix additives and/or adjuvants for pesticides, herbicides, fertilizers and other agricultural chemicals.
Resumen de: US20260209686A1
0000 The disclosure relates to genetically modified microorganisms, for example of the Genus Paenibacillus, for the improvement of phenotypes of plants, for example nitrogen availability for plants. Included are novel strains of the microorganisms, microbial consortia, and agricultural compositions comprising the same. Furthermore, the disclosure teaches methods of utilizing the described microorganisms, microbial consortia, and agricultural compositions comprising the same, in methods for imparting beneficial properties to target plant species. In particular aspects, the disclosure provides methods of increasing desirable plant traits in agronomically important species, for example nitrogen fixation, utilization, regulation, uptake, acquisition, tolerance, and/or processing in plants.
Nº publicación: US20260209275A1 23/07/2026
Solicitante:
TELLURIS BIOTECH INDIA PRIVATE LTD [IN]
TELLURIS BIOTECH INDIA PRIVATE LIMITED
Resumen de: US20260209275A1
The present disclosure provides broad spectrum peptide(s) and compositions comprising the same that allow effective management of crop pests. Associated method(s) employing the said peptide(s) and compositions for the management of crop pests are also provided. The peptides of the present disclosure possess low likelihood of resistance development in pests and may be produced by methods that are more economically viable as compared to existing technologies.