Fungicide Combinations
A synergistic fungicide combination of succinate dehydrogenase inhibitors, dithiocarbamate fungicides, and other fungicides like ergosterol biosynthesis or quinone outside inhibitors addresses the need for broader disease control and improved crop health, enhancing disease control and yield.
Patent Information
- Application Number
- JP2021183495
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Priority Date
- 2016-11-04
- Filing Date
- 2021-11-10
- Publication Date
- 2025-09-19
- Estimated Expiration
- 2037-10-30
AI Technical Summary
There is a need for fungicide combinations that provide a broader disease control spectrum, improve crop greening, delay senescence, and increase yield, while addressing crop resistance and regulatory requirements for lower application rates.
A synergistic fungicide combination comprising at least one succinate dehydrogenase inhibitor, at least one dithiocarbamate fungicide, and at least one other type of fungicide, such as an ergosterol biosynthesis inhibitor or quinone outside inhibitor, which work together to enhance disease control and crop health.
The combination significantly improves disease control, delays senescence, enhances crop greening, and increases yield, demonstrating a synergistic effect when dithiocarbamate fungicides are included.
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Abstract
Description
[Technical Field]
[0001] The present invention relates to fungicide combinations, more particularly to fungicide combinations including succinate dehydrogenase inhibitor fungicides for controlling a broad range of fungal diseases. [Background technology]
[0002] Fungicides are essential and important tools used by farmers to control diseases and improve crop yield and quality. There are a variety of fungicides that have been developed over the years, which have many desirable attributes such as specificity, systemic, curative and fungicidal action, and high activity at low application rates.
[0003] Succinate dehydrogenase inhibitor (SDHI) fungicides are known in the art for their broad spectrum and high efficacy. Pyrazole carboxamides are a group of active compounds within the SDHI family of fungicides and are known to be more potent than most other SDHI fungicides. These molecules specifically bind to the ubiquinone-binding site (Q site) of mitochondrial complex II, thereby inhibiting fungal respiration. These fungicides are known to control a wide range of fungal diseases.
[0004] Various other types of fungicides are also known in the art, such as quinone outside inhibitors (QoIs), ergosterol biosynthesis inhibitors, multi-site acting fungicides, and mitotically affecting fungicides, and these fungicides have been combined with SDHI fungicides to achieve broad spectrum disease control.
[0005] WO 2006 / 037632 teaches the combination of an SDHI fungicide and a second active compound. WO 2013 / 127818 teaches the combination of an SDHI fungicide and various herbicides. WO 2006 / 037634 teaches the method of controlling fungi using a combination of an SDHI fungicide and various fungicides.However, the prior art does not teach the use of a combination of three or more SDHI fungicide components.
[0006] Dithiocarbamates are known in the art as multi-site fungicides. These fungicides are used to control a wide range of diseases in over 70 crop species. Mancozeb is particularly important for controlling destructive, fast-spreading diseases such as Phytophthora infestans and Venturia inaequalis. Dithiocarbamate fungicides, particularly mancozeb, are particularly useful for disease control due to their broad spectrum of activity, high tolerance by crop plants, and versatility in controlling fungal plant diseases that cannot be controlled by active compounds that act only on a single target site of the fungus.
[0007] Mancozeb has been combined with various SDHI fungicides for disease control, and there is a need in the art to improve the disease spectrum provided by these combinations. Summary of the Invention [Problem to be solved by the invention]
[0008] Therefore, there is a need in the art for a combination of an SDHI with a specific fungicide that helps to improve the spectrum. Due to the observed decrease in crop resistance, regulations regarding lower application rates, and a further increase in resistance, there is a need for combinations of active substances that combine curative and preventive active substances and allow a broader disease control spectrum to be used at lower doses.
[0009] Thus, aspects of the present invention may ameliorate one or more of the above problems.
[0010] Thus, aspects of the present invention can provide combinations of fungicides that are more effective than the individual fungicides used alone.
[0011] Another object of the present invention is to provide a fungicide combination that improves the greening of crops to which it is applied.
[0012] Another object of the present invention is to provide a fungicide combination that delays senescence of the crop to which it is applied, thereby increasing the yield of that crop.
[0013] It is yet another object of the present invention to provide a fungicide combination that reduces the incidence of fungal diseases in crops to which it is applied.
[0014] Another object of the present invention is to provide a fungicide combination that achieves increased yield in the crops to which it is applied.
[0015] Some or all of the above-mentioned problems of the present invention can be solved by the present invention described below. [Means for solving the problem]
[0016] Thus, one aspect of the present invention may provide a fungicide combination comprising at least one succinate dehydrogenase inhibitor fungicide, at least one dithiocarbamate fungicide, and at least one other type of fungicide.
[0017] Another aspect of the present invention may provide a fungicide combination comprising at least one succinate dehydrogenase inhibitor fungicide, at least one dithiocarbamate fungicide, and at least two other types of fungicides.
[0018] Another aspect of the present invention can provide a synergistic composition comprising at least one succinate dehydrogenase inhibitor fungicide, at least one dithiocarbamate fungicide, and at least one other type of fungicide.
[0019] Another aspect of the present invention can provide a synergistic composition comprising at least one succinate dehydrogenase inhibitor fungicide, at least one dithiocarbamate fungicide, and at least two other fungicides. DETAILED DESCRIPTION OF THE INVENTION
[0020] As used herein, the term "disease control" refers to the control and prevention of disease. Control effects include all deviations from natural development, such as the killing, delay, or reduction of fungal diseases. The term "plant" refers to all physical parts of a plant, including seeds, seedlings, saplings, roots, tubers, trunks, stems, leaves, and fruits. As used herein, the term "locus" of a plant is intended to encompass the location where the plant is growing, the location where plant propagation material of the plant is planted, or the location where plant propagation material of the plant is placed in the soil. The term "plant propagation material" is understood to mean generative parts of a plant, such as seeds, cuttings, or tubers, roots, fruits, tubers, bulbs, rhizomes, and other plant parts, germinated plants, and young plants that are transplanted after germination or emergence from the soil. These young plants may be protected before transplanting by total or partial treatment by immersion. The term "agriculturally acceptable amount of active material" refers to an amount of active material that is not significantly toxic to the treated plants, but that kills or inhibits the plant disease that is desired to be controlled.
[0021] Succinate dehydrogenase inhibitor (SDHI) fungicides play an important role in plant protection against many plant pathogenic fungi. These molecules specifically bind to the ubiquinone-binding site (Q site) of mitochondrial complex II, thereby inhibiting fungal respiration. Dithiocarbamates are multisite contact fungicides. These molecules attack multiple sites within the fungal cell.
[0022] It has been surprisingly found that adding a dithiocarbamate fungicide to a combination of a succinate dehydrogenase inhibitor and at least one other fungicide selected from an ergosterol biosynthesis inhibitor, a quinone outside inhibitor, or a combination thereof, provides surprising and unexpected benefits. Adding a dithiocarbamate fungicide to a combination of a succinate dehydrogenase inhibitor and at least one other fungicide selected from an ergosterol biosynthesis inhibitor and / or a quinone outside inhibitor, or a combination thereof, surprisingly improves efficacy and results in a surprising reduction in fungal disease incidence. This is only observed when a succinate dehydrogenase inhibitor is used in combination with at least one other fungicide selected from an ergosterol biosynthesis inhibitor, a quinone outside inhibitor, or a combination thereof. Furthermore, it has been found that adding a dithiocarbamate fungicide to these combinations and applying the combinations during the flowering of the crop delays senescence of the applied crop and leads to better greening of the crop, thereby increasing the level of photosynthesis occurring within the plant and increasing the yield from the applied crop.
[0023] These surprising benefits of the combination of the present invention were not observed when the dithiocarbamate fungicide was not present in the combination. Thus, it is believed that these unexpected benefits of the combination of the present invention result from the inclusion of a dithiocarbamate fungicide in combination with a succinate dehydrogenase inhibitor and at least one other fungicide selected from an ergosterol biosynthesis inhibitor and / or a quinone outside inhibitor, or a combination thereof.
[0024] Thus, in one embodiment, the present invention provides a fungicide combination comprising: (a) at least one dithiocarbamate fungicide; (b) at least one succinate dehydrogenase inhibitor fungicide; and (c) at least one other fungicide selected from an ergosterol biosynthesis inhibitor and / or a quinone outside inhibitor; The present invention provides a fungicidal combination comprising:
[0025] In one embodiment, the dithiocarbamate fungicide is selected from the group consisting of amobam, asomet, azithiram, carbamorph, kufuraneb, kupropam, disulfiram, ferbam, metam, nabam, tecoram, thiram, urvacid, ziram, dazomet, ethem, milneb, mancopper, mancozeb, maneb, metiram, polycarbamate, propineb, and zineb.
[0026] In one embodiment, the preferred dithiocarbamate fungicide is mancozeb.
[0027] In one embodiment, the succinate dehydrogenase inhibitor is selected from the pyrazole carboxamide group of succinate dehydrogenase inhibitor fungicides, although it should be understood that the selection of succinate dehydrogenase inhibitors is not limited solely to pyrazole carboxamide fungicides.
[0028] In one embodiment, the pyrazole carboxamide group of succinate dehydrogenase inhibitor fungicides may be selected from benzovindiflupyr, bixafen, fluxapyroxad, furametpyr, isopyrazam, penflufen, penthiopyrad, and sedaxane.
[0029] The chemical name of benzovindiflupyr is N-[(1RS,4SR)-9-(dichloromethylene)-1,2,3,4-tetrahydro-1,4-methanonaphthalen-5-yl]-3-(difluoromethyl)-1-methylpyrazole-4-carboxamide and has the following structure:
[0030] [ka]
[0031] The chemical name for bixafen is N-(3',4'-dichloro-5-fluorobiphenyl-2-yl)-3-(difluoromethyl)-1-methylpyrazole-4-carboxamide and has the following structure:
[0032] [ka]
[0033] The chemical name of fluxapyroxad is 3-(difluoromethyl)-1-methyl-N-(3',4',5'-trifluorobiphenyl-2-yl)pyrazole-4-carboxamide and has the following structure:
[0034] [ka]
[0035] The chemical name of furametpyr is (RS)-5-chloro-N-(1,3-dihydro-1,1,3-trimethylisobenzofuran-4-yl)-1,3-dimethylpyrazole-4-carboxamide and has the following structure:
[0036] [ka]
[0037] Isopyrazam is a mixture of two isomers of 3-(difluoromethyl)-1-methyl-N-[(1RS,4SR,9RS)-1,2,3,4-tetrahydro-9-isopropyl-1,4-methanonaphthalen-5-yl]pyrazole-4-carboxamide and two isomers of 3-(difluoromethyl)-1-methyl-N-[(1RS,4SR,9SR)-1,2,3,4-tetrahydro-9-isopropyl-1,4-methanonaphthalen-5-yl]pyrazole-4-carboxamide, the tautomers of which have the following structures:
[0038] [ka]
[0039] The chemical name of penflufen is N-[2-(1,3-dimethylbutyl)phenyl]-5-fluoro-1,3-dimethyl-1H-pyrazole-4-carboxamide and has the following structure:
[0040] [ka]
[0041] The chemical name of penthiopyrad is (RS)-N-[2-(1,3-dimethylbutyl)-3-thienyl]-1-methyl-3-(trifluoromethyl)pyrazole-4-carboxamide and has the following structure:
[0042] [ka]
[0043] Sedaxane is a mixture of two cis isomers of 2'-[(1RS,2RS)-1,1'-bicycloprop-2-yl]-3-(difluoromethyl)-1-methylpyrazole-4-carboxanilide and two trans isomers of 2'-[(1RS,2SR)-1,1'-bicycloprop-2-yl]-3-(difluoromethyl)-1-methylpyrazole-4-carboxanilide, and its tautomers have the following structures:
[0044] [ka]
[0045] In one embodiment, the succinate dehydrogenase inhibitor fungicide may be selected from the group consisting of benodanil, flutolanil, mepronil, isofetamide, fluopyram, fenfuram, carboxin, oxycarboxin, thifluzamide, boscalid and IR9792.
[0046] In one embodiment, the third and / or fourth fungicide comprised in the combination of the present invention may be selected from an ergosterol biosynthesis inhibitor and / or a quinone outside (Qo) inhibitor, or a mixture thereof.
[0047] Thus, in one embodiment, the ergosterol biosynthesis inhibitor may be selected from the group consisting of azaconazole, bitertanol, bromuconazole, cyproconazole, difenoconazole, diniconazole, epoxiconazole, etaconazole, fenbuconazole, fluquinconazole, flusilazole, flutriafol, hexaconazole, imibenconazole, ipconazole, metconazole, myclobutanil, penconazole, propiconazole, simeconazole, tebuconazole, tetraconazole, triadimefon, triadimenol, triticonazole, prothioconazole, imazalil, oxpoconazole, pefurazoate, prochloraz, triflumizole, fenarimol, nuarimol, pyrifenox, pyrisoxazole, triforine, and mixtures thereof.
[0048] In another embodiment, the ergosterol biosynthesis inhibitor may be selected from prothioconazole, tebuconazole, hexaconazole, cyproconazole, or epoxiconazole.
[0049] In one embodiment, the third fungicide may be a quinone outside (Qo) inhibitor fungicide selected from azoxystrobin, cumoxystrobin, enoxastrobin, flufenoxystrobin, picoxystrobin, pyraoxystrobin, mandestrobin, pyraclostrobin, pyrametostrobin, triclopyricarb, kresoxim-methyl, dimoxystrobin, fenaminostrobin, metominostrobin, trifloxystrobin, famoxadone, fluoxastrobin, fenamidone, pyribencarb, and mixtures thereof.
[0050] In one embodiment, the quinone outside (Qo) inhibitor fungicide may be selected from azoxystrobin, picoxystrobin, kresoxim-methyl, pyraclostrobin, and trifloxystrobin.
[0051] In one embodiment of the combination of the present invention, the preferred succinate dehydrogenase inhibitor fungicide is isopyrazam.
[0052] In one embodiment, the combination of the present invention includes the following preferred combinations:
[0053] [Table 1-1]
[0054] [Table 1-2]
[0055] In one embodiment of the combination of the present invention, the preferred succinate dehydrogenase inhibitor fungicide is benzovindiflupyr.
[0056] In one embodiment, the combination of the present invention includes the following preferred combinations:
[0057] [Table 2-1]
[0058] [Table 2-2]
[0059] In one embodiment of the combination of the present invention, the preferred succinate dehydrogenase inhibitor fungicide is penthiopyrad.
[0060] In one embodiment, the combination of the present invention includes the following preferred combinations:
[0061] [Table 3-1]
[0062] [Table 3-2]
[0063] In one embodiment of the combination of the present invention, the preferred succinate dehydrogenase inhibitor fungicide is boscalid.
[0064] In one embodiment, the combination of the present invention includes the following preferred combinations:
[0065] [Table 4-1]
[0066] [Table 4-2]
[0067] In one embodiment of the combination of the present invention, the preferred succinate dehydrogenase inhibitor fungicide is IR9792, an SDHI fungicide developed by Isagro and given the generic name Fluindapyr.
[0068] In one embodiment, the combination of the present invention includes the following preferred combinations:
[0069] [Table 5-1]
[0070] [Table 5-2]
[0071] In one embodiment of the combination of the present invention, the preferred succinate dehydrogenase inhibitor fungicide is bixafen.
[0072] In one embodiment, the combination of the present invention includes the following preferred combinations:
[0073] [Table 6-1]
[0074] [Table 6-2]
[0075] In one embodiment of the combination of the present invention, the preferred succinate dehydrogenase inhibitor fungicide is fluxapyroxad.
[0076] In one embodiment, the combination of the present invention includes the following preferred combinations:
[0077] [Table 7-1]
[0078] [Table 7-2]
[0079] In one embodiment of the combination of the present invention, the preferred succinate dehydrogenase inhibitor fungicide is furametpyr.
[0080] In one embodiment, the combination of the present invention includes the following preferred combinations:
[0081] [Table 8-1]
[0082] [Table 8-2]
[0083] In one embodiment of the combination of the present invention, the preferred succinate dehydrogenase inhibitor fungicide is penflufen.
[0084] In one embodiment, the combination of the present invention includes the following preferred combinations:
[0085] [Table 9-1]
[0086] [Table 9-2]
[0087] In one embodiment of the combination of the present invention, the preferred succinate dehydrogenase inhibitor fungicide is sedaxane.
[0088] In one embodiment, the combination of the present invention includes the following preferred combinations:
[0089] [Table 10-1]
[0090] [Table 10-2]
[0091] The combination of the present invention may be formulated as a composition.
[0092] In one embodiment, the present invention provides a composition comprising: (a) at least one succinate dehydrogenase inhibitor fungicide; (b) at least one dithiocarbamate fungicide; (c) at least one quinone outside inhibitor; (d) at least one agrochemically acceptable excipient; A composition comprising:
[0093] In one embodiment, the present invention provides a composition comprising: (a) at least one succinate dehydrogenase inhibitor fungicide; (b) at least one dithiocarbamate fungicide; (c) at least one ergosterol biosynthesis inhibitor; (d) at least one agrochemically acceptable excipient; A composition comprising:
[0094] In one embodiment, the present invention provides a composition comprising: (a) at least one succinate dehydrogenase inhibitor fungicide; (b) at least one dithiocarbamate fungicide; (c) at least one quinone outside inhibitor; (d) at least one ergosterol biosynthesis inhibitor; (e) at least one agrochemically acceptable excipient; A composition comprising:
[0095] The amount of the composition of the present invention to be applied may depend on various factors, such as the target of treatment (plant, soil, seed, etc.), the type of treatment (spraying, dusting, seed dressing, etc.), and the purpose of the treatment (e.g., preventive or curative disease control). In the case of disease control, it depends on the type of fungus to be controlled or the application time, etc. The amount of the combination of the present invention to be applied can be easily estimated by one skilled in the art.
[0096] Thus, in one embodiment, the present invention provides (a) at least one pyrazole carboxamide selected from benzovindiflupyr, bixafen, fluxapyroxad, furametpyr, isopyrazam, penflufen, penthiopyrad, and sedaxane; (b) at least one quinone outside inhibitor and / or at least one ergosterol biosynthesis inhibitor; (c) at least one dithiocarbamate fungicide; and wherein the fungicide is combined in an agrochemically acceptable amount.
[0097] In one embodiment, the total amount of succinate dehydrogenase inhibitors in the composition may typically be in the range of 0.1 to 99% by weight, preferably 0.2 to 90% by weight. The total amount of dithiocarbamate fungicides in the composition may be in the range of 0.1 to 99% by weight. The total amount of ergosterol biosynthesis inhibitors in the composition may be in the range of 0.1 to 99% by weight. The total amount of quinone outside inhibitors in the composition may be in the range of 0.1 to 99% by weight.
[0098] In one embodiment, the fungicides constituting the combination of the present invention may be mixed such that the ratio of the dithiocarbamate fungicide, the succinate dehydrogenase inhibitor fungicide and the third fungicide is (1 to 80):(1 to 80):(1 to 80).
[0099] In one embodiment, the components of the composition of the present invention may be mixed in a tank and sprayed onto the infected area, or may be further mixed with a surfactant and then sprayed.
[0100] In one embodiment, the components of the compositions of the present invention can be used for foliar application, soil application, or application to plant propagation material.
[0101] In one embodiment, the compositions of the present invention can be formulated into solid or liquid dosage forms, typically by mixing the active ingredient contained in the composition with an inert carrier and adding surfactants, other adjuvants, and carriers, as needed. Such dosage forms include, but are not limited to, wettable powders, granules, dusts, soluble (liquid) concentrates, suspension concentrates, oil-in-water emulsions, water-in-oil emulsions, emulsifiable concentrates, capsule suspensions, ZC formulations, oil dispersions, or other known types of dosage forms. The compositions can also be used to treat plant propagation materials such as seeds.
[0102] Examples of solid carriers used in dosage forms include fine powders or granules of minerals (e.g., kaolin clay, attapulgite clay, bentonite, montmorillonite, acid clay, pyrophyllite, talc, diatomaceous earth, and calcite), natural organic materials (e.g., corn cob powder and walnut husk powder), synthetic organic materials (e.g., urea, salts such as calcium carbonate and ammonium sulfate), and synthetic inorganic materials (e.g., synthetic hydrated silicon oxide). Examples of liquid carriers include aromatic hydrocarbons (e.g., xylene, alkylbenzene, and methylnaphthalene), alcohols (e.g., 2-propanol, ethylene glycol, propylene glycol, and ethylene glycol monoethyl ether), ketones (e.g., acetone, cyclohexanone, and isophorone), vegetable oils (e.g., soybean oil and cottonseed oil), petroleum aliphatic hydrocarbons, esters, dimethyl sulfoxide, acetonitrile, and water.
[0103] Examples of surfactants include anionic surfactants (e.g., alkyl sulfate ester salts, alkylaryl sulfonates, dialkyl sulfosuccinates, polyoxyethylene alkylaryl ether phosphate ester salts, lignosulfonates, and naphthalenesulfonic acid formaldehyde formaldehyde polycondensates), as well as nonionic surfactants (e.g., polyoxyethylene alkylaryl ethers, polyoxyethylene alkyl polyoxypropylene block copolymers, and sorbitan fatty acid esters), and cationic surfactants (e.g., alkyltrimethylammonium salts).
[0104] Examples of other formulation adjuvants include water-soluble polymers (such as polyvinyl alcohol and polyvinylpyrrolidone), polysaccharides (such as gum arabic, alginic acid, and salts thereof), inorganic materials (such as CMC (carboxymethylcellulose), xanthan gum, magnesium aluminum silicate, and alumina sol), preservatives, colorants, and stabilizers (such as PAP (isopropyl acid phosphate) and BHT).
[0105] The composition of the present invention is effective against the following plant diseases.
[0106] Rice diseases: Rice blast (Magnaporthe grisea), Helminthosporium leaf spot (Cochliobolus miyabeanus), Sheath blight (Rhizoctonia solani), and Bakanae disease (Gibberella fujikuroi).
[0107] Wheat diseases: powdery mildew (Erysiphe graminis), head rot (Fusarium graminearum, F. avenacerum, F. culmorum, Microdochium nivale), rust (Puccinia striiformis, P. graminis, P. recondita), pink snow rot (Micronectriella nivale), brown sclerotinia snow rot (Typhula sp.), naked smut (Ustilago tritici), ear smut (Tilletia caries), eyespot (Pseudocercosporella herpotrichoides), leaf blight (Mycosphaerella graminicola), wheat leaf blight (Stagonospora nodorum), leaf spot, and yellow spot (Pyrenophora tritici-repentis).
[0108] Barley diseases: Powdery mildew (Erysiphe graminis), scab (Fusarium graminearum, F. avenacerum, F. culmorum, Microdochium nivale), rust (Puccinia striiformis, P. graminis, P. hordei), naked smut (Ustilago nuda), scald (Rhynchosporium secalis), net blotch (Pyrenophora teres), leaf spot (Cochliobolus sativus), stripe blight (Pyrenophora graminea), and Rhizoctonia damping-off (Rhizoctonia solani).
[0109] Maize diseases: ear smut (Ustilago maydis), brown spot (Cochliobolus heterostrophus), leopard spot (Gloeocercospora sorghi), southern rust (Puccinia polysora), gray spot (Cercospora zeae-maydis), white spot (Phaeosphaeria mydis and / or Pantoea ananatis) and Rhizoctonia damping-off (Rhizoctonia solani).
[0110] Citrus diseases: black spot (Diaporthe citri), common scab (Elsinoe fawcetti), green mold (Penicillium digitatum, P. italicum), and brown rot (Phytophthora parasitica, Phytophthora citrophthora).
[0111] Apple diseases: Monilinia mali, rot (Valsa ceratosperma), powdery mildew (Podosphaera leucotricha), leaf spot (Alternaria alternata apple pathotype), scab (Venturia inaequalis), powdery mildew, anthracnose (Colletotrichum acutatum), sclerotinia (Phytophtora cactorum), brown spot (Diplocarpon mali), and ring spot (Botryosphaeria berengeriana).
[0112] Pear diseases: black scab (Venturia nashicola, V. pirina), powdery mildew, black spot (Alternaria alternata Japanese pear pathotype), rust (Gymnosporangium haraeanum), and Phytophthora fruit rot (Phytophtora cactorum).
[0113] Peach diseases: Brown rot (Monilinia fructicola), powdery mildew, black spot (Cladosporium carpophilum), and Phomopsis rot (Phomopsis sp.).
[0114] Grape diseases: anthracnose (Elsinoe ampelina), late rot (Glomerella cingulata), powdery mildew (Uncinula necator), rust (Phakopsora ampelopsidis), black spot (Guignardia bidwellii), botrytis, and downy mildew (Plasmopara viticola).
[0115] Persimmon diseases: anthracnose (Gloeosporium kaki) and leaf spot (Cercospora kaki, Mycosphaerella nawae).
[0116] Diseases of gourds: Anthracnose (Colletotrichum lagenarium), powdery mildew (Sphaerotheca fuliginea), vine blight (Mycosphaerella melonis), damping-off (Fusarium oxysporum), downy mildew (Pseudoperonospora cubensis), late blight (Phytophthora sp.), and damping-off (Pythium sp.).
[0117] Tomato diseases: ring spot (Alternaria solani), leaf mold (Cladosporium fulvum), and leaf blight (Phytophthora infestans).
[0118] Diseases of eggplant: Brown spot (Phomopsis vexans) and powdery mildew (Erysiphe cichoracearum). Diseases of cruciferous vegetables: Brown spot (Alternaria japonica), White spot (Cercosporella brassicae), Clubroot (Plasmodiophora brassicae), and Downy mildew (Peronospora parasitica).
[0119] Onion diseases: rust (Puccinia allii) and downy mildew (Peronospora destructor).
[0120] Soybean diseases: purple grain disease (Cercospora kikuchii), black rot (Elsinoe glycines), black spot (Diaporthe phaseolorum var. sojae), brown spot (Septoria glycines), gray spot (Cercospora sojina), rust (Phakopsora pachyrhizi), yellow rust, brown sclerotinia (Phytophthora sojae), and Rhizoctonia damping-off (Rhizoctonia solani).
[0121] Diseases of kidney beans: anthracnose (Colletotrichum lindemthianum). Diseases of peanuts: leaf spot (Cercospora personata), brown spot (Cercospora arachidicola) and southern blight (Sclerotium rolfsii).
[0122] Pea diseases: Powdery mildew (Erysiphe pisi) and root rot (Fusarium solani f.sp.pisi).
[0123] Potato diseases: summer blight (Alternaria solani), leaf blight (Phytophthora infestans), scarlet rot (Phytophthora erythroseptica), and common scab (Spongospora subterranean f.sp. subterranea).
[0124] Strawberry diseases: Powdery mildew (Sphaerotheca humuli) and anthracnose (Glomerella cingulata).
[0125] Tea diseases: Net blight (Exobasidium reticulatum), white scab (Elsinoe leucospila), ring spot (Pestalotiopsis sp.), and anthracnose (Colletotrichum theae-sinensis).
[0126] Tobacco diseases: red star (Alternaria longipes), powdery mildew (Erysiphe cichoracearum), anthracnose (Colletotrichum tabacum), downy mildew (Peronospora tabacina), and tobacco late blight (Phytophthora nicotianae).
[0127] Rapeseed diseases: Sclerotinia sclerotiorum and Rhizoctonia solani. Cotton diseases: Rhizoctonia solani.
[0128] Diseases of sugar beets: Cercospora beticola, Thanatephorus cucumeris, Thanatephorus cucumeris, and Aphanomyces cochlioides.
[0129] Rose diseases: black spot (Diplocarpon rosae), powdery mildew (Sphaerotheca pannosa), and downy mildew (Peronospora sparsa). Chrysanthemum and Asteraceae diseases: downy mildew (Bremia lactucae), leaf blight (Septoria chrysanthemi-indici), and white rust (Puccinia horiana).
[0130] Diseases of various groups: diseases caused by Pythium spp. (Pythium aphanidermatum, Pythium debarianum, Pythium graminicola, Pythium irregulare, Pythium ultimum), grey mold (Botrytis cinerea), and Sclerotinia rot (Sclerotinia sclerotiorum).
[0131] Radish diseases: Brown spot (Alternaria brassicicola).
[0132] Turfgrass diseases: Dollar spot (Sclerotinia homeocarpa), and brown patch and large patch (Rhizoctonia solani).
[0133] Banana diseases: Black Sigatoka (Mycosphaerella fijiensis), Yellow Sigatoka (Mycosphaerella musicola).
[0134] Sunflower diseases: Downy mildew (Plasmopara halstedii).
[0135] Seed diseases or diseases at the early stages of growth caused in various plants by Aspergillus spp., Penicillium spp., Fusarium spp., Gibberella spp., Tricoderma spp., Thielaviopsis spp., Rhizopus spp., Mucor spp., Corticium spp., Phoma spp., Rhizoctonia spp. and Diplodia spp.
[0136] A viral disease of various plants transmitted by Polymixa spp. or Olpidium spp.
[0137] The composition of the present invention can be used in agricultural land (such as rice fields, paddy fields, lawns, and orchards) or non-agricultural land. The present invention can be used to control diseases in agricultural land for cultivating plants without causing phytotoxicity to the plants.
[0138] Examples of crops for which the present composition can be used include corn, rice, wheat, barley, rye, oats, sorghum, cotton, soybeans, peanuts, buckwheat, beets, rapeseed, sunflowers, sugarcane, tobacco, and the like; and vegetables such as nightshade vegetables (e.g., eggplant, tomato, pimento, pepper, potato), cucurbit vegetables (e.g., cucumber, pumpkin, zucchini, watermelon, melon, squash), cruciferous vegetables (e.g., radish, turnip, horseradish, kohlrabi, Chinese cabbage, cabbage, mustard greens, broccoli, cauliflower), asteraceae vegetables (e.g., burdock, garland chrysanthemum, artichoke, lettuce), lily vegetables (e.g., leeks, onions, garlic, and asparagus), and ammiaceous vegetables. Vegetables (e.g., carrots, parsley, celery, parsnips), Chenopodiaceae vegetables (e.g., spinach, Swiss chard), Labiatae vegetables (e.g., perilla, mint, basil), strawberries, sweet potatoes, yams, taro, etc.; flowers; ornamental plants; turfgrass; pome fruits (e.g., apples, pears, quince), stone fruits (e.g., peaches, plums, nectarines, plums, cherries, apricots, prunes), citrus fruits (e.g., oranges, lemons, limes, grapefruit), shell fruits (e.g., chestnuts, walnuts, hazelnuts, almonds, etc.). non-fruit trees, such as tea, mulberry, flowering plants, and trees (e.g., ash, birch, dogwood, eucalyptus, ginkgo, lilac, maple, oak, poplar, horse chestnut, liquid mustard, sycamore, zelkova, arborvitae, fir, hemlock, juniper, pine, spruce, and yew).
[0139] In one embodiment, the fungicides that make up the combination of the present invention may be mixed in a ratio of (1-80):(1-80):(1-80):(1:80).
[0140] In one embodiment, the present invention provides a method for controlling fungal diseases, comprising: (a) at least one succinate dehydrogenase inhibitor fungicide; (b) at least one quinone outside inhibitor and / or at least one ergosterol biosynthesis inhibitor; (c) at least one dithiocarbamate fungicide;
[0023] A method can be provided that includes applying a combination comprising:
[0141] In one embodiment, the succinate dehydrogenase inhibitor fungicide, the quinone outside inhibitor fungicide, the ergosterol biosynthesis inhibitor fungicide and the dithiocarbamate fungicide may be selected according to any of the preferred aspects of the combinations described above.
[0142] The combinations of the present invention may be sold as premix compositions or kits of parts so that the individual actives can be mixed before spraying. Alternatively, the kits of parts may include a premixed succinate dehydrogenase inhibitor fungicide and a dithiocarbamate fungicide, and a third active mixed with an adjuvant, with the two components being mixed in a tank before spraying.
[0143] The components of the compositions of the present invention may be applied simultaneously or sequentially as a tank mix or formulation. Application may be made to the soil prior to plant emergence, i.e., before or after planting. Application may also be made as a foliar spray at various times during crop growth, with one or two applications being made either early or late after plant emergence.
[0144] The compositions of the invention can be applied before or after infection of the useful plants or their propagation material with fungi.
[0145] As demonstrated in the examples below, the addition of a dithiocarbamate fungicide to a mixture of a succinate dehydrogenase inhibitor and a quinone outside inhibitor and / or an ergosterol biosynthesis inhibitor not only significantly improved disease control but also improved yield and exerted a synergistic effect. The lower the disease control performance of the mixture, the greater the effect of mancozeb added to the composition of the present invention. [Example]
[0146] Studies were conducted to investigate the addition of dithiocarbamate fungicides to succinate dehydrogenase inhibitor fungicides and at least one other fungicide, and the contribution of the dithiocarbamate to the efficacy of these mixtures. The experiments were conducted over a two-year period to examine the effect of adding dithiocarbamate on the efficacy of succinate dehydrogenase inhibitors alone or in combination with co-fungicides, such as quinone outside inhibitors and / or ergosterol biosynthesis inhibitor fungicides. The doses tested were 1500 g / ha of mancozeb, 150 mL / ha of ergosterol biosynthesis inhibitors, 200 g / ha of quinone outside inhibitors, and 1000 g / ha and 200 g / ha of succinate dehydrogenase inhibitor fungicides. The combinations were tested for disease control efficacy in soybean for the control of soybean rust. Studies were conducted at various locations in India.
[0147] The tests were carried out on the soybean variety Monsoy 9144 RR. The individual commercially available active substances were used at the indicated doses.
[0148] [Table 11]
[0149] Table 1 clearly shows the increased control that occurs when mancozeb is added to a combination of an ergosterol biosynthesis inhibitor and a succinate dehydrogenase inhibitor fungicide.
[0150] [Table 12]
[0151] Table 2 clearly shows the importance of adding mancozeb to the combination. The addition of mancozeb improved disease control.
[0152] Thus, the incorporation of mancozeb significantly increased the therapeutic efficacy and disease control of succinate dehydrogenase inhibitor fungicides when mixed with ergosterol biosynthesis inhibitors or quinone outside inhibitors. It was therefore concluded that the addition of mancozeb enhanced the efficacy of the combination and, surprisingly, produced a synergistic effect. The addition of dithiocarbamate increased disease control and improved plant yield. The present invention is more specifically described by the above examples. However, it should be understood that the scope of the present invention is not limited in any way by the above examples. It will be understood by those skilled in the art that the present invention includes the above examples and that further modifications and variations are possible within the technical scope of the present invention.
[0153] While the foregoing description of the present invention will enable one of ordinary skill in the art to make and use what is currently contemplated to be the best mode thereof, those skilled in the art will also understand and appreciate that there are variations, permutations, and equivalents of the specific embodiments, methods, and examples set forth herein. Accordingly, the present invention should not be limited by the above-described embodiments, methods, and examples, but rather is intended to include all embodiments and methods falling within the scope and spirit of the present invention.
Claims
1. A mixture of fungicides, comprising: (a) fluindapir; (b) mancozeb, and (c) at least one other fungicide selected from prothioconazole, azoxystrobin, and mixtures thereof; A mixture comprising:
2. The mixture of claim 1 and at least one agrochemically acceptable excipient. A composition comprising:
3. 3. The composition of claim 2, wherein the composition is for incorporation into a wettable powder, granule, dust, soluble (liquid) concentrate, suspension concentrate, oil-in-water emulsion, water-in-oil emulsion, emulsifiable concentrate, capsule suspension, ZC formulation, or oil dispersion.
4. 2. The mixture of claim 1, wherein the mixture is a mixture of the components (a):(b):(c) in a ratio of (1-80):(1-80):(1-80).
5. the mixture comprises fluindapir, mancozeb, prothioconazole, and azoxystrobin; The mixture of claim 1, wherein the total amount of flindapyr in the mixture is in the range of 0.1 to 99% by weight, the total amount of mancozeb in the mixture is in the range of 0.1 to 99% by weight, the total amount of prothioconazole in the mixture is in the range of 0.1 to 99% by weight, and the total amount of azoxystrobin in the mixture is in the range of 0.1 to 99% by weight.
6. 4. The composition of claim 2 or 3, wherein the composition is for foliar application or application to plant propagation material.
7. 10. A method for controlling fungal diseases comprising applying the mixture of claim 1 to a plant locus.
8. Fluindapir, Mancozeb and at least one other fungicide selected from prothioconazole, azoxystrobin, and mixtures thereof; 2. A method for producing the mixture of claim 1, comprising mixing:
Citation Information
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