CN110891424A - 新型杀虫组合 - Google Patents
新型杀虫组合 Download PDFInfo
- Publication number
- CN110891424A CN110891424A CN201880046968.4A CN201880046968A CN110891424A CN 110891424 A CN110891424 A CN 110891424A CN 201880046968 A CN201880046968 A CN 201880046968A CN 110891424 A CN110891424 A CN 110891424A
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- CN
- China
- Prior art keywords
- flubendiamide
- spp
- group
- cyantraniliprole
- fungicide
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Pending
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- 230000000749 insecticidal effect Effects 0.000 title claims abstract description 32
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- 239000005901 Flubendiamide Substances 0.000 claims abstract description 76
- -1 cyromanilide Chemical compound 0.000 claims abstract description 52
- 150000001875 compounds Chemical class 0.000 claims abstract description 45
- DVBUIBGJRQBEDP-UHFFFAOYSA-N cyantraniliprole Chemical compound CNC(=O)C1=CC(C#N)=CC(C)=C1NC(=O)C1=CC(Br)=NN1C1=NC=CC=C1Cl DVBUIBGJRQBEDP-UHFFFAOYSA-N 0.000 claims abstract description 45
- 239000005889 Cyantraniliprole Substances 0.000 claims abstract description 42
- PSOVNZZNOMJUBI-UHFFFAOYSA-N chlorantraniliprole Chemical compound CNC(=O)C1=CC(Cl)=CC(C)=C1NC(=O)C1=CC(Br)=NN1C1=NC=CC=C1Cl PSOVNZZNOMJUBI-UHFFFAOYSA-N 0.000 claims abstract description 34
- 239000005886 Chlorantraniliprole Substances 0.000 claims abstract description 31
- 241000607479 Yersinia pestis Species 0.000 claims abstract description 25
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- A01N37/38—Biocides, pest repellants or attractants, or plant growth regulators containing organic compounds containing a carbon atom having three bonds to hetero atoms with at the most two bonds to halogen, e.g. carboxylic acids containing at least one carboxylic group or a thio analogue, or a derivative thereof, and a singly bound oxygen or sulfur atom attached to the same carbon skeleton, this oxygen or sulfur atom not being a member of a carboxylic group or of a thio analogue, or of a derivative thereof, e.g. hydroxy-carboxylic acids having at least one oxygen or sulfur atom attached to an aromatic ring system
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Abstract
本发明涉及二酰胺杀虫化合物与至少一种多位点杀真菌活性化合物和至少另一种杀虫化合物的组合的组合,所述二酰胺杀虫化合物选自溴虫氟苯双酰胺、氯虫苯甲酰胺、溴氰虫酰胺、环溴虫酰胺、氯氟氰虫酰胺、氟虫双酰胺和氟氰虫酰胺。所述组合在防治有害害虫方面显示出优异的功效。
Description
技术领域
本发明涉及二酰胺杀虫化合物与至少一种杀真菌活性化合物和至少另一种杀虫化合物的组合的组合。所述组合在防治有害害虫方面显示出优异的功效。
背景技术
杀虫剂用于防治多种害虫。二酰胺杀虫剂是一种相对新的杀虫剂,并且包括杀虫剂诸如氟苯二酰胺,高效鳞翅目杀虫剂和绿蒽酮及其类似物氰基氰化物。可以在PestManag Sci.2013年1月第69卷第1期:第7至14页发表的文章中研究二酰胺的进化。
氯虫苯甲酰胺和溴氰虫酰胺是邻氨基苯甲酸二酰胺杀虫化合物,通过靶向和破坏Ca2+平衡和Ryanodine受体而表现出杀幼虫活性,作为经口摄入的有毒物质。杀真菌剂是农民防治病害以及提高作物产量和质量所产生的一种不可或缺的重要工具。多年来已经研发出多种杀真菌剂,具有许多期望的属性,诸如特异性、内吸传导性、治愈性和根除作用以及低使用率下的高活性。
本领域还已知各种种类的杀真菌剂,诸如醌外抑制剂(QoI)、麦角固醇-生物合成抑制剂、作用于多个位点的杀真菌剂。二硫代氨基甲酸酯是多位点杀真菌剂。这些杀真菌剂用于防治70多种农作物的广谱病害。代森锰锌对于防治毁灭性和快速传播的病害(诸如致病疫霉、黑星病等)尤其重要。二硫代氨基甲酸酯类杀真菌剂,尤其是代森锰锌,因其广谱活性、作物植物的高耐受性以及防治真菌植物病害的一般用途而特别适用于病害防治,这些真菌植物病害不受仅作用于真菌中单个靶位点的活性化合物防治。
杀虫剂与杀真菌剂的混合导致物理性质不相容,也可能改变活性成分的功效。因此,已经进行了尝试,以了解在实验室条件下作为混合物施用时,杀真菌剂与杀虫剂的相容性以及杀虫剂对杀真菌剂对甘蓝叶斑的生物有效性的影响。US7696232B2公开了包含氯虫苯甲酰胺和其他活性物质的组合物,其包括杀真菌剂。
因此,在本领域中需要邻氨基苯甲酰胺杀虫化合物与有助于改善频谱的特定杀真菌剂的组合。由于作物耐受性正在下降、施用率降低且抗性越来越多,因此需要一种活性物质的组合,其允许更广泛的病害防治谱,该谱结合了治愈性和预防性活性物质,并且具有较低的剂量。
发明内容
因此,本发明的实施方案可以改善一个或多个上述问题:
因此,本发明的实施方案可以提供至少两种杀虫剂和杀真菌剂的组合,其具有比用于分离的单个活性化合物增强的功效。
本发明的另一个目的是提供一种组合,该组合使其施用的作物衰老推迟,从而导致作物产量增加。
本发明的另一个目的是提供一种组合,该组合使其施用的作物衰老推迟,从而导致作物产量增加。
本发明的又一个目的是提供一种组合,该组合导致其施用的作物中的真菌发病率降低。
本发明的另一个目的是提供一种组合,该组合在施用它的作物中实现了增加的产量。
本发明的另一个目的是提供引起增强的杀幼虫活性的杀虫和杀真菌组合。
本发明的另一个目的是提供增强对昆虫、螨虫或线虫的侵袭或侵染对植物的保护的组合。
本发明的一些或所有这些和其他目的可以通过下文描述的本发明来实现。
发明详述
因此,本发明的一个方面可以提供一种组合,包含:
至少一种杀虫性二酰胺化合物,该至少一种杀虫性二酰胺化合物选自溴虫氟苯双酰胺、氯虫苯甲酰胺、溴氰虫酰胺、环溴虫酰胺、氯氟氰虫酰胺、氟虫双酰胺和氟氰虫酰胺;
至少一种多位点杀真菌化合物;以及
至少另一种杀虫化合物。
因此,本发明的一个方面可以提供一种组合,包含:
至少一种二酰胺化合物,该至少一种二酰胺化合物选自溴虫氟苯双酰胺、氯虫苯甲酰胺、溴氰虫酰胺、环溴虫酰胺、氯氟氰虫酰胺、氟虫双酰胺和氟氰虫酰胺;
至少一种二硫代氨基甲酸酯类杀真菌剂;以及
至少另一种杀虫化合物。
本发明的另一个方面可以提供一种组合,包含:
至少一种二酰胺化合物,该至少一种二酰胺化合物选自溴虫氟苯双酰胺、氯虫苯甲酰胺、溴氰虫酰胺、环溴虫酰胺、氯氟氰虫酰胺、氟虫双酰胺和氟氰虫酰胺;
至少一种二硫代氨基甲酸酯类杀真菌剂;以及
至少两种其他杀虫化合物。
本发明的另一个方面可以提供组合物,包含:
至少一种二酰胺化合物,该至少一种二酰胺化合物选自溴虫氟苯双酰胺、氯虫苯甲酰胺、溴氰虫酰胺、环溴虫酰胺、氯氟氰虫酰胺、氟虫双酰胺和氟氰虫酰胺;
至少一种二硫代氨基甲酸酯类杀真菌剂;以及
至少一种其他杀虫化合物。
本发明的另一个方面可以提供组合物,包含:
至少一种二酰胺化合物,该至少一种二酰胺化合物选自溴虫氟苯双酰胺、氯虫苯甲酰胺、溴氰虫酰胺、环溴虫酰胺、氯氟氰虫酰胺、氟虫双酰胺和氟氰虫酰胺;
至少一种二硫代氨基甲酸酯类杀真菌剂;以及
至少两种其他杀虫化合物。
具体实施方式:
如本文所用,术语“病害防治”表示防治和预防病害。防治效果包括对自然发育的所有偏差,例如:杀死、延迟、减少真菌病害。术语“植物”是指植物的所有物理部分,包括种子、幼苗、幼树、根、块茎、茎、茎秆、叶和果实。如本文所用,术语植物“所在地”旨在包括植物生长的地方,在该处播种植物的植物繁殖材料或将植物的植物繁殖材料放入土壤中。术语“植物繁殖材料”应当理解为表示植物的繁殖部分,诸如种子、植物材料诸如插条或块茎、根、果实、块茎、鳞茎、根茎和植物的部分、发芽的植物和幼苗,它们在发芽后或从土壤中出苗后移植。这些幼苗可以在移植前通过浸渍全部或部分处理来保护。术语“农业上可接受的活性量”是指杀死或抑制需要防治的植物病害的活性物质的量,该量对待处理的植物没有显著毒性。
令人惊讶的是,根据本发明的活性化合物组合的杀虫和/或杀螨和/或抗微生物活性或杀真菌活性和/或增强植物活性和/或增产的活性明显高于各个活性化合物的活性总和。
令人惊讶地发现,在二酰胺杀虫剂与至少另一种杀虫剂中加入多位点杀真菌剂,诸如二硫代氨基甲酸酯类杀真菌剂,产生了令人惊讶和出乎意料的优点。令人惊讶的是,在二酰胺杀虫剂与至少另一种杀虫化合物的组合中添加二硫代氨基甲酸酯类杀真菌剂导致功效的增强以及令人惊讶且增强的害虫防治。
还已发现,在作物开花阶段期间,向二酰胺杀虫剂中添加多位点杀真菌剂诸如二硫代氨基甲酸酯类杀真菌剂和施用这些组合延迟了它们所施用的作物的衰老,这导致作物中更好的绿化,从而增加了植物内发生的光合作用水平,从而导致来自施用它们的作物的更高产量。
当多组分杀真菌剂不存在于组合中时,未观察到本发明组合的这些令人惊讶的优点。因此,本发明组合的这些意想不到的优点可归因于在二酰胺杀虫剂与至少另一种杀虫化合物的组合中包含多位点杀真菌剂。
因此,在一个方面,本发明提供了一种组合,包含:
(a)至少一种杀虫性二酰胺化合物,该至少一种杀虫性二酰胺化合物选自溴虫氟苯双酰胺、氯虫苯甲酰胺、溴氰虫酰胺、环溴虫酰胺、氯氟氰虫酰胺、氟虫双酰胺和氟氰虫酰胺;
(b)至少一种多位点杀真菌剂;以及
(c)至少另一种杀虫化合物。
因此,在一个实施方案中,多位点杀真菌剂可选自由以下项构成的组:二硫代氨基甲酸酯、邻苯二甲酰亚胺、氯腈、无机杀真菌剂、磺胺、双胍、三嗪、醌、喹喔啉、二甲酰胺及其混合物。
在另一个实施方案中,本发明的多位点接触杀真菌剂通过多个作用位点抑制真菌生长,并具有接触和预防活性。在一个实施方案中,多位点接触杀真菌剂可选自铜类杀真菌剂、硫类杀真菌剂、二硫代氨基甲酸酯类杀真菌剂、邻苯二甲酰胺类杀真菌剂、氯腈类杀真菌剂、磺酰胺类杀真菌剂、胍类杀真菌剂、三嗪类杀真菌剂和醌类杀真菌剂。
本发明的铜类杀真菌剂是通常处于铜(II)氧化态含有铜的无机化合物,并且优选选自氯氧化铜、硫酸铜、氢氧化铜和三碱基硫酸铜(波尔多混合剂)。
本发明的硫类杀真菌剂是含有硫原子的环或链的无机化学品,并且优选是元素硫。
本发明的二硫代氨基甲酸酯类杀真菌剂含有二硫代氨基甲酸酯分子部分并且选自代森铵、福美胂、氧化福美双、吗菌威、硫杂灵、福美铜氯、双硫仑、福美铁、威百亩、代森钠、特石克威特石危威、福美双、福美甲胂、福美锌、棉隆、代森硫、代森环、代森锰铜、代森锰锌、代森锰、代森联、代森福美锌、丙森锌和代森锌。
本发明的邻苯二甲酰胺杀真菌剂包含邻苯二甲酰胺分子部分,并且选自灭菌丹、克菌丹和敌菌丹。
本发明的氯腈类杀真菌剂包括被氯和氰基取代基取代的芳环,并且优选为百菌清。
本发明的磺酰胺类杀真菌剂优选选自抑菌灵和对甲抑菌灵。
本发明的胍类杀真菌剂优选选自多果定、双辛胍胺和双胍辛胺。
本发明的三嗪类杀真菌剂优选为敌菌灵。
本发明的醌类杀真菌剂优选为二噻农。
在一个优选的实施方案中,本发明的多位点接触杀真菌剂是二硫代氨基甲酸酯类杀真菌剂,该二硫代氨基甲酸酯类杀真菌剂选自代森铵、福美胂、氧化福美双、吗菌威、硫杂灵、福美铜氯、双硫仑、福美铁、威百亩、代森钠、特石克威特石危威、福美双、福美甲胂、福美锌、棉隆、代森硫、代森环、代森锰铜、代森锰锌、代森锰、代森联、代森福美锌、丙森锌和代森锌。
在一个实施方案中,优选的多位点杀真菌剂是二硫代氨基甲酸酯类杀真菌剂(A),这些二硫代氨基甲酸酯类杀真菌剂可选自由以下构成的组:氨苯甲酸酯(A1)、福美胂(A2)、氧化福美双(A3)、吗菌威(A4)、硫杂灵(A5)、福美铜氯(A6)、双硫仑(A7)、福美铁(A8)、威百亩(A9)、代森钠(A10)、特石克威特石危威(A11)、福美双(A12)、福美甲胂(A13)、福美锌(A14)、棉隆(A15)、代森硫(A16)、代森环(A17)、代森锰铜(A18)、代森锰锌(A19)、代森锰(A20)、代森联(A21)、代森福美锌(A22)、丙森锌(A23)、代森锌(A24)及其混合物。
在一个实施方案中,优选的二硫代氨基甲酸酯类杀真菌剂是代森锰锌(A19)。
在一个实施方案中,邻氨基苯甲酰胺化合物选自二酰胺类(B)。然而,邻氨基苯甲酰胺化合物的选择可能不应仅限于这些二酰胺类。
在一个实施方案中,邻氨基苯甲酰胺化合物可选自(B1)溴虫氟苯双酰胺、(B2)氯虫苯甲酰胺、(B3)溴氰虫酰胺、(B4)环溴虫酰胺、(B5)氯氟氰虫酰胺、(B6)氟虫双酰胺、(B7)氟氰虫酰胺及其混合物。
氯虫苯甲酰胺(B2)的化学名是3-溴-4’-氯-1-(3-氯-2-吡啶基)-2’-甲基-6’-(甲基氨基甲酰基)吡唑-5-甲酰苯胺,其结构为:
溴氰虫酰胺(B3)的化学名是3-溴-1-(3-氯-2-吡啶基)-4’-氰基-2’-甲基-6’-(甲基氨基甲酰基)吡唑-5-甲酰苯胺,其结构为:
环溴虫酰胺(B4)的化学名是2’,3-二溴-4’-氯-1-(3-氯-2-吡啶基)-6’-{[(1RS)-1-环丙基乙基]氨基甲酰基}吡唑-5-甲酰苯胺,其结构为:
氯氟氰虫酰胺(B5)的化学名是3-氯-N’-(1-氰基-1-甲基乙基)-N-{4-[1,2,2,2-四氟-1-(三氟甲基)乙基]-邻甲苯基}邻苯二甲酰胺,其结构为:
氟虫双酰胺(B6)的化学名是3-碘-N’-(2-甲磺酰基-1,1-二甲基乙基)-N-{4-[1,2,2,2-四氟-1-(三氟甲基)乙基]-邻甲苯基}邻苯二甲酰胺,其结构为:
氟氰虫酰胺(B7)的化学名是1-(3-氯-2-吡啶基)-4’-氰基-2’-甲基-6’-甲基氨基甲酰基-3-{[5-(三氟甲基)-2H-四唑-2-基]甲基}吡唑-5-羧苯胺,其结构为:
溴虫氟苯双酰胺(B1)的化学名是6’-溴-α,α,α,2-四氟-3-(N-甲基苯甲酰胺基)-4’-[1,2,2,2-四氟-1-(三氟甲基)乙基]苯-邻甲苯胺,其结构为:
在一个实施方案中,本发明的组合中的第二杀虫化合物和/或第三杀虫化合物(C)可选自乙酰胆碱酯酶(AChE)抑制剂、GABA门控氯离子通道阻滞剂、钠通道调节剂、烟碱型乙酰胆碱受体(nAChR)竞争性调节剂、烟碱型乙酰胆碱受体(nAChR)变构调节剂、谷氨酸盐门控氯离子通道(GluCl)变构调节剂、保幼激素仿制品、昆虫弦音器TRPV通道调节剂、螨虫生长抑制剂、昆虫中肠膜微生物干扰剂、线粒体三磷酸腺苷合成酶抑制剂、干扰质子梯度影响氧化磷酸化的解偶联剂、烟碱型乙酰胆碱受体(nAChR)通道阻断剂、几丁质生物合成抑制剂、蜕皮干扰剂、蜕皮激素受体激动剂、章胺受体激动剂、线粒体复合物电子传递抑制剂、电压依赖性钠离子通道阻断剂、乙酰辅酶A羧化酶抑制剂、弦音器官调节剂、多位点杂类杀虫剂、生物杀虫剂及其混合物。
因此,在一个实施方案中,乙酰胆碱酯酶(AChE)抑制剂(C)可选自由以下构成组:氨基甲酸酯,诸如棉铃威(C1)、涕灭威(C2)、恶虫威(C3)、苯并呋喃硫酰氯(C4)、丁酮威(C5)、丁酮砜威(C6)、甲萘威(C7)、克百威(C8)、丁硫克百威(C9)、乙硫苯威(C9)、仲丁威(C10)、伐虫脒(C11)、呋线威(C12)、异丙威(C13)、灭虫威(C14)、灭多威(C15)、速灭威(C16)、杀线威(C17)、抗蚜威(C18)、残杀威(C19)、硫双威(C20)、特氨叉威(C21)、唑蚜威(C22)、混杀威(C23)、XMC(C24);灭杀威有机磷酸酯,诸如乙酰甲胺磷(C25)、甲基吡啶磷(C26)、谷硫磷乙酯(C27)、保棉磷(C28)、硫线磷(C29)、氯氧磷(C30)、毒虫畏(C31)、氯甲磷(C32)、毒死蜱(C33)、甲基毒死蜱(C34)、蝇毒磷(C35)、杀螟腈(C36)、内吸磷-S-甲基(C37)、二嗪磷(C38)、敌敌畏/DDVP(C39)、百治磷(C40)、乐果(C41)、甲基毒虫畏(C42)、乙拌磷(C43)、EPN(C44)、乙硫磷(C45)、灭克磷(C46)、伐灭磷(C47)、苯线磷(C48)、杀螟硫磷(C49)、倍硫磷(C50)、噻唑磷(C51)、庚烯磷(C52)、Imicyafos(C53)、异柳磷(C54)、O-(甲氧基氨基硫代-磷酰基)水杨酸异丙酯(C55)、恶唑磷(C56)、马拉硫磷(C57)、灭蚜磷(C58)、甲胺磷(C59)、杀扑磷(C60)、速灭磷(C61)、久效磷(C62)、二溴磷(C63)、氧化乐果(C64)、砜吸磷(C65)、巴拉松(C66)、甲基对硫磷(C67)、稻丰散(C68)、甲拌磷(C69)、伏杀磷(C70)、亚胺硫磷(C71)、精磷胺(C72)、辛硫磷(C73)、甲基嘧啶磷(C74)、丙溴磷(C75)、异丙氧磷(C76)、丙硫磷(C77)、吡唑硫磷(C78)、哒嗪硫磷(C79)、喹硫磷(C80)、治螟磷(C81)、丁基嘧啶磷(C82)、双硫磷(C83)、特丁磷(C84)、杀虫畏(C85)、甲基乙拌磷(C86)、三唑磷(C87)、敌百虫(C87)、蚜灭多(C88)及其混合物。
在一个实施方案中,优选的乙酰胆碱酯酶(AChE)抑制剂可以选自硫双威(C20)、灭多威(C15)、乙酰甲胺磷(C25)和喹硫磷(C80)。
在另一个实施方案中,GABA门控氯离子通道阻滞剂可以选自氯丹(C89)、硫丹(C90)、乙虫腈(C91)、氟虫腈(C92)及其混合物。
优选的GABA门控氯离子通道阻滞剂可以是氟虫腈(C92)。
在一个实施方案中,钠通道调节剂可以选自拟除虫菊酯,诸如氟丙菊酯(C93)、烯丙菊酯(C94)、Es-生物烯丙菊酯(C95)、S-生物丙烯菊酯(C96)、椒菊酯(C97)、联苯菊酯(C98)、κ-联苯菊酯(C99)、生物乙菊酯(C100)、溴灭菊酯(C101)、溴氟菊酯(C102)、溴苄呋菊酯(C103)、苄烯菊酯(C104)、氯烯炔菊酯(C105)、环虫菊酯(C106)、乙氰菊酯(C107)、氟氯氰菊酯(C108)、β-氟氯氰菊酯(C109)、氯氟氰菊酯(C110)、γ-氟氯氰菌酯(C111)、三氟氯氰菊酯(C112)、氯氰菊酯(C113)、α-氯氰菊酯(C114)、β-氯氰菊酯(C115)、θ-氯氰菊酯(C116)、ζ-氯氰菊酯(C116)、苯氰菊酯(C117)、溴氰菊酯(C118)、四氟甲醚菊酯(C119)、苄菊酯(C120)、烯炔菊酯(C121)、右旋反式氯炔丙菊酯(C122)、右旋反式氯丙炔菊酯(123)、五氟苯菊酯(C124)、吡氯氰菊酯(C125)、甲氰菊酯(C126)、氰戊菊酯(C127)、高氰戊菊酯(C128)、氟氰戊菊酯(C129)、氟胺氰菊酯(C129)、氟胺氰菊酯(C130)、炔呋菊酯(C131)、糠醛菊酯(C132)、heptafluthrin(C133)、脒唑菊酯(C134)、喃烯菊酯(C135)、噻嗯菊酯(136)、对甲氧甲基菊酯(C137)、甲氧苄氟菊酯(C138)、ε-甲氧苄氟菊酯(C139)、momfluorothrin(C140)、ε-momfluorothrin(C141)、戊烯氰氯菊酯(C142)、氯菊酯(C143)、生物氯菊酯(C144)、反氯菊酯(C145)、苯醚菊酯(C146)、炔丙菊酯(C147)、profluthrin(C148)、甲呋炔菊酯(C149)、反灭虫菊(C150)、renofluthrin(151)、氯氟醚菊酯(C152)、苄蚨菊酯(C153)、生物苄呋菊酯(C154)、右旋苄呋菊酯(C155)、七氟菊酯(C156)、κ-七氟菊酯(C157)、环戊烯丙菊酯(C158)、胺菊酯(C159)、四氟醚菊酯(C160)、溴氯氰菊酯(C161)、四溴菊酯(C162)、四氟苯菊酯(C163)、戊菊酯(C164)、依芬普司(C165)、三氟醚菊酯(C166)、苄螨醚(C167)、protrifenbute(C168)、硅白灵(C169)、硫肟醚((RS)-[1-(4-氯苯基)-2-(甲硫基)-1-丙酮](EZ)-O-(3-苯氧基苄基)肟)(C170)、硫氟肟醚(C171)或DDT(C172)、甲氧滴滴涕(C173),天然除虫菊酯,诸如瓜叶菊素-I(C174)、瓜叶菊素-II(C175)、茉酮菊素-I(C176)、茉酮菊素-II(C177)、除虫菊素-I(C178)和除虫菊素-II(C179)或其混合物。
优选的钠通道调节剂可以是联苯菊酯(C98)、κ-联苯菊酯(C99)、γ-氟氯氰菌酯(C111)、三氟氯氰菊酯(C112)、氯氰菊酯(C113)、α-氯氰菊酯(C114)、β-氯氰菊酯(C115)、θ-氯氰菊酯(C116)、ζ-氯氰菊酯(C116)、甲氰菊酯(C126)、氯菊酯(C143)及其混合物。
在一个实施方案中,烟碱型乙酰胆碱受体(nAChR)竞争性调节剂可选自新烟碱,诸如啶虫脒(C180)、噻虫胺(C181)、呋虫胺(C182)、吡虫啉(C183)、烯啶虫胺(C184)、噻虫啉(C185)、噻虫嗪(C186);磺胺嘧啶,诸如氟啶虫胺腈(185);丁烯酸内酯,诸如氟吡呋喃酮(C186);Mesoionics,诸如Triflumezopyrim(C186)及其混合物。
烟碱型乙酰胆碱受体(nAChR)竞争性调节剂可以是啶虫脒(C180)、噻虫胺(C181)、吡虫啉(C183)、噻虫啉(C185)、噻虫嗪(C186)、氟啶虫胺腈(185)。
在一个实施方案中,烟碱型乙酰胆碱受体(nAChR)变构调节剂可以选自多杀霉素,诸如爱绿士(C187)、多杀菌素(C188)及其混合物。
优选的烟碱型乙酰胆碱受体(nAChR)变构调节剂可以是多杀菌素(C188)。
在一个实施方案中,谷氨酸盐门控氯离子通道(GluCl)变构调节剂诸如阿维菌素选自齐螨素(C189)、甲胺基阿维菌素苯甲酸盐(C190)、Lepimectin(C191)以及米尔贝霉素,诸如密灭汀(C192)、密灭汀A3(C193)、密灭汀A4(C194)、米多霉素(C195)及其混合物。
优选的谷氨酸盐门控氯离子通道(GluCl)变构调节剂可以是齐螨素(C189)。
在一个实施方案中,保幼激素仿制品可以选自烯虫乙酯(C196)、烯虫炔酯(C197)、烯虫酯(C198)、苯氧威(C199)、吡丙醚(C200)及其混合物。
优选的保幼激素仿制品可以是吡丙醚(C200)。
在一个实施方案中,杂类非特异性(多位点)抑制剂杀虫剂可以选自溴甲烷等,氯化苦(C201)、冰晶石(六氟铝酸钠)(C202)、硫酰氟(C203)、硼砂(C204)、硼酸(C205)、氧化硼钠(C206)、硼酸三钠(C207)、偏硼酸钠(C208)、吐酒石(C209)、棉隆(C210)、威百亩(C211)及其混合物。
在一个实施方案中,昆虫弦音器TRPV通道调节剂可以选自吡蚜酮(C212)、新喹唑啉(间二氮杂苯)类杀虫剂(C213)及其混合物。
在一个实施方案中,螨虫生长抑制剂可以选自四螨嗪(C214)、氟螨嗪(C215)、噻螨酮(C216)、乙螨唑(C217)及其混合物。
在一个实施方案中,昆虫中肠膜微生物干扰剂可以选自苏云金芽孢杆菌以色列亚种(C218)、苏云金芽孢杆菌鲇泽亚种(C219)、苏云金芽孢杆菌库斯塔克亚种(C219)、苏云金芽孢杆菌拟步甲亚种(C220)、苏云金芽孢杆菌作物蛋白质诸如Cry1Ab(C221)、Cry1Ac(C222)、Cry1Fa(C223)、Cry1A.105(224)、Cry2Ab(C225)、Vip3A(C226)、mCry3A(C227)、Cry3Ab(C228)、Cry3Bb(C229)、Cry34Ab1/Cry35Ab1(C230)、球形芽孢杆菌(C231)等。
在一个实施方案中,线粒体三磷酸腺苷合成酶抑制剂可以选自丁醚脲(C232)、三唑锡(C233)、三环锡(C234)、苯丁锡(C235)、炔螨特(236)、三氯杀螨砜(C237)及其混合物。
在一个实施方案中,干扰质子梯度影响氧化磷酸化的解偶联剂可以选自溴虫腈(C238)、DNOC(C239)、氟虫胺(C240)及其混合物。
在一个实施方案中,烟碱型乙酰胆碱受体(nAChR)通道阻断剂可以选自杀虫磺(C241)、杀螟丹(C242)、杀虫环(C243)、杀虫双(C244)及其混合物。
在一个实施方案中,几丁质生物合成抑制剂可以选自双三氟虫脲(C245)、氟啶脲(C246)、氟脲杀(C247)、氟环脲(C248)、氟虫脲(C249)、除虫脲(C250)、虱螨脲(C251)、氟酰脲(C252)、多氟脲(C253)、氟苯脲(C254)、杀虫脲(C255)、噻嗪酮(C256)及其混合物。
优选的几丁质生物合成抑制剂可以是氟酰脲(C252)、氟啶脲(C246)、虱螨脲(C251)、噻嗪酮(C256)。
在一个实施方案中,蜕皮干扰剂可以选自环丙氨嗪(C257)等。
在一个实施方案中,蜕皮激素受体激动剂可以选自环虫酰肼(C258)、氯虫酰肼(C259)、甲氧虫酰肼(C260)、虫酰肼(C261)及其混合物。
优选的蜕皮激素受体激动剂可以选自甲氧虫酰肼(C260)。
在一个实施方案中,章胺受体激动剂可以选自双甲脒(C262)等。
在一个实施方案中,线粒体复合物电子传递抑制剂可以选自氟蚁腙(C263)、灭螨醌(C264)、嘧螨酯(C265)、联苯肼酯(C266)、喹螨醚(C267)、唑螨酯(C268)、哒螨灵(C269)、嘧螨醚(C270)、吡螨胺(C271)、唑虫酰胺(C272)、鱼藤酮(C273)、磷化铝(C274)、磷化钙(C275)、磷化氢(C276)、磷化锌(C277)、氰化钙(C278)、氰化钾(C279)、氰化钠(280)、腈吡螨酯(C281)、丁氟螨酯(C282)、Pyflubumide(C283)及其混合物。
优选的线粒体复合物电子传递抑制剂可以是联苯肼酯(C266)、唑螨酯(C268)、哒螨灵(C269)、嘧螨醚(C270)、吡螨胺(C271)。
在一个实施方案中,电压依赖性钠离子通道阻断剂可以选自茚虫威(C272)、氰氟虫腙(C273)及其混合物。
在一个实施方案中,乙酰辅酶A羧化酶抑制剂可以选自Tetronic和Tetramic酸衍生物,诸如螺螨酯(C274)、螺甲螨酯(C275)、螺虫乙酯(C276)和Spiropidion(C277)及其混合物。
在一个实施方案中,弦音器官调节剂—未定义的靶位点可以选自氟啶虫酰胺(C278)等。
在一个实施方案中,生物杀虫剂可以选自植物性杀虫剂,诸如azadirectin A(C279)、euginol(C280)、苦楝油(C281)、川楝素(C282)、1-肉桂酰基-3-铁酰基-11-氢木霉酚(C283)、volkensin(C284)、(+)-柠檬烯(C285)、薄荷醇(C286)、桉叶油醇(C287)、香茅醛(C288)、丁香酚(C289)、孟二醇(C290)、百里酚(C291)等及其混合物。
在一个实施方案中,优选的酰胺邻氨基苯甲酰胺杀虫化合物是氯虫苯甲酰胺。
在一个实施方案中,优选的邻氨基苯甲酰胺杀虫剂化合物是溴氰虫酰胺。
因此,本发明的一个方面可以提供组合,包含:
(a)至少一种二酰胺杀虫剂,该至少一种二酰胺杀虫剂选自溴虫氟苯双酰胺、氯虫苯甲酰胺、溴氰虫酰胺、环溴虫酰胺、氯氟氰虫酰胺、氟虫双酰胺和氟氰虫酰胺;
(b)至少一种选自以下的多位点接触杀真菌剂:
(i)铜类杀真菌剂,这些铜类杀真菌剂选自氯氧化铜、硫酸铜、氢氧化铜和三碱基硫酸铜(波尔多混合剂);
(ii)元素硫;
(iii)二硫代氨基甲酸酯类杀真菌剂,这些二硫代氨基甲酸酯类杀真菌剂选自代森铵、福美胂、氧化福美双、吗菌威、硫杂灵、福美铜氯、双硫仑、福美铁、威百亩、代森钠、特石克威特石危威、福美双、福美甲胂、福美锌、棉隆、代森硫、代森环、代森锰铜、代森锰锌、代森锰、代森联、代森福美锌、丙森锌和代森锌;
(iv)邻苯二甲酰亚胺杀真菌剂,这些邻苯二甲酰亚胺杀真菌剂选自灭菌丹、克菌丹和敌菌丹;
(v)百菌清;
(vi)磺胺类杀真菌剂,这些磺胺类杀真菌剂选自抑菌灵和对甲抑菌灵;
(vii)双胍类杀真菌剂,这些双胍类杀真菌剂选自多果定、双辛胍胺和双胍辛胺;
(viii)敌菌灵;
(ix)二噻农;以及
(x)及其组合;
(c)至少一种杀虫活性物质,该至少一种杀虫活性物质选自乙酰胆碱酯酶(AChE)抑制剂、GABA门控氯离子通道阻滞剂、钠通道调节剂、烟碱型乙酰胆碱受体(nAChR)竞争性调节剂、烟碱型乙酰胆碱受体(nAChR)变构调节剂、谷氨酸盐门控氯离子通道(GluCl)变构调节剂、保幼激素仿制品、昆虫弦音器TRPV通道调节剂、螨虫生长抑制剂、昆虫中肠膜微生物干扰剂、线粒体三磷酸腺苷合成酶抑制剂、干扰质子梯度影响氧化磷酸化的解偶联剂、烟碱型乙酰胆碱受体(nAChR)通道阻断剂、几丁质生物合成抑制剂、蜕皮干扰剂、蜕皮激素受体激动剂、章胺受体激动剂、线粒体复合物电子传递抑制剂、电压依赖性钠离子通道阻断剂、乙酰辅酶A羧化酶抑制剂、弦音器官调节剂、多位点杂类杀虫剂、生物杀虫剂及其混合物。
在另一个实施方案中,本发明可以提供包括以下项的组合:
(a)至少一种二酰胺杀虫剂,该至少一种二酰胺杀虫剂选自溴虫氟苯双酰胺、氯虫苯甲酰胺、溴氰虫酰胺、环溴虫酰胺、氯氟氰虫酰胺、氟虫双酰胺和氟氰虫酰胺;
(b)至少一种二硫代氨基甲酸酯类杀真菌剂,该二硫代氨基甲酸酯类杀真菌剂选自代森铵、福美胂、氧化福美双、吗菌威、硫杂灵、福美铜氯、双硫仑、福美铁、威百亩、代森钠、特石克威特石危威、福美双、福美甲胂、福美锌、棉隆、代森硫、代森环、代森锰铜、代森锰锌、代森锰、代森联、代森福美锌、丙森锌和代森锌;
(c)至少一种杀虫活性物质,该至少一种杀虫活性物质选自乙酰胆碱酯酶(AChE)抑制剂、GABA门控氯离子通道阻滞剂、钠通道调节剂、烟碱型乙酰胆碱受体(nAChR)竞争性调节剂、烟碱型乙酰胆碱受体(nAChR)变构调节剂、谷氨酸盐门控氯离子通道(GluCl)变构调节剂、保幼激素仿制品、昆虫弦音器TRPV通道调节剂、螨虫生长抑制剂、昆虫中肠膜微生物干扰剂、线粒体三磷酸腺苷合成酶抑制剂、干扰质子梯度影响氧化磷酸化的解偶联剂、烟碱型乙酰胆碱受体(nAChR)通道阻断剂、几丁质生物合成抑制剂、蜕皮干扰剂、蜕皮激素受体激动剂、章胺受体激动剂、线粒体复合物电子传递抑制剂、电压依赖性钠离子通道阻断剂、乙酰辅酶A羧化酶抑制剂、弦音器官调节剂、多位点杂类杀虫剂、生物杀虫剂及其混合物。
可以组合物的形式配制本发明的组合。
在一个实施方案中,本发明可提供一种组合物,包含:
(a)至少一种二酰胺杀虫化合物,该至少一种二酰胺杀虫化合物选自溴虫氟苯双酰胺、氯虫苯甲酰胺、溴氰虫酰胺、环溴虫酰胺、氯氟氰虫酰胺、氟虫双酰胺和氟氰虫酰胺;
(b)至少一种二硫代氨基甲酸酯类杀真菌剂;
(c)至少另一种杀虫剂;以及
(d)至少一种农用化学可接受的赋形剂。
在一个实施方案中,本发明可提供一种组合物,包含:
(a)至少一种二酰胺杀虫化合物,该至少一种二酰胺杀虫化合物选自溴虫氟苯双酰胺、氯虫苯甲酰胺、溴氰虫酰胺、环溴虫酰胺、氯氟氰虫酰胺、氟虫双酰胺和氟氰虫酰胺;
(b)至少一种二硫代氨基甲酸酯类杀真菌剂;
(c)至少另一种杀虫活性物质;
(d)至少一种其他农用化学品活性物质;以及
(e)至少一种农用化学可接受的赋形剂。
待施用的本发明组合物的量取决于各种因素,诸如处理对象,诸如,例如植物、土壤或种子;处理的类型,诸如,例如喷洒、扑粉或拌种;处理的目的,诸如,例如预防性或治疗性病害防治;在病害防治的情况下,待防治的真菌类型或施用时间。待施用的本发明的组合的量可以由熟练的农学家容易地推导出来。
本发明的组合物可以与其他农业化学活性物质混合,包括但不限于除草剂、杀真菌剂、肥料、植物生长调节剂等。
因此,在一个实施方案中,本发明可提供组合物,包含:
(a)至少一种二酰胺杀虫剂,该至少一种二酰胺杀虫剂选自溴虫氟苯双酰胺、氯虫苯甲酰胺、溴氰虫酰胺、环溴虫酰胺、氯氟氰虫酰胺、氟虫双酰胺、氟氰虫酰胺;
(b)至少一种二硫代氨基甲酸酯类杀真菌剂;以及
(c)至少一种其他杀虫活性物质。
在一个实施方案中,通常组合物中二酰胺杀虫化合物的总量可以在0.1至99重量%的范围内,优选0.2至90重量%的范围内。组合物中二硫代氨基甲酸酯类杀真菌剂的总量可以在0.1至99重量%的范围内。组合物中其他杀虫活性物质的总量可以在0.1至99重量%的范围内。
在一个实施方案中,本发明组合的组成杀真菌剂可以分别以(1-80):(1-80):(1-80)的二硫代氨基甲酸酯类杀真菌剂、邻氨基苯甲酰胺杀虫化合物和一种其他杀虫剂的比例混合。
在一个实施方案中,本发明组合物的组分可以在感染部位罐混和喷洒,另选地可以与表面活性剂混合然后喷洒。
在一个实施方案中,本发明组合物的组分可用于叶面施用、地面施用或对植物繁殖材料施用。
在一个实施方案中,本发明的组合物通常可以通过将组合物中的活性物质与惰性载体混合,并根据需要添加表面活性剂和其他佐剂和载体并配制成固体或液体制剂,包括但不限于可润湿散剂、颗粒剂、粉剂,可溶性(液体)浓缩物、悬浮浓缩物、水包油乳液、油包水乳液、乳油、胶囊悬浮液、ZC制剂、油分散体或其他已知的制剂类型。该组合物还可用于处理植物繁殖材料,诸如种子等。
制剂中使用的固体载体的示例包括细粉或颗粒诸如矿物质诸如高岭土、绿坡缕石粘土、膨润土、蒙脱土、酸白土、叶蜡石、滑石、硅藻土和方解石;天然有机材料诸如玉米粉和核桃壳粉;合成有机材料诸如尿素;盐诸如碳酸钙和硫酸铵;合成无机材料诸如合成水合氧化硅;以及液体载体,芳香族烃类诸如二甲苯、烷基苯、甲基萘;醇类诸如2-丙醇、乙二醇、丙二醇和乙二醇单乙醚;酮类诸如丙酮、环己酮和异佛尔酮;植物油诸如豆油和棉籽油;石油脂肪烃、酯、二甲基亚砜、乙腈和水。
表面活性剂的示例包括阴离子表面活性剂诸如烷基硫酸酯盐、烷基芳基磺酸盐、二烷基磺基琥珀酸盐、聚氧乙烯烷基芳基醚磷酸酯盐、木质素磺酸盐和萘磺酸盐甲醛缩聚物;以及非离子表面活性剂诸如聚氧乙烯烷基芳基醚、聚氧乙烯烷基聚氧丙烯嵌段共聚物和脱水山梨糖醇脂肪酸酯与阳离子表面活性剂诸如烷基三甲基铵盐。
其他制剂辅剂的示例包括水溶性聚合物诸如聚乙烯醇和聚乙烯基吡咯烷酮,多糖诸如阿拉伯胶、海藻酸及其盐、CMC(羧甲基纤维素)、黄原胶,无机材料诸如硅酸铝镁和氧化铝溶胶、防腐剂、着色剂和稳定剂诸如PAP(酸性磷酸异丙酯)和BHT。
根据本发明的组合物对以下植物病害有效:
水稻病害:稻瘟病(Magnaporthe grisea)、长蠕孢菌叶斑病(Cochliobolusmiyabeanus)、纹枯病(Rhizoctonia solani)和恶苗病(Gibberella fujikuroi)。
小麦病害:白粉病(Erysiphe graminis)、镰刀菌枯萎病(Fusarium graminearum、F.avenacerum、F.culmorum、Microdoohium nivale)、锈病(Puccinia striiformis、P.graminis、P.recondita)、粉雪霉病(Micronectriella nivale)、雪腐菌核病(Typhulasp.)、散黑穗病(Ustilago tritici)、黑穗病(Tilletia caries)、眼斑病(Pseudocercosporella herpotrichoides)、叶疱病(Mycosphaerella graminicola)、颖枯病(Stagonospora nodorum)、壳针抱属和禾口黄斑病(Pyrenophora tritici-repentis)。
大麦病害:白粉病(Erysiphe graminis)、镰刀菌枯萎病(Fusarium graminearum、F.avenacerum、F.culmorum、Microdochium nivale)、锈病(Puccinia striiformis、P.graminis、P.hordei)、散黑穗病(Ustilago nuda)、云斑病(Rhynchosporium secalis)、网斑病(Pyrenophora teres)、斑枯病(Cochliobolus sativus)、叶条纹病(Pyrenophoragraminea)和丝核菌立枯病(Rhizoctonia solani)。
玉米病害:黑穗病(Ustilago maydis)、褐斑病(Cochliobolus heterostrophus)、铜斑病(Gloeocercospora sorghi)、南方锈病(Puccinia polysora)、灰斑病(Cercosporazeae-maydis)、白斑病(Phaeosphaeria mydis和/或Pantoea ananatis)和丝核菌立枯病(Rhizoctonia solani)。
柑橘病害:黑变病(Diaporthe citri)、疮痂病(Elsinoe fawcetti)、青霉腐烂病(Penicillium digitatum、P.italicum)和褐腐病(Phytophthora parasitica、Phytophthora citrophthora)。
苹果病害:花枯病(Monilinia mali)、溃疡病(Yalsa ceratosperma)、白粉病(Podosphaera leucotricha)、交链孢叶斑病(Altemaria altemata apple pathotype)、疮痂病(Venturia inaequalis)、白粉病、苦腐病(Colletotrichum acutatum)、冠腐病(Phytophtora cactorum)、斑病(Diplocarpon mali)和环腐病(Botryosphaeriaberengeriana)。
梨病害:疮痂病(Venturia nashicola,V.pirina)、白粉病、黑斑病(Alternariaalternata Japanese pear pathotype)、锈病(Gymnosporangium haraeanum)和禾口疫霉果腐病(Phytophtora cactorum)。
桃病害:褐腐病(Monilinia fructicola)、白粉病、疮痂病(Cladosporiumcarpophilum)和禾口褐纹病(Phomopsis sp.)。
葡萄病害:炭疽病(Elsinoe ampelina)、成熟腐烂病(Glomerella cingulata)、白粉病(Uncinula necator)、锈病(Phakopsora ampelopsidis)、黑腐病(Guignardiabidwellii)、灰霉病和霜霉病(Plasmopara viticola)。
日本柿子病害:炭疽病(Gloeosporium kaki)和叶斑病(Cercospora kaki、Mycosphaerella nawae)。
葫芦病害:炭疽病(Colletotrichum lagenarium)、白粉病(Sphaerothecafuliginea)、蔓枯病(Mycosphaerella melonis)、枯萎病(Fusarium oxysporum)、霜霉病(Pseudoperonospora cubensis)、疫病(Phytophthora sp.)和立枯病(Pythium sp)。
番茄病害:早疫病(Alternaria solani)、叶霉病(Cladosporium fulvum)和晚疫病(Phytophthora infestans)。
茄子病害:褐斑病(Phomopsis vexans)和白粉病(Erysiphe cichoracearum)。十字花科蔬菜病害:交链孢叶斑病(Alternaria japonica)、白斑(Cercosporellabrassicae)、根瘤病(Plasmodiophora brassicae)和霜霉病(Peronospora parasitica)。
洋葱病害:锈病(Puccinia allii)和霜霉病(Peronospora destructor)。
大豆病害:紫斑病(Cercospora kikuchii)、痴圆抱属疫痴病(Elsinoeglycines)、豆荚禾口莲疫病(Diaporthe phaseolorum var sojae)、壳针抱属揭斑病(Septoria glycines)、灰斑病(Cercospora sojina)、锈病(Phakopsora pachyrhizi)、黄锈病、褐茎腐病(Phytophthora sojae)和丝核菌立枯病(Rhizoctonia solani)。
芸豆病害:炭疽病(Colletotrichum lindemthianum)。花生病害:叶斑病(Cercospora personata)、褐斑病(Cercospora arachidicola)和白绢病(Sclerotiumrolfsii)。
豌豆病害:白粉病(Erysiphe pisi)和根腐病(Fusarium solani f.sp.pisi)。
马铃薯病害:早疫病(Alternaria solani)、晚疫病(Phytophthora infestans),粉红腐烂病(Phytophthora erythroseptica)和粉状疮痂病(Spongospora subterraneanf.sp.subterranea)。
草莓病害:白粉病(Sphaerotheca humuli)和炭疽病(Glomerella cingulata)。
茶病害:网饼病(Exobasidium reticulatum)、白痂(Elsinoe leucospila)、灰枯病(Pestalotiopsis sp.)和炭疽病(Colletotrichum theae-sinensis)。
烟草病害:褐斑病(Alternaria longipes)、白粉病(Erysiphe cichoracearum)、炭疽病(Colletotrichum tabacum)、霜霉病(Peronospora tabacina)和黑胫病(Phytophthora nicotianae)。
油菜籽病害:菌核病(Sclerotinia sclerotiorum)和丝核菌立枯病(Rhizoctoniasolani)。棉花病害:丝核菌立枯病(Rhizoctonia solani)。
甜菜病害:尾孢菌叶斑病(Cercospora beticola)、叶枯病(Thanatephoruscucumeris)、根腐病(Thanatephorus cucumeris)和丝囊霉根腐病(Aphanomycescochlioides)。
玫瑰病害:黑斑病(Diplocarpon rosae)、白粉病(Sphaerotheca pannosa)和霜霉病(Peronospora sparsa)。菊花和菊科植物的病害:霜霉病(Bremia lactucae)、叶枯病(Septoria chrysanthemi-indici)和白锈病(Puccinia horiana)。
各类病害:由腐霉属引起的病害(Pythium aphanidermatum、Pythiumdebarianum、Pythium graminicola、Pythium irregulare、Pythium ultimum)、灰霉病(Botrytis cinerea)和菌核病(Sclerotinia sclerotiorum)。
日本萝卜病害:交链孢叶斑病(Alternaria brassicola)。
草坪草病害:硬币元状斑病(Sclerotinia homeocarpa)、棕色斑块和大片(Rhizoctonia solani)。
香蕉病害:黑叶斑病(Mycosphaerella fijiensis)、黄叶斑病(Mycosphaerellamusicola)。
向日葵病害:霜霉病(Plasmopara halstedii)。
由曲霉属、青霉属、镰刀菌属、赤霉菌属、木霉属、根串珠霉属、根霉属、毛霉属、伏革菌属、茎点霉属、丝核菌属和色二孢属引起的各种植物生长早期的种子病害或病害。
由多粘霉属或油壶菌属介导的各种植物的病毒性病害等。
在一个实施方案中,由本发明的组合防治的害虫可以属于昆虫纲、蛛形纲和线虫纲。示例性害虫可包括:来自鳞翅目的害虫,诸如长翅卷蛾属(Acleris spp.)、褐带卷蛾属(Adoxophyes spp.)、透翅蛾属(Aegeria spp.)、地虎属(Agrotis spp.)、棉叶虫(Alabamaargillaceae)、Amylois spp.、大豆夜蛾(Anticarsia gemmatalis)、黄卷蛾属(Archipsspp.)、卷蛾属(Argyrotaenia spp.)、丫蚊夜蛾属(Autographa spp.)、亚澳白裙夜蛾(Busseola fusca)、粉斑螟蛾(Cadra cautella)、桃小食心虫(Carposina nipponensis)、禾草螟属(Chilo spp.)、色卷蛾属(Choristoneura spp.)、葡萄果蠹蛾(Clysiaambiguella)、纵巻叶野螟属(Cnaphalocrocis spp.)、云卷蛾属(Cnephasia spp.)、细卷蛾属(Cochylis spp.)、鞘蛾属(Coleophora spp.)、绒毛螟属(Crocidolomia spp.)、苹果异形小卷蛾(Cryptophlebia leucotreta)、大豆银夜蛾(Crysodeixis includens)、小卷蛾属(Cydia spp.)、螟属(Diatraea spp.)、苏丹棉铃虫(Diparopsis castanea)、金刚钻属(Earias spp.)、玉米苗斑螟属(Elasmopalpus spp.)、粉斑螟属(Ephestia spp.)、花小卷蛾属(Eucosma spp.)、葡萄与苹果卷叶蛾(Eupoecilia ambiguella)、黄毒蛾属(Euproctisspp.)、切夜蛾属(Euxoa spp.)、小食心虫属(Grapholita spp.)、云雾广翅小卷蛾(Hedyanubiferana)、实夜蛾属(Heliothis spp.)、菜心野螟(Hellula undalis)、美国白蛾(Hyphantria cunea)、番茄茎麦蛾(Keiferia lycopersicella)、旋纹潜叶蛾(Leucopterascitella)、细蛾属(Lithocollethis spp.)、葡萄花翅小卷蛾(Lobesia botrana)、毒蛾属(Lymantria spp.)、潜蛾属(Lyonetia spp.)、天幕毛虫属(Malacosoma spp.)、甘蓝夜蛾(Mamestra brassicae)、烟草天蛾(Manduca sexta)、秋尺蛾属(Operophtera spp.)、欧洲玉米螟(Ostrinia nubilalis)、超小卷蛾属(Pammene spp.)、褐卷蛾属(Pandemis spp.)、小眼夜蛾(Panolis flammea)、棉红铃虫(Pectinophora gossypiella)、马铃薯块茎蛾(Phthorimaea operculella)、菜粉蝶(Pieris rapae)、菜粉蝶属(Pieris spp.)、小菜蛾(Plutella xylostella)、小白巢蛾属(Prays spp.)、白禾螟属(Scirpophaga spp.)、蛀茎夜蛾属(Sesamia spp.)、长须卷蛾属(Sparganothis spp.)、灰翅夜蛾属(Spodopteraspp.)、透翅蛾属(Synanthedon spp.)、带蛾属(Thaumetopoea spp.)、卷蛾属(Tortrixspp.)、粉纹夜蛾(Trichoplusia ni)和巢蛾属(Yponomeuta spp.);来自鞘翅目的害虫,诸如叩甲属(Agriotes spp.)、花象属(Anthonomus spp.)、甜菜隐食甲(Atomarialinearis)、龟象属(Ceutorhynchus spp.)、甜菜茎跳甲(Chaetocnema tibialis)、根颈象属(Cosmopolites spp.)、象虫属(Curculio spp.)、皮蠹属(Dermestes spp.)、叶甲属(Diabrotica spp.)、食植瓢虫属(Epilachna spp.)、Eremnus spp.、土潜属(Gonocephalumspp.)、欧麻蝇属(Heteronychus spp.)、科罗拉多金花虫(Leptinotarsa decemlineata)、稻水象属(Lissorhoptrus spp.)、鳃金龟属(Melolontha spp.)、Orycaephilus spp.、草莓根象甲(Otiorhynchus spp.)、斑象属(Phlyctinus spp.)、菜跳甲属(Phyllotreta spp.)、云粉蝶属(Popillia spp.)、Protostrophus spp.、蚤跳甲属(Psylliodes spp.)、谷蠹属(Rhizopertha spp.)、金龟子科(Scarabeidae)、米象属(Sitophilus spp.)、麦蛾属(Sitotroga spp.)、拟步行虫属(Tenebrio spp.)、拟谷盗属(Tribolium spp.)和斑皮蠹属(Trogoderma spp.);来自直翅目的害虫,诸如蜚蠊属(Blatta spp.)、小蠊属(Blattellaspp.)、蝼蛄属(Gryllotalpa spp.)、马德拉蜚蠊(Leucophaea maderae)、飞幢属(Locustaspp.)、大蠊属(Periplaneta spp.)和沙漠蝗属(Schistocerca spp.);来自等翅目的害虫,诸如散白蚁属(Reticulitermes spp.);来自啮齿目的害虫,诸如嗜虫书虱属(Liposcelisspp.);来自虱目的害虫,诸如血風属(Haematopinus spp.)、毛風属(Linognathus spp.)、風属(Pediculus spp.)、瘿绵蚜属(Pemphigus spp.)和葡萄根瘤姆属(Phylloxera spp.);来自食毛目的害虫,诸如畜虱属(Damalinea spp.)和嚼風属(Trichodectes spp.);来自缨翅目的害虫,诸如花蓟马属(Frankliniella spp.)、篱蓟马属(Hercinothrips spp.)、带蓟马属(Taeniothrips spp.)、棕榈蓟马(Thrips palmi)、烟蓟马(Thrips tabaci)和非洲橘硬蓟马(Scirtothrips aurantii);来自异翅亚目的害虫,诸如椿虫(Dichelopsmelacanthus)、可可狄盲棒(Distantiella theobroma)、棉红蝽属(Dysdercus spp.)、Euchistus spp.、Eurygaster spp.、稻缘畴属(Leptocorisa spp.)、绿蝽属(Nezaraspp.)、皮蝽属(Piesma spp.)、红猎蝽属(Rhodnius spp.)、可可褐盲蝽(Sahlbergellasingularis)、黑蝽属(Scotinophara spp.)和椎猎蝽属(Triatoma spp.);来自同翅目的害虫,诸如橘绵粉虱(Aleurothrixus floccosus)、菜粉風(Aleyrodes brassicae)、肾圆盾阶属(Aonidiella spp.)、蚜科(Aphididae)、顿虫属(Aphis spp.)、圆盾阶属(Aspidiotusspp.)、烟草粉虱(Bemisia tabaci)、蜡蚧属(Ceroplaster spp.)、黑褐圆盾蚧(Chrysomphalus aonidium)、橙褐圆盾介壳虫(Chrysomphalus dictyospermi)、米兰褐软蚧(Coccus hesperidum)、小绿叶蜂属(Empoasca spp.)、苹果棉蚜(Eriosoma larigerum)、斑叶蝉属(Erythroneura spp.)、Gascardia spp.、灰飞虱属(Laodelphax spp.)、水土坚蚧(Lecanium corni)、顿盾阶属(Lepidosaphes spp.)、Macrosiphus spp.、Myzus spp.、黑尾叶蝉属(Nephotettix spp.)、褐飞虱属(Nilaparvata spp.)、环翅卷蛾属(Paratoriaspp.)、瘿绵蚜属(Pemphigus spp.)、臀纹粉蚁属(Planococcus spp.)、白盾蚧属(Pseudaulacaspis spp.)、粉蚧属(Pseudococcus spp.)、木風属(Psylla spp.)、棉蚁(Pulvinaria aethiopica)、笠圆盾蚧属(Quadraspidiotus spp.)、缢管蚜属(Rhopalosiphum spp.)、黑盔蚧属(Saissetia spp.)、带叶蝉属(Scaphoideus spp.)、二叉蚜属(Schizaphis spp.)、麦蚜属(Sitobion spp.)、温室粉虱(Trialeurodesvaporariorum)、非洲柑橘木虱(Trioza erytreae)和桔矢尖蚧(Unaspis citri);来自膜翅目的害虫,诸如顶切叶蚁属(Acromyrmex)、菜叶蜂(Athalia rosae)、切叶白蚁属(Attaspp.)、茎蜂属(Cephus spp.)、松叶蜂属(Diprion spp.)、松叶蜂科(Diprionidae)、云杉吉松叶蜂(Gilpinia polytoma)、实叶蜂属(Hoplocampa spp.)、毛蚁属(Lasius spp.)、法老小家蚁(Monomorium pharaonis)、新松叶蜂属(Neodiprion spp.)、水蚁属(Solenopsisspp.)和胡蜂属(Vespa spp.);来自双翅目的害虫,诸如Antherigona soccata、全北毛蚁(Bibio hortulanus)、小条实蝇属(Ceratitis spp.)、金蝇属(Chrysomyia spp.)、库蚊属(Culex spp.)、黄蝇属(Cuterebra spp.)、寡毛实蝇属(Dacus spp.)、地种蝇属(Deliaspp.)、黑尾果蝇(Drosophila melanogaster)、斑潜蝇属(Liriomyza spp.)、黑潜蝇属(Melanagromyza spp.)、瘿蚊属(Orseolia spp.)、黑麦秆蝇(Oscinella frit)、藜泉蝇(Pegomyia hyoscyami)、草种蝇属(Phorbia spp.)、苹果实蝇(Rhagoletis pomonella)、尖眼蕈蚊属(Sciara spp.);来自蜱螨目的害虫,诸如粗脚粉螨(Acarus siro)、柑橘瘤瘿螨(Aceria sheldoni)、苹果刺锈螨(Aculus schlechtendali)、花蜱属(Amblyomma spp.)、锐缘蜱属(Argas spp.)、短须螨属(Brevipalpus spp.)、苜蓿苔螨(Bryobia praetiosa)、上三节瘿螨属(Calipitrimerus spp.)、皮螨属(Chorioptes spp.)、鸡螨虫(Dermanyssusgallinae)、鹅耳枥始叶螨(Eotetranychus carpini)、瘿螨属(Eriophyes spp.)、璃眼蜱属(Hyalomma spp.)、草地小爪螨(Olygonychus pratensis)、钝缘蜱属(Ornithodorosspp.)、全爪螨属(Panonychus spp.)、皱叶剌瘿螨属(Phyllocoptruta spp.)(诸如柑桔皱叶刺节蜱(Phyllocoptruta oleivora))、茶黄螨(Polyphagotarsonemus latus)、库螨属(Psoroptes spp.)、扇头蜱属(Rhipicephalus spp.)、根螨属(Rhizoglyphus spp.)、挤螨属(Sarcoptes spp.)、跗线螨属(Tarsonemus spp.)和叶螨属(Tetranychus spp.)以及来自线虫类根结线虫属(Meloidogyne spp.)物种(例如,西瓜根结线虫(Meloidogyneincoginita)和爪哇根结线虫(Meloidogynejavanica))、异皮线虫属(Heterodera spp.)(例如,大豆胞囊线虫(Heterodera glycines)、甜菜胞囊线虫(Heterodera schachtii)、燕麦异皮线虫(Heterodora avenae)和三叶草异皮线虫(Heterodora trifolii))、球异皮线虫属(Globodera spp.)(例如,马铃薯金线虫(Globodera rostochiensis))、穿孔线虫属(Radopholus spp.)(例如,香蕉穿孔线虫(Radopholus similes))、肾形线虫属(Rotylenchulus spp.)、短体线虫属(Pratylenchus spp.)(例如,落选短体线虫(Pratylenchus neglectans)和穿刺短体线虫(Pratylenchus penetrans))、滑刃线虫(Aphelenchoides spp.)、螺旋线虫属(Helicotylenchus spp.)、纽带线虫属(Hoplolaimusspp.)、拟毛刺线虫属(Paratrichodorus spp.)、长针线虫属(Longidorus spp.)、真珠线虫属(Nacobbus spp.)、亚蛇形线虫属(Subanguina spp.)、刺线虫属(Belonlaimus spp.)、小环线虫属(Criconemella spp.)、轮线虫属(Criconemoides spp.)、茎线虫属(Ditylenchusspp.)、锥线虫属(Dolichodorus spp.)、半轮线虫属(Hemicriconemoides spp.)、鞘线虫属(Hemicycliophora spp.)、潜根线虫属(Hirschmaniella spp.)、根结线虫属(Hypsoperinespp.)、大节片线虫属(Macroposthonia spp.)、矮化线虫属(Melinius spp.)、斑皮线虫属(Punctodera spp.)、五沟线虫属(Quinisulcius spp.)、盾状线虫属(Scutellonemaspp.)、剑线虫属(Xiphinema spp.)和矮化线虫属(Tylenchorhynchus spp.)。
本发明的组合物可用于农田,诸如田地、稻田、草坪和果园或非农业用地。
本发明可用于防治农田中的病害以培养植物而对植物没有任何植物毒性。
可以使用本发明组合物的作物的示例包括但不限于玉米、大米、小麦、大麦、黑麦、燕麦、高粱、棉花、大豆、花生、荞麦、甜菜、油菜籽、向日葵、甘蔗、烟草等;蔬菜:茄科蔬菜诸如茄子、番茄、洋葱、胡椒、土豆等,葫芦科蔬菜诸如黄瓜、南瓜、西葫芦、西瓜、甜瓜、南瓜等,十字花科蔬菜诸如萝卜、白萝卜、辣根、大头菜、大白菜、卷心菜、芥菜、西兰花、花椰菜等,菊科蔬菜诸如牛蒡、皇冠雏菊、朝鲜蓟、生菜等,百合科蔬菜诸如葱、洋葱、大蒜、芦笋等,伞形科蔬菜诸如胡萝卜、欧芹、芹菜、欧洲防风草等,藜科蔬菜诸如菠菜、瑞士甜菜等,唇形科蔬菜诸如紫苏、薄荷、罗勒等,草莓、甘薯、日本薯蓣、芋等,花卉、观叶植物、草坪草、水果:仁果类水果诸如苹果、梨、榅桲等,核果类水果诸如桃、李、蜜桃、梅、圣女果、杏、李子等,柑橘类水果诸如橙、柠檬、霜、葡萄柚等,坚果诸如栗子、核桃、榛子、杏仁、开心果、腰果、澳洲坚果等,浆果诸如蓝莓、蔓越莓、黑莓、覆盆子等,葡萄、柿子、橄榄、李子、香蕉、咖啡、椰枣、椰子等,果树以外的树木:茶、桑树、开花植物、树木诸如白蜡、桦树、山茱萸、桉树、银杏、丁香、枫树、栎树、杨树、紫荆、枫香、梧桐树、榉树、日本侧柏、冷杉木、铁杉、杜松、松属、云杉和东北红豆杉等。
在一个实施方案中,本发明组合的组分杀真菌剂和杀虫剂可以(1-80):(1-80):(1-80):(1:80)的比例混合。
在一个方面,本发明可提供防治真菌病害和害虫的方法,包括施用包含以下的组合:
(a)至少一种至少一种二酰胺杀虫剂,该至少一种二酰胺杀虫剂选自溴虫氟苯双酰胺、氯虫苯甲酰胺、溴氰虫酰胺、环溴虫酰胺、氯氟氰虫酰胺、氟虫双酰胺和氟氰虫酰胺;
(b)至少一种二硫代氨基甲酸酯类杀真菌剂;以及
(c)至少一种其他杀虫剂。
在一个实施方案中,可以根据上述组合的任何优选实施方案选择二酰胺杀虫剂、二硫代氨基甲酸酯类杀真菌剂和至少一种其他杀虫剂。
本发明的组合可以作为预混组合物或成套试剂盒出售,使得各个活性成分可以在喷洒之前混合。另选地,成套试剂盒可包含至少一种预混的二酰胺杀虫剂和二硫代氨基甲酸酯类杀真菌剂,并且第二杀虫活性物可以与佐剂混合,使得两种组分可在喷洒前箱混。
因此,本发明的一个方面可以提供一种试剂盒,包括:
第一杀虫组分,该第一杀虫组分包含至少一种杀虫性二酰胺化合物,该至少一种杀虫性二酰胺化合物选自溴虫氟苯双酰胺、氯虫苯甲酰胺、溴氰虫酰胺、环溴虫酰胺、氯氟氰虫酰胺、氟虫双酰胺和氟氰虫酰胺;
杀真菌组分,该杀真菌组分包含至少一种多位点杀真菌化合物;以及
第二杀真菌组分,该第二杀真菌组分包含至少另一种杀虫化合物。
本发明的另一个方面可以提供一种试剂盒,包括:
第一杀虫组分,该第一杀虫组分包含至少一种二酰胺化合物,该至少一种二酰胺化合物选自溴虫氟苯双酰胺、氯虫苯甲酰胺、溴氰虫酰胺、环溴虫酰胺、氯氟氰虫酰胺、氟虫双酰胺和氟氰虫酰胺;
杀真菌组分,该杀真菌组分包含至少一种二硫代氨基甲酸酯类杀真菌剂;以及
第二杀真菌组分,该第二杀真菌组分包含至少另一种杀虫化合物。
本发明的又一个方面可以提供一种试剂盒,包括:
第一杀虫组分,该第一杀虫组分包含至少一种二酰胺化合物,该至少一种二酰胺化合物选自溴虫氟苯双酰胺、氯虫苯甲酰胺、溴氰虫酰胺、环溴虫酰胺、氯氟氰虫酰胺、氟虫双酰胺和氟氰虫酰胺;
杀真菌组分,该杀真菌组分包含至少一种二硫代氨基甲酸酯类杀真菌剂;以及
第二杀真菌组分,该第二杀真菌组分包含至少两种其他杀虫化合物。
本发明的组合物可以作为箱混合物或制剂同时施用,或者可以顺序地施用。可以在植物出苗前、种植前或种植后对土壤施用,或施用于植物繁殖材料。可以在作物开育期间的不同时间将该施用制成叶面喷雾,在出苗后早期或晚期施用一次或两次。
根据本发明的组合物可以在真菌感染有用植物或其繁殖材料之前或之后施用,或用于预防或治疗害虫侵染。
如所证明的,在与至少一种其他杀虫剂组合的邻氨基苯甲酰胺杀虫化合物的组合中添加二硫代氨基甲酸酯类杀真菌剂中,极大地改善了病害防治以及改善了产量并且显示出协同效应。在病害防治中混合物性能越低,当添加到本发明组合物中时,代森锰锌的附加益处越大。
尽管本发明的前述书面描述使得普通技术人员能够制备并使用目前被认为是其最佳模式的内容,但普通技术人员将理解和明白存在本文特定实施方案、方法和实施例的变型、组合和等同物。因此,本发明不应受上述实施方案、方法和实施例的限制,而应受本发明的范围和精神内的所有实施方案和方法的限制。
具体实施方式
实施例:
进行研究以比较本发明的组合的功效。在存在和不存在多位点杀真菌剂诸如二硫代碳酸酯类杀真菌剂的情况下,评估了酰胺类杀虫剂与至少另一种杀虫剂组合的功效。评价了这些组合在各种作物和目标害虫上的功效。这些测试在印度各地进行。
评价了这些组合对各种作物诸如蔬菜和谷类作物上的昆虫的功效,该昆虫诸如属于灰翅夜蛾属(Spodoptera sp.)、侧多食跗线蹒(polyphagotarsonemus latus)、棉铃虫(Helicoverpa armigera)、长蠕孢属(Helminthosporium sp.)、稻纵卷叶螟(Cnaphalocrocis medinalis)、Scirpophaga sp.。该试验以随机完全阻断(RCB)方法进行。每项试验重复四次,并且按照GEP指南进行。每种混合物的施用量都不同。此类田间试验在不同的地点进行,以生成独立的数据,这些地点是在印度范围内随机选择的。根据其推荐剂量喷洒杀虫和杀真菌活性物质。
表A证明了酰胺类杀虫剂(Chlorantriniprole)与第二种杀虫剂在有无多位点杀真菌剂诸如二硫代氨基甲酸酯类杀真菌剂(代森锰锌)下的结合功效。田间试验在印度各地进行。在施用10天后计算功效百分比。目标害虫和杀虫剂的浓度及其结果记录在下表B中:
表A:
序号 | 组合 | 剂量 |
A1 | Chlorantriniprole+溴虫腈 | 150+750ml/g/ha |
A2 | Chlorantriniprole+溴虫腈+代森锰锌 | 150+750+1500ml/g/ha |
B1 | Chlorantriniprole+甲氧虫酰肼 | 150+850ml/g/ha |
B2 | Chlorantriniprole+甲氧虫酰肼+代森锰锌 | 150+850+1500ml/g/ha |
C1 | Chlorantriniprole+氟酰脲 | 150+750ml/g/ha |
C2 | Chlorantriniprole+氟酰脲+代森锰锌 | 150+750+1500ml/g/ha |
在印度不同地区的各种作物上测试了有无多位点杀真菌剂(诸如二硫代氨基甲酸酯类杀真菌剂)的组合。计算了试验结果,并且在下表中列出:
表B:
所施用的组合 | 评估方法 | 防治百分比 | 差值 |
辣椒中斜纹夜蛾中的A1 | 防治百分比 | 82.8 | |
辣椒中斜纹夜蛾中的A2 | 防治百分比 | 93.8 | +11% |
辣椒中侧多食跗线蹒中的A1 | 防治百分比 | 74.5 | |
辣椒中侧多食跗线蹒中的A2 | 防治百分比 | 88.5 | +14% |
番茄中棉铃虫中的B1 | 防治百分比 | 74.8 | |
番茄中棉铃虫中的B2 | 防治百分比 | 95 | +20.2% |
水稻中三化螟中的C1 | 防治百分比 | 72.3 | |
水稻中三化螟中的C2 | 防治百分比 | 95 | +22.7% |
水稻中稻纵卷叶螟中的C1 | 防治百分比 | 81 | |
水稻中稻纵卷叶螟中的C2 | 防治百分比 | 95.5 | +14.5% |
据发现,加入代森锰锌大大提高了杀虫组合的功效。在任何试验中均未观察到植物毒性。代森锰锌的添加大大改善了产量并且增强了病害防治。
通过上述实施例更具体地解释了本发明。然而,应该理解,本发明的范围不受任何方式的实施例的限制。本领域技术人员应当理解,本发明包括上述实施例,并且还可以在本发明的技术范围内进行修改和变更。
Claims (13)
1.一种组合,包含:
a.至少一种杀虫性二酰胺化合物,所述至少一种杀虫性二酰胺化合物选自溴虫氟苯双酰胺、氯虫苯甲酰胺、溴氰虫酰胺、环溴虫酰胺、氯氟氰虫酰胺、氟虫双酰胺和氟氰虫酰胺;
b.至少一种选自以下的多位点接触杀真菌剂:
(i)铜类杀真菌剂,所述铜类杀真菌剂选自氯氧化铜、硫酸铜、氢氧化铜和三碱基硫酸铜(波尔多混合剂);
(ii)元素硫;
(iii)二硫代氨基甲酸酯类杀真菌剂,所述二硫代氨基甲酸酯类杀真菌剂选自代森铵、福美胂、氧化福美双、吗菌威、硫杂灵、福美铜氯、双硫仑、福美铁、威百亩、代森钠、特石克威特石危威、福美双、福美甲胂、福美锌、棉隆、代森硫、代森环、代森锰铜、代森锰锌、代森锰、代森联、代森福美锌、丙森锌和代森锌;
(iv)邻苯二甲酰亚胺杀真菌剂,所述邻苯二甲酰亚胺杀真菌剂选自灭菌丹、克菌丹和敌菌丹;
(v)百菌清;
(vi)磺胺类杀真菌剂,所述磺胺类杀真菌剂选自抑菌灵和对甲抑菌灵;
(vii)双胍类杀真菌剂,所述双胍类杀真菌剂选自多果定、双辛胍胺和双胍辛胺;
(viii)敌菌灵;
(ix)二噻农;以及
(x)及其组合;
以及
c.至少另一种杀虫化合物。
2.根据权利要求1所述的组合,其中所述多位点杀真菌剂选自二硫代氨基甲酸酯、邻苯二甲酰亚胺、氯腈、无机杀真菌剂、磺胺、双胍、三嗪、醌、喹喔啉、二甲酰胺及其混合物。
3.根据权利要求1所述的组合,其中所述多位点杀真菌剂是二硫代氨基甲酸酯类杀真菌剂,所述二硫代氨基甲酸酯类杀真菌剂选自代森铵、福美胂、氧化福美双、吗菌威、硫杂灵、福美铜氯、双硫仑、福美铁、威百亩、代森钠、特石克威特石危威、福美双、福美甲胂、福美锌、棉隆、代森硫、代森环、代森锰铜、代森锰锌、代森锰、代森联、代森福美锌、丙森锌、代森锌及其混合物。
4.根据权利要求3所述的组合,其中所述二硫代氨基甲酸酯类杀真菌剂是代森锰锌。
5.根据权利要求1所述的组合,其中所述另一种杀虫化合物选自乙酰胆碱酯酶(AChE)抑制剂、GABA门控氯离子通道阻滞剂、钠通道调节剂、烟碱型乙酰胆碱受体(nAChR)竞争性调节剂、烟碱型乙酰胆碱受体(nAChR)变构调节剂、谷氨酸盐门控氯离子通道(GluCl)变构调节剂、保幼激素仿制品、昆虫弦音器TRPV通道调节剂、螨虫生长抑制剂、昆虫中肠膜微生物干扰剂、线粒体三磷酸腺苷合成酶抑制剂、干扰质子梯度影响氧化磷酸化的解偶联剂、烟碱型乙酰胆碱受体(nAChR)通道阻断剂、几丁质生物合成抑制剂、蜕皮干扰剂、蜕皮激素受体激动剂、章胺受体激动剂、线粒体复合物电子传递抑制剂、电压依赖性钠离子通道阻断剂、乙酰辅酶A羧化酶抑制剂、弦音器官调节剂、多位点杂类杀虫剂、生物杀虫剂及其混合物。
6.一种组合,包含:
a.至少一种二酰胺化合物,所述至少一种二酰胺化合物选自溴虫氟苯双酰胺、氯虫苯甲酰胺、溴氰虫酰胺、环溴虫酰胺、氯氟氰虫酰胺、氟虫双酰胺和氟氰虫酰胺;
b.至少一种二硫代氨基甲酸酯类杀真菌剂;以及
c.至少另一种杀虫化合物。
7.一种组合,包含:
a.至少一种二酰胺化合物,所述至少一种二酰胺化合物选自溴虫氟苯双酰胺、氯虫苯甲酰胺、溴氰虫酰胺、环溴虫酰胺、氯氟氰虫酰胺、氟虫双酰胺和氟氰虫酰胺;
b.至少一种二硫代氨基甲酸酯类杀真菌剂;以及
c.至少两种其他杀虫化合物。
8.一种组合物,包含:
a.至少一种二酰胺化合物,所述至少一种二酰胺化合物选自溴虫氟苯双酰胺、氯虫苯甲酰胺、溴氰虫酰胺、环溴虫酰胺、氯氟氰虫酰胺、氟虫双酰胺和氟氰虫酰胺;
b.至少一种二硫代氨基甲酸酯类杀真菌剂;
c.至少一种其他杀虫化合物;以及
d.至少一种农用化学可接受的赋形剂。
9.一种组合物,包含:
a.至少一种二酰胺化合物,所述至少一种二酰胺化合物选自溴虫氟苯双酰胺、氯虫苯甲酰胺、溴氰虫酰胺、环溴虫酰胺、氯氟氰虫酰胺、氟虫双酰胺和氟氰虫酰胺;
b.至少一种二硫代氨基甲酸酯类杀真菌剂;
c.至少两种其他杀虫化合物;
d.至少一种农用化学可接受的赋形剂。
10.一种在所在地处防治害虫的方法,方法包括施加包含以下项的组合或组合物:
a.至少一种杀虫性二酰胺化合物,所述至少一种杀虫性二酰胺化合物选自溴虫氟苯双酰胺、氯虫苯甲酰胺、溴氰虫酰胺、环溴虫酰胺、氯氟氰虫酰胺、氟虫双酰胺和氟氰虫酰胺;
b.至少一种多位点杀真菌化合物;以及
c.至少另一种杀虫化合物。
11.一种组合物,包含:
a.至少一种二酰胺杀虫化合物,所述至少一种二酰胺杀虫化合物选自溴虫氟苯双酰胺、氯虫苯甲酰胺、溴氰虫酰胺、环溴虫酰胺、氯氟氰虫酰胺、氟虫双酰胺和氟氰虫酰胺;
b.至少一种二硫代氨基甲酸酯类杀真菌剂;
c.至少另一种杀虫活性物质;
d.至少一种其他农用化学品活性物质;以及
e.至少一种农用化学可接受的赋形剂。
12.一种试剂盒,包括:
第一杀虫组分,所述第一杀虫组分包含至少一种杀虫性二酰胺化合物,所述至少一种杀虫性二酰胺化合物选自溴虫氟苯双酰胺、氯虫苯甲酰胺、溴氰虫酰胺、环溴虫酰胺、氯氟氰虫酰胺、氟虫双酰胺和氟氰虫酰胺;
杀真菌组分,所述杀真菌组分包含至少一种多位点杀真菌化合物;以及
第二杀真菌组分,所述第二杀真菌组分包含至少另一种杀虫化合物。
13.一种试剂盒,包括:
第一杀虫组分,所述第一杀虫组分包含至少一种二酰胺化合物,所述至少一种二酰胺化合物选自溴虫氟苯双酰胺、氯虫苯甲酰胺、溴氰虫酰胺、环溴虫酰胺、氯氟氰虫酰胺、氟虫双酰胺和氟氰虫酰胺;
杀真菌组分,所述杀真菌组分包含至少一种二硫代氨基甲酸酯类杀真菌剂;以及
第二杀真菌组分,所述第二杀真菌组分包含至少另一种杀虫化合物。
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