首页> 外文期刊>Progress in Artificial Intelligence >Fumigant Toxicity in Myzus persicae Sulzer (Hemiptera: Aphididae): Controlled Release of (E)-anethole from Microspheres
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Fumigant Toxicity in Myzus persicae Sulzer (Hemiptera: Aphididae): Controlled Release of (E)-anethole from Microspheres

机译:Myzus persicae苏尔寿(血针:蚜虫)的熏蒸剂毒性:来自微球的(e)的控制释放

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(E)-anethole is a phenylpropanoid that is the main compound found in the essential oils (EOs) of anise and fennel seeds, and either fumigant or direct contact activity of this compound has been demonstrated against aphids and stored product pests. In this work, solid microspheres were prepared by three methods-oil emulsion entrapment, spray-drying, and complexed with beta-cyclodextrin. Fumigation activity of each microsphere preparation was tested against the green peach aphid, Myzus persicae Sulzer (Hemiptera: Aphididae), on pepper leaves. The best insecticidal activity was with (E)-anethole encapsulated in oil emulsion beads and introduced to aphids as a vapour over 24 h, with an LC50 of 0.415 mu L/L compared to 0.336 mu L/L of vapors from free (E)-anethole. Scanning electron microscopy of the beads revealed a compact surface with low porosity that produced a controlled release of the bioactive for more than 21 d, whilst most of the volatile was evaporated within two days if applied unformulated. Spray drying gave spherical particles with the greatest encapsulated yield (73%) of 6.15 g of (E)-anethole incorporated per 100 g of powder. Further work will be done on improving the formulation methods and testing the solid microspheres in all aphid stages scaling up the experimental assay. It is foreseen that nanotechnology will play a role in future developments of low risk plant protection products.
机译:(e) - 乙醇是一种苯丙醇,其是在茴香和茴香种子的精油(EOS)中发现的主要化合物,并且已经对蚜虫和储存的产品有害生物证明了该化合物的熏蒸剂或直接接触活性。在这项工作中,通过三种方法 - 油乳液夹紧,喷雾干燥和与β-环糊精复合制备固体微球。对辣椒叶的熏蒸蚜虫,Myzus persicae苏尔寿(Hemiptera:aphididae)进行测试,对每种微球制剂的熏蒸活性进行测试。最佳杀虫活性是(e) - 丹醇包封在油乳液珠粒中,并以超过24小时的蒸汽引入蚜虫,其LC50为0.415μl/ L,与0.336亩L / L来自自由(E)的蒸汽相比 - 乙醇。珠子的扫描电子显微镜显示出具有低孔隙率的紧凑表面,其产生的生物活性为21d以上的生物活性,而大部分挥发性在两天内蒸发,则在两天内蒸发,如果施加未格式化。喷雾干燥使球形颗粒具有最大的封装产率(73%)6.15g(e) - 每100g粉末掺入。进一步的工作将在改善配方方法并测试所有蚜虫阶段中的固体微球进行缩放实验测定。预见的是,纳米技术将在低风险植物保护产品的未来发展中发挥作用。

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