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Acaricidal and Insecticidal Activities of Essential Oils against a Stored-Food Mite and Stored-Grain Insects

机译:精油对储藏食品螨类和储粮昆虫的杀螨和杀虫活性

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摘要

Twenty plant-derived oils were evaluated for their acaricidal and insecticidal activities against Sitotroga cerealella, Sitophilus oryzae, Sitophilus zeamais, and Tyrophagus putrescentiae adults, by using the fumigant and filter paper diffusion methods. Responses varied with bioassay systems, insect or mite species, plant oils, and exposure time. Based on the 50% lethal dose (LD_(50)) values against S. oryzae and S. zeamais in the fumigant bioassay, Anethum graveolens oil (4.12 and 1.12 μg/cm~3, respectively) induced the highest mortality, followed by Achillea millefolium (21.92 and 14.91 μg/cm~3) and Eucalyptus dives (28.02 and 24.02 μg/cm~3) oils, respectively. The most toxic oil based on the 50% lethal concentration values against T. putrescentiae was E. dives (3.13 μg/cm~3), followed by Melaleuca leucadendron (3.93 μg/cm~3) and Leptospermum pertersonii (4.41 μg/cm~3). Neroli birgard oil (1.70 μg/cm~3) was the most toxic based on the LD_(50) values against S. cerealella, followed by Citrus aurantium (1.80 μg/cm~3) and Artemisia vulgaris (1.81 μg/cm~3). The insecticidal and acaricidal activities of the plant oils in the filter paper diffusion bioassay were similar to those in the fumigant bioassay. In comparison, A. millefolium, A. graveolens, and E. dives oils were more effective against S. oryzae and S. zeamais in the fumigant bioassay than in the contact bioassay. These results indicate that the insecticidal activity of the three plant oils against S. oryzae and S. zeamais may be due to their fumigant action. Acaricidal activities of the A. millefolium, A. graveolens, and E. dives oils against T. putrescentiae were 2.62, 1.11, and 122 times higher than that of benzyl benzoate in the contact bioassay. These results indicate that A. millefolium, A. graveolens, and E. dives oils have potential for development as agents to control stored-grain insects and mites.
机译:通过使用熏蒸剂和滤纸扩散方法,评估了二十种植物来源的油对谷类食盐菌,米线虫,玉米赤霉菌和腐烂球菌成虫的杀螨和杀虫活性。反应随生物测定系统,昆虫或螨虫种类,植物油和暴露时间而变化。根据熏蒸剂生物测定法中米曲霉和玉米赤霉菌的50%致死剂量(LD_(50))值,薄荷油(分别为4.12和1.12μg/ cm〜3)引起最高的死亡率,其次是A千佛油(21.92和14.91μg/ cm〜3)和桉树潜水(28.02和24.02μg/ cm〜3)油。根据对腐烂衣原体的50%致死浓度值,毒性最高的油是大肠杆菌(3.13μg/ cm〜3),其次是白千层草(3.93μg/ cm〜3)和百日草(Leptospermum pertersonii)(4.41μg/ cm〜)。 3)。以LD_(50)为基准,橙花菜皮油(1.70μg/ cm〜3)对谷类链球菌的毒性最高,其次是柑桔(1.80μg/ cm〜3)和蒿(1.81μg/ cm〜3) )。滤纸扩散生物测定法中植物油的杀虫和杀螨活性与熏蒸剂生物测定法中的相似。相比之下,在熏蒸剂生物测定法中,米曲霉,gravelenens和E.潜水油对米曲霉和玉米赤霉菌的效果比接触生物测定法更有效。这些结果表明,三种植物油对米曲霉和玉米赤霉菌的杀虫活性可能是由于它们的熏蒸作用。在接触生物测定法中,米曲霉,graveolenens和E.潜水油对腐烂曲霉的杀螨活性分别是苯甲酸苄酯的2.62、1.11和122倍。这些结果表明,千层土壤线虫,砾层土壤线虫和E.潜水油具有发展潜力,可作为控制储粮昆虫和螨虫的药剂。

著录项

  • 来源
    《Journal of food protection》 |2016年第1期|174-178|共5页
  • 作者单位

    Department of Bioenvironmental Chemistry College of Agriculture & Life Sciences, Chonbuk National University, Jeonju 561-756, South Korea;

    Department of Landscape Architecture, College of Agriculture & Life Sciences, Chonbuk National University, Jeonju 561-756, South Korea;

    Department of Bioenvironmental Chemistry College of Agriculture & Life Sciences, Chonbuk National University, Jeonju 561-756, South Korea;

    Department of Bioenvironmental Chemistry College of Agriculture & Life Sciences, Chonbuk National University, Jeonju 561-756, South Korea;

    Department of Bioenvironmental Chemistry College of Agriculture & Life Sciences, Chonbuk National University, Jeonju 561-756, South Korea;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 23:24:43

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