• 제목/요약/키워드: Selective acaricide

검색결과 3건 처리시간 0.017초

무당벌레에 선택적인 살비제 선발과 이들 처리가 사과원 식식성 응애류와 천적류에 미치는 영향 (Selection of the Acaricides Selective to Harmonia axyridis and Effect of their Application on Phytophagous Mites and Natural Enemies)

  • Cho, Jum-Rae;Hong, Ki-Jeong;Lee, Gwen-Seok;Park, Byung-Ryul
    • 한국응용곤충학회지
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    • 제35권3호
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    • pp.243-248
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    • 1996
  • 본 연구는 무당벌레에 선택적인 살비제 선발과 이들 처리가 사과원 초식성응애류 및 천적류에 미치는 영향을 조사하기 위하여 수행되었다. 조사된 모든 살비제는 무당벌레 보다는 점박이응애와 사과응애에 더 강한 독성을 보였고, 또 무당벌레의 유충과 성충보다는 알에 더 높은 독성을 나타냈다. 실내 선택독성실험에서 azocyclotin과 fenpropathrin이 각각 무당벌레에 대해서 선택성이 높은 약제와 낮은 약제로 나타났다. 응애류는 약제 처리횟수에 크게 영향을 받은 반면 천적류는 약제살포횟수 및 약제종류간에 차이가 없었다. 풀잠자리류는 긴털이리응애나 애꽃노린재류와는 달리 약제살포에 비교적 영향이 적었다.

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Comparison of Acute Toxicity of Different Groups of Pesticides to Honey Bee Workers(Apis Mellifera L.)

  • Ulziibayar, Delgermaa;Jung, Chuleui
    • 한국양봉학회지
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    • 제34권4호
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    • pp.305-313
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    • 2019
  • Honey bees (Apis mellifera) forage in agricultural areas, and are exposed to diverse pesticide poisoning. Toxic effects on Apis mellifera of different groups of pesticides were tested in the laboratory; fungicide (Metconazole), herbicide (Glyphosate), acaricide (Amitraz), organophosphate insecticide(Fenitrothion) and neonicotinoid insecticides(Thiacloprid, Thiamethoxam, Imidacloprid, Acetamiprid, Dinotefuran and Clothianidin). Commercial formulations were serially diluted from the recommended concentration (RC) to 10-6 times to carry out feeding and contact tests. Toxicity was transformed into lethal dose (LD50) and hazard question (HQ). The acute toxicity of pesticides showed similar patterns between feeding and contact tests. But feeding tests showed greater toxic to honey bee than contact test. The organophosphate and nitro-neonicotinoid insecticides were highly toxic with HQ values ranging greater than 1. However, cyano-neonicotinoids of Thiacloprid and Acetamiprid showed low toxicity. Even at the RC, 24 hr mortalities were 18 and 30%. The acaricide (Amitraz) showed intermediate level of toxicity at RC but negligible at the concentration lower than 10-1 times. A fungicide(Metconazole) and herbicide(Glyphosate) showed minimal impacts. The results imply that the selective use of pesticides could help conservation of pollinators in agricultural production systems.

Chemical Composition and Acaricidal Activities of Constituents Derived from Eugenia caryophyllata Leaf Oils

  • Sung, Bo-Kyung;Lee, Hoi-Seon
    • Food Science and Biotechnology
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    • 제14권1호
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    • pp.73-76
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    • 2005
  • The acaricidal activities of 12 commercial constituents derived from Eugenia caryophyllata leaf oils against Dermatophagoides farinae, D. pteronyssinus and Tyrophagus putrescentiae adults were examined using an impregnated fabric disk application and compared with that of the commercial benzyl benzoate as synthetic acaricide. On the basis of $LD_{50}$ values, the most toxic compound was methyl eugenol ($4.13\;{\mu}g/cm^2$), followed by methyl isoeugenol ($4.19\;{\mu}g/cm^2$), isoeugenol ($4.29\;{\mu}g/cm^2$), eugenol ($4.94\;{\mu}g/cm^2$), and acetyl eugenol ($13.91\;{\mu}g/cm^2$) against D. farinae. In the case of D. pteronyssinus, isoeugenol ($2.93\;{\mu}g/cm^2$) was the most toxic, followed by methyl isoeugenol ($3.28\;{\mu}g/cm^2$), methyl eugenol ($3.87\;{\mu}g/cm^2$), eugenol ($3.92\;{\mu}g/cm^2$), and acetyl eugenol ($7.21\;{\mu}g/cm^2$). These results suggest that D. pteronyssinus may be controlled more effectively by the application of eugenol congeners than D. farinae. In comparison with synthetic acaricides, the acaricidal activities of eugenol, isoeugenol, methyl eugenol, and methyl isoeugenol were about 1.9-2.2 times more toxic than benzyl benzoate. Furthermore, the most toxic constituent against T. putrescentiae was exhibited on eugenol ($10.11\;{\mu}g/cm^2$), followed by methyl eugenol ($38.67\;{\mu}g/cm^2$) and acetyl eugenol ($70.09\;{\mu}g/cm^2$), but no activity was observed for isoeugenol and methyl isoeugenol. The results suggested that eugenol congeners may be useful as a new source for selective control of house dust mites and stored food mites.