아바멕틴의 긴털이리응애(Amblyseius womersleyi Schicha)와 점박이응애(Tetranychus urticae Koch)에 대한 선택독성

Relative Toxicity of Abamectin to the redatoryMite Amblyseius womersleyi Schicha (Acari: Phytoseiidae) and Twospotted Spider MIte Tetranychus urticae Koch (Acari: Tetranychidae)

  • 박정규 (농업과학기술원 작물보호부 곤충과) ;
  • 이문홍 (농업과학기술원 작물보호부 곤충과) ;
  • 유재기 (농업과학기술원 작물보호부 곤충과) ;
  • 이정운 (농업과학기술원 작물보호부 곤충과) ;
  • 최병렬 (농업과학기술원 작물보호부 곤충과)
  • Park, C.G. (Division of Entomology, Department of Plant Protection, Agricultural Science and Technology Institute) ;
  • Lee, M.H. (Division of Entomology, Department of Plant Protection, Agricultural Science and Technology Institute) ;
  • Yoo, J.K. (Division of Entomology, Department of Plant Protection, Agricultural Science and Technology Institute) ;
  • Lee, J.O. (Division of Entomology, Department of Plant Protection, Agricultural Science and Technology Institute) ;
  • Choi, B.R. (Division of Entomology, Department of Plant Protection, Agricultural Science and Technology Institute)
  • 발행 : 1995.12.01

초록

긴덜이리응애와 dicofol 저항성 및 감수성 점박이응애에 대한 아바맥틴의 선택독성을 실험실 내에서 엽침지법으로 조사하였다. 아바멕틴은 긴털이리응애에 대해서는 독성이 낮은 반면, 점박이응애에 대해서는 살균효과가 높았다. 0.12 ppm과 0.6 ppm의 농도에서 점박이응애는 두 계통 모두 침지 후 48시간 0]내에 사망하였고, 0.06 ppm과 0.012 ppm의 낮은 농도에서 120시간 이후에는 77% 이상이 사망하였다. 그러나긴털이리응애의 암컷성충은 0.12ppm에서는 생존솔과 활동력이 영향을 받지 않았고, 0.6ppm과 6ppm의 높은 농도에서도 사망솔이 약 20~23%이었다. 아바맨틴은 산란후 l일 이내의 점박이응애의 난에 대해서는 패화솔에 영향을 미치지 않았으나 산란후 4일된 란에서는 패화솔이 멸소하였다. 반면에0.006-6ppm 용액에 긴털이리응애 난을 침지한경우 난의 패화솔과 그 난에서 부화한 약충의 발육에는 영향이 없었다. 긴털이리응애의 암컷 성충을 0.6 ppm과- 0.12ppm에 침지했을 때 산란수가 줄어들지 않았으나 잠박이응애의 산란수는0.006-0.6 ppm의 농도에서 현저히 감소하였다. 이상과 같이 아바맥틴은 점박이응애와 긴털이리응애에 대한 선택독성이 높은 약제로 점박이응애의 결합방제에 유용하게 이용될 수 있을 것으로 생각되며, 점박이응애에 대한 아치사농도(0.012-0.06 ppm)는 긴털이리응애와 점박이응애의 밀도를 조사하는데 이용될 수 있을 것으로 생각된다.

The relative toxicity of abamectin was assessed to the predatory mite Amblyseius womersleyi Schicha and to dicofol-resistant and -susceptible twospotted spider mite (TSM) Tetranychus urticae Koch in the laboratory. Abamectin was much les toxic to the predator than to the spider mite. At 0.12 and 0.6 ppm, all TSM adult females of the tow strains were killed within 48 h after dipping n the solutions. The lower concentrations (0.06 and 0.012 ppm) killed more than 77% of TSM female adults of the two strains at 120 h after treatment. However, abmectin did not significantly affect the survival and mobility of A. womersleyi female adults at a concentration of 0.12 ppm but the mortality was slightly increased up to 20~23% at 0.6 and 6 ppm. Abamectin did not significantly affect hatchability of one-day old TSM eggs at 0.06~0.6 ppm. The Four-day old eggs were much more susceptible to abamectin than one-day old eggs were. Within 0.006-6 ppm, abamectin did not affect the hatchability of A. womersleyi eggs and the development of resulting immature predators. When the predator female adults were dipped in 0.6 and 0.12 ppm solution, their reproduction was not affected, but at 6 ppm it was decreased by 35%. However, the reproduction of TSM reduced significantly at concentrations between 0.006 and 0.6 ppm. The differential toxicity of abamectin between TSM and the predator could be of practical importance in managing spider mite populations in the field. Abamectin at selective sublethal concentrations (i.e., 0.012~0.06 ppm) could be of value in adjusting predator/prey ratios in integrated management of spider mites.

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