Division of Medical Entomology, National Institute of Health, Korea Center for Disease Control and Prevention, Osong 363-ungbuk, Republic of Korea.
J Med Entomol. 2012 May;49(3):631-9. doi: 10.1603/me11060.
We assessed the toxicity of 17 steam distillate constituents of Cyperus rotundus (L.) rhizome, another seven known compounds of C. rotundus rhizome, and 14 structurally related compounds to females from an insecticide-susceptible KSS strain and two field-collected SEL and DJN colonies of Blattella germanica (L.). High contact + fumigant toxicity to KSS females was produced by p-cymene, nerol, linalool, o-cymene, (S)-(-)-citronellal, (1S)-(-)-camphor, terpinolene, and m-cymene (LD50, 0.29-0.47 mg/cm2). The toxicity of these compounds was virtually identical against females from any of the three strains, even though SEL and DJN females were resistant to six acetylcholinesterase inhibitors and three pyrethroids (resistance ratio, 9-154 and 12-195). These results indicate that the compounds and insecticides do not share a common mode of action or elicit cross-resistance. The test compounds were effective in closed but not in open containers against SEL females, indicating that their route of insecticidal action was largely a result of vapor action. Structure-activity relationship indicates that structural characteristics, such as types of functional groups, appear to play a role in determining the terpenoid toxicities to B. germanica. C. rotundus rhizome steam distillate constituents and related compounds described merit further study as potential fumigants for the control of resistant cockroach populations in light of global efforts to reduce the level of highly toxic synthetic insecticides in indoor environments.
我们评估了 17 种香附根茎的水蒸气蒸馏成分、另外 7 种已知的香附根茎化合物以及 14 种结构相关化合物对敏感 KSS 品系和两个野外收集的 SEL 和 DJN 品系德国蟑螂的雌性的毒性。对 KSS 雌性具有高接触+熏蒸毒性的化合物为对伞花烃、橙花醇、芳樟醇、对-甲基苯乙烯、(S)-(-)-柠檬醛、(1S)-(-)-樟脑、萜品烯和间伞花烃(LD50,0.29-0.47mg/cm2)。这些化合物对来自三个品系的雌性的毒性几乎相同,尽管 SEL 和 DJN 雌性对六种乙酰胆碱酯酶抑制剂和三种拟除虫菊酯具有抗性(抗性比为 9-154 和 12-195)。这些结果表明,这些化合物和杀虫剂没有共同的作用模式或引起交叉抗性。测试化合物在封闭容器中对 SEL 雌性有效,但在开放容器中无效,表明其杀虫作用途径主要是通过蒸气作用。结构-活性关系表明,结构特征,如官能团的类型,似乎在决定萜类化合物对德国蟑螂的毒性方面起着作用。香附根茎水蒸气蒸馏成分和相关化合物具有潜力,值得进一步研究,作为控制抗性蟑螂种群的熏蒸剂,因为全球正在努力减少室内环境中高度有毒的合成杀虫剂的水平。