State Key Laboratory for Conservation and Utilization of Subtropical Agro-Bioresources and Key Laboratory of Natural Pesticide and Chemical Biology, Ministry of Education, South China Agricultural University, Guangzhou, China.
Pest Manag Sci. 2021 Feb;77(2):1013-1022. doi: 10.1002/ps.6113. Epub 2020 Oct 24.
Chemical pesticides are the main measures for pest control, but have caused growing resistance of pests and brought a series of environmental problems. Development of high-efficient insecticidal molecules with novel scaffolds is therefore particularly urgent.
Based on a [5 + 1] annulation reaction with 5-amino-1H-phenylpyrazole and dialkyl bromomalonate, 27 novel five-substituted 4,5-dihydropyrazolo[1,5-a]quinazolines were designed following the intermediate derivatization method and synthesized. Bioassay results indicated that most of the test compounds displayed good insecticidal activities against Plutella xylostella, Spodoptera frugiperda, and Solenopsis invicta. In particular, the insecticidal activities of compounds 4a, 4f, and 4m against P. xylostella [median lethal concentration (LC ) values ranged from 3.87 to 5.10 mg L ] were comparable to that of indoxacarb (LC = 4.82 mg L ). In addition, compounds 4a and 9e showed similar high insecticidal activities against Spodoptera frugiperda (mortality rate = 79.63% and 72.12%) at 100 mg L , comparable to that of fipronil (mortality rate: 68.44%); compound 9a showed possible delayed toxicity against Solenopsis invicta (mortality rate: 95.66%) after 5 days of treatment at 1.0 mg L .
Due to their high insecticidal activities against P. xylostella, compound 4m, 4a, and 4f could be considered as qualified candidates for novel insecticide. Several other 4,5-dihydropyrazolo[1,5-a]quinazolines with relatively high bioactivity, such as compounds 9a and 9e, are also worth further optimization as potential insecticide or anticide candidates.
化学农药是防治害虫的主要措施,但已导致害虫抗药性日益增强,并带来一系列环境问题。因此,开发具有新型骨架的高效杀虫分子尤为紧迫。
基于 5-氨基-1H-苯基吡唑与二烷基溴代丙二酸酯的[5+1]环化反应,采用中间体衍生化法设计并合成了 27 个新型的 5 取代 4,5-二氢吡唑并[1,5-a]喹唑啉。生物测定结果表明,大多数测试化合物对小菜蛾、草地贪夜蛾和红火蚁均表现出良好的杀虫活性。特别是化合物 4a、4f 和 4m 对小菜蛾的杀虫活性[半数致死浓度(LC )值范围为 3.87-5.10 mg·L ]与茚虫威(LC = 4.82 mg·L )相当。此外,化合物 4a 和 9e 在 100 mg·L 时对草地贪夜蛾表现出相似的高杀虫活性(死亡率分别为 79.63%和 72.12%),与氟虫腈(死亡率:68.44%)相当;化合物 9a 在 1.0 mg·L 时对红火蚁处理 5 天后表现出可能的延迟毒性(死亡率:95.66%)。
由于其对小菜蛾具有较高的杀虫活性,化合物 4m、4a 和 4f 可被视为新型杀虫剂的合格候选物。其他几种具有相对较高生物活性的 4,5-二氢吡唑并[1,5-a]喹唑啉,如化合物 9a 和 9e,也值得进一步优化,作为潜在的杀虫剂或杀蚁剂候选物。