Crop Protection Division, Department of Crop Life Safety, National Academy of Agricultural Science, Rural Development Administration, Wanju, Republic of Korea.
Department of Agricultural Biotechnology, Seoul National University, Seoul, Republic of Korea.
Pest Manag Sci. 2015 Sep;71(9):1292-6. doi: 10.1002/ps.3925. Epub 2014 Dec 4.
This study was aimed at assessing the fumigant toxicity to adult Thrips palmi (a serious insect pest) and Orius strigicollis (a beneficial predator insect) of basil (Ocimum basilicum) essential oil compounds and structurally related compounds using vapour-phase toxicity bioassays.
Against adult T. palmi, linalool (LD50 0.0055 mg cm(-3) ) was the most toxic fumigant and was 15.2-fold more effective than dichlorvos (0.0837 mg cm(-3) ). Strong fumigant toxicity was also observed in pulegone (0.0095 mg cm(-3) ), (±)-camphor (0.0097 mg cm(-3) ) and 1,8-cineole (0.0167 mg cm(-3) ). Moderate toxicity was produced by camphene, 3-carene, (-)-menthone, (+)-α-pinene, (+)-β-pinene, α-terpineol and (-)-α-thujone (0.0215-0.0388 mg cm(-3) ). Against adult O. strigicollis, dichlorvos (LD50 9.0 × 10(-10) mg cm(-3) ) was the most toxic fumigant, whereas the LD50 values of these compounds ranged from 0.0127 to >0.23 mg cm(-3) . Based upon the selective toxicity ratio, the compounds described are more selective than dichlorvos.
The basil oil compounds described merit further study as potential insecticides for control of T. palmi in greenhouses because of their generally lower toxicity to O. strigicollis and their greater activity as a fumigant than dichlorvos.
本研究旨在采用蒸气相毒性生物测定法评估罗勒(Ocimum basilicum)精油化合物及其结构相关化合物对烟粉虱(一种严重的害虫)和巴氏猎蝽(一种有益的捕食性昆虫)成虫的熏蒸毒性。
对烟粉虱成虫而言,芳樟醇(LD50 0.0055 mg cm(-3) )是最毒的熏蒸剂,比敌敌畏(0.0837 mg cm(-3) )有效 15.2 倍。胡椒酮(0.0095 mg cm(-3) )、(±)-樟脑(0.0097 mg cm(-3) )和 1,8-桉叶油醇(0.0167 mg cm(-3) )也表现出很强的熏蒸毒性。莰烯、3-蒈烯、(-)-薄荷酮、(+)-α-蒎烯、(+)-β-蒎烯、α-萜品醇和(-)-α-侧柏酮(0.0215-0.0388 mg cm(-3) )产生中等毒性。
对巴氏猎蝽成虫而言,敌敌畏(LD50 9.0 × 10(-10) mg cm(-3) )是最毒的熏蒸剂,而这些化合物的 LD50 值范围从 0.0127 到>0.23 mg cm(-3) 。基于选择性毒性比,这些化合物比敌敌畏更具选择性。
由于这些化合物对巴氏猎蝽的毒性一般较低,而且作为熏蒸剂的活性比敌敌畏高,因此它们值得进一步研究,作为防治温室中烟粉虱的潜在杀虫剂。