Department of Plant Production Technology, School of Agricultural Technology, King Mongkut's Institute of Technology Ladkrabang, Ladkrabang, Bangkok, 10520, Thailand.
Sci Rep. 2023 Feb 6;13(1):2119. doi: 10.1038/s41598-023-29421-2.
Plant essential oil (EO) is a natural alternative to synthetic chemical insecticides for mosquito control. EOs from Citrus aurantium L., Cymbopogon citratus (Stapf.), and Cinnamomum verum (J. Presl.) were selected for topical assay of their ovicidal activity against Aedes aegypti (Linnaeus) and Aedes albopictus (Skuse). Their efficacy was compared to that of 1% (w/w) temephos. In addition, their non-toxicity against aquatic mosquito predators, Poecilia latipinna and Poecilia reticulata, was tested. Found by GC-MS analysis, the major constituent of C. verum EO was trans-cinnamaldehyde, of C. aurantium EO was D-limonene, and of C. citratus EO was geranial. Both C. verum EO and trans-cinnamaldehyde at a high concentration (30,000 ppm) exhibited high ovicidal activity against Ae. aegypti and Ae. albopictus eggs after 48 h of incubation with an inhibition rate of 91.0-93.0% for C. verum EO and 96.7-95.2% for trans-cinnamaldehyde. The combination of C. verum EO + geranial exhibited the strongest synergistic inhibition activity (100%) against the two mosquito vectors and was five times more effective than temephos. Moreover, they were not toxic to the non-target fishes. As a safe ovicidal agent for mosquito egg control, the combination of C. verum EO + geranial has excellent potential.
植物精油(EO)是一种天然的替代物,可以替代合成化学杀虫剂来控制蚊子。选择了来自柑橘属(Citrus aurantium L.)、香茅(Cymbopogon citratus(Stapf.))和肉桂(Cinnamomum verum(J. Presl.))的 EO 进行局部杀卵活性测试,以对抗埃及伊蚊(Linnaeus)和白纹伊蚊(Skuse)。将它们的功效与 1%(w/w)倍硫磷进行了比较。此外,还测试了它们对水生蚊子捕食者,丽鱼和孔雀鱼的非毒性。通过 GC-MS 分析发现,C. verum EO 的主要成分是反式肉桂醛,C. aurantium EO 的主要成分是 D-柠檬烯,C. citratus EO 的主要成分是香叶醛。C. verum EO 和高浓度(30000 ppm)的反式肉桂醛在孵育 48 小时后对埃及伊蚊和白纹伊蚊的卵表现出高杀卵活性,抑制率分别为 91.0-93.0%和 96.7-95.2%。C. verum EO+香叶醛的组合对这两种蚊子表现出最强的协同抑制活性(100%),比倍硫磷有效 5 倍。此外,它们对非目标鱼类没有毒性。作为一种安全的杀卵剂,用于控制蚊子卵,C. verum EO+香叶醛具有巨大的潜力。