National Center of Agronomic Research (CNRA), Cotton Research Station, Laboratory of Entomology, 01, Bouake, Ivory Coast.
Physiology and Biochemistry Research Laboratory, Department of Biology, Selçuk, University, 42130, Konya, Turkey.
Chem Biodivers. 2023 Aug;20(8):e202300411. doi: 10.1002/cbdv.202300411. Epub 2023 Jul 12.
Faced with the serious consequences resulting from the abusive and repeated use of synthetic chemicals, today rethinking crop protection is more than necessary. It is in this context that the essential oils of the Lamiaceae Ocimum gratissimum and Ocimum canum, the Poaceae Cymbopogon citratus and nardus and a Rutaceae Citrus sp. of known chemical compositions were experimented. The evaluation of the larvicidal potential of the essential oils was done by the method of topical application of the test solutions, on the L1-L2 stage larvae from the first generation of S. frugiperda obtained after rearing in an air-conditioned room. Lethal concentrations (LC , LC and LC ) were determined after 48 h. After assessing the larvicidal potential of essential oils, molecular docking was carried out to study protein-ligand interactions and their propensity to bind to insect enzyme sites (AChE). The essential oil of O. gratissimum was the most effective with the lowest lethal concentrations (LC =0.91 %, LC =1.91 % and LC =3.92 %). The least toxic oil to larvae was Citrus sp. (LC =5.44 %, LC =20.50 % and LC =77.41 %). Molecular docking revealed that p-cymene and thymol from O. gratissimum essential oil are structurally similar and bind to the AChE active site via predominantly hydrophobic interactions and a H-bond with Tyr374 in the case of thymol. The essential oil of O. gratissimum constitutes a potential candidate for the development of biological insecticides for the fight against insect pests and for the protection of the environment.
面对滥用和重复使用合成化学品所带来的严重后果,今天重新思考作物保护措施是非常必要的。正是在这种背景下,对唇形科罗勒属的奥图姆 gratissimum 和奥图姆 canum、禾本科香茅和菖蒲以及柑橘属已知化学成分的 Rutaceae 进行了实验。通过在空调室内饲养获得的第一代 S. frugiperda 的 L1-L2 期幼虫上,用涂抹试验溶液的方法,评估了精油的幼虫致死潜能。48 小时后确定致死浓度(LC 50 、LC 90 和 LC 99 )。在评估精油的幼虫致死潜能后,进行了分子对接研究,以研究蛋白质-配体相互作用及其与昆虫酶结合的倾向(AChE)。奥图姆 gratissimum 的精油最有效,最低致死浓度(LC 50 =0.91%、LC 90 =1.91%和 LC 99 =3.92%)。对幼虫毒性最低的油是柑橘属(LC 50 =5.44%、LC 90 =20.50%和 LC 99 =77.41%)。分子对接显示,奥图姆 gratissimum 精油中的 p-香茅烯和百里酚在结构上相似,通过主要的疏水相互作用和与 Tyr374 的氢键与 AChE 活性位点结合。奥图姆 gratissimum 的精油是开发用于防治害虫和保护环境的生物杀虫剂的潜在候选物。