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首页> 外文期刊>Acta tropica: Journal of Biomedical Sciences >Towards the optimization of botanical insecticides research: Aedes aegypti larvicidal natural products in French Guiana
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Towards the optimization of botanical insecticides research: Aedes aegypti larvicidal natural products in French Guiana

机译:促进植物杀虫剂研究的优化研究:法国圭亚那的AEDESAEGYPTI幼虫天然产物

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Natural products have proven to be an immeasurable source of bioactive compounds. The exceptional biodiversity encountered in Amazonia, alongside a rich entomofauna and frequent interactions with various herbivores is the crucible of a promising chemodiversity. This prompted us to search for novel botanical insecticides in French Guiana. As this French overseas department faces severe issues linked to insects, notably the strong incidence of vector-borne infectious diseases, we decided to focus our research on products able to control the mosquito Aedes aegypti. We tested 452 extracts obtained from 85 species originating from 36 botanical families and collected in contrasted environments against an Ae. aegypti laboratory strain susceptible to all insecticides, and a natural population resistant to both pyrethroid and organophosphate insecticides collected in Cayenne for the most active of them. Eight species (Maytenus oblongata Reissek, Celastraceae; Costus erythrothyrsus Loes., Costaceae; Humiria balsamifera Aubl., Humiriaceae; Sextonia rubra (Mez) van der Werff, Lauraceae; Piper hispidum Sw., Piperaceae; Laetia procera (Poepp.) Eichl., Salicaceae; Matayba arborescens (Aubl.) Radlk., Sapindaceae; and Cupania scrobitulata Rich., Sapindaceae) led to extracts exhibiting more than 50% larval mortality after 48 h of exposition at 100 mu g/mL against the natural population and were considered active. Selectivity and phytochemistry of these extracts were therefore investigated and discussed, and some active compounds highlighted. Multivariate analysis highlighted that solvents, plant tissues, plant family and location had a significant effect on mortality while light, available resources and vegetation type did not. Through this case study we highlighted that plant defensive chemistry mechanisms are crucial while searching for novel insecticidal products.
机译:天然产品已被证明是生物活性化合物的无法估量的来源。亚马逊遇到的特殊生物多样性,以及富有的昆士法劳动和与各种食草动物的频繁互动是一个有前途的化学大学的坩埚。这促使我们在法国圭亚那寻找新的植物杀虫剂。正如这个法国海外部门面临着与昆虫相关的严重问题,特别是载体传染病的强烈发病率强烈,我们决定将我们的研究重点放在能够控制蚊子艾德斯艾格梅蒂的产品的研究。我们测试了从源自36个植物家族的85种获得的452次提取物,并在对比的环境中收集到AE的对比环境中。 Aegypti实验室菌株易患所有杀虫剂,以及抗肽和在Cayenne中收集的拟种特征和有机磷酸杀虫剂的天然群体,以获得最活跃的。八种物种(Maytenus oblongataReisseke,Celastraceae; Costus erythroothyrsus loes。,Costaceae; Humiriabeae中,Humiriveae; Suxtonia Rubra(Mez)Van der Werff,Lauraceae; Piperaceae; Laetia Procera(Poepp。)Eichl。, salicaceae; matayba arborescens(auxber。)radlk。,sapindaceae;和丘比亚克罗巴塔塔浓郁的杯子蛋白酶)导致在48小时的液体抗对抗天然人群的情况下提取超过50%的幼虫死亡率,并被认为是活跃的。因此研究和讨论了这些提取物的选择性和植物化学,并突出了一些活性化合物。多变量分析强调,溶剂,植物组织,植物家庭和地点对死亡率的显着影响,而光线,可用资源和植被类型没有。通过这种情况研究,我们强调,植物防御性化学机制在寻找新的杀虫产品时至关重要。

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