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Progress on Azadirachta indica Based Biopesticides in Replacing Synthetic Toxic Pesticides

机译:印A素类生物农药替代合成有毒农药的研究进展

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摘要

Over the years, extensive use of commercially available synthetic pesticides against phytophagous insects has led to their bioaccumulation in the environment causing increased resistance and reduction in soil biodiversity. Further, 90% of the applied pesticides enter the various environmental resources as a result of run-off, exposing the farmers as well as consumers of the agricultural produce to severe health issues. Therefore, growing attention has been given toward the development of alternate environmentally friendly pesticides/insecticides that would aid an efficient pest management system and also prevent chronic exposures leading to diseases. One such strategy is, the use of neem plant's (Binomial name: Azadirachta indica) active ingredients which exhibit agro-medicinal properties conferring insecticidal as well as immunomodulatory and anti-cancer properties. The most prominent constituent of neem is azadirachtin, which has been established as a pivotal insecticidal ingredient. It acts as an antifeedant, repellent, and repugnant agent and induces sterility in insects by preventing oviposition and interrupting sperm production in males. This review discusses, key neem pesticidal components, their active functional ingredients along with recent strategies on employing nanocarriers, to provide controlled release of the active ingredients and to improve their stability and sustainability.
机译:多年来,市场上广泛使用的合成杀虫剂可用于抗食草昆虫,导致其在环境中的生物蓄积性,导致耐药性增强和土壤生物多样性减少。此外,由于径流,90%的施用农药进入各种环境资源,使农民和农产品消费者面临严重的健康问题。因此,人们日益关注替代性环保农药/杀虫剂的开发,这将有助于建立有效的害虫管理系统并防止长期暴露于疾病中。一种这样的策略是使用印em植物的(活性名称为印za植物(Azadirachta indica))活性成分,该活性成分具有农业医学特性,具有杀虫,免疫调节和抗癌特性。印em的最主要成分是印za素,已被确定为关键的杀虫成分。它可作为拒食剂,驱蚊剂和令人讨厌的药物,并通过防止雄性产卵和中断精子的产生而引起昆虫的不育。这篇综述讨论了印ne关键农药成分,其活性功能成分以及最近采用纳米载体的策略,以提供活性成分的控制释放并改善其稳定性和可持续性。

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