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多杀菌素、多杀菌素、乙基多杀菌素和合成多杀菌素类似物——天然产物化学的发现、探索和演变以及计算工具的影响。

The spinosyns, spinosad, spinetoram, and synthetic spinosyn mimics - discovery, exploration, and evolution of a natural product chemistry and the impact of computational tools.

机构信息

Corteva Agriscience, Discovery Research, Indianapolis, IN, USA.

出版信息

Pest Manag Sci. 2021 Aug;77(8):3637-3649. doi: 10.1002/ps.6073. Epub 2020 Sep 28.

Abstract

Natural products (NPs) have long been a source of insecticidal crop protection products. Like many macrolide NPs, the spinosyns originated from a soil inhibiting microorganism (Saccharopolyspora spinosa). More than 20 years after initial registration, the spinosyns remain a unique class of NP-based insect control products that presently encompass two insecticidal active ingredients, spinosad, a naturally occurring mixture of spinosyns, and spinetoram, a semi-synthetic spinosyn product. The exploration and exploitation of the spinosyns has, unusually, been tied to an array of computational tools including artificial intelligence (AI)-based quantitative structure activity relationship (QSAR) and most recently computer-aided modeling and design (CAMD). The AI-based QSAR directly lead to the discovery of spinetoram, while the CAMD studies have recently resulted in the discovery and building of a series of synthetic spinosyn mimics. The most recent of these synthetic spinosyn mimics show promise as insecticides targeting lepidopteran insect pests as demonstrated by field studies wherein the efficacy has been shown to be comparable to spinosad and spinetoram. These and a range of other aspects related to the exploration of the spinosyns over the past 30 years are reviewed herein. © 2020 Society of Chemical Industry.

摘要

天然产物(NPs)长期以来一直是杀虫剂作物保护产品的来源。与许多大环内酯类 NPs 一样,多杀菌素起源于一种土壤抑制微生物(Saccharopolyspora spinosa)。在最初注册 20 多年后,多杀菌素仍然是一类独特的基于 NP 的昆虫控制产品,目前包括两种杀虫活性成分,多杀菌素,一种天然存在的多杀菌素混合物,以及乙基多杀菌素,一种半合成的多杀菌素产品。多杀菌素的探索和开发异常地与一系列计算工具相关联,包括基于人工智能(AI)的定量构效关系(QSAR),以及最近的计算机辅助建模和设计(CAMD)。基于 AI 的 QSAR 直接导致了乙基多杀菌素的发现,而 CAMD 研究最近导致了一系列合成多杀菌素类似物的发现和构建。这些最新的合成多杀菌素类似物显示出作为杀虫剂针对鳞翅目害虫的潜力,田间研究表明其功效可与多杀菌素和乙基多杀菌素相媲美。本文综述了过去 30 年来多杀菌素的探索过程中的这些和其他一系列相关方面。© 2020 英国化学学会。

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