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N-(5-苯基吡嗪-2-基)苯甲酰胺衍生物的合成与杀虫活性:通过症状学和遗传研究阐明对几丁质生物合成的作用模式。

Synthesis and insecticidal activity of N-(5-phenylpyrazin-2-yl)-benzamide derivatives: Elucidation of mode of action on chitin biosynthesis through symptomology and genetic studies.

机构信息

Syngenta Crop Protection AG, Schaffhauserstrasse 101, Stein CH-4332, Switzerland.

Syngenta Crop Protection, Jealott's Hill International Research Centre, Bracknell, Berkshire RG42 6EY, UK.

出版信息

Pestic Biochem Physiol. 2024 Feb;199:105771. doi: 10.1016/j.pestbp.2024.105771. Epub 2024 Jan 11.

DOI:10.1016/j.pestbp.2024.105771
PMID:38458679
Abstract

Among the six-membered heterocycles, the pyrazine ring is poorly explored in crop protection and does not feature in any product listed in the current IRAC MoA classification. In an effort to identify new leads for internal research, we synthesized a series of N-(5-phenylpyrazin-2-yl)-benzamide derivatives and evaluated them for their insecticidal activity. N-(5-phenylpyrazin-2-yl)-benzamide derivatives 3 were prepared using an automated two-step synthesis protocol. These compounds were tested for their initial biological activity against a wide range of sucking and chewing insect pests and found to be active against lepidopterans only. More detailed experiments, including symptomology studies on the diamondback moth, Plutella xylostella (L.) and the Egyptian cotton leafworm, Spodoptera littoralis (Boisduval) showed that analog 3q causes severe abnormalities in the lepidopteran cuticle leading to larval mortality. Compound 3q shows strong potency against both P. xylostella and S. littoralis, whereas analog 3i shows better potency against S. littoralis causing also impaired cuticular structure and death of the larvae. Additionally, P. xylostella genetic studies showed that compound 3q resistance is linked to Chitin Synthase 1. Our studies show that N-(5-phenylpyrazin-2-yl)-benzamide derivatives 3, and in particular analogs 3i and 3q, act as insect growth modulator insecticides. Conformational similarities with lufenuron are discussed.

摘要

在六元杂环中,吡嗪环在作物保护中研究甚少,在当前的 IRAC MoA 分类中没有任何产品涉及。为了寻找内部研究的新先导化合物,我们合成了一系列 N-(5-苯基吡嗪-2-基)-苯甲酰胺衍生物,并评估了它们的杀虫活性。N-(5-苯基吡嗪-2-基)-苯甲酰胺衍生物 3 是通过自动化两步合成方案制备的。这些化合物对广泛的刺吸式和咀嚼式害虫进行了初始生物活性测试,结果表明它们仅对鳞翅目昆虫具有活性。更详细的实验,包括对小菜蛾(Plutella xylostella (L.))和埃及棉铃虫(Spodoptera littoralis (Boisduval)的症状学研究表明,类似物 3q 会导致鳞翅目昆虫外骨骼严重异常,导致幼虫死亡。化合物 3q 对小菜蛾和埃及棉铃虫均表现出较强的活性,而类似物 3i 对埃及棉铃虫表现出更好的活性,同时也导致外骨骼结构受损和幼虫死亡。此外,小菜蛾的遗传研究表明,化合物 3q 的抗性与几丁质合成酶 1 有关。我们的研究表明,N-(5-苯基吡嗪-2-基)-苯甲酰胺衍生物 3,特别是类似物 3i 和 3q,作为昆虫生长调节剂杀虫剂发挥作用。讨论了与 lufenuron 的构象相似性。

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