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三氟丁烯酰胺衍生物的设计、合成及对南方根结线虫的杀线虫活性。

Design, synthesis and nematicidal activitives of trifluorobutene amide derivatives against Meloidogyne incognita.

机构信息

Shanghai Key Laboratory of Chemical Biology, School of Pharmacy, East China University of Science and Technology, Shanghai 200237, China.

Shanghai Key Laboratory of Chemical Biology, School of Pharmacy, East China University of Science and Technology, Shanghai 200237, China; CreInSol MCB, CH-4118 Rodersdorf, Switzerland.

出版信息

Bioorg Med Chem Lett. 2021 May 15;40:127917. doi: 10.1016/j.bmcl.2021.127917. Epub 2021 Mar 9.

Abstract

Plant parasitic nematodes have always been a pressing problem in the field of plant protection. Well-established chemical nematicides, especially organophosphorus and carbamates are the most used products for nematode control worldwide. Due to long-term overuse, they have developed serious resistance and new innovative solutions are urgently required. In this study, thirty-one novel trifluorobutene amide derivatives were designed and synthesized, and their nematicidal activities were determined. Three different synthetic methods have been developed for the final amidation reaction enabling the successfully syntheses of the target compounds independently from the nucleophilicities of the substrate amino group. Most target compounds showed good nematicidal activity in our in vitro test. Among all the compounds, compounds A8 and A23 exhibited excellent nematicidal activity against Meloidogyne incognita, their LC values are 2.02 mg L and 0.76 mg L, respectively. In particular, compound A23 has found to be almost as active as the commercial nematicide fluensulfone. Furthermore, most compounds gave full control (100% inhibition) of M. incognita at 40 mg L in the in vivo tests in sandy soil, the best compounds were further investigated for in vivo activity in matrix soil. Among the compound tested, compound A8 showed excellent in vivo nematicidal activity. At a concentration of 5 mg L still 56% inhibition was observed. The results of our study indicate that compound A8 possesses excellent in vitro and in vivo nematicidal activity, and can be considered as promising lead molecule for further modification.

摘要

植物寄生线虫一直是植物保护领域的一个紧迫问题。成熟的化学杀线虫剂,特别是有机磷和氨基甲酸酯类,是全球用于线虫防治的最常用产品。由于长期过度使用,它们已经产生了严重的抗药性,迫切需要新的创新解决方案。在这项研究中,设计并合成了 31 种新型三氟丁烯酰胺衍生物,并测定了它们的杀线虫活性。为了最终的酰胺化反应,开发了三种不同的合成方法,使目标化合物的合成能够独立于底物氨基的亲核性。大多数目标化合物在我们的体外测试中表现出良好的杀线虫活性。在所有化合物中,化合物 A8 和 A23 对南方根结线虫表现出优异的杀线虫活性,它们的 LC 值分别为 2.02mg/L 和 0.76mg/L。特别是,化合物 A23 被发现几乎与商业杀线虫剂氟吡菌胺一样有效。此外,在沙壤土中的体内试验中,大多数化合物在 40mg/L 时对 M. incognita 完全控制(100%抑制),在最佳化合物的体内活性在基质土壤中进一步进行了研究。在所测试的化合物中,化合物 A8 表现出优异的体内杀线虫活性。在 5mg/L 的浓度下仍观察到 56%的抑制。我们的研究结果表明,化合物 A8 具有优异的体外和体内杀线虫活性,可被视为进一步修饰的有前途的先导分子。

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