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Design, Synthesis, and Fungicidal Activity of Novel Thiosemicarbazide Derivatives Containing Piperidine Fragments

机译:含哌啶碎片的新型硫代硫代吡啶衍生物的设计,合成和杀真菌活性

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摘要

In order to discover novel eco-friendly lead compounds for plant pathogenic fungi control, a series of benzaldehyde thiosemicarbazide derivatives with a piperidine moiety have been designed and synthesized. Fungicidal activities of all the synthesized compounds were evaluated in vitro. The results indicated that all the title compounds exhibited moderate to good fungicidal activities. Compound 3b displayed excellent activities against Pythium aphanidermatum, Rhizoctonia solani, Valsa mali, and Gaeu-mannomyces graminsis, with EC50 values lower than 10 g/mL. Especially, in the case of Pythium aphanidermatum, its activity (EC50 = 1.6 g/mL) is superior to the commercial azoxystrobin (EC50 = 16.9 g/mL) and close to fluopicolide (EC50 = 1.0 g/mL). Initial structure-activity relationship (SAR) analysis showed that the heterocyclic piperidine group can influence the biological activities of the title compounds significantly. The fungicidal activity of compounds with piperidine is better than that of compounds without piperidine. The highly-active compound 3b, with its simple structure and easy synthetic route, is worthy to be further studied as a new lead fungicide.
机译:为了探索新型环保铅化合物用于植物病原真菌控制,已经设计并合成了一系列具有哌啶部分的苯甲醛硫代吡啶脱氧族衍生物。在体外评估所有合成化合物的杀真菌活性。结果表明,所有标题化合物都表现出中等至良好的杀真菌活动。化合物3B对糖藻肽,Rhizoctonia Solani,Valsa Mali和Gaeu-mannomyces综合综合作用,EC50值低于10g / ml。特别是,在糖肽的情况下,其活性(EC50 = 1.6g / ml)优于商业氮杂氧键(EC50 = 16.9g / ml),并且接近氟化物(EC50 = 1.0g / ml)。初始结构 - 活性关系(SAR)分析表明,杂环哌啶基团可以显着影响标题化合物的生物活性。用哌啶的化合物的杀真菌活性优于没有哌啶的化合物的杀菌活性。具有简单结构和易于合成途径的高活性化合物3B是值得进一步研究的作为新的铅杀菌剂。

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