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Design Synthesis Phloem Mobility and Bioactivities of a Series of Phenazine-1-Carboxylic Acid-Amino Acid Conjugates

机译:一系列吩嗪-1-羧酸-氨基酸缀合物的设计合成韧皮部流动性和生物活性

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摘要

Developing fungicides with phloem mobility that can be applied to leaves to control root or vascular pathogens has long been desirable. To achieve this goal, an efficient and economical strategy involves introducing an amino acid into the existing highly active parent pesticide molecule. Hence, 12 L-phenazine-1-carboxylic acid (PCA)-amino acid conjugates >4a–>l were designed and synthesized via a simple synthetic route. In vitro bioassays results showed that all synthesized compounds >4a–>l exhibited certain fungicidal activities against six tested fungi. Compound >4c exhibited relatively good fungicidal activity against Rhizoctonia solani, and the EC50 value was 0.084 ± 0.006 mmol/L. The phloem mobility experiments revealed that introducing an amino acid to PCA could effectively endow PCA with phloem mobility in R. communis L. Among them, nine conjugates were found in phloem sap, and L-PCA-Valine >4d exhibited the highest phloem mobility. Analysis results from the prediction of the Kleier model indicated that an active carrier-mediated mechanism may be involved in L-PCA-amino acid conjugates—a result that needs to be confirmed and complemented with further tests. The current research provides useful data for modifying non-phloem-mobile fungicidal molecules to phloem-mobile types.
机译:长期以来,人们一直希望开发出具有韧皮部流动性的杀菌剂,该杀菌剂可应用于叶片以控制根或血管病原体。为了实现该目标,一种有效且经济的策略涉及将氨基酸引入现有的高活性母体农药分子中。因此,通过简单的合成途径设计并合成了12种L-吩嗪-1-羧酸(PCA)-氨基酸共轭物> 4a – > l 。体外生物测定结果表明,所有合成的化合物> 4a – > l 对六种测试真菌均表现出一定的杀菌活性。化合物> 4c 对茄红枯萎病菌表现出较好的杀真菌活性,EC50值为0.084±0.006mmol / L。韧皮部迁移实验表明,向PCA中引入氨基酸可以有效地赋予PCA以R. communis L.的韧皮部迁移性。其中,在韧皮部汁液中发现了9种结合物,L-PCA-缬氨酸> 4d 韧皮部流动性最高。 Kleier模型预测的分析结果表明,L-PCA-氨基酸缀合物可能涉及活性载体介导的机制,这一结果需要进一步证实并加以补充。当前的研究为将非韧皮部杀真菌分子修饰为韧皮部类型提供了有用的数据。

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