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探索硼在现代农业中的应用:苯硼酸衍生物的抗真菌活性和作用机制。

Exploring boron applications in modern agriculture: Antifungal activities and mechanisms of phenylboronic acid derivatives.

机构信息

School of Pharmacy, Lanzhou University, Lanzhou, People's Republic of China.

State Key Laboratory of Grassland Agroecosystems, Lanzhou University, Lanzhou, China.

出版信息

Pest Manag Sci. 2023 Aug;79(8):2748-2761. doi: 10.1002/ps.7451. Epub 2023 May 1.

Abstract

BACKGROUND

The unreasonable use of chemical fungicides causes common adverse consequences that not only affect the environment, but also cause resistance and resurgence problems of plant pathogens, which are extremely harmful to human health, the economy, and the environment. Based on the rich biological activities of boron-based compounds, 82 phenylboronic acid derivatives were selected and their antifungal activities against six agricultural plant pathogens were determined. Combined with transcriptomics tools, the mechanism of action of compound A49 (2-chloro-5-trifluoromethoxybenzeneboronic acid) against Botrytis cinerea Pers (B. cinerea) was studied.

RESULTS

The EC values of compounds A24, A25, A30, A31, A36, A41, A49 and B23 against all six fungi were under 10 μg/mL. Compound A49 displayed significant activity against B. cinerea (EC  = 0.39 μg/mL), which was better than that of commercial fungicide boscalid (EC  = 0.55 μg/mL). A49 not only inhibited the germination of B. cinerea spores, but also caused abnormal cell morphology, loss of cell membrane integrity, enhanced cell membrane permeability, and accumulation of intracellular reactive oxygen species. Further findings showed that A49 reduced cellular antioxidant activity, and peroxidase and catalase activities. Transcriptomic results indicated that A49 could degrade intracellular redox processes and alter the metabolism of some amino acids. Meanwhile, A49 showed obvious activity in vivo and low cytotoxicity to mammal cells.

CONCLUSION

The boron-containing small molecule compounds had high efficiency and broad-spectrum antifungal activities against six plant pathogens, and are expected to be candidate compounds for a new class of antifungal drugs. © 2023 Society of Chemical Industry.

摘要

背景

不合理使用化学杀菌剂不仅会影响环境,还会导致植物病原菌产生抗药性和卷土重来的问题,造成常见的不良后果,对人类健康、经济和环境极为有害。基于硼基化合物丰富的生物活性,选择了 82 种苯硼酸衍生物,并测定了它们对六种农业植物病原菌的抗真菌活性。结合转录组学工具,研究了化合物 A49(2-氯-5-三氟甲氧基苯硼酸)对灰葡萄孢(B. cinerea)的作用机制。

结果

化合物 A24、A25、A30、A31、A36、A41、A49 和 B23 对所有六种真菌的 EC 值均低于 10μg/mL。化合物 A49 对 B. cinerea(EC = 0.39μg/mL)表现出显著的活性,优于商业杀菌剂肟菌酯(EC = 0.55μg/mL)。A49 不仅抑制了 B. cinerea 孢子的萌发,还导致细胞形态异常、细胞膜完整性丧失、细胞膜通透性增强以及细胞内活性氧的积累。进一步的研究表明,A49 降低了细胞抗氧化活性以及过氧化物酶和过氧化氢酶的活性。转录组学结果表明,A49 可以降解细胞内的氧化还原过程,并改变一些氨基酸的代谢。同时,A49 在体内表现出明显的活性和对哺乳动物细胞的低细胞毒性。

结论

含硼小分子化合物对六种植物病原菌具有高效广谱的抗真菌活性,有望成为新型抗真菌药物的候选化合物。© 2023 化学工业协会。

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