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树脂酸铜盐,一种有趣的化学农药,通过调节细菌生物膜、运动性和胞外酶来控制水稻细菌性条斑病。

Resin Acid Copper Salt, an Interesting Chemical Pesticide, Controls Rice Bacterial Leaf Blight by Regulating Bacterial Biofilm, Motility, and Extracellular Enzymes.

机构信息

Guizhou Province Engineering Research Center of Medical Resourceful Healthcare Products, College of Pharmacy, Guiyang Healthcare Vocational University, Guiyang 550081, China.

National Key Laboratory of Green Pesticide, Center for R&D of Fine Chemicals, Guizhou University, Guiyang 550025, China.

出版信息

Molecules. 2024 Sep 11;29(18):4297. doi: 10.3390/molecules29184297.

Abstract

Bacterial virulence plays an important role in infection. Antibacterial virulence factors are effective for preventing crop bacterial diseases. Resin acid copper salt as an effective inhibitor exhibited excellent anti- pv. () activity with an EC of 50.0 μg mL. Resin acid copper salt (RACS) can reduce extracellular polysaccharides' (EPS's) biosynthesis by down-regulating relative expression. RACS can also effectively inhibit the bio-mass of biofilm. It can reduce the activity of extracellular amylase at a concentration of 100 μg mL. Meanwhile, the results of virtual computing suggested that RACS is an enzyme inhibitor. RACS displayed good curative activity with a control effect of 38.5%. Furthermore, the result of the phytotoxicity assessment revealed that RACS exhibited slight toxicity compared with the control at a concentration of 200 μg mL. The curative effect was increased to 45.0% using an additional antimicrobial agent like orange peel essential oil. RACS markedly inhibited bacterial pathogenicity at a concentration of 100 μg mL in vivo.

摘要

细菌的毒力在感染中起着重要作用。抗菌毒力因子可有效预防作物细菌性病害。树脂酸铜盐作为一种有效的抑制剂,其 EC 为 50.0 μg mL 时表现出优异的抗 pv. () 活性。树脂酸铜盐 (RACS) 通过下调相对表达水平来降低胞外多糖 (EPS) 的生物合成。RACS 还可以有效抑制生物膜的生物量。它可以在 100 μg mL 的浓度下降低胞外淀粉酶的活性。同时,虚拟计算的结果表明 RACS 是一种酶抑制剂。RACS 表现出良好的治疗活性,控制效果为 38.5%。此外,毒性评估的结果表明,RACS 在 200 μg mL 的浓度下与对照相比表现出轻微毒性。当添加抗菌剂如橙皮精油时,治疗效果增加到 45.0%。RACS 在体内浓度为 100 μg mL 时显著抑制细菌的致病性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e9fa/11434517/7c893ae1396e/molecules-29-04297-g001.jpg

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