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基于柠檬醛的酰胺衍生物可提高醚菌酯对立枯丝核菌的抗真菌活性。

Citral-based amide derivatives improve the antifungal activity of Kresoxim-methyl against Rhizoctonia solani.

作者信息

Pan Xiaoyi, Liao Guoxiang, Li Hongfei, Yuan Wenjing, Xu Lin, Si Hongyan, Zhang Ji, Song Jie, Chen Shangxing, Wang Zongde, Liao Shengliang

机构信息

College of Forestry, Jiangxi Agricultural University, East China Woody Fragrance and Flavor Engineering Research Center of National Forestry and Grassland Administration, Jiangxi Provincial Key Laboratory of Improved Variety Breeding and Efficient Utilization of Native Tree Species, Nanchang, China.

Department of Natural Sciences, University of Michigan-Flint, Flint, MI, USA.

出版信息

Pest Manag Sci. 2025 Sep;81(9):5738-5749. doi: 10.1002/ps.8931. Epub 2025 May 26.

Abstract

BACKGROUND

Rhizoctonia solani, the fungal pathogen causing rice sheath blight, threatens global food security. Prolonged use of Kresoxim-methyl (KM), a common fungicide, has led to resistance and reduced effectiveness. This study investigates the synergistic effects of citral-based amide derivatives with KM and explains the underlying mechanisms.

RESULT

Among the tested derivatives, compound d25 exhibited the most pronounced synergistic effect, achieving a peak synergistic ratio (SR = 2.66 ± 0.67) at a molar ratio of 25% in the mixture. At a molar ratio of 10%, the mixture (Mix) demonstrated significant antifungal activity both in vitro and in vivo, effectively reducing mycelial dry weight and enhancing rice leaf protection. Mechanistic studies revealed that Mix disrupted the tricarboxylic acid (TCA) cycle, thereby inhibiting energy metabolism. Additionally, d25 interfered with arachidonic acid metabolism, impairing cell membrane repair mechanisms and enhancing the fungicidal efficacy of KM. Toxicity assessments revealed that d25 exhibited minimal cytotoxicity against human cell lines and low acute toxicity toward Apis mellifera L. and zebrafish.

CONCLUSION

The findings elucidate the synergistic mechanisms of d25 and Mix, underscoring their potential as effective fungicide synergists. This study establishes a robust theoretical and practical foundation for enhancing the efficacy of chemical control strategies against R. solani, providing new insights into the development of safe and efficient fungicide formulations. © 2025 Society of Chemical Industry.

摘要

背景

引起水稻纹枯病的真菌病原体立枯丝核菌威胁着全球粮食安全。长期使用常见杀菌剂嘧菌酯(KM)已导致抗性并降低了其有效性。本研究调查了柠檬醛基酰胺衍生物与KM的协同作用,并解释了其潜在机制。

结果

在测试的衍生物中,化合物d25表现出最显著的协同作用,在混合物中摩尔比为25%时达到最高协同比(SR = 2.66 ± 0.67)。在摩尔比为10%时,混合物(Mix)在体外和体内均表现出显著的抗真菌活性,有效降低了菌丝干重并增强了对水稻叶片的保护。机理研究表明,Mix破坏了三羧酸(TCA)循环,从而抑制了能量代谢。此外,d25干扰了花生四烯酸代谢,损害了细胞膜修复机制并增强了KM的杀菌效果。毒性评估显示,d25对人类细胞系表现出最小的细胞毒性,对意大利蜜蜂和斑马鱼的急性毒性较低。

结论

研究结果阐明了d25和Mix的协同机制,强调了它们作为有效杀菌剂增效剂的潜力。本研究为提高对立枯丝核菌化学防治策略的有效性建立了坚实的理论和实践基础,为开发安全高效的杀菌剂配方提供了新的见解。© 2025化学工业协会。

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