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评估纳米制造的植物源抗真菌制剂对禾谷镰刀菌生长及玉米赤霉烯酮毒素产生的功效。

Assessing the efficacy of nanofabricated plant-based antifungal formulation against the growth and zearalenone toxin production by Fusarium graminearum.

作者信息

Gupta Vishal, Raghuvanshi Tanya Singh, Prakash Bhanu

机构信息

Department of Botany, Institute of Science, Banaras Hindu University, Varanasi, 221005, India.

Department of Botany, Mahatma Gandhi Post Graduate College, Gorakhpur, 273001, Uttar Pradesh, India.

出版信息

Braz J Microbiol. 2025 Jul 29. doi: 10.1007/s42770-025-01744-4.

DOI:10.1007/s42770-025-01744-4
PMID:40728800
Abstract

The study investigates the efficacy of nanoencapsulated antifungal formulation (Ne-CIM) against the growth and zearalenone toxin production by Fusarium graminearum with a detailed mechanism of action. Antifungal and zearalenone toxin inhibitory effects of individual essential oils (EOs) (Carum carvi, and Illicium verum), methyl anthranilate, and their combination (CIM; 1:1:0.5) were recorded in terms of minimum inhibitory concentration (MIC) at (0.80, 0.50, 0.70 and 0.50 µl/ml) and (0.60, 0.40, 0.60 and 0.40 µl/ml) respectively. The antifungal formulation CIM was nanoencapsulated inside the chitosan nanogel and characterized using FTIR, DLS, and XRD. The result revealed that Ne-CIM exhibited elevated antifungal and zearalenone toxin inhibition at 0.40 and 0.30 µl/ml respectively which was found to be superior over the individual EOs and mixture formulation. Further, the mechanism of action of Ne-CIM was also explored by targeting the membrane ergosterol, ion leakage, 260/280 absorbing material, antioxidant enzymes, and carbon source utilization level. The result reveals the remarkable impairment in test biochemical parameters over to control. In addition, the practical applicability of Ne-CIM was investigated using in-situ experiments with inoculated toxigenic F. graminearum in raw material from Withania somnifera. The result revealed that at MIC value Ne-CIM protects 70% of fungal growth and 100% of zearalenone toxin, with remarkable protection from lipid peroxidation. The study recommends the Ne-CIM as a novel green antifungal agent for sustainable management of toxigenic F. graminearum.

摘要

该研究调查了纳米封装抗真菌制剂(Ne-CIM)对禾谷镰刀菌生长和玉米赤霉烯酮毒素产生的抑制效果,并详细探究了其作用机制。记录了香芹酮、八角茴香油、邻氨基苯甲酸甲酯及其组合(CIM;1:1:0.5)的抗真菌和玉米赤霉烯酮毒素抑制作用,其最低抑菌浓度(MIC)分别为(0.80、0.50、0.70和0.50微升/毫升)以及(0.60、0.40、0.60和0.40微升/毫升)。抗真菌制剂CIM被纳米封装在壳聚糖纳米凝胶中,并通过傅里叶变换红外光谱(FTIR)、动态光散射(DLS)和X射线衍射(XRD)进行表征。结果显示,Ne-CIM在0.40和0.30微升/毫升时分别表现出更高的抗真菌和玉米赤霉烯酮毒素抑制效果,优于单一精油和混合制剂。此外,还通过靶向膜麦角固醇、离子泄漏、260/280吸收物质、抗氧化酶和碳源利用水平来探究Ne-CIM的作用机制。结果显示,与对照相比,测试生化参数有显著受损。此外,通过对接种产毒禾谷镰刀菌的印度人参原料进行原位实验,研究了Ne-CIM的实际适用性。结果显示,在MIC值时,Ne-CIM可抑制70%的真菌生长和100%的玉米赤霉烯酮毒素产生,并显著防止脂质过氧化。该研究推荐Ne-CIM作为一种新型绿色抗真菌剂,用于产毒禾谷镰刀菌的可持续管理。

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