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通过负载在壳聚糖纳米颗粒上的橄榄叶提取物控制番茄植株的黄萎病

Control of the Verticillium Wilt on Tomato Plants by Means of Olive Leaf Extracts Loaded on Chitosan Nanoparticles.

作者信息

Mazzotta Elisabetta, Muzzalupo Rita, Chiappetta Adriana, Muzzalupo Innocenzo

机构信息

Centro di Ricerca Olivicoltura, Frutticoltura, Agrumicoltura, Consiglio per la Ricerca in Agricoltura e l'Analisi dell'Economia Agraria (CREA-OFA), C.da Li Rocchi-Vermicelli, 87036 Rende, CS, Italy.

Dipartimento di Farmacia, Scienze della Salute e della Nutrizione, Universitá della Calabria (DFSSN-UNICAL), Ed. Polifunzionale, 87036 Arcavacata di Rende, CS, Italy.

出版信息

Microorganisms. 2022 Jan 10;10(1):136. doi: 10.3390/microorganisms10010136.

Abstract

In this research, a new ecofriendly and sustainable fungicide agent, with the ability to control Verticillium wilt, was developed. To this purpose, a green extract of olive leaf (OLE) was prepared by ultrasound-assisted extraction (UAE) and characterized in terms of polyphenol content and antioxidant activity. Then, OLE was loaded in chitosan nanoparticles (CTNPs) to combine the antifungal activity of CTNPs and phenolic compounds to obtain an important synergic effect. Nanoparticles were synthetized using the ionic gelation technique and characterized in terms of sizes, polydispersity index, Z-potential, encapsulation efficiency, and release profile. Qualitative and quantitative analyses of OLE were performed by the HPLC method. OLE-loaded CTNPs exhibited good physicochemical properties, such as a small size and positive surface charge that significantly contributed to a high antifungal efficacy against . Therefore, their antifungal activity was evaluated in vitro, using the minimal inhibition concentration (MIC) assay in a concentration range between 0.071 and 1.41 mg/mL. Free OLE, blank CTNPs, and OLE-loaded CTNPs possessed MIC values of 0.35, 0.71, and 0.14 mg/mL, respectively. These results suggest an important synergic effect when OLE was loaded in CTNPs. Thereafter, we tested the two higher concentrations on tomato plants inoculated with , where no fungal growth was observed in the in vitro experiment, 0.71 and 1.41 mg/mL. Interestingly, OLE-loaded CTNPs at the higher concentration used, diminished the symptoms of Verticillium wilt in tomato plants inoculated with and significantly enhanced plant growth. This research offers promising results and opens the possibility to use OLE-loaded CTNPs as safe fungicides in the control strategies of Verticillium wilt at open field.

摘要

在本研究中,开发了一种新型的环保且可持续的杀菌剂,其具有防治黄萎病的能力。为此,通过超声辅助提取(UAE)制备了橄榄叶绿色提取物(OLE),并对其多酚含量和抗氧化活性进行了表征。然后,将OLE负载于壳聚糖纳米颗粒(CTNPs)中,以结合CTNPs的抗真菌活性和酚类化合物,从而获得重要的协同效应。使用离子凝胶化技术合成纳米颗粒,并对其尺寸、多分散指数、Z电位、包封率和释放曲线进行了表征。采用高效液相色谱法对OLE进行定性和定量分析。负载OLE的CTNPs表现出良好的物理化学性质,如小尺寸和正表面电荷,这对其针对[具体病原菌未给出]的高抗真菌功效有显著贡献。因此,使用最低抑菌浓度(MIC)测定法在0.071至1.41 mg/mL的浓度范围内对其体外抗真菌活性进行了评估。游离OLE、空白CTNPs和负载OLE的CTNPs的MIC值分别为0.35、0.71和0.14 mg/mL。这些结果表明,当OLE负载于CTNPs中时存在重要的协同效应。此后,我们在接种了[具体病原菌未给出]的番茄植株上测试了两个较高浓度,即0.71和1.41 mg/mL,在体外实验中未观察到真菌生长的情况下。有趣的是,在所使用的较高浓度下,负载OLE的CTNPs减轻了接种[具体病原菌未给出]的番茄植株上黄萎病的症状,并显著促进了植株生长。本研究提供了有前景的结果,并开启了在露天田地黄萎病防治策略中使用负载OLE的CTNPs作为安全杀菌剂的可能性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e4fb/8781408/82b0b66a3009/microorganisms-10-00136-g001.jpg

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