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从艾草内生真菌枝顶孢中分离得到的抗食、抗真菌和杀线虫化合物。

Antifeedant, antifungal and nematicidal compounds from the endophyte Stemphylium solani isolated from wormwood.

机构信息

Instituto de Productos Naturales, y Agrobiologia, Consejo Superior de Investigaciones Cientificas, Avda. Astrofisico F. Sanchez 3, 38206, La Laguna, Tenerife, Spain.

Instituto de Ciencias Agrarias, Consejo Superrior de Investigaciones Cientificas, Serrano 115, 28006, Madrid, Spain.

出版信息

Sci Rep. 2024 Jun 12;14(1):13500. doi: 10.1038/s41598-024-64467-w.

Abstract

The continuous search for natural product-based biopesticides from fungi isolated from untapped sources is an effective tool. In this study, we studied a pre-selected fungal endophyte, isolate Aa22, from the medicinal plant Artemisia absinthium, along with the antifungal, insect antifeedant and nematicidal compounds present in the extract. The endophyte Aa22 was identified as Stemphylium solani by molecular analysis. The antifungal activity was tested by broth microdilution against Fusarium solani, F. oxysporum, F. moniliforme and Botrytis cinerea, the insect antifeedant by choice bioassays against Spodoptera littoralis, Myzus persicae and Rhopalosiphum padi and the in vitro mortality against the root-knot nematode Meloiydogyne javanica. The structures of bioactive compounds were determined on the basis of 1D and 2D NMR spectroscopy and mass spectrometry. The ethyl acetate extract obtained from the solid rice fermentation showed mycelial growth inhibition of fungal pathogens (EC 0.08-0.31 mg/mL), was antifeedant to M. persicae (99%) and nematicidal (68% mortality). A bioguided fractionation led to the isolation of the new compound stempholone A (1), and the known stempholone B (2) and stemphol (3). These compounds exhibited antifeedant (EC 0.50 mg/mL), antifungal (EC 0.02-0.43 mg/L) and nematicidal (MLD 0.5 mg/mL) activities. The extract activities can be explained by 3 (antifungal), 1-3 (antifeedant) and 1 (nematicidal). Phytotoxicity tests on Lolium perenne and Lactuca sativa showed that the extract and 1 increased L. sativa root growth (121-130%) and 1 reduced L. perenne growth (48-49%). These results highlight the potential of the endophytic fungi Aa22 as biotechnological source of natural product-based biopesticides.

摘要

从未开发来源的真菌中不断寻找天然产物生物农药是一种有效的工具。在这项研究中,我们研究了一种预先选择的真菌内生菌,即来自药用植物艾蒿的分离株 Aa22,以及提取物中存在的抗真菌、昆虫拒食和杀线虫化合物。内生菌 Aa22 通过分子分析被鉴定为链格孢。通过肉汤微量稀释法对抗镰刀菌、尖孢镰刀菌、串珠镰刀菌和灰葡萄孢,选择生物测定法对抗斜纹夜蛾、桃蚜和麦二叉蚜进行抗真菌活性测试,以及对根结线虫 Meloiydogyne javanica 的体外死亡率进行抗虫拒食活性测试。生物活性化合物的结构根据 1D 和 2D NMR 光谱和质谱确定。从固体大米发酵中获得的乙酸乙酯提取物显示出对真菌病原体的菌丝生长抑制作用(EC 0.08-0.31mg/mL),对桃蚜具有拒食作用(99%)和杀线虫作用(68%死亡率)。生物导向的分级分离导致了新化合物链格孢酮 A(1)和已知的链格孢酮 B(2)和链格孢醇(3)的分离。这些化合物表现出拒食作用(EC 0.50mg/mL)、抗真菌作用(EC 0.02-0.43mg/L)和杀线虫作用(MLD 0.5mg/mL)。提取物的活性可以用 3(抗真菌)、1-3(抗虫)和 1(杀线虫)来解释。对黑麦草和莴苣的植物毒性试验表明,提取物和 1 增加了莴苣根的生长(121-130%),而 1 降低了黑麦草的生长(48-49%)。这些结果突出了内生真菌 Aa22 作为天然产物生物农药的生物技术来源的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e394/11169264/e10518136411/41598_2024_64467_Fig1_HTML.jpg

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