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Chemical Composition of an Aphid Antifeedant Extract from an Endophytic Fungus Trichoderma sp. EFI671

机译:内生真菌木霉属的蚜虫拒食性提取物的化学成分。 EFI671

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摘要

Botanical and fungal biopesticides, including endophytes, are in high demand given the current restrictive legislations on the use of chemical pesticides. As part of an ongoing search for new biopesticides, a series of fungal endophytes have been isolated from selected medicinal plants including species. In the current study, an extract from the endophytic fungus sp. EFI 671, isolated from the stem parts of the medicinal plant sp., was screened for bioactivity against plant pathogens ( , , and ), insect pests ( , , ) and plant parasites ( ), with positive results against . The chemical study of the neutral fraction of the active hexane extract resulted in the isolation of a triglyceride mixture (m ), eburicol ( ), β-sitostenone ( ), ergosterol ( ) and ergosterol peroxide ( ). The free fatty acids present in the acid fraction of the extract and in m1 (oleic, linoleic, palmitic and stearic) showed strong dose-dependent antifeedant effects against . Liquid (potato dextrose broth, PDB and Sabouraud Broth, SDB) and solid (corn, sorghum, pearl millet and rice) growth media were tested in order to optimize the yield and bioactivity of the fungal extracts. Pearl millet and corn gave the highest extract yields. All the extracts from these solid media had strong effects against , with sorghum being the most active. Corn media increased the methyl linoleate content of the extract, pearl millet media increased the oleic acid and sorghum media increased the oleic and linoleic acids compared to rice. The antifeedant effects of these extracts correlated with their content in methyl linoleate and linoleic acid. The phytotoxic effects of these extracts against ryegrass, , and lettuce, , varied with culture media, with sorghum being non- toxic.
机译:鉴于当前有关使用化学农药的限制性法规,对植物和真菌生物农药(包括内生菌)的需求很高。作为对新生物农药的持续搜索的一部分,已从选定的药用植物(包括物种)中分离出一系列真菌内生菌。在当前的研究中,提取自内生真菌sp。从药用植物sp。的茎部分离出的EFI 671,针对植物病原体(和),害虫(和)和植物寄生虫()的生物活性进行了筛选,结果对EFI 671呈阳性反应。对活性己烷提取物的中性部分进行化学研究后,分离出了甘油三酸酯混合物(m),eburicol(),β-sitostenone(),麦角固醇()和麦角固醇过氧化物()。提取物的酸级分和m1中的游离脂肪酸(油酸,亚油酸,棕榈酸和硬脂酸)表现出强烈的剂量依赖性拒食作用。测试了液体(马铃薯葡萄糖肉汤,PDB和Sabouraud肉汤,SDB)和固体(玉米,高粱,珍珠粟和大米)生长培养基,以优化真菌提取物的产量和生物活性。珍珠粟和玉米的提取物产量最高。这些固体培养基中的所有提取物均对,,,,,,,具有强烈的抵抗力。与大米相比,玉米培养基增加了提取物中亚油酸甲酯的含量,珍珠粟培养基增加了油酸,高粱培养基增加了油酸和亚油酸。这些提取物的拒食作用与其在亚油酸甲酯和亚油酸中的含量有关。这些提取物对黑麦草和生菜的植物毒性作用随培养基而变化,高粱无毒。

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