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首页> 外文期刊>Pharmacognosy Research >Growth Inhibition and Morphological Alteration of Fusarium sporotrichioides by Mentha piperita Essential Oil
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Growth Inhibition and Morphological Alteration of Fusarium sporotrichioides by Mentha piperita Essential Oil

机译:薄荷(Mentha piperita)精油对孢子毛镰刀菌的生长抑制和形态学改变

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Objective: The aim of this study is to determine the phytochemical composition, antifungal activity of Mentha piperita essential oil (MPE) against Fusarium sporotrichioides . Methods: The phytochemical composition was conducted by gas chromatography mass spectrometry (GC MS) analysis and mycelia growth inhibition was determined by minimum inhibitory concentration (MIC) and minimum fungicidal concentration (MFC), the morphological characterization was observed by scanning electron microscopy. Finally, the membrane permeability was determined by the release of extracellular constituents, pH, and total lipid content. Result: In GC MS analysis, 22 metabolites were identified such as menthol, l menthone, pulegone, piperitone, caryophyllene, menthol acetate, etc. The antifungal activity against targeted pathogen, with MIC and MFC 500 μg/mL and 1000 μg/mL, respectively. The MPE altered the morphology of F. sporotrichoides hyphae with the loss of cytoplasm content and contorted the mycelia. The increasing concentration of MPE showed increase in membrane permeability of F. sporotrichoides as evidenced by the release of extracellular constituents and pH with the disruption of cell membrane indicating decrease in lipid content of F. sporotrichoides . Conclusion: The observed results showed that MPE exhibited promising new antifungal agent against Fusarium sporotrichioides . SUMMARY F. sporotrichioides , filamentous fungi contaminate to corn and corn--based products F. sporotrichioides mainly responsible for the production of T-2 toxin Phytochemical composition was conducted by gas chromatography--mass spectrometry analysis Mentha piperita essential oil (MPE) is commonly known as peppermint The F. sporotrichioides growth was inhibited by MPE (minimum inhibitory concentration, minimum fungicidal concentration) Morphological observation by scanning electron microscope. Abbreviations Used : Cfu: Colony forming unit; DMSO: Dimethyl sulfoxide, °C: Degree celsius; F. Sporotrichoides : Fusarium sporotrichioides ; EOs: Essential oils; M: Molar, g: Gram/gravity, mg: Milligram; μg: Microgram, ml: Milliliter; mm: Millimeter, min: Minutes; M. piperita : Mentha piperita , MIC: Minimum inhibitory concentration; MFC: Minimum fungicidal concentration; MAE: Mentha arvensis essential oil; Na2SO4: Sodium sulfate; pH: Potential Hydrogen; PDB: Potato Dextrose Broth; SEM: Scanning electron microscope.
机译:目的:本研究的目的是确定胡椒薄荷(Mentha piperita)精油(MPE)对镰孢镰刀菌(Fusarium sporotrichioides)的植物化学组成,抗真菌活性。方法:采用气相色谱质谱法(GC MS)对植物化学成分进行测定,采用最小抑菌浓度(MIC)和最小抑菌浓度(MFC)测定菌丝体的生长抑制率,并通过扫描电子显微镜观察其形态特征。最后,通过细胞外成分的释放,pH和总脂质含量来确定膜的通透性。结果:在GC MS分析中,鉴定出了22种代谢物,如薄荷醇,l薄荷酮,pulegone,哌啶酮,石竹烯,乙酸薄荷醇等。MIC和MFC分别对500μg/ mL和1000μg/ mL的MIC和MFC具有抗真菌活性,分别。 MPE改变了孢子丝菌菌丝的形态,使细胞质含量降低,并扭曲了菌丝体。 MPE浓度的增加显示了F. sporotrichoides的膜渗透性的增加,这可以通过细胞外成分的释放和pH值随细胞膜的破坏来证明,表明F. sporotrichoides的脂质含量降低。结论:观察到的结果表明,MPE对枯萎镰刀菌具有很好的抗真菌作用。小结F. sporotrichioides,被玉米和玉米基产品污染的丝状真菌F. sporotrichioides主要负责生产T-2毒素植物化学成分是通过气相色谱-质谱分析法进行的薄荷油(Mentha piperita)精油通常是被称为薄荷F. sporotrichioides的生长被MPE抑制(最小抑制浓度,最小杀真菌浓度)。使用的缩写:Cfu:菌落形成单位; DMSO:二甲基亚砜,°C:摄氏度; F. Sporotrichoides:镰刀孢孢; EOs:香精油; M:摩尔,g:克/重力,mg:毫克; μg:微克,ml:毫升; mm:毫米,min:分钟; M. piperita:薄荷(Mentha piperita),MIC:最小抑菌浓度; MFC:最小杀真菌浓度; MAE:薄荷脑精油; Na 2 SO 4 :硫酸钠; pH:潜在氢; PDB:马铃薯葡萄糖肉汤; SEM:扫描电子显微镜。

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