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首页> 外文期刊>Journal of Scientific Research and Reports >Antioxidant Properties of Fungal EndophytesAssociated with the Three Medicinal Plants Gliricidiasepium, Canna indica and Gardenia jasminoides
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Antioxidant Properties of Fungal EndophytesAssociated with the Three Medicinal Plants Gliricidiasepium, Canna indica and Gardenia jasminoides

机译:三种药用植物丁香,美人蕉和Garden子的真菌内生真菌的抗氧化性能

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Fungal endophytes live within tissues of living plants without causing any disease. These fungi are recognized sources of natural, bioactive compound with potential applications in agriculture, medicine, and food.Aims: This research study aimed to isolate and produce bioactive metabolites from fungal endophytes isolated from three Philippine medicinal plants and assess their antioxidant activities.Study Design: The study used exploratory research where medicinal plants were selected because these were considered to contain a wide range of endophytes which could have varied secondary metabolites that exhibit biological activities. Place and Duration of Study: Research Center for the Natural and Applied Sciences at the University of Santo Tomas, Manila and Center for Natural Sciences at Saint Mary’s University, Bayombong, Nueva Vizcaya during June 2011 to October 2012.Methodology: Medicinal plant leaf endophytes (MPLE) were isolated through surface sterilization of healthy leaves of Gliricidia sepium, Canna indica and Gardenia jasminoides. Selected MPLE were grown in vitro and extracted for their secondary metabolites. Assay of antioxidant activities was done using the 1,1-diphenyl-2-picrylhydrazyl (DPPH) while total phenolics content was through the Folin-Ciocalteu method. The number of metabolites present was detected using thin layer chromatography. Results: A total of 73 fungal strains belonging to 23 different morphospecies endophytes were isolated from the three host plants. G. sepium had the highest number of morphospecies (32) among the three medicinal plants studied. These fungal endophytes were identified as belonging to the genera Botrytis. Curvularia, Aspergillus, Trichoderma, Penicillium, and Gliocladium. Many MPLE were identified only as mycelia sterile The MPLE crude cultures showed antioxidant activities (75-90%RSA) and total phenolic content of 134 AAE/g. There were a maximum of 11 secondary metabolites present in the crude culture extracts belonging to the class of flavonoids, terpenoids, phenolics, fatty acids and coumarins.Conclusion: Fungal endophytes are rich in tropical regions and the three Philippine medicinal plants studied are good hosts of fungal endophytes which showed antioxidant activities and secondary metabolites which can be harnessed as sources of pharmaceuticals and nutraceuticals.
机译:真菌内生菌生活在活植物的组织内,不会引起任何疾病。这些真菌是公认的天然生物活性化合物的来源,具有潜在的农业,医药和食品用途。目的:本研究旨在从三种菲律宾药用植物中分离出的真菌内生菌中分离和生产生物活性代谢产物,并评估其抗氧化活性。 :该研究使用了探索性研究,在其中选择了药用植物,因为它们被认为含有多种内生菌,这些内生菌可能具有多种具有生物活性的次生代谢产物。研究地点和持续时间:马尼拉圣托马斯大学自然与应用科学研究中心和新玛丽大学自然科学中心,努瓦比斯开,Bayombong,2011年6月至2012年10月。方法:药用植物叶片内生菌( MPLE)是通过对Gliricidia sepium,Canna indica和Jasminoides的健康叶子进行表面灭菌而分离得到的。选定的MPLE在体外生长,并提取其次生代谢产物。抗氧化剂活性的测定是使用1,1-二苯基-2-吡啶并肼基(DPPH),而总酚含量是通过Folin-Ciocalteu方法进行的。使用薄层色谱法检测存在的代谢物数量。结果:从三株寄主植物中共分离出73种真菌菌株,分别属于23种不同形态的内生菌。在所研究的三种药用植物中,G。sepium的形态种类数量最多(32)。这些真菌内生菌被鉴定为属于葡萄孢属。弯孢菌,曲霉,木霉,青霉和胶质神经胶质细胞。许多MPLE仅被鉴定为无菌菌丝体。MPLE粗培养物显示出抗氧化活性(75-90 %RSA)和总酚含量为134 AAE / g。粗培养物提取物中最多存在11种次生代谢物,它们属于黄酮类,萜类,酚类,脂肪酸和香豆素类。结论:真菌内生菌富含热带地区,所研究的三种菲律宾药用植物是该类植物的良好寄主。真菌内生菌具有抗氧化活性和次生代谢产物,可以用作药物和营养保健品的来源。

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