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Antimicrobial activity of crude extracts from mangrove fungal endophytes

机译:红树林真菌内生菌粗提物的抑菌活性

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摘要

The aim of this work was to select endophytic fungi from mangrove plants that produced antimicrobial substances. Minimal inhibitory concentrations (MIC) and minimal bactericidal concentrations (MBC) or minimal fungicidal concentrations (MFC) of crude extracts from 150 isolates were determined against potential human pathogens by a colorimetric microdilution method. Ninety-two isolates (61.3%) produced inhibitory compounds. Most of the extracts (28–32%) inhibited Staphylococcus aureus (MIC/MBC 4–200/64–200 μg ml−1). Only two extracts inhibited Pseudomonas aeruginosa (MIC/MBC 200/>200 μg ml−1). 25.5 and 11.7% inhibited Microsporum gypseum and Cryptococcus neoformans (MIC/MFC 4–200/8–200 μg ml−1 and 8–200/8–200 μg ml−1, respectively), while 7.5% were active against Candida albicans (MIC/MFC 32–200/32–200 μg ml−1). None of the extracts inhibited Escherichia coli. The most active fungal extracts were from six genera, Acremonium, Diaporthe, Hypoxylon, Pestalotiopsis, Phomopsis, and Xylaria as identified using morphological and molecular methods. Phomopsis sp. MA194 (GU592007, GU592018) isolated from Rhizophora apiculata showed the broadest antimicrobial spectrum with low MIC values of 8–32 μg ml−1against Gram-positive bacteria, yeasts and M. gypseum. It was concluded that endophytic fungi from mangrove plants are diverse, many produce compounds with antimicrobial activity and could be suitable sources of new antimicrobial natural products.
机译:这项工作的目的是从产生抗菌物质的红树林植物中选择内生真菌。通过比色微量稀释法确定了来自150种分离物的粗提物的最低抑菌浓度(MIC)和最低杀菌浓度(MBC)或最低杀菌浓度(MFC)。九十二个分离株(61.3%)产生抑制性化合物。大多数提取物(28–32%)抑制金黄色葡萄球菌(MIC / MBC 4–200 / 64–200μgml -1 )。只有两种提取物能抑制铜绿假单胞菌(MIC / MBC 200 /> 200μgml -1 )。分别抑制了25.5和11.7%的微孢子石膏和新隐球菌(MIC / MFC 4–200 / 8–200μgml -1 和8–200 / 8–200μgml -1 ),而7.5%的活性抗白色念珠菌(MIC / MFC 32–200 / 32–200μgml -1 )。提取物均未抑制大肠杆菌。使用形态学和分子学方法鉴定出的活性最高的真菌提取物来自六个属,顶头孢属,Diaporthe,Hypoxylon,Pestalotiopsis,Phomopsis和Xylaria。拟南芥分离自阿米根霉的MA194(GU592007,GU592018)显示了最广泛的抗菌谱,相对于革兰氏阳性细菌,酵母和石膏支原体,MIC较低,MIC值为8–32μgml -1 。结论是,来自红树林植物的内生真菌是多种多样的,许多产生具有抗微生物活性的化合物,并且可能是新的抗微生物天然产物的合适来源。

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