不同药用多孔真菌群的抑菌活性研究。

Susanna M Badalyan, Alla V Shnyreva, Anush Barkhudaryan
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引用次数: 0

摘要

本文研究了俄罗斯、法国和意大利桦树(Betula sp.)、其他落叶树(Picea sp.)和针叶树(Abies alba)中分离的14株药用红带多孔真菌(Fomitopsis pinicola)的抑菌活性(AMA)。本研究结果表明,pinicola菌株对亚美尼亚土壤样品中分离的皮肤真菌(角质嗜黄孢菌、石膏小孢子菌、地毛菌)和青霉菌(灰孢青霉、灰孢青霉),以及来自不同培养物的革兰氏阴性菌(大肠杆菌、铜绿假单胞菌、鼠伤寒沙门菌)和革兰氏阳性菌(金黄色葡萄球菌)具有显著的抗菌潜力。在双重培养实验中,皮尼科拉菌通过抑制被试真菌的平均生长率(GRavr)和产孢量,引起菌落形态的改变,对被试真菌表现出较高的拮抗活性。静培养21 d后得到的培养肉液(CB)样品与菌丝提取物(ME)样品相比,具有较高的抗真菌活性(AFA),对皮肤真菌具有杀真菌(FC)和抑真菌(FS)的作用,对青霉菌(Penicillium spp.)的GRavr抑制作用超过50%。经测试的黑炭黑菌和黑炭黑菌对实验细菌也有抑菌活性。炭黑样品的AMA比ME样品的活性高。pinicola的菌丝体可能被认为是细胞外和细胞内抗菌化合物的潜在来源。为进一步研究pinicola的抗菌作用机制,开发蘑菇衍生的生物技术产品是有必要的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Antimicrobial Activity of Different Collections of Medicinal Polypore Fungus Fomitopsis pinicola (Agaricomycetes).

The study of antimicrobial activity (AMA) of 14 genetically identified dikaryotic strains of red belted medicinal polypore Fomitopsis pinicola isolated from Betula sp. and other deciduous trees, as well as conifers Picea sp. and Abies alba in Russia, France and Italy against test fungi and bacteria is discussed. The results of this study have shown that F. pinicola strains possess significant antimicrobial potential against dermatophytes (Chrysosporium keratinophilum, Microsporum gypseum, Trichophyton terrestre) and Penicillium species (P. griseofulvum, P. sp.) isolated from soil samples in Armenia, as well as Gram-negative (Escherichia coli, Pseudomonas aeruginosa, Salmonella typhimurium) and Gram-positive (Staphylococcus aureus) bacteria received from different culture collections. In dual culture experiments, F. pinicola showed high antagonistic/antifungal activity toward test fungi by suppressing their average growth rate (GRavr) and sporulation causing morphological changes of colonies. The cultural broth (CB) samples obtained from 21-d static culture of F. pinicola demonstrated higher antifungal activity (AFA) with fungicidic (FC) and fungistatic (FS) effects against dermatophytes and more than 50% GRavr inhibitory effect for Penicillium spp. compared with mycelial extracts (ME) samples. Tested CB and ME samples of F. pinicola showed also antibacterial activity (ABA) against test bacteria. The AMA of CB samples was higher than the activity of ME samples. The mycelium of F. pinicola may be considered a potential source of extra- and intracellular antimicrobial compounds. Further studies to elucidate the mechanism of antimicrobial effect of F. pinicola for developing mushroom-derived biotech products are warranted.

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