El-Sayed El-Sayed R, Hazaa Magdia A, Shebl Magdy M, Amer Mahmoud M, Mahmoud Samar R, Khattab Abeer A
Plant Research Department, Nuclear Research Center, Egyptian Atomic Energy Authority, Cairo, Egypt.
Biological Applications Department, Nuclear Research Center, Egyptian Atomic Energy Authority, Cairo, Egypt.
AMB Express. 2022 Apr 19;12(1):46. doi: 10.1186/s13568-022-01386-x.
The search for new bioactive compounds with innovative modes of action and chemistry are desperately needed to tackle the increased emergence of drug-resistant microbes. With this view, this paper was conducted for the isolation, identification, and biological evaluation of fungal endophytes of eleven different plant species. A total of 69 endophytic strains were isolated and tested for the presence of bioactive metabolites with antifungal, antibacterial, anticancer, and antioxidant properties in their extracts. Upon screening, two promising strains were found to have all the before-mentioned activities. These strains were Aspergillus sydowii isolated from the bark of Ricinus communis and Aspergillus flavus isolated from the twigs of Psidium guajava. Major compounds present in extracts of the two strains were identified by GC-Mass analyses. Several well-known bioactive compounds as well as unreported ones were identified in the fungal extracts of the two strains. Furthermore, gamma irradiation (at 1000 Gy) of the fungal cultures resulted in improved bioactivities of extracts from the two strains. These findings recommend the two fungal strains as sources of antimicrobial, anticancer, and antioxidant compounds which may aid in the development of novel drugs. The presented research also explains the high-value of fungal endophytes as untapped sources of bioactive metabolites.
迫切需要寻找具有创新作用方式和化学结构的新型生物活性化合物,以应对耐药微生物日益增多的问题。基于此观点,本文对11种不同植物物种的真菌内生菌进行了分离、鉴定和生物学评价。共分离出69株内生菌菌株,并检测其提取物中是否存在具有抗真菌、抗菌、抗癌和抗氧化特性的生物活性代谢物。经筛选,发现两株有前景的菌株具有上述所有活性。这两株菌株分别是从蓖麻树皮中分离出的烟曲霉和从番石榴嫩枝中分离出的黄曲霉。通过气相色谱 - 质谱分析鉴定了这两株菌株提取物中的主要化合物。在这两株菌株的真菌提取物中鉴定出了几种知名的生物活性化合物以及未报道的化合物。此外,对真菌培养物进行γ射线照射(1000 Gy)可提高这两株菌株提取物的生物活性。这些发现表明这两株真菌菌株可作为抗菌、抗癌和抗氧化化合物的来源,可能有助于新型药物的开发。本研究还解释了真菌内生菌作为未开发的生物活性代谢物来源的高价值。