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Fungal endophytes from arid areas of Andalusia: high potential sources for antifungal and antitumoral agents

机译:来自安达卢西亚干旱地区的真菌内生菌:抗真菌和抗肿瘤药物的高潜在来源

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Native plant communities from arid areas present distinctive characteristics to survive in extreme conditions. The large number of poorly studied endemic plants represents a unique potential source for the discovery of novel fungal symbionts as well as host-specific endophytes not yet described. The addition of adsorptive polymeric resins in fungal fermentations has been seen to promote the production of new secondary metabolites and is a tool used consistently to generate new compounds with potential biological activities. A total of 349 fungal strains isolated from 63 selected plant species from arid ecosystems located in the southeast of the Iberian Peninsula, were characterized morphologically as well as based on their ITS/28S ribosomal gene sequences. The fungal community isolated was distributed among 19 orders including Basidiomycetes and Ascomycetes, being Pleosporales the most abundant order. In total, 107 different genera were identified being Neocamarosporium the genus most frequently isolated from these plants, followed by Preussia and Alternaria. Strains were grown in four different media in presence and absence of selected resins to promote chemical diversity generation of new secondary metabolites. Fermentation extracts were evaluated, looking for new antifungal activities against plant and human fungal pathogens, as well as, cytotoxic activities against the human liver cancer cell line HepG2. From the 349 isolates tested, 126 (36%) exhibited significant bioactivities including 58 strains with exclusive antifungal properties and 33 strains with exclusive activity against the HepG2 hepatocellular carcinoma cell line. After LCMS analysis, 68 known bioactive secondary metabolites could be identified as produced by 96 strains, and 12 likely unknown compounds were found in a subset of 14 fungal endophytes. The chemical profiles of the differential expression of induced activities were compared. As proof of concept, ten active secondary metabolites only produced in the presence of resins were purified and identified. The structures of three of these compounds were new and herein are elucidated.
机译:来自干旱地区的本地植物群落具有独特的特征,可以在极端条件下生存。大量未经充分研究的特有植物代表了发现新型真菌共生体以及尚未描述的宿主特异性内生菌的独特潜在来源。业已发现,在真菌发酵中添加吸附性聚合物树脂可促进新的次生代谢产物的产生,并且该工具一直被用来生成具有潜在生物活性的新化合物。从伊比利亚半岛东南部干旱生态系统的63种选定植物物种中分离出的349株真菌,在形态学上以及根据其ITS / 28S核糖体基因序列进行了表征。分离出的真菌群落分布在包括担子菌和子囊菌在内的19个订单中,其中Pleosporales是最丰富的订单。总共有107个不同属被鉴定为最容易从这些植物中分离出的新孢子虫,其次是普鲁士和交链孢菌。在存在和不存在所选树脂的情况下,菌株在四种不同的培养基中生长,以促进新的次生代谢产物的化学多样性产生。对发酵提取物进行了评估,以寻找针对植物和人类真菌病原体的新抗真菌活性,以及​​针对人类肝癌细胞系HepG2的细胞毒活性。在测试的349个分离物中,有126个(36%)表现出显着的生物活性,包括58个具有排他性抗真菌特性的菌株和33个对HepG2肝癌细胞系具有排他活性的菌株。 LCMS分析后,可以鉴定出由96个菌株产生的68种已知的生物活性次生代谢产物,并且在14种真菌内生菌的子集中发现了12种可能的未知化合物。比较了诱导活性差异表达的化学特征。作为概念验证,仅纯化和鉴定了仅在树脂存在下产生的十种活性次生代谢产物。这些化合物中的三种是新的结构,在此进行了阐述。

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