Gao Hai, Wang Yanan, Luo Qiao, Yang Liyuan, He Xingxing, Wu Jun, Kachanuban Konthorn, Wilaipun Pongthep, Zhu Weiming, Wang Yi
School of Medicine and Pharmacy, Ocean University of China, Laboratory for Marine Drugs and Bioproducts of Qingdao National Laboratory for Marine Science and Technology, Qingdao, China.
School of Pharmaceutical Sciences, Southern Medical University, Guangzhou, China.
Front Microbiol. 2021 Jan 22;11:609952. doi: 10.3389/fmicb.2020.609952. eCollection 2020.
Despite being potentially useful extremophile resources, there have been few reports on acid-tolerant fungi and their bioactive metabolites. Acidophilic/aciduric fungi ( = 237) were isolated from Thai mangrove sediments in an acidic medium. Using fungal identification technology (including morphologic observation, chemical screening, and sequence comparisons) all the isolates were identified and 41 representative isolates were selected for analysis of the phylogenetic relationships (ITS rDNA, β-tubulin, calmodulin, and actin gene sequences). There were seven genera identified - ; ; ; ; ; ; and - in four taxonomic orders of the phylum Ascomycota, and , , and were the dominant genera. Acidity tolerance was evaluated and 95% of the isolates could grow under extremely acidic conditions (pH 2). Six strains were classed as acidophilic fungi that cannot survive under pH 7, all of which had an extraordinarily close genetic relationship and belonged to the genus . This is the first report on the acidophilic characteristics of this genus. The antimicrobial, anti-tumor, and antiviral activities of the fermentation extracts were evaluated. Nearly three-quarters of the extracts showed cytotoxic activity, while less than a quarter showed antimicrobial or anti-H1N1 activity. The typical aciduric fungus OUCMDZ-5207 showed similar growth but completely different chemical diversity at pH 3 and 7. The metabolites of OUCMDZ-5207 that were obtained only at pH 3 were identified as tetrahydroauroglaucin (), flavoglaucin (), and auroglaucin (), among which auroglaucin showed strong selective inhibition of A549 cells with an IC value of 5.67 μM. These results suggest that acid stress can activate silent gene clusters to expand the diversity of secondary metabolites, and the bioprospecting of aciduric/acidophilic microorganism resources in Thai mangrove sediments may lead to the discovery of compounds with potential medicinal applications.
尽管嗜酸微生物资源具有潜在用途,但关于耐酸真菌及其生物活性代谢产物的报道却很少。在酸性培养基中从泰国红树林沉积物中分离出嗜酸/耐酸真菌(= 237株)。使用真菌鉴定技术(包括形态学观察、化学筛选和序列比较)对所有分离株进行鉴定,并选择41株代表性分离株分析系统发育关系(ITS rDNA、β-微管蛋白、钙调蛋白和肌动蛋白基因序列)。在子囊菌门的四个分类目中鉴定出七个属——;;;;;;和——,其中、和是优势属。评估了酸度耐受性,95%的分离株能够在极端酸性条件(pH 2)下生长。六株菌株被归类为嗜酸真菌,在pH 7条件下无法存活,所有这些菌株都具有极其密切的遗传关系,属于属。这是关于该属嗜酸特性的首次报道。评估了发酵提取物的抗菌、抗肿瘤和抗病毒活性。近四分之三的提取物显示出细胞毒性活性,而不到四分之一的提取物显示出抗菌或抗H1N1活性。典型的耐酸真菌OUCMDZ - 5207在pH 3和7时显示出相似的生长情况,但化学多样性完全不同。仅在pH 3时获得的OUCMDZ - 5207的代谢产物被鉴定为四氢金耳菌素()、黄耳菌素()和金耳菌素(),其中金耳菌素对A549细胞表现出强烈的选择性抑制作用,IC值为5.67 μM。这些结果表明,酸胁迫可以激活沉默基因簇以扩大次生代谢产物的多样性,对泰国红树林沉积物中耐酸/嗜酸微生物资源的生物勘探可能会导致发现具有潜在药用应用的化合物。