Department of Biotechnology, College of Life Science and Technology, Huazhong University of Science and Technology, Wuhan, 430074, People's Republic of China.
Department of Microbiology, School of Biological Science, Quaid-i-Azam University Islamabad, Islamabad, 45320, Pakistan.
Appl Microbiol Biotechnol. 2020 Apr;104(7):2777-2801. doi: 10.1007/s00253-020-10399-0. Epub 2020 Feb 4.
More than 80% of the Earth surface is consisted of hostile and harsh environments, classified as extreme from an anthropogenic perspective. Microorganisms with acclimatized nature dominate these extreme ecosystems of the biosphere. Survivals in such environments initiate an inductive force leading to the production of noteworthy metabolites having peculiar biochemistry. Recent investigations on extremophilic fungi for unprecedented bioactive compounds emphasize their remarkable potential as sources of new therapeutics. The present review covers the literature published in the last 15 years and highlights the biological activities and structure of compounds isolated from the extremophilic fungi. The compounds are grouped based on their biological functions such as cytotoxicity, lipid-lowering ability, and antimicrobial, antioxidant, nematocidal, anti-inflammatory, anti-malarial, and antifouling activities. A total of 155 compounds isolated from 25 Penicillium species, 16 Aspergillus species, and 23 other species are presented, which include 105 new and 50 known bioactive compounds. Out of these, 77 have known cytotoxic activity and 46 are antimicrobial in nature, while there are 32 other compounds with different activities including nematocidal, anti-allergic, antioxidant, and anti-inflammatory. KEY POINTS: • A broad compilation of bioactive compounds from extremophilic fungi. • Classification of bioactive compounds based on their biological functions. • Production of cytotoxic compounds is common among all kind of extremophilic fungi. • Bioactive compounds have no direct role in adaptation process of extremophiles.
超过 80%的地球表面由敌对和恶劣的环境组成,从人为角度来看属于极端环境。适应自然的微生物主导着生物圈的这些极端生态系统。在这些环境中生存会引发一种诱导力,导致产生具有特殊生物化学特性的显著代谢物。最近对极端真菌进行的研究强调了它们作为新型治疗药物来源的显著潜力,这些研究针对前所未有的生物活性化合物。本综述涵盖了过去 15 年发表的文献,并强调了从极端真菌中分离出的化合物的生物活性和结构。这些化合物根据其生物功能进行分组,如细胞毒性、降血脂能力以及抗微生物、抗氧化、杀线虫、抗炎、抗疟和防污活性。共从 25 种青霉属、16 种曲霉属和 23 种其他属的真菌中分离得到 155 种化合物,其中包括 105 种新的和 50 种已知的生物活性化合物。其中,77 种具有已知的细胞毒性活性,46 种具有抗微生物特性,还有 32 种具有不同活性的化合物,包括杀线虫、抗过敏、抗氧化和抗炎。关键点:
广泛汇编了来自极端真菌的生物活性化合物。
根据生物功能对生物活性化合物进行分类。
产生细胞毒性化合物在所有类型的极端真菌中都很常见。
生物活性化合物在极端微生物的适应过程中没有直接作用。