Han Jae Woo, Kim Bomin, Oh Mira, Choi Jaehyuk, Choi Gyung Ja, Kim Hun
Center for Eco-friendly New Materials, Korea Research Institute of Chemical Technology, Daejeon, Korea.
Department of Medicinal Chemistry and Pharmacology, University of Science and Technology, Daejeon, Korea.
Mycobiology. 2020 May 23;48(4):326-329. doi: 10.1080/12298093.2020.1766648.
Valuable natural compounds produced by a variety of microorganisms can be used as lead molecules for development of new agrochemicals. Furthermore, high-throughput screening systems with specific modes of action can increase the probability of discovery of new fungicides. In the current study, a rapid assay tested with various microbes was developed to determine the degree of respiratory inhibition of in two different liquid media, YG (containing a fermentable carbon source) and NFYG (containing a non-fermentable carbon source). Based on this system, we screened 100 fungal isolates that were classified into basidiomycetes, to find microbial secondary metabolites that act as respiratory inhibitors. Consequently, of the 100 fungal species tested, the culture broth of an IUM04881 isolate inhibited growth of in NFYG medium, but not in YG medium. The result is comparable to that from treatment with kresoxim-methyl used as a control, suggesting that the culture broth of IUM04881 isolate might contain active compounds showing the inhibition activity for respiratory chain. Based on the assay developed in this study and spectroscopic analysis, we isolated and identified an antifungal compound (-)-oudemansin A from culture broth of IUM04881 that is identified as This is the first report that (-)-oudemansin A is identified from in Korea. Taken together, the development of this assay will accelerate efforts to find and identify natural respiratory inhibitors from various microbes.
多种微生物产生的有价值的天然化合物可作为开发新型农用化学品的先导分子。此外,具有特定作用模式的高通量筛选系统可以增加发现新型杀菌剂的概率。在本研究中,开发了一种用各种微生物进行测试的快速测定法,以确定在两种不同的液体培养基YG(含有可发酵碳源)和NFYG(含有不可发酵碳源)中呼吸抑制的程度。基于该系统,我们筛选了100株被分类为担子菌的真菌分离株,以寻找作为呼吸抑制剂的微生物次级代谢产物。结果,在测试的100种真菌中,IUM04881分离株的培养液在NFYG培养基中抑制了的生长,但在YG培养基中没有。该结果与用作对照的烯肟菌酯处理的结果相当,表明IUM04881分离株的培养液可能含有对呼吸链具有抑制活性的活性化合物。基于本研究开发的测定法和光谱分析,我们从IUM04881的培养液中分离并鉴定了一种抗真菌化合物(-)-奥德曼辛A,其被鉴定为 这是韩国首次从 中鉴定出(-)-奥德曼辛A的报道。综上所述,该测定法的开发将加速从各种微生物中寻找和鉴定天然呼吸抑制剂的工作。