Oh Seung-Yoon, Jang Yunhyeok
Department of Biology and Chemistry, Changwon National University, Changwon, South Korea.
Mycobiology. 2025 Jun 23;53(4):435-449. doi: 10.1080/12298093.2025.2519854. eCollection 2025.
During a project investigating the diversity of fungi associated with lichens, numerous strains of and were isolated. Among these, several species were suspected to be unrecorded, prompting further study. In this study, the objective is to describe the taxonomic information of fungal species novel and previously unrecorded in South Korea. Through comprehensive molecular phylogenetic analysis and detailed morphological examination, seven fungal species were identified: , , , sp. nov., , , and . Molecular identification was conducted using ITS and LSU regions for and ITS, EF1a, and RPB2 loci for , with phylogenetic analysis confirming their placement alongside type strains. These findings expand the known geographic distributions of these species and highlight the potential of lichen-associated fungi as reservoirs of bioactive compounds and enzymes with industrial and pharmaceutical applications.
在一项调查与地衣相关真菌多样性的项目中,分离出了许多 和 的菌株。其中,有几个物种被怀疑未被记录,这促使了进一步的研究。在本研究中,目的是描述韩国新发现和以前未记录的真菌物种的分类信息。通过全面的分子系统发育分析和详细的形态学检查,鉴定出了七个真菌物种: 、 、 、新种 、 、 和 。对 使用ITS和LSU区域进行分子鉴定,对 使用ITS、EF1a和RPB2基因座进行分子鉴定,系统发育分析证实了它们与模式菌株的亲缘关系。这些发现扩大了这些物种已知的地理分布,并突出了地衣相关真菌作为具有工业和制药应用的生物活性化合物和酶的储存库的潜力。