Lee Wonjun, Kim Ji Seon, Jo Sumin, Lim Young Woon
School of Biological Sciences and Institute of Biodiversity, Seoul National University, Seoul, Korea.
Mycobiology. 2025 Aug 7;53(5):648-660. doi: 10.1080/12298093.2025.2536911. eCollection 2025.
species are widely distributed across both terrestrial and marine environments. However, their morphological plasticity often complicates species-level identification, necessitating the use of multigene phylogenetic approaches. In this study, we investigated 11 strains isolated from diverse marine substrates and deposited in the Marine Fungal Resource Bank (MFRB). These strains had previously shown ambiguous phylogenetic placements and were re-identified using an updated reference dataset. Through an integrative taxonomic approach combining multi-locus phylogenetic analyses (ITS, , and ) with detailed morphological characterization, the strains were identified as seven species: , , , , , , and . All seven species are newly recorded from Korean marine environments. Furthermore, this study provides the first recommended morphological descriptions for several species that previously lacked valid diagnoses, facilitating future taxonomic comparisons and contributing to a more comprehensive understanding of marine diversity.
物种广泛分布于陆地和海洋环境。然而,它们的形态可塑性常常使物种水平的鉴定变得复杂,因此需要使用多基因系统发育方法。在本研究中,我们调查了从不同海洋底物中分离并保存在海洋真菌资源库(MFRB)中的11株菌株。这些菌株先前显示出模糊的系统发育位置,并使用更新的参考数据集进行了重新鉴定。通过将多位点系统发育分析(ITS、[此处原文缺失两个基因名称]和[此处原文缺失一个基因名称])与详细的形态特征相结合的综合分类学方法,这些菌株被鉴定为七个物种:[此处原文缺失七个物种的具体名称]。这七个物种均为韩国海洋环境的新记录物种。此外,本研究首次为几个以前缺乏有效诊断的物种提供了推荐的形态描述,便于未来的分类比较,并有助于更全面地了解海洋[此处原文缺失一个与真菌相关的词汇]多样性。