Chen Tong, Wang Siyuan, Jiang Xinwei, Huang Ying, Mo Minghe, Yu Zefen
Laboratory for Conservation and Utilization of Bio-Resources, Key Laboratory for Microbial Resources of the Ministry of Education, Yunnan University, Kunming 650091, China.
School of Life Sciences, Yunnan University, Kunming 650091, China.
J Fungi (Basel). 2023 Jul 19;9(7):761. doi: 10.3390/jof9070761.
Members of have a wide geographical distribution throughout different ecosystems, and most species are associated with fruit, leaf, stem and root diseases of land plants. However, species that occur in aquatic plants are not clearly known. During a survey of the diversity of endophytes in aquatic plants in Yunnan, Sichuan, and Guizhou provinces, we obtained 51 isolates belonging to based on internal transcribed spacer region (ITS) sequences. Further, the phylogenetic positions of these isolates were determined by combined sequences composed of ITS, partial large subunit nrRNA gene (28S nrDNA; LSU), RNA polymerase II second largest subunit (2) and partial beta-tubulin gene (). Combining morphological characteristics and multi-locus phylogenetic analyses, two new varieties belong to and 12 new species distributed into seven genera were recognized from 51 isolates, i.e., , , , , and Among these species, only one species of and two species of show teleomorphic stages on OA, but have no anamorphic state. Each new species is described in detail, and the differences between new species and their phylogenetically related species are discussed here. The high frequency of new species indicates that aquatic plants may be a special ecological niche which highly promotes species differentiation. At the same time, the frequent occurrence of new species may indicate the need for extensive investigation of fungal resources in those aquatic environments where fungal diversity may be underestimated.
[该属成员]在不同生态系统中具有广泛的地理分布,且大多数物种与陆地植物的果实、叶片、茎和根疾病相关。然而,水生植物中出现的物种尚不清楚。在对云南、四川和贵州水生植物内生真菌多样性的调查中,基于内转录间隔区(ITS)序列,我们获得了51株属于[该属]的分离株。此外,这些分离株的系统发育位置由ITS、部分大亚基nrRNA基因(28S nrDNA;LSU)、RNA聚合酶II第二大亚基(RPB2)和部分β-微管蛋白基因(TUB)组成的联合序列确定。结合形态特征和多位点系统发育分析,从51株分离株中鉴定出属于[该属]的2个新变种和分属于7个属的12个新物种,即[具体物种名称列举]。在这些物种中,只有[某属]的1个物种和[另一属]的2个物种在燕麦培养基(OA)上显示有性阶段,但无无性态。本文详细描述了每个新物种,并讨论了新物种与其系统发育相关物种之间的差异。新物种的高频率出现表明水生植物可能是一个特殊的生态位,极大地促进了物种分化。同时,新物种的频繁出现可能表明需要对那些真菌多样性可能被低估的水生环境中的真菌资源进行广泛调查。