关于()的分类学修订,包括新物种、新名称及模式指定。

A taxonomic revision of () with new species, new names, and typifications.

作者信息

Jumbam B, Zasada I A, Bensch K, Crous P W, Aime M C

机构信息

Department of Botany and Plant Pathology, Purdue University, West Lafayette, IN 47907, USA.

Current address: Department of Plant Sciences and Plant Pathology, Montana State University, Bozeman, MT 59717, USA.

出版信息

Persoonia. 2025 Jun;54:147-195. doi: 10.3114/persoonia.2025.54.05. Epub 2025 May 14.

Abstract

comprises dimorphic yeast-like fungi that usually produce melanised cells at maturity. Species are globally distributed and ubiquitous, colonizing a variety of habitats. At present, ca 40 species are accepted, with the type, , representing a complex of unresolved cryptic species. In this study, we isolated 128 from multiple temperate and tropical regions. We performed multigene analyses using eight loci (ITS, 28S, , , , , mtLSU and mtSSU) on new isolates and including sequences from type material for all available species. Data on growth, physiological profiles, micro- and macromorphological attributes were also collected and analysed. Several DNA-based species delimitation methods were evaluated for their ability to delimit species. We found that assimilation of D-quinic acid, L-sorbose, D-mannitol, gluconolactone, erythritol, L-arabinose, and sodium succinate dibasic hexahydrate were important in delineating species of and note that production of pigmentation in culture often takes longer than the 14 d standard for carbon assimilations. Genealogical concordance phylogenetic species recognition criteria (GCPSR) provided the most consistent results for species delimitation. We describe nine new species of , , , , , , , , and ), make new combinations for ( var. ), (), and (), validate and provide descriptions for and , and provide lecto- and epitypes for , the basionym of Finally, we resolved the phylogeny for , reduce (based on ) to synonymy, and provide an updated list of species to facilitate future studies. Jumbam B, Zasada IA, Bensch K, Crous PW, Aime MC (2025). A taxonomic revision of (, ) with new species, new names, and typifications. : 147-195. doi: 10.3114/persoonia.2025.54.05.

摘要

包含二态酵母样真菌,成熟时通常产生黑色素化细胞。该属物种分布于全球且无处不在,定殖于多种生境。目前,已接受约40个物种,其模式种 代表一组未解决的隐存物种复合体。在本研究中,我们从多个温带和热带地区分离出128株 。我们对新分离株使用八个基因座(ITS、28S、 、 、 、 、mtLSU和mtSSU)进行多基因分析,并纳入所有可用 物种模式材料的序列。还收集并分析了生长、生理特征、微观和宏观形态学属性的数据。评估了几种基于DNA的物种界定方法界定物种的能力。我们发现D - 奎尼酸、L - 山梨糖、D - 甘露醇、葡糖酸内酯、赤藓醇、L - 阿拉伯糖和六水合二碱式琥珀酸钠的同化作用在界定 物种中很重要,并注意到培养物中色素沉着的产生通常比碳同化的14天标准时间要长。系统发育一致性系统发育物种识别标准(GCPSR)为物种界定提供了最一致的结果。我们描述了九个新物种 、 、 、 、 、 、 、 和 ),对 (变种 )、 ( )和 ( )进行新组合,验证并描述了 和 ,并为 的基原异名 提供了选模式和后选模式。最后,我们解析了 的系统发育,将 (基于 )归为异名,并提供更新的物种列表以促进未来研究。Jumbam B、Zasada IA、Bensch K、Crous PW、Aime MC(2025年)。对 ( , )的分类修订,包括新物种、新名称和模式指定。《Persoonia》:147 - 195。doi:10.3114/persoonia.2025.54.05

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bf9b/12308290/a2878ac94c96/per-2025-54-5-F1a.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索