Tedersoo Leho, Magurno Franco, Alkahtani Saad, Mikryukov Vladimir
Mycology and Microbiology Center, University of Tartu, 2 Liivi, 50409 Tartu, Estonia.
Department of Zoology, College of Science, King Saud University, 12371 Riyadh, Saudi Arabia.
MycoKeys. 2024 Aug 9;107:273-325. doi: 10.3897/mycokeys.107.125549. eCollection 2024.
Arbuscular mycorrhizal (AM) fungi - Glomeromycota and Endogonomycetes - comprise multiple species and higher-level taxa that have remained undescribed. We propose a mixed morphology- and DNA-based classification framework to promote taxonomic communication and shed light into the phylogenetic structure of these ecologically essential fungi. Based on eDNA samples and long reads as type materials, we describe 15 new species and corresponding genera (, , , , , , , , , , , , , and ), the genus as well as 19 families (Pseudoentrophosporaceae, Hoforsaceae, Kahvenaceae, Kelottijaerviaceae, Kungsaengenaceae, Langduoaceae, Lehetuaceae, Lokrumaceae, Moosteaceae, Nikkaluoktaceae, Parniguaceae, Riederbergaceae, Ruuaceae, Tammsaareaceae, Unemaeeaceae, Bifigurataceae, Planticonsortiaceae, Jimgerdemanniaceae and Vinositunicaceae) and 17 orders (Hoforsales, Kahvenales, Kelottijaerviales, Kungsaengenales, Langduoales, Lehetuales, Lokrumales, Moosteales, Nikkaluoktales, Parniguales, Riederbergales, Ruuales, Tammsaareales, Unemaeeales, Bifiguratales and Densosporales), and propose six combinations (, , , , and ) based on phylogenetic evidence. We highlight further knowledge gaps in the phylogenetic structure of AM fungi and propose an alphanumeric coding system for preliminary communication and reference-based eDNA quality-filtering of the remaining undescribed genus- and family-level groups. Using AM fungi as examples, we hope to offer a sound, mixed framework for classification to boost research in the alpha taxonomy of fungi, especially the "dark matter fungi".
丛枝菌根(AM)真菌——球囊菌门和内生根菌门——包含多个尚未被描述的物种和高级分类单元。我们提出了一个基于形态学和DNA的混合分类框架,以促进分类学交流,并阐明这些生态上至关重要的真菌的系统发育结构。基于环境DNA样本和长读长作为模式材料,我们描述了15个新物种及相应的属(、、、、、、、、、、、、、和)、属以及19个科(假内养囊霉科、霍福斯科、卡赫韦科、凯洛蒂亚尔维科、孔萨根科、朗多科、勒赫图科、洛克鲁姆科、穆斯泰科、尼卡卢奥克塔科、帕尔尼瓜科、里德伯格科、鲁阿科、塔姆萨雷科、乌梅埃科、双形科、植物共生科、吉姆格德曼科和葡萄酒被膜科)和17个目(霍福斯目、卡赫韦目、凯洛蒂亚尔维目、孔萨根目、朗多目、勒赫图目、洛克鲁姆目、穆斯泰目、尼卡卢奥克塔目、帕尔尼瓜目、里德伯格目、鲁阿目、塔姆萨雷目、乌梅埃目、双形目和密孢目),并根据系统发育证据提出了六个组合(、、、、和)。我们强调了AM真菌系统发育结构中进一步的知识空白,并提出了一种字母数字编码系统,用于初步交流以及对其余未描述的属级和科级类群进行基于参考的环境DNA质量过滤。以AM真菌为例,我们希望提供一个完善的混合分类框架,以促进真菌分类学研究,特别是“暗物质真菌”的研究。