Ashrafi Samad, Knapp Dániel G, Blaudez Damien, Chalot Michel, Maciá-Vicente Jose G, Zagyva Imre, Dababat Abdelfattah A, Maier Wolfgang, Kovács Gábor M
a Institute for Epidemiology and Pathogen Diagnostics, Julius Kühn-Institut (Federal Research Centre for Cultivated Plants) , Braunschweig , Germany.
b Department of Ecological Plant Protection, Faculty of Organic Agricultural Sciences , University of Kassel , Witzenhausen , Germany.
Mycologia. 2018 Mar-Apr;110(2):286-299. doi: 10.1080/00275514.2018.1448167. Epub 2018 May 17.
Fungal root endophytes, including the common group of dark septate endophytes (DSEs), represent different taxonomic groups and potentially diverse life strategies. In this study, we investigated two unidentified helotialean lineages found previously in a study of DSE fungi of semiarid grasslands, from several other sites, and collected recently from a pezizalean truffle ascoma and eggs of the cereal cyst nematode Heterodera filipjevi. The taxonomic positions and phylogenetic relationships of 21 isolates with different hosts and geographic origins were studied in detail. Four loci, namely, nuc rDNA ITS1-5.8S-ITS2 (internal transcribed spacer [ITS]), partial 28S nuc rDNA (28S), partial 18S nuc rDNA (18S), and partial RNA polymerase II second-largest subunit (RPB2), were amplified and sequenced for molecular phylogenetic analyses. Analyses of similar ITS sequences from public databases revealed two globally distributed lineages detected in several biomes from different geographic regions. The host interaction of isolates from nematodes was examined using in vitro bioassays, which revealed that the fungi could penetrate nematode cysts and colonize eggs of H. filipjevi, confirming observations from field-collected samples. This is the first report of a DSE, and we are not aware of other helotialean fungal species colonizing the eggs of a plant-parasitic nematode. Neither conidiomata and conidia nor ascomata formation was detected in any of the isolates. Based on molecular phylogenetic analyses, these isolates represent a distinct lineage within the Helotiales in the Hyaloscyphaceae. For this lineage, we propose here the new genus Polyphilus represented by two new species, P. sieberi and P. frankenii.
真菌根内生菌,包括常见的深色有隔内生菌(DSE)类群,代表了不同的分类群和潜在多样的生活策略。在本研究中,我们调查了先前在半干旱草原DSE真菌研究中发现的两个未鉴定的柔膜菌目谱系,这些谱系来自其他几个地点,最近从一个盘菌目块菌子实体和禾谷孢囊线虫菲利普斯异皮线虫的卵中采集。详细研究了21个具有不同宿主和地理来源的分离株的分类地位和系统发育关系。扩增并测序了四个基因座,即核核糖体DNA ITS1-5.8S-ITS2(内转录间隔区[ITS])、部分28S核核糖体DNA(28S)、部分18S核核糖体DNA(18S)和部分RNA聚合酶II第二大亚基(RPB2),用于分子系统发育分析。对来自公共数据库的相似ITS序列分析显示,在来自不同地理区域的几个生物群落中检测到两个全球分布的谱系。使用体外生物测定法研究了线虫分离株的宿主相互作用,结果表明这些真菌可以穿透线虫孢囊并定殖于菲利普斯异皮线虫的卵中,证实了从田间采集样本中的观察结果。这是关于DSE的首次报道,并且我们不知道有其他柔膜菌目真菌物种定殖于植物寄生线虫的卵中。在任何分离株中均未检测到分生孢子器和分生孢子或子囊果的形成。基于分子系统发育分析,这些分离株代表了柔膜菌科柔膜菌目中一个独特的谱系。对于这个谱系,我们在此提出新属多嗜菌属,由两个新物种西伯多嗜菌和弗兰肯多嗜菌代表。