The ectomycorrhizal fungus Cenococcum geophilum (Ascomycota, Dothideomycetes) forms black, round to irregular sclerotia in forest soils. Fungi that colonize the sclerotia appear to affect sclerotia viability and may play an important role in the life history of Cenococcum. Some of the fungi could also affect nutrient cycling by decomposing Cenococcum sclerotia, which are melanized and recalcitrant to decay. We used a culture-based method to document the fungal communities growing inside surface-sterilized sclerotia that were collected from forest soils. Cenococcum was successfully isolated from 297 of 971 sclerotia whereas 427 sclerotia hosted fungi other than Cenococcum. DNA barcoding of the internal transcribed spacer rDNA followed by grouping at 97% sequence similarity yielded 85 operational taxonomic units (OTUs) that consisted primarily of Ascomycota (e.g. Chaetothyriales, Eurotiales, Helotiales, Pleosporales) and a few Basidiomycota and Mucoromycotina. Although most fungal OTUs were infrequently cultured, several OTUs such as members of Asterostroma, Cladophialophora, Oidiodendron, and Pleosporales were common and found across many sites. Our results suggest that Cenococcum sclerotia act as a substrate for diverse fungi. The occurrence of several OTUs in sclerotia across many sites suggests that these fungi may be active parasites of Cenococcum sclerotia or may preferentially use sclerotia as a nutrient source.

译文

:外生菌根真菌Cenococcum geophilum(Ascomycota,Dothideomycetes)在森林土壤中形成黑色,圆形至不规则菌核。菌落在菌核上的真菌似乎会影响菌核的生存能力,并可能在仙茅球菌的生活史中发挥重要作用。某些真菌还可能通过分解黑色素和顽固的腐烂的Cenococcum菌核来影响营养循环。我们使用了一种基于文化的方法来记录从森林土壤中收集到的经过表面灭菌的菌核内部生长的真菌群落。成功地从971菌核中的297菌核分离出Cenococcum,而427菌核含有除Cenococcum以外的真菌。内部转录的间隔区rDNA的DNA条形码编码,然后以97%的序列相似性分组,产生了85个操作分类单位(OTU),主要由子囊菌(例如,甲壳纲,Eurotiales,Hellotiales,Pleosporales)以及一些Basidiomycota和Mucoromycotina组成。尽管大多数真菌OTU很少被培养,但一些OTU(例如,Asterostroma,Cladophialophora,Oidiodendron和Pleosporales的成员)很常见,并且在很多地方都可以找到。我们的结果表明,Cenococcum菌核菌可以充当多种真菌的底物。在许多部位的菌核中有数个OTU的出现表明,这些真菌可能是Cenococcum菌核的活性寄生虫,或者可能优先使用菌核作为营养源。

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