Division of Fruit Tree Production Reseach, Institute of Fruit Tree and Tea Science, NARO, 92-24, Shimokuriyagawa, Morioka, 020-0123, Iwate, Japan.
Department of Botany, Faculty of Science, Charles University, Benátská 2, CZ-128 01, Praha 2, Czech Republic.
Fungal Biol. 2021 Dec;125(12):971-979. doi: 10.1016/j.funbio.2021.08.005. Epub 2021 Aug 28.
We discovered that Sarcoleotia globosa (Geoglossomycetes) fruited on the soil of ornamental Erica pot cultures, and its ascospores can germinate on plain agar. These findings prompted us to collect isolates from horticultural and natural environments in Japan and analyze their phylogeny and root colonizing ability. Pure cultures were successfully obtained from ascospores and surface-sterilized ericaceous roots. Phylogenetic analysis based on rRNA internal transcribed spacer sequences revealed that Japanese samples were separated into three strongly supported clades. Individual clade consisted of samples derived from (1) Erica pot cultures, (2) Rhododendron planted in a garden or Vaccinium pot culture, and (3) natural habitats in Hokkaido. Colony characteristics and in vitro root-colonizing morphology observed may correspond to these phylogenetic variations. Irrespective of the clades, all tested strains formed hyphal coils in vital rhizodermal cells of V. virgatum seedlings, which resembled those of ericoid mycorrhizae. Our results represent novel findings that can be the first step in unraveling the currently unknown ecology of geoglossoid fungi.
我们发现,Sarcoleotia globosa(地舌菌目)在观赏石南花盆栽土壤中结出果实,其子囊孢子可在普通琼脂上萌发。这些发现促使我们从日本的园艺和自然环境中收集分离物,并分析它们的系统发育和根定殖能力。我们成功地从子囊孢子和表面消毒的石南花根中获得了纯培养物。基于 rRNA 内转录间隔区序列的系统发育分析表明,日本样本分为三个具有强烈支持的分支。个别分支包括(1)石南花盆栽植物、(2)花园种植的杜鹃或 Vaccinium 盆栽植物、(3)北海道的自然栖息地的样本。观察到的菌落特征和体外根定殖形态可能与这些系统发育变化相对应。无论分支如何,所有测试的菌株都会在 V. virginatum 幼苗的活根皮层细胞中形成菌丝圈,类似于石南类菌根的菌丝圈。我们的研究结果代表了新的发现,可能是揭示地舌菌真菌目前未知生态学的第一步。