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四种鹅膏菌属杯伞复合体的菌丝体在体外与山梨苗形成外生菌根,其中一种在接种后 2 个月发育出子实体。

Four mycelial strains of Entoloma clypeatum species complex form ectomycorrhiza-like roots with Pyrus betulifolia seedlings in vitro, and one develops fruiting bodies 2 months after inoculation.

机构信息

Graduate School of Sustainable Science, Tottori University, 4-101 Koyama, Tottori, 680-8553, Japan.

Faculty of Agriculture, Tottori University, 4-101 Koyama, Tottori, 680-8553, Japan.

出版信息

Mycorrhiza. 2021 Jan;31(1):31-42. doi: 10.1007/s00572-020-00994-4. Epub 2020 Oct 26.

Abstract

Entoloma clypeatum species complex (ECSC) forms ectomycorrhiza-like roots (EMLR) with host plant species of Rosaceae or Ulmaceae. The EMLR colonized with ECSC are characterized by a thick fungal mantle, absence of a Hartig net structure, and collapse of the apical meristem caused by hyphal invasion. Some researchers have suggested parasitism of ECSC because of this unique mode of colonization; however, the nature of the interaction between ECSC and host plants has not been investigated in co-culture because of the difficulty of culturing this group of fungi. We established a procedure to synthesize EMLR of ECSC on pear seedlings using fungal cultures. Three conspecific strains of ECSC isolated from basidiospores and one strain isolated from EMLR were tested. Cultured mycelia were inoculated onto a modified Norkrans' C (MNC) or Hyponex-yeast-glucose (HYG) medium slant on the bottom of a polycarbonate jar and covered with autoclaved andosol or a vermiculite/sphagnum moss mixture (VSM); an axenically cultivated Pyrus betulifolia seedling was then planted in the jar. Five months after inoculation, the formation of EMLR with Hartig net-like hyphae was confirmed in all of the experimental plots. However, the rate of root colonization was significantly higher in experimental plots using andosol than in those using VSM. The growth of pear seedlings was similar irrespective of the level of root colonization, suggesting commensalism rather than parasitism of ECSC. One experimental plot using strain A3, an MNC slant, and andosol as a substrate produced ECSC fruiting bodies with mature basidia and basidiospores. The results suggested that our procedure enables the synthesis of EMLR of ECSC and cultivation of their fruiting bodies.

摘要

杯伞复合群(ECSC)与蔷薇科或榆科的宿主植物形成外生菌根样根(EMLR)。被 ECSC 定殖的 EMLR 具有厚的真菌套,缺乏 Hartig 网结构,并且由于菌丝入侵导致顶端分生组织崩溃。由于这种独特的定殖方式,一些研究人员认为 ECSC 是寄生的;然而,由于难以培养这组真菌,尚未在共培养中研究 ECSC 与宿主植物之间的相互作用性质。我们建立了一种使用真菌培养物在梨幼苗上合成 ECSC 的 EMLR 的程序。测试了从担子孢子中分离的三个同种 ECSC 菌株和一个从 EMLR 中分离的菌株。培养的菌丝接种到改良的 Norkrans' C(MNC)或 Hyponex-酵母-葡萄糖(HYG)培养基斜面上,位于聚碳酸酯罐的底部,并用高压灭菌的壤土或蛭石/苔藓混合物(VSM)覆盖;然后将无菌培养的 Pyrus betulifolia 幼苗种植在罐中。接种后 5 个月,在所有实验田中均证实形成了具有 Hartig 网状菌丝的 EMLR。然而,在使用壤土的实验田中,根定殖率明显高于使用 VSM 的实验田。梨幼苗的生长情况相似,与根定殖水平无关,表明 ECSC 是共生的,而不是寄生的。一个使用 A3 菌株、MNC 斜面和壤土作为基质的实验田产生了具有成熟担子和担子孢子的 ECSC 子实体。结果表明,我们的程序可以合成 ECSC 的 EMLR 并培养其子实体。

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