Laboratory of Terrestrial Microbial Ecology, Division of Environmental Science and Technology, Graduate School of Agriculture, Kyoto University, Kitashirakawa Oiwake-cho, Sakyo-ku, Kyoto, 606-8502, Japan.
Department of Environmental Science and Engineering, Ishikawa Prefectural University, Nonoichi, Ishikawa, 921-8836, Japan.
Mycorrhiza. 2018 Jan;28(1):17-28. doi: 10.1007/s00572-017-0803-y. Epub 2017 Oct 18.
Non-ectomycorrhizal fungi that associate with typical ectomycorrhizae often remain hidden, and their localization inside ectomycorrhizal (ECM) roots has remained uncharacterized. In this study, the fungal community associated with the ectomycorrhizae of Castanopsis cuspidata was investigated using a culture-dependent isolation technique. Additionally, the species composition and localization were determined using molecular techniques. The results of the isolation and identification of fungal species revealed the predominance of a few species belonging to the order Helotiales. Furthermore, the fungal community structures were significantly different depending on the taxa of the ectomycorrhiza-forming fungi. A taxon-specific probe was developed to analyze the localization of one dominant Hyaloscyphaceae (Helotiales) species in ECM tissues by in situ hybridization. Hybridization signals were detected on the surface of the fungal mantle and around the ECM fungal cells within the mantle. Hyphal penetration into ECM hyphal cells of fungal mantles was also observed. Signals were not detected in the Hartig net or plant tissues inside the mantle in healthy ectomycorrhizae. These findings suggest that the analyzed species interact not only with host plant as root endophyte but also directly with the ECM fungi.
与典型外生菌根共生的非外生菌根真菌通常隐藏得很好,其在外生菌根(ECM)根内的定位仍未被描述。在这项研究中,使用培养依赖的分离技术研究了与锥栗外生菌根相关的真菌群落。此外,还使用分子技术确定了物种组成和定位。真菌物种的分离和鉴定结果表明,属于Helotiales 目几个物种占主导地位。此外,真菌群落结构因外生菌根形成真菌的类群而异。开发了一种分类群特异性探针,通过原位杂交分析 ECM 组织中外生菌根真菌中一种优势的 Hygrophoraceae(Helotiales)物种的定位。在真菌套层的表面和套层内 ECM 真菌细胞周围检测到杂交信号。还观察到真菌套层中的菌丝穿透 ECM 菌丝细胞。在健康的外生菌根中,Hartig 网或套层内的植物组织中没有检测到信号。这些发现表明,分析的物种不仅与宿主植物作为根内生菌相互作用,而且还与 ECM 真菌直接相互作用。