Institute of Biological and Environmental Sciences, University of Aberdeen, Aberdeen AB24 3UU, UK.
The Macaulay Institute, Craigiebuckler, Aberdeen AB15 8QH, UK.
New Phytol. 2009;182(2):359-366. doi: 10.1111/j.1469-8137.2009.02813.x.
The overstorey coniferous trees and understorey ericaceous dwarf shrubs of northern temperate and boreal forests have previously been considered to form mycorrhizas with taxonomically and functionally distinct groups of fungi. Here, we tested the hypothesis that Meliniomyces variabilis and Meliniomyces bicolor, isolated from Piceirhiza bicolorata ectomycorrhizas of pine, can function as ericoid mycorrhizal symbionts with Vaccinium vitis-idaea. We used split-compartment microcosms to measure the reciprocal exchange of (13)C and (15)N between V. vitis-idaea and three fungal isolates in the Hymenoscyphus ericae aggregate isolated from Scots pine ectomycorrhizas (M. variabilis and M. bicolor) or Vaccinium roots (M. variabilis). The extramatrical fungal mycelium of labelled mycorrhizal plants was significantly enriched in (13)C, and the leaves were significantly enriched in (15)N, compared with nonmycorrhizal and nonlabelled controls. * These findings show for the first time that fungi in the H. ericae aggregate, isolated from pine ectomycorrhizas, can transfer C and N and can thus form functional ericoid mycorrhizas in an understorey ericaceous shrub.
以往认为,北温带和北方森林的上层针叶树和下层石南科矮灌丛与在分类学和功能上截然不同的真菌群形成菌根。在这里,我们测试了这样一个假设,即从小叶杜鹃外生菌根中分离出的 Meliniomyces variabilis 和 Meliniomyces bicolor 可以与越橘形成石南科菌根共生体。我们使用分割室微宇宙来测量来自苏格兰松外生菌根(M. variabilis 和 M. bicolor)或越橘根(M. variabilis)的 Hymenoscyphus ericae 聚集体中的三个真菌分离物与越橘之间(13)C 和(15)N 的互惠交换。与非菌根和非标记对照相比,标记菌根植物的外生真菌菌丝体在(13)C 中显著富集,而叶片在(15)N 中显著富集。*这些发现首次表明,从小叶杜鹃外生菌根中分离出的 Hymenoscyphus ericae 聚集体中的真菌可以转移 C 和 N,因此可以在下层石南科灌木中形成功能性石南科菌根。