Fungus/Mushroom Resource and Research Center, Faculty of Agriculture, Tottori University 4-101 Koyama-Minami, Tottori, 680-8553, Japan.
Kanagawa Prefectural Museum of Natural History 499 Iryuda, Odawara, Kanagawa 250-0031, Japan.
New Phytol. 2012 Jan;193(1):178-187. doi: 10.1111/j.1469-8137.2011.03896.x. Epub 2011 Oct 13.
• We investigated the fungal symbionts and carbon nutrition of a Japanese forest photosynthetic orchid, Platanthera minor, whose ecology suggests a mixotrophic syndrome, that is, a mycorrhizal association with ectomycorrhiza (ECM)-forming fungi and partial exploitation of fungal carbon. • We performed molecular identification of symbionts by PCR amplifications of the fungal ribosomal DNA on hyphal coils extracted from P. minor roots. We tested for a (13)C and (15)N enrichment characteristic of mixotrophic plants. We also tested the ectomycorrhizal abilities of orchid symbionts using a new protocol of direct inoculation of hyphal coils onto roots of Pinus densiflora seedlings. • In phylogenetic analyses, most isolated fungi were close to ECM-forming Ceratobasidiaceae clades previously detected from a few fully heterotrophic orchids or environmental ectomycorrhiza surveys. The direct inoculation of fungal coils of these fungi resulted in ectomycorrhiza formation on P. densiflora seedlings. Stable isotope analyses indicated mixotrophic nutrition of P. minor, with fungal carbon contributing from 50% to 65%. • This is the first evidence of photosynthetic orchids associated with ectomycorrhizal Ceratobasidiaceae taxa, confirming the evolution of mixotrophy in the Orchideae orchid tribe, and of ectomycorrhizal abilities in the Ceratobasidiaceae. Our new ectomycorrhiza formation technique may enhance the study of unculturable orchid mycorrhizal fungi.
• 我们研究了日本森林光合兰花小舌唇兰(Platanthera minor)的真菌共生体和碳营养,其生态学表明存在混合营养综合征,即与外生菌根(ECM)形成真菌形成共生关系,并部分利用真菌碳。• 我们通过从小舌唇兰根中提取的菌丝线圈上的真菌核糖体 DNA 的 PCR 扩增,对共生体进行了分子鉴定。我们测试了混合营养植物的(13)C 和(15)N 富集特征。我们还使用新的直接将菌丝线圈接种到赤松幼苗根部的方案测试了兰花共生体的外生菌根能力。• 在系统发育分析中,大多数分离的真菌与先前从少数完全异养兰花或环境外生菌根调查中检测到的 ECM 形成 Ceratobasidiaceae 进化枝密切相关。这些真菌的菌丝线圈的直接接种导致赤松幼苗形成外生菌根。稳定同位素分析表明小舌唇兰具有混合营养,真菌碳的贡献从 50%到 65%不等。• 这是与外生菌根 Ceratobasidiaceae 分类群相关的光合兰花的第一个证据,证实了 Orchideae 兰花族的混合营养进化,以及外生菌根能力的进化。我们的新外生菌根形成技术可能会增强对不可培养兰花菌根真菌的研究。