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首页> 外文期刊>American journal of botany >Identification and symbiotic ability of Psathyrellaceae fungi isolated from a photosynthetic orchid, Cremastra appendiculata (Orchidaceae).
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Identification and symbiotic ability of Psathyrellaceae fungi isolated from a photosynthetic orchid, Cremastra appendiculata (Orchidaceae).

机译:从光合兰花克瑞玛氏阑尾(兰科)分离到的拟南芥属真菌的鉴定和共生能力。

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Premise of the study: Photosynthetic orchids found in highly shaded forests are often mixotrophic, receiving part of their carbon energy via ectomycorrhizal fungi that had originally received carbohydrate from trees. A photosynthetic orchid, Cremastra appendiculata, is also found under highly shaded forest, but our preliminary data suggested that its associated fungi were not ectomycorrhizal. We tested whether their relation is an unusual example of a mixotrophic orchid associating with saprotrophic fungi by direct detection of fungal DNAs in conjunction with isolation of the fungus in pure culture and experimental inoculation of orchid seeds with the fungus. Methods: For isolated mycobionts of C. appendiculata plants, two regions of nuclear ribosomal DNA, the internal transcribed spacer (ITS) and the large subunit (LSU), were sequenced, and fruiting bodies of the one isolate, SI1-1 were induced. In addition, two fungal isolates, SI1-1 and KI1-1, were grown in symbiotic cultures with C. appendiculata to verify their status as mycobionts. Key results: In phylogenetic analyses, all isolates clustered with fungi belonging to Coprinellus in Psathyrellaceae of Agaricales. Phylogenetic analyses of these DNA sequences showed that five fungal isolates from C. appendiculata, including SI1-1 and two mycobionts isolated from the mycoheterotrophic orchid Epipogium roseum, have very similar ITS sequences. Isolate SI1-1 was identified as Coprinellus domesticus based on the morphological characteristics of the fruiting body. Isolates SI1-1 and KI1-1 induced seed germination of C. appendiculata as mycobionts. Conclusions: This report is the first of a mycorrhizal symbiosis between a fungus in Psathyrellaceae and a photosynthetic orchid, revealing a new pathway to full mycoheterotrophy and contributing to our understanding of the evolution of mycoheterotrophy.
机译:研究的前提是:在高度遮荫的森林中发现的光合兰花通常是混合营养的,通过最初从树木中吸收碳水化合物的外生菌根真菌获得部分碳能。在高度遮荫的森林中也发现了光合兰花,Cremastra appendiculata,但我们的初步数据表明,其相关真菌并非根除菌根。我们通过直接检测真菌DNA并与纯培养物中的真菌分离以及用真菌对兰花种子进行实验接种,测试了它们之间的关系是否是混合营养兰花与腐养真菌相关联的不寻常实例。方法:对分离的盲肠念珠菌植物的菌丝体,对核糖体DNA的两个区域(内部转录间隔区(ITS)和大亚基(LSU))进行测序,并诱导出一个分离株SI1-1的子实体。此外,两种真菌分离株SI1-1和KI1-1在与阑尾隐孢子虫共生的培养物中生长,以验证其作为霉菌的身份。主要结果:在系统发育分析中,所有分离株均与伞菌科的伞形科中的伞形科真菌合并。这些DNA序列的系统发育分析表明,五个盲肠念珠菌真菌分离物(包括SI1-1)和从真菌异养兰花Leppogium roseum分离的两个真菌菌丝具有非常相似的ITS序列。根据子实体的形态特征,分离株SI1-1被鉴定为家蝇。分离SI1-1和KI1-1诱导的阑尾隐孢子虫萌发为种子萌发。结论:本报告是沙眼菌科真菌与光合兰花之间菌根共生的第一个报道,揭示了完全菌根营养障碍的新途径,并有助于我们了解菌根营养障碍的演变。

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