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首页> 外文期刊>Fungal Ecology >Molecular identifications uncover diverse fungal symbionts of Pleione (Orchidaceae)
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Molecular identifications uncover diverse fungal symbionts of Pleione (Orchidaceae)

机译:分子鉴定揭示Pleione的不同真菌共生(Orchidaceae)

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Fungal mutualisms are essential for the evolution and diversification of Orchidaceae, yet the fungal symbionts of Pleione orchids are poorly understood because molecular data are unavailable for this genus. Based on ITS-rDNA sequencing for mycobionts of 15 Pleione species (both wild and cultivated plants were included), we conducted phylogenetic analyses for the most dominant mycobionts, and compared the operational taxonomic units (OTUs) of mycorrhizal fungi among species within Pleione. Tulasnellaceae, Ceratobasidiaceae, Serendipitaceae (Sebacinales), Atractiellales, and Auriculariales were reported as putative mycobionts of Pleione. In particular, the mycorrhizal associations between subtropical orchids and Atractiellales have not been observed before. For the dominant mycobionts in the roots of Pleione and its related genera, Bletilla and Coelogyne, we detected no fungal OTU that was shared. Within Pleione, species with a sympatric distribution showed preferences for different fungi. Epiphytic and lithophytic individuals of Pleione albiflora shared OTUs of Tulasnellaceae but harbored different OTUs of Sebacinales, indicating some degree of fungal specificity toward certain habitats. These findings provide new insights into the ecological adaptation and evolution of orchids, and will contribute to the conservation and utilization of species resources. (C) 2018 Elsevier Ltd and British Mycological Society. All rights reserved.
机译:真菌互动对于兰科的进化和多样化至关重要,但Pleione兰花的真菌共生很差,因为该属的分子数据不可用。基于15种Pleione物种(包括野生和栽培植物的植入型髓所述的-RDNA测序),我们对最占主导地位的植入症进行了系统发育分析,并比较了脓血中物种中的菌根真菌的运作分类单位(OTU)。据推出肺炎,汀妥塞科(Ceratobasidiaceae),锡达替哌啶亚料,锡达拉氏菌(Sebacinales),Atractiellales和菌丝。特别是,之前尚未观察到亚热带兰花和Atractiellals之间的菌根关联。对于Pleione的根源及其相关的属,Bletilla和Coelogyne的主导植物,我们没有分享的真菌OTU。在pleione内,具有Sympatric分布的物种显示出对不同真菌的偏好。胸膜脂肪酸患者和脑膜炎个体患有坦纳尔科西亚群的共用OTU,但患有塞巴氏菌的不同OTU,表明某些栖息地的一定程度的真菌特异性。这些调查结果为兰花的生态适应和演化提供了新的见解,并将有助于保护和利用物种资源。 (c)2018年Elsevier Ltd和英国Mycological社会。版权所有。

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