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首页> 外文期刊>Journal of arid environments >Ecology of vertical life in harsh environments: The case of mycorrhizal symbiosis with secular cliff climbing trees (Juniperus phoenicea L.)
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Ecology of vertical life in harsh environments: The case of mycorrhizal symbiosis with secular cliff climbing trees (Juniperus phoenicea L.)

机译:恶劣环境下的垂直生活生态学:菌根共生与世俗的悬崖攀爬树木(Juniperus phoenicea L.)

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摘要

The Phoenician juniper tree (Juniperus phoenicea L.) is emblematic of Mediterranean ecosystems. Secular trees from a relict population are present in the cliffs of the Ardeche gorges (protected natural reserve). This population shows a remarkable adaptability to major physical, nutrient and water availability constraints. The basis of its adaptation to hostile environmental conditions is poorly understood. The aim of the study is to decipher the diversity and structure of the Phoenician juniper mycorrhizal Community in order to highlight mycorrhizal characteristics related to the particular ecology of this relict population. We hypothesized that a long-term co-evolution between arbuscular mycorrhizal (AM) fungi and the plant partner, emphasized by a geographic isolation, may have selected a specific mycorrhizal community playing a key role in J. phoenicea adaptation. 454-sequencing of AM fungal community from Phoenician juniper secular trees revealed a complex community, notably composed of Rhizophagus and poorly-affiliated Glomeraceae clades. The AM fungal community characterized was mainly related to those found in arid and semi-arid habitats, strengthening the ecological specificity of the Phoenician juniper AM fungal communities to harsh environmental conditions. (C) 2016 Elsevier Ltd. All rights reserved.
机译:腓尼基杜松树(Juniperus phoenicea L.)是地中海生态系统的象征。在Ardeche峡谷(受保护的自然保护区)的悬崖上,存在着来自遗迹种群的世俗树木。该种群对主要的物理,养分和水的供应限制表现出显着的适应性。人们对其适应恶劣环境条件的基础了解甚少。该研究的目的是破译腓尼基杜松菌根菌群落的多样性和结构,以突出与该遗民种群的特定生态有关的菌根特征。我们假设,丛枝菌根(AM)真菌和植物伴侣之间的长期共同进化(通过地理隔离来强调)可能选择了一个特定的菌根群落,该菌群在J. phoenicea适应中起关键作用。来自腓尼基杜松世俗树的AM真菌群落的454测序显示了一个复杂的群落,特别是由根瘤菌和隶属关系较差的虎眼草科组成。 AM真菌群落的特征主要与在干旱和半干旱生境中发现的那些有关,从而增强了腓尼基杜松AM真菌群落对恶劣环境条件的生态特异性。 (C)2016 Elsevier Ltd.保留所有权利。

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