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模块化揭示了丛枝菌根真菌在石膏土壤中与广适性植物物种和专性植物物种相互作用方式不同的趋势。

Modularity reveals the tendency of arbuscular mycorrhizal fungi to interact differently with generalist and specialist plant species in gypsum soils.

作者信息

Torrecillas Emma, del Mar Alguacil Maria, Roldán Antonio, Díaz Gisela, Montesinos-Navarro Alicia, Torres Maria Pilar

机构信息

CSIC-Centro de Edafología y Biología Aplicada del Segura, Department of Soil and Water Conservation, Campus de Espinardo, Murcia, Spain.

Departamento de Biología Aplicada, Área de Botánica, Universidad Miguel Hernández, Elche, Alicante, Spain.

出版信息

Appl Environ Microbiol. 2014 Sep;80(17):5457-66. doi: 10.1128/AEM.01358-14. Epub 2014 Jun 27.

Abstract

Patterns in plant-soil biota interactions could be influenced by the spatial distribution of species due to soil conditions or by the functional traits of species. Gypsum environments usually constitute a mosaic of heterogeneous soils where gypsum and nongypsum soils are imbricated at a local scale. A case study of the interactions of plants with arbuscular mycorrhizal fungi (AMF) in gypsum environments can be illustrative of patterns in biotic interactions. We hypothesized that (i) soil characteristics might affect the AMF community and (ii) there are differences between the AMF communities (modules) associated with plants exclusive to gypsum soils (gypsophytes) and those associated with plants that show facultative behavior on gypsum and/or marly-limestone soils (gypsovags). We used indicator species and network analyses to test for differences between the AMF communities harbored in gypsophyte and gypsovag plants. We recorded 46 operational taxonomic units (OTUs) belonging to nine genera of Glomeromycota. The indicator species analysis showed two OTUs preferentially associating with gypsum soils and three OTUs preferentially associating with marly-limestone soils. Modularity analysis revealed that soil type can be a major factor shaping AMF communities, and some AMF groups showed a tendency to interact differently with plants that had distinct ecological strategies (gypsophytes and gypsovags). Characterization of ecological networks can be a valuable tool for ascertaining the potential influence of above- and below-ground biotic interactions (plant-AMF) on plant community composition.

摘要

由于土壤条件导致的物种空间分布或物种的功能性状,可能会影响植物与土壤生物群之间的相互作用模式。石膏环境通常由异质土壤组成,在局部尺度上,石膏土和非石膏土相互交错。对石膏环境中植物与丛枝菌根真菌(AMF)相互作用的案例研究,可以说明生物相互作用的模式。我们假设:(i)土壤特征可能会影响AMF群落;(ii)与石膏土特有植物(石膏植物)相关的AMF群落(模块)和与在石膏土和/或泥灰质石灰岩土壤上表现出兼性的植物(兼性植物)相关的AMF群落之间存在差异。我们使用指示物种和网络分析来检验石膏植物和兼性植物中所含AMF群落之间的差异。我们记录了属于球囊霉科9个属的46个操作分类单元(OTU)。指示物种分析表明,有两个OTU优先与石膏土相关联,有三个OTU优先与泥灰质石灰岩土壤相关联。模块性分析表明,土壤类型可能是塑造AMF群落的主要因素,一些AMF类群与具有不同生态策略的植物(石膏植物和兼性植物)相互作用的方式有所不同。生态网络的表征可能是确定地上和地下生物相互作用(植物-AMF)对植物群落组成潜在影响的宝贵工具。

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