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超越外生菌根二分网络:预测网络显示了科西嘉岛早期和晚期演替植物之间的对比模式。

Beyond ectomycorrhizal bipartite networks: projected networks demonstrate contrasted patterns between early- and late-successional plants in Corsica.

作者信息

Taudiere Adrien, Munoz François, Lesne Annick, Monnet Anne-Christine, Bellanger Jean-Michel, Selosse Marc-André, Moreau Pierre-Arthur, Richard Franck

机构信息

UMR 5175, CEFE - CNRS - Université de Montpellier - Université Paul Valéry Montpellier - EPHE - INSERM Montpellier, France.

UM2, UMR AMAP Montpellier, France ; French Institute of Pondicherry Pondicherry, India.

出版信息

Front Plant Sci. 2015 Oct 20;6:881. doi: 10.3389/fpls.2015.00881. eCollection 2015.

Abstract

The ectomycorrhizal (ECM) symbiosis connects mutualistic plants and fungal species into bipartite networks. While links between one focal ECM plant and its fungal symbionts have been widely documented, systemic views of ECM networks are lacking, in particular, concerning the ability of fungal species to mediate indirect ecological interactions between ECM plant species (projected-ECM networks). We assembled a large dataset of plant-fungi associations at the species level and at the scale of Corsica using molecular data and unambiguously host-assigned records to: (i) examine the correlation between the number of fungal symbionts of a plant species and the average specialization of these fungal species, (ii) explore the structure of the plant-plant projected network and (iii) compare plant association patterns in regard to their position along the ecological succession. Our analysis reveals no trade-off between specialization of plants and specialization of their partners and a saturation of the plant projected network. Moreover, there is a significantly lower-than-expected sharing of partners between early- and late-successional plant species, with fewer fungal partners for early-successional ones and similar average specialization of symbionts of early- and late-successional plants. Our work paves the way for ecological readings of Mediterranean landscapes that include the astonishing diversity of below-ground interactions.

摘要

外生菌根(ECM)共生关系将互利共生的植物和真菌物种连接成二分网络。虽然一种核心ECM植物与其真菌共生体之间的联系已被广泛记录,但缺乏对ECM网络的系统性认识,特别是关于真菌物种介导ECM植物物种之间间接生态相互作用的能力(预测ECM网络)。我们利用分子数据和明确宿主分配的记录,在科西嘉岛的物种水平和尺度上组装了一个大型植物-真菌关联数据集,以:(i)研究植物物种的真菌共生体数量与其这些真菌物种的平均专一性之间的相关性,(ii)探索植物-植物预测网络的结构,以及(iii)比较植物关联模式在生态演替过程中的位置。我们的分析表明,植物专一性与其伙伴专一性之间不存在权衡,且植物预测网络存在饱和现象。此外,早期和晚期演替植物物种之间伙伴的共享显著低于预期,早期演替植物的真菌伙伴较少,而早期和晚期演替植物共生体的平均专一性相似。我们的工作为解读地中海景观的生态学铺平了道路,这些景观包括地下相互作用的惊人多样性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/699a/4612159/f62c8bd70357/fpls-06-00881-g001.jpg

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