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丛枝菌根真菌网络在整个生长季节以及不同演替阶段会有所不同。

Arbuscular mycorrhizal fungal networks vary throughout the growing season and between successional stages.

作者信息

Bennett Alison Elizabeth, Daniell Tim John, Öpik Maarja, Davison John, Moora Mari, Zobel Martin, Selosse Marc-André, Evans Darren

机构信息

Ecological Sciences, The James Hutton Institute, Dundee United Kingdom.

Department of Botany, Institute of Ecology and Earth Sciences, University of Tartu, Tartu, Estonia.

出版信息

PLoS One. 2013 Dec 17;8(12):e83241. doi: 10.1371/journal.pone.0083241. eCollection 2013.

Abstract

To date, few analyses of mutualistic networks have investigated successional or seasonal dynamics. Combining interaction data from multiple time points likely creates an inaccurate picture of the structure of networks (because these networks are aggregated across time), which may negatively influence their application in ecosystem assessments and conservation. Using a replicated bipartite mutualistic network of arbuscular mycorrhizal (AM) fungal-plant associations, detected using large sample numbers of plants and AM fungi identified through molecular techniques, we test whether the properties of the network are temporally dynamic either between different successional stages or within the growing season. These questions have never been directly tested in the AM fungal-plant mutualism or the vast majority of other mutualisms. We demonstrate the following results: First, our examination of two different successional stages (young and old forest) demonstrated that succession increases the proportion of specialists within the community and decreases the number of interactions. Second, AM fungal-plant mutualism structure changed throughout the growing season as the number of links between partners increased. Third, we observed shifts in associations between AM fungal and plant species throughout the growing season, potentially reflecting changes in biotic and abiotic conditions. Thus, this analysis opens up two entirely new areas of research: 1) identifying what influences changes in plant-AM fungal associations in these networks, and 2) what aspects of temporal variation and succession are of general importance in structuring bipartite networks and plant-AM fungal communities.

摘要

迄今为止,很少有对互利网络的分析研究过演替或季节动态。整合来自多个时间点的相互作用数据可能会造成对网络结构的不准确描述(因为这些网络是跨时间聚合的),这可能会对它们在生态系统评估和保护中的应用产生负面影响。我们使用一个通过大量植物样本检测到的丛枝菌根(AM)真菌与植物关联的重复二分互利网络,并通过分子技术鉴定了AM真菌,来测试网络属性在不同演替阶段之间或生长季节内是否随时间动态变化。这些问题在AM真菌与植物的共生关系或绝大多数其他共生关系中从未得到过直接检验。我们展示了以下结果:第一,我们对两个不同演替阶段(幼林和老林)的研究表明,演替增加了群落中 specialists 的比例并减少了相互作用的数量。第二,随着生长季节中伙伴之间联系数量的增加,AM真菌与植物的共生结构发生了变化。第三,我们在整个生长季节观察到AM真菌与植物物种之间关联的变化,这可能反映了生物和非生物条件的变化。因此,这项分析开辟了两个全新的研究领域:1)确定在这些网络中是什么影响了植物与AM真菌关联的变化,以及2)时间变化和演替的哪些方面在构建二分网络和植物 - AM真菌群落中具有普遍重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/be7c/3866191/50c78a782b9d/pone.0083241.g001.jpg

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