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菌根共生体改变了实验人工林的树种多样性-生产力关系。

Mycorrhizal associations modify tree diversity-productivity relationships across experimental tree plantations.

机构信息

German Centre for Integrative Biodiversity Research (iDiv) Halle-Jena-Leipzig, Leipzig, 04103, Germany.

Institute of Biology, Leipzig University, Leipzig, 04103, Germany.

出版信息

New Phytol. 2024 Aug;243(3):1205-1219. doi: 10.1111/nph.19889. Epub 2024 Jun 10.

DOI:10.1111/nph.19889
PMID:38855965
Abstract

Decades of studies have demonstrated links between biodiversity and ecosystem functioning, yet the generality of the relationships and the underlying mechanisms remain unclear, especially for forest ecosystems. Using 11 tree-diversity experiments, we tested tree species richness-community productivity relationships and the role of arbuscular (AM) or ectomycorrhizal (ECM) fungal-associated tree species in these relationships. Tree species richness had a positive effect on community productivity across experiments, modified by the diversity of tree mycorrhizal associations. In communities with both AM and ECM trees, species richness showed positive effects on community productivity, which could have resulted from complementarity between AM and ECM trees. Moreover, both AM and ECM trees were more productive in mixed communities with both AM and ECM trees than in communities assembled by their own mycorrhizal type of trees. In communities containing only ECM trees, species richness had a significant positive effect on productivity, whereas species richness did not show any significant effects on productivity in communities containing only AM trees. Our study provides novel explanations for variations in diversity-productivity relationships by suggesting that tree-mycorrhiza interactions can shape productivity in mixed-species forest ecosystems.

摘要

几十年来的研究已经证明了生物多样性与生态系统功能之间的联系,但这些关系的普遍性和潜在机制仍不清楚,特别是对于森林生态系统。本研究使用了 11 个树木多样性实验,检验了树木物种丰富度-群落生产力关系以及丛枝菌根(AM)或外生菌根(ECM)真菌相关树木物种在这些关系中的作用。树木物种丰富度对跨实验的群落生产力具有正向影响,这种影响受到树木菌根关联多样性的调节。在同时具有 AM 和 ECM 树木的群落中,物种丰富度对群落生产力表现出正向影响,这可能是 AM 和 ECM 树木之间的互补性所致。此外,AM 和 ECM 树木在同时具有 AM 和 ECM 树木的混合群落中的生产力均高于由其自身菌根类型树木组成的群落。在仅包含 ECM 树木的群落中,物种丰富度对生产力有显著的正向影响,而在仅包含 AM 树木的群落中,物种丰富度对生产力没有显著影响。本研究通过表明树木-菌根相互作用可以塑造混种森林生态系统的生产力,为多样性-生产力关系的变化提供了新的解释。

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