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Nitrogen availability is a primary determinant of conifer mycorrhizas across complex environmental gradients

机译:氮的供应量是复杂环境梯度下针叶树菌根的主要决定因素

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摘要

Global environmental change has serious implications for functional biodiversity in temperate and boreal forests. Trees depend on mycorrhizal fungi for nutrient uptake, but predicted increases in nitrogen availability may alter fungal communities. To address a knowledge gap regarding the effects of nitrogen availability on mycorrhizal communities at large scales, we examine the relationship between nitrogen and ectomycorrhizas in part of a European biomonitoring network of pine forest plots. Our analyses show that increased nitrogen reduces fungal diversity and causes shifts in mycorrhizal community composition across plots, but we do not find strong evidence that within-plot differences in nitrogen availability affect ectomycorrhizal communities. We also carry out exploratory analyses to determine the relative importance of other environmental variables in structuring mycorrhizal communities, and discuss the potential use of indicator species to predict nitrogen-induced shifts in fungal communities.
机译:全球环境变化对温带和北方森林的功能性生物多样性具有严重影响。树木依靠菌根真菌吸收养分,但预计氮素利用率的增加可能会改变真菌群落。为了解决关于氮的有效性对大规模菌根群落的影响的知识鸿沟,我们在欧洲松树林地生物监测网络的一部分中研究了氮与根外菌之间的关系。我们的分析表明,氮的增加会降低真菌的多样性,并导致各菌落中菌根群落组成的变化,但是我们没有发现有力的证据表明,氮素有效性的菌内差异会影响菌根菌落的群落。我们还进行了探索性分析,以确定其他环境变量在构建菌根群落中的相对重要性,并讨论了使用指示剂物种预测氮在真菌群落中的转移的潜在用途。

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