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Shift in fungal communities and associated enzyme activities along an age gradient of managed Pinus sylvestris stands

机译:受控樟子松林分年龄梯度下真菌群落及相关酶活性的变化

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摘要

Forestry reshapes ecosystems with respect to tree age structure, soil properties and vegetation composition. These changes are likely to be paralleled by shifts in microbial community composition with potential feedbacks on ecosystem functioning. Here, we assessed fungal communities across a chronosequence of managed Pinus sylvestris stands and investigated correlations between taxonomic composition and extracellular enzyme activities. Not surprisingly, clear-cutting had a negative effect on ectomycorrhizal fungal abundance and diversity. In contrast, clear-cutting favoured proliferation of saprotrophic fungi correlated with enzymes involved in holocellulose decomposition. During stand development, the re-establishing ectomycorrhizal fungal community shifted in composition from dominance by Atheliaceae in younger stands to Cortinarius and Russula species in older stands. Late successional ectomycorrhizal taxa correlated with enzymes involved in mobilisation of nutrients from organic matter, indicating intensified nutrient limitation. Our results suggest that maintenance of functional diversity in the ectomycorrhizal fungal community may sustain long-term forest production by retaining a capacity for symbiosis-driven recycling of organic nutrient pools.
机译:林业在树龄结构,土壤特性和植被组成方面重塑了生态系统。这些变化可能与微生物群落组成的变化以及对生态系统功能的潜在反馈相平行。在这里,我们评估了樟子松所管理林的时序序列上的真菌群落,并研究了生物分类组成与细胞外酶活性之间的相关性。毫不奇怪,清晰对外生菌根真菌的丰度和多样性有负面影响。相比之下,明确的方法则有利于腐养真菌的增殖,而腐殖质真菌与参与全纤维素分解的酶有关。在林分发育过程中,重新建立的外生菌根真菌群落的组成从年轻林分中的菊苣科优势转移到旧林分中的Cortinarius和Russula物种。晚期连续性外生菌根类群与从有机质中动员养分所涉及的酶有关,表明养分限制加剧。我们的结果表明,通过保留由共生驱动的有机养分池循环利用的能力,可以维持外生菌根真菌群落功能多样性,从而维持长期森林生产。

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