Instituto de Ciencias Agrarias, ICA, CSIC, Serrano 115bis, 28006, Madrid, Spain.
Museo Nacional de Ciencias Naturales, MNCN, CSIC, Serrano 115bis, 28006, Madrid, Spain.
Environ Microbiol. 2015 Aug;17(8):3009-24. doi: 10.1111/1462-2920.12894. Epub 2015 Jun 25.
Fungi are principal actors of forest soils implied in many ecosystem services and the mediation of tree's responses. Forecasting fungal responses to environmental changes is necessary for maintaining forest productivity, although our partial understanding of how abiotic and biotic factors affect fungal communities is restricting the predictions. We examined fungal communities of Pinus sylvestris along elevation gradients to check potential responses to climate change-associated factors. Fungi of roots and soils were analysed at a regional scale, by using a high-throughput sequencing approach. Overall soil fungal richness increased with pH, whereas it did not vary with climate. However, when representative sub-assemblages, i.e. Ascomycetes/Basidiomycetes, and families were analysed, they differentially answered to climatic and edaphic variables. This response was dependent on where they settled, i.e. soil versus roots, and/or on their lifestyle, i.e. mycorrhizal or not, suggesting different potential functional weights within the community. Our results revealed a highly compartmentalized and contrasted response of fungal communities in forest soils. The different response of fungal sub-assemblages indicated a range of possible selective direct and indirect (i.e. via host) impacts of climatic variations on these communities, of unknown functional consequences, that helps in understanding potential fungal responses under future global change scenarios.
真菌是森林土壤中的主要参与者,参与许多生态系统服务,并介导树木的响应。预测真菌对环境变化的响应对于维持森林生产力是必要的,尽管我们对非生物和生物因素如何影响真菌群落的理解还很有限,这限制了预测的准确性。我们沿着海拔梯度检查了欧洲赤松的真菌群落,以检查它们对与气候变化相关因素的潜在响应。我们采用高通量测序方法,在区域尺度上分析了根和土壤中的真菌。总的来说,土壤真菌丰富度随 pH 值增加而增加,而不受气候影响。然而,当分析代表亚群(即子囊菌门/担子菌门)和科时,它们对气候和土壤变量的响应存在差异。这种响应取决于它们的栖息地,即土壤还是根,以及它们的生活方式,即是否为菌根,这表明群落内具有不同的潜在功能权重。我们的研究结果揭示了森林土壤中真菌群落高度分隔和对比的响应。真菌亚群的不同响应表明,气候变化对这些群落可能具有一系列直接和间接(即通过宿主)的选择性影响,其功能后果未知,这有助于理解未来全球变化情景下潜在的真菌响应。