Journal ArticleOpen Access
Growth and resilience responses of Scots pine to extreme droughts across Europe depend on predrought growth conditions
Authors
Author Affiliations
Khulna University, Swiss Federal Institute for Forest, Snow and Landscape Research, ETH Zurich, Eberswalde University for Sustainable Development, ...
Published InGlobal Change Biology
Year2020
Citations234
Abstract
Global climate change is expected to further raise the frequency and severity of extreme events, such as droughts. The effects of extreme droughts on trees are difficult to disentangle given the inherent complexity of drought events (frequency, severity, duration, and timing during the growing season). Besides, drought effects might be modulated by trees' phenotypic variability, which is, in turn, affected by long-term local selective pressures and management legacies. Here we investigated the magnitude and the temporal changes of tree-level resilience (i.e., resistance, recovery, and resilience) to extreme droughts. Moreover, we assessed the tree-, site-, and drought-related factors and their interactions driving the tree-level resilience to extreme droughts. We used a tree-ring network of the widely distributed Scots pine (Pinus sylvestris)…
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