Forests around the world are experiencing increasingly severe droughts and elevated competitive intensity due to increased tree density. However, the influence of interactions between drought and competition on forest growth remains poorly understood. Using a unique dataset of stand-scale dendrochronology sampled from 6405 trees, we quantified how annual growth of entire tree populations responds to drought and competition in eight, long-term (multi-decadal), experiments with replicated levels of density (e.g., competitive intensity) arrayed across a broad climatic and compositional gradient. Forest growth (cumulative individual tree growth within a stand) declined during drought, especially during more severe drought in drier climates. For...
Rising temperatures are amplifying drought-induced stress and mortality in forests globally. It rema...
Key message: Competitive interactions change over time and their influence on tree growth is intensi...
Key message: Competitive interactions change over time and their influence on tree growth is intensi...
Climate models predict increasing drought intensity and frequency for many regions, which may have n...
Climate models predict increasing drought intensity and frequency for many regions, which may have n...
Climate models predict increasing drought intensity and frequency for many regions, which may have n...
Drought will increasingly threaten forest ecosystems worldwide. Understanding how competition influe...
Drought will increasingly threaten forest ecosystems worldwide. Understanding how competition influe...
Drought will increasingly threaten forest ecosystems worldwide. Understanding how competition influe...
AbstractDrought will increasingly threaten forest ecosystems worldwide. Understanding how competitio...
AbstractDrought will increasingly threaten forest ecosystems worldwide. Understanding how competitio...
AbstractDrought will increasingly threaten forest ecosystems worldwide. Understanding how competitio...
To accurately predict how ecosystems will respond to climate change – and how management actions can...
To accurately predict how ecosystems will respond to climate change – and how management actions can...
Key message: Competitive interactions change over time and their influence on tree growth is intensi...
Rising temperatures are amplifying drought-induced stress and mortality in forests globally. It rema...
Key message: Competitive interactions change over time and their influence on tree growth is intensi...
Key message: Competitive interactions change over time and their influence on tree growth is intensi...
Climate models predict increasing drought intensity and frequency for many regions, which may have n...
Climate models predict increasing drought intensity and frequency for many regions, which may have n...
Climate models predict increasing drought intensity and frequency for many regions, which may have n...
Drought will increasingly threaten forest ecosystems worldwide. Understanding how competition influe...
Drought will increasingly threaten forest ecosystems worldwide. Understanding how competition influe...
Drought will increasingly threaten forest ecosystems worldwide. Understanding how competition influe...
AbstractDrought will increasingly threaten forest ecosystems worldwide. Understanding how competitio...
AbstractDrought will increasingly threaten forest ecosystems worldwide. Understanding how competitio...
AbstractDrought will increasingly threaten forest ecosystems worldwide. Understanding how competitio...
To accurately predict how ecosystems will respond to climate change – and how management actions can...
To accurately predict how ecosystems will respond to climate change – and how management actions can...
Key message: Competitive interactions change over time and their influence on tree growth is intensi...
Rising temperatures are amplifying drought-induced stress and mortality in forests globally. It rema...
Key message: Competitive interactions change over time and their influence on tree growth is intensi...
Key message: Competitive interactions change over time and their influence on tree growth is intensi...