Related Experiment Video
Updated: May 8, 2026

The Calibration and Use of Capacitance Sensors to Monitor Stem Water Content in Trees
Published on: December 27, 2017
Climatic correlates of tree mortality in water- and energy-limited forests
Adrian J Das1, Nathan L Stephenson, Alan Flint
1Western Ecological Research Center, United States Geological Survey, Three Rivers, California, United States of America. adas@usgs.gov
Abstract:
Recent increases in tree mortality rates across the western USA are correlated with increasing temperatures, but mechanisms remain unresolved. Specifically, increasing mortality could predominantly be a consequence of temperature-induced increases in either (1) drought stress, or (2) the effectiveness of tree-killing insects and pathogens. Using long-term data from California's Sierra Nevada mountain range, we found that in water-limited (low-elevation) forests mortality was unambiguously best modeled by climatic water deficit, consistent with the first mechanism. In energy-limited (high-elevation) forests deficit models were only equivocally better than temperature models, suggesting that the second mechanism is increasingly important in these forests. We could not distinguish between models predicting mortality using absolute versus relative changes in water deficit, and these two model types led to different forecasts of mortality vulnerability under future climate scenarios. Our results provide evidence for differing climatic controls of tree mortality in water- and energy-limited forests, while highlighting the need for an improved understanding of tree mortality processes.
Related Concept Videos
Adaptations that Reduce Water Loss
Responses to Drought and Flooding
Global Climate Change
Survival Tree
Building a Survival Tree
Constructing a survival tree begins...
Responses to Heat and Cold Stress
Conservation of Declining Populations
