Forest responses to last-millennium hydroclimate variability are governed by spatial variations in ecosystem sensitivity

Ecology Letters
By: , and 

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Abstract

Forecasts of future forest change are governed by ecosystem sensitivity to climate change, but ecosystem model projections are under-constrained by data at multidecadal and longer timescales. Here, we quantify ecosystem sensitivity to centennial-scale hydroclimate variability, by comparing dendroclimatic and pollen-inferred reconstructions of drought, forest composition and biomass for the last millennium with five ecosystem model simulations. In both observations and models, spatial patterns in ecosystem responses to hydroclimate variability are strongly governed by ecosystem sensitivity rather than climate exposure. Ecosystem sensitivity was higher in models than observations and highest in simpler models. Model-data comparisons suggest that interactions among biodiversity, demography and ecophysiology processes dampen the sensitivity of forest composition and biomass to climate variability and change. Integrating ecosystem models with observations from timescales extending beyond the instrumental record can better understand and forecast the mechanisms regulating forest sensitivity to climate variability in a complex and changing world.

Publication type Article
Publication Subtype Journal Article
Title Forest responses to last-millennium hydroclimate variability are governed by spatial variations in ecosystem sensitivity
Series title Ecology Letters
DOI 10.1111/ele.13667
Volume 24
Issue 3
Year Published 2021
Language English
Publisher Wiley
Contributing office(s) Southwest Climate Adaptation Science Center
Description 11 p.
First page 498
Last page 508
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