Hydraulic Trait Strategies Lead to Divergent Tree Growth Responses to Multidecadal Climate Variability

Abstract Climate change, including altered precipitation patterns, is impacting the growth, competition, survival, and carbon allocation dynamics of trees globally. Using 22 years of data, we aimed to link the strength and timing of species‐specific stem growth responses to water stress and species‐level hydraulic strategy traits. We measured gross primary production (GPP) as well as environmental factors including soil water content, vapor pressure deficit, and photosynthetically active radiation within the footprint of the AmeriFlux US‐UMB site, a temperate deciduous forest in northern Michigan. We recorded annual stem growth increments of individuals encompassing eight species using band dendrometers and calculated annual changes in biomass using allometric equations. Yearly stem growth for each species was compared to mean environmental conditions over 3‐month seasonal periods from the same and previous year to account for potential lags between climate and growth signals. At the ecosystem level, no correlation between measured changes in aboveground biomass and GPP was observed for the current and prior years, suggesting divergent temporal carbon allocation patterns that vary among species. In our forest site, the growth of white pine was negatively correlated with growing season soil water content, in contrast to most measured species, indicating that drought affected the competitive interactions of species with different hydraulic traits. These contrasting trends and asynchrony with GPP reiterate the need for consideration of hydraulic trait strategies in carbon modeling.

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Publication Details

Journal
Journal of Geophysical Research Biogeosciences
Published
2026-09-29
DOI
https://doi.org/10.1029/2026jg009928
Primary Topic
Plant Water Relations and Carbon Dynamics
Type
article
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article

Hydraulic Trait Strategies Lead to Divergent Tree Growth Responses to Multidecadal Climate Variability

Jason M. Tallant, Christopher Michael Gough, John D. Lenters, James Howard Stagge et al.
Journal of Geophysical Research Biogeosciences
Plant Water Relations and Carbon Dynamics
article

Hydraulic Trait Strategies Lead to Divergent Tree Growth Responses to Multidecadal Climate Variability

Jason M. Tallant, Christopher Michael Gough, John D. Lenters, James Howard Stagge, L. E. Nave, Gil Bohrer, Jeff W. Atkins, Christoph S. Vogel, Aimée T. Classen, Kyungmin Sung, Sarah E. Bungard
article en

Abstract

Abstract Climate change, including altered precipitation patterns, is impacting the growth, competition, survival, and carbon allocation dynamics of trees globally. Using 22 years of data, we aimed to link the strength and timing of species‐specific stem growth responses to water stress and species‐level hydraulic strategy traits. We measured gross primary production (GPP) as well as environmental factors including soil water content, vapor pressure deficit, and photosynthetically active radiation within the footprint of the AmeriFlux US‐UMB site, a temperate deciduous forest in northern Michigan. We recorded annual stem growth increments of individuals encompassing eight species using band dendrometers and calculated annual changes in biomass using allometric equations. Yearly stem growth for each species was compared to mean environmental conditions over 3‐month seasonal periods from the same and previous year to account for potential lags between climate and growth signals. At the ecosystem level, no correlation between measured changes in aboveground biomass and GPP was observed for the current and prior years, suggesting divergent temporal carbon allocation patterns that vary among species. In our forest site, the growth of white pine was negatively correlated with growing season soil water content, in contrast to most measured species, indicating that drought affected the competitive interactions of species with different hydraulic traits. These contrasting trends and asynchrony with GPP reiterate the need for consideration of hydraulic trait strategies in carbon modeling.

Journal of Geophysical Research BiogeosciencesVol. 131(10)
Michigan Technological University (US), Virginia Commonwealth University (US), University of Michigan (US), Kyonggi University (KR), The Ohio State University (US)
Climate action
Openalex Percentile: Top 14%
Plant Water Relations and Carbon Dynamics
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