Journal article
Widespread Increase in Global Plant Water Stress Obscured by Greening
AGU advances, Vol.7(4), e2025AV002243
07/27/2026
DOI: 10.1029/2025AV002243
Appears in UI Libraries Support Open Access
Abstract
Understanding the vulnerability of plants to more severe and frequent drought events and developing adaptive management strategies requires robust methods for quantifying long-term changes in plant water stress (PWS). Most data-driven explorations of long-term trends in PWS have focused on alterations in canopy structure (e.g., leaf area index) or canopy structure-dependent variables (e.g., gross primary productivity and evapotranspiration). This is largely because long-term trends in canopy structure are relatively easy to detect from satellite observations. However, a focus on structural responses limits our ability to detect physiological stress due to challenges in isolating it from the effects of structural greening. Consequently, this difficulty hampers a comprehensive examination of long-term PWS in the context of global greening trends. To address this gap, we developed a new process-based metric for PWS to isolate physiological responses from structural greening, which we then used to detect global PWS trends over the past four decades. Combining site-level and satellite observations at the half-degree resolution across the globe, we found that accounting for greening-related changes substantially alters the sign of long-term PWS trends inferred from traditional approaches. Specifically, our study reveals a significant increase in PWS that is only detectable when accounting for structural greening trends. When greening trends are not accounted for, global PWS appears to have decreased over time. Overall, our results highlight the need to integrate structural dynamics and greening into PWS detection. Such an integration of observations and land models will improve our understanding of plant-water-energy interactions.
Details
- Title: Subtitle
- Widespread Increase in Global Plant Water Stress Obscured by Greening
- Creators
- Qing Chang - University of Iowa, School of Earth, Environment, and SustainabilityLixin Wang - University of IndianapolisMallory L. Barnes - Indiana UniversityDarren L. Ficklin - Indiana University BloomingtonMichael C. Benson - University of Illinois Urbana-ChampaignKimberly A. Novick - Indiana University Bloomington
- Resource Type
- Journal article
- Publication Details
- AGU advances, Vol.7(4), e2025AV002243
- DOI
- 10.1029/2025AV002243
- ISSN
- 2576-604X
- eISSN
- 2576-604X
- Publisher
- Wiley
- Number of pages
- 16
- Grant note
- 80NSSC21K1609 / NASA Earth and Space Science and Technology (FINESST) Program DE-SC0025361 / U.S. Department of Energy; United States Department of Energy (DOE) DEB-2406931; DEB-2307257 / National Science Foundation; National Science Foundation (NSF)
- Language
- English
- Date published
- 07/27/2026
- Academic Unit
- School of Earth, Environment, and Sustainability
- Record Identifier
- 9985217635802771
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