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Drought in a warmer, CO2-rich climate restricts grassland water use and soil water mixing.

Authors :
Radolinski, Jesse
Vremec, Matevz
Wachter, Herbert
Birk, Steffen
Brüggemann, Nicolas
Herndl, Markus
Kahmen, Ansgar
Nelson, Daniel B.
Kübert, Angelika
Schaumberger, Andreas
Stumpp, Christine
Tissink, Maud
Werner, Christiane
Bahn, Michael
Source :
Science. 1/17/2025, Vol. 387 Issue 6731, p290-296. 7p. 5 Color Photographs.
Publication Year :
2025

Abstract

Soil water sustains terrestrial life, yet its fate is uncertain under a changing climate. We conducted a deuterium labeling experiment to determine whether elevated atmospheric carbon dioxide (CO2), warming, and drought impact soil water storage and transport in a temperate grassland. Elevated CO2 created a wetter rootzone compared with ambient conditions, whereas warming decreased soil moisture. Soil water remained well mixed in all global change treatments except for summer drought combined with warming and elevated CO2. These combined treatments caused the grassland to conserve water and restricted soil water flow to large, rapidly draining pores without mixing with small, slowly draining pores. Our results suggest that drought in a warmer, more CO2-rich climate can severely alter grassland ecohydrology by constraining postdrought soil water flow and grassland water use. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00368075
Volume :
387
Issue :
6731
Database :
Academic Search Index
Journal :
Science
Publication Type :
Academic Journal
Accession number :
182261628
Full Text :
https://doi.org/10.1126/science.ado0734