Thomas Pugh
Senior lecturer
Post-Drought Vegetation Shifts Lead to Divergent Carbon, Water and Energy Responses in a Savanna Ecosystem of Southwest China
Author
Summary, in English
Increasing drought frequency and intensity affect biophysical functions of natural ecosystems. In tropical semi-arid savannas, while immediate drought effects are well-studied, the drought legacy effects on vegetation composition and associated ecosystem functions remain unclear. We used data of vegetation composition, net ecosystem CO 2 exchange, surface albedo and evapotranspiration (ET) in 2017-2022 from a savanna ecosystem, Southwest China, to investigate the legacy effect of an extreme drought event that occurred in 2019. Vegetation declined continuously for 3 post-drought years. While tree numbers declined by 12%, shrub numbers dropped by 50% compared with pre-drought levels, shifting vegetation dominance toward trees. This structural change caused sustained reductions in albedo and ET, which remained below pre-drought levels, despite gross primary production recovering in the years immediately post-drought. Vegetation shifts disproportionately impact ecosystem functions, with energy and water fluxes exhibiting greater vulnerability and potentially enhancing regional warming as droughts increase in Asian savannas.
Department/s
- Department of Earth and Environmental Sciences (MGeo)
- LU Profile Area: Nature-based future solutions
- MERGE: ModElling the Regional and Global Earth system
- BECC: Biodiversity and Ecosystem services in a Changing Climate
- Dept of Physical Geography and Ecosystem Science
Publishing year
2026
Language
English
Publication/Series
Ecology Letters
Volume
29
Issue
1
Document type
Article
Publisher
Wiley-Blackwell
Topic
- Physical Geography
Keywords
- China
- Grassland
- Droughts
- Carbon/metabolism
- Water/metabolism
- Trees/physiology
- Ecosystem
- Climate Change
- SDG 13 - Climate Action
Status
Published
ISBN/ISSN/Other
- ISSN: 1461-023X