Abstract
Climate change is often associated with increasing vapour pressure deficit (VPD) and changes in soil moisture (SM). While atmospheric and soil drying often co-occur, their differential effects on plant functioning and productivity remain uncertain. We investigated the divergent effects and underlying mechanisms of soil and atmospheric drought based on continuous, in situ measurements of branch gas exchange with automated chambers in a mature semiarid Aleppo pine forest. We investigated the response of control trees exposed to combined soil-atmospheric drought (low SM, high VPD) during the rainless Mediterranean summer and that of trees experimentally unconstrained by soil dryness (high SM; using supplementary dry season water supply) but subjected to atmospheric drought (high VPD). During the seasonal dry period, branch conductance (gbr), transpiration rate (E) and net photosynthesis (Anet) decreased in low-SM trees but greatly increased in high-SM trees. The response of E and gbr to the massive rise in VPD (to 7 kPa) was negative in low-SM trees and positive in high-SM trees. These observations were consistent with predictions based on a simple plant hydraulic model showing the importance of plant water potential in the gbr and E response to VPD. These results demonstrate that avoiding drought on the supply side (SM) and relying on plant hydraulic regulation constrains the effects of atmospheric drought (VPD) as a stressor on canopy gas exchange in mature pine trees under field conditions.Under high evaporative demand conditions, mature Aleppo pine trees demonstrated increased transpiration and photosynthesis in response to supplementary irrigation. Stomatal conductance exhibited hypo-sensitivity to increasing water demand (high vapour pressure deficit) but was sensitive to a decrease in water supply, expressed as soil water content or plant water potential. Our findings highlight that water supply, rather than water demand, is the primary limiting factor for transpiration in Aleppo pine trees.
Original language | English |
---|---|
Pages (from-to) | 3775-3790 |
Number of pages | 16 |
Journal | Plant Cell And Environment |
Volume | 46 |
Issue number | 12 |
DOIs | |
State | Published - Dec 2023 |
Keywords
- VPD
- automated branch chambers
- drought
- irrigation
- semiarid
- soil moisture
- supply and demand
- transpiration
- water potential
All Science Journal Classification (ASJC) codes
- Physiology
- Plant Science