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Night-time transpiration can decrease hydraulic redistribution
- Source :
- Plant, Cell & Environment. 32:1060-1070
- Publication Year :
- 2009
- Publisher :
- Wiley, 2009.
-
Abstract
- C(3) plants dominate many landscapes and are critically important for ecosystem water cycling. At night, plant water losses can include transpiration (E(night)) from the canopy and hydraulic redistribution (HR) from roots. We tested whether E(night) limits the magnitude of HR in a greenhouse study using Artemisia tridentata, Helianthus anomalus and Quercus laevis. Plants were grown with their roots split between two compartments. HR was initiated by briefly withholding all water, followed by watering only one rooting compartment. Under study conditions, all species showed substantial E(night) and HR (highest minus lowest soil water potential [Psi(s)] during a specified diel period). Suppressing E(night) by canopy bagging increased HR during the nightly bagging period (HR(N)) for A. tridentata and H. anomalus by 73 and 33% respectively, but did not affect HR(N) by Q. laevis. Total daily HR (HR(T)) was positively correlated with the Psi(s) gradient between the rooting compartments, which was correlated with light and/or atmospheric vapour pressure deficit (VPDa) the prior day. For A. tridentata, HR(T) was negatively correlated with night-time VPDa. Ecological implications of the impact of E(night) on HR may include decreased plant productivity during dry seasons, altered ecosystem water flux patterns and reduced nutrient cycling in drying soils.
- Subjects :
- Canopy
Vapor Pressure
Physiology
Vapour Pressure Deficit
Photoperiod
Plant Science
Plant Roots
Quercus
Soil
Animal science
Quercus laevis
Botany
Hydraulic redistribution
Transpiration
photoperiodism
biology
Helianthus anomalus
Water
food and beverages
Plant Transpiration
biology.organism_classification
Plant Leaves
Water potential
Artemisia
Helianthus
Environmental science
Subjects
Details
- ISSN :
- 13653040 and 01407791
- Volume :
- 32
- Database :
- OpenAIRE
- Journal :
- Plant, Cell & Environment
- Accession number :
- edsair.doi.dedup.....7023e27079c68b27a290fe811fafc288
- Full Text :
- https://doi.org/10.1111/j.1365-3040.2009.01988.x