Publication | Open Access
The effect of plant water storage on water fluxes within the coupled soil–plant system
121
Citations
71
References
2016
Year
EngineeringDaytime Pws UsageWater StressPlant Water StorageWater FluxesEarth ScienceAgricultural Water ManagementPlant-soil RelationshipSoil–plant SystemHydraulic PropertyWater StorageHydrometeorologyCrop Water RelationHydrologyWater BalanceWater ResourcesDroughtEnvironmental EngineeringDrought ManagementPws Usage
In addition to buffering plants from water stress during severe droughts, plant water storage (PWS) alters many features of the spatio-temporal dynamics of water movement in the soil-plant system. How PWS impacts water dynamics and drought resilience is explored using a multi-layer porous media model. The model numerically resolves soil-plant hydrodynamics by coupling them to leaf-level gas exchange and soil-root interfacial layers. Novel features of the model are the considerations of a coordinated relationship between stomatal aperture variation and whole-system hydraulics and of the effects of PWS and nocturnal transpiration (Fe,night) on hydraulic redistribution (HR) in the soil. The model results suggest that daytime PWS usage and Fe,night generate a residual water potential gradient (Δψp,night) along the plant vascular system overnight. This Δψp,night represents a non-negligible competing sink strength that diminishes the significance of HR. Considering the co-occurrence of PWS usage and HR during a single extended dry-down, a wide range of plant attributes and environmental/soil conditions selected to enhance or suppress plant drought resilience is discussed. When compared with HR, model calculations suggest that increased root water influx into plant conducting-tissues overnight maintains a more favorable water status at the leaf, thereby delaying the onset of drought stress.
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