HR: 1340h
AN: H53E-0520 [Abstracts]
TI: Quantifying Understory Transpiration in a Semiarid Riparian Area
AU: * McGuire, R R
EM: rmcguire@tucson.ars.ag.gov
AF: USDA-ARS-SWRC, 2000 E. Allen Road, Tucson, AZ 85719
United States
AU: Scott, R L
EM: rscott@tucson.ars.ag.gov
AF: USDA-ARS-SWRC, 2000 E. Allen Road, Tucson, AZ 85719
United States
AB:
One of the most challenging components to estimate when determining water budgets in semiarid basins is riparian
evapotranspiration (ET). Much research has been conducted upon riparian overstory vegetation in these areas; however
understory vegetation water use has been ignored due to measurement difficulties and the belief that its quantity is
negligible. To better understand the magnitude of understory water use in a semiarid riparian ecosystem, we measured whole
plant transpiration of the dominant understory shrub, seep willow (Baccharis salicifolia), along a perennial reach of the San
Pedro River in southeastern Arizona. . Shrub transpiration was monitored using the heat balance sap flow technique and was
compared under two environmental conditions: a shrub patch located in a more open environment with decreased overstory canopy
cover, and a more closed shrub patch situated more directly underneath a cottonwood (Populus fremontii) forest canopy.
Despite the differences in atmospheric forcing, stand-level transpiration at both sites was similar and indicated that
transpiration was rarely demand-limited. Growing season transpiration totals for seep willow were much greater than
precipitation and of comparable magnitude to the overstory cottonwood transpiration. These results suggest that understory
water use can be an important component of a riparian water budget, especially in regions like the western U.S. where
evaporative demand is often high.
DE: 1876 Water budgets
SC: Hydrology [H]
MN: Fall Meeting 2005