HR: 1340h
AN: B43A-0244 [Abstracts]
TI: Responses of Soil Respiration to Precipitation in a Savannah Ecosystem: Fine Temporal Measurements of
Soil CO2 Efflux
AU: * Cable, J M
EM: cableje@email.arizona.edu
AF: University of Arizona, 1041 E. Lowell St., Tucson, AZ 85721
United States
AU: Huxman, T E
EM: huxman@email.arizona.edu
AF: University of Arizona, 1041 E. Lowell St., Tucson, AZ 85721
United States
AU: Cable, W L
EM: wcable@tucson.ars.ag.gov
AF: USDA-ARS, 2000 E. Allen Rd., Tucson, AZ 85719
United States
AU: Scott, R L
EM: rscott@tucson.ars.ag.gov
AF: USDA-ARS, 2000 E. Allen Rd., Tucson, AZ 85719
United States
AU: Williams, D G
EM: dgw@uwyo.edu
AF: University of Wyoming, 1000 E University Ave., Laramie, WY 82071
United States
AU: Goodrich, D
EM: dgoodrich@tucson.ars.ag.gov
AF: USDA-ARS, 2000 E. Allen Rd., Tucson, AZ 85719
United States
AB:
Precipitation pulses are the primary drivers of carbon cycling in deserts, and many components, such as soil respiration, may
be a function of plant community composition. Drylands are experiencing substantial vegetation change, such as the
encroachment of woody plants into historic grasslands, potentially altering soil biogeochemistry through litter inputs and
microclimate. How precipitation will drive fine temporal responses of soil respiration in the different microclimates created
by developing shrub islands is unclear. This study asks: how does the response of soil respiration to precipitation differ
in shrub, grass, and open microsites? What is the contribution from each microsite to whole ecosystem CO2 exchange? At
a medium density shrub community along a gradient of woody plant encroachment at the San Pedro River Valley in southeastern
Arizona, we measured soil CO2 efflux, soil moisture, and soil temperature every half hour in the dry premonsoon and
rainy monsoon periods. Prior to the monsoon, daily fluctuations in respiration coincided with soil temperature and
microsites behaved similarly. During the monsoon, soil moisture best predicted day to day variation in respiration rates.
Respiration beneath the mesquites was the highest and respiration in the open spaces was the lowest. However, the greatest
diurnal trends occurred in the open spaces, due to greater soil moisture and temperature fluctuations. Differential
responsiveness of the micosites to precipitation played an important role in determining ecosystem carbon balance as woody
plant abundance increases in the San Pedro River Valley.
DE: 0426 Biosphere/atmosphere interactions (0315)
DE: 0428 Carbon cycling (4806)
DE: 0438 Diel, seasonal, and annual cycles (4227)
DE: 0439 Ecosystems, structure and dynamics (4815)
DE: 0454 Isotopic composition and chemistry (1041, 4870)
SC: Biogeosciences [B]
MN: Fall Meeting 2005