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Consequences of More Extreme Precipitation Regimes for Terrestrial Ecosystems

BioScience · 2008 · Vol. 58(9) · pp. 811–821
Alan K. KnappClaus BeierDavid D. BriskeAimée T. ClassenYiqi LuoMarkus ReichsteinMelinda D. SmithStanley D. SmithJesse E. BellPhilip A. FayJana L. HeislerSteven W. LeavittRebecca A. SherryBenjamin SmithEnsheng Weng

Abstract

H uman activities have caused dramatic and un- precedented changes in the global chemical and physical environment, including well-documented increases in atmospheric carbon dioxide (CO 2 ) concentration and mean annual temperature If greenhouse gas emissions continue to increase at present rates, atmospheric CO 2 concentrations will more than double preindustrial levels during the current century, and general circulation models (GCMs) predict additional increases in mean global temperature of between 1.1 and 6.4 degrees Celsius (IPCC 2007). Alterations in patterns of global atmospheric circulation and hydrologic processes are predicted to modify mean annual precipitation and to increase the inter-and intra-annual variability of precipita-tion The combined effects of increased atmospheric CO 2 , elevated global temperatures, and altered precipitation regimes represent a rapid and unprecedented change to the fundamental drivers of chemical and biological processes within ecosystems (Amundson and Jenny 1997). The complexity and pace of these global anthropogenic changes pose a major challenge for ecosystem scientists and managers (NRC 2001), particularly given their potential impact on the provisioning of ecosystem services

Plant Water Relations and Carbon DynamicsGeology and Paleoclimatology ResearchClimate variability and modelsDeserts and xeric shrublandsEcosystemEnvironmental sciencePrecipitationHydric soilWetlandTerrestrial ecosystemClimate changeWater balanceEcology

Funding

  • National Science Foundation
  • U.S. Department of Energy
  • U.S. Department of Agriculture
  • European Commission
  • Office of Science
  • Cooperative State Research, Education, and Extension Service
Citations
1,226
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References
Effects of drying–rewetting frequency on soil carbon and nitrogen transformations
Soil Biology and Biochemistry · 2002 · 1,060 citations
Secular Trends of Precipitation Amount, Frequency, and Intensity in the United States
Bulletin of the American Meteorological Society · 1998 · 1,330 citations
The Nature and Properties of Soils
Agronomy Journal · 1952 · 6,156 citations
Trends in Intense Precipitation in the Climate Record
Journal of Climate · 2005 · 1,334 citations
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