Literature DB >> 15837922

Ecological controls on water-cycle response to climate variability in deserts.

B R Scanlon1, D G Levitt, R C Reedy, K E Keese, M J Sully.   

Abstract

The impact of climate variability on the water cycle in desert ecosystems is controlled by biospheric feedback at interannual to millennial timescales. This paper describes a unique field dataset from weighing lysimeters beneath nonvegetated and vegetated systems that unequivocally demonstrates the role of vegetation dynamics in controlling water cycle response to interannual climate variability related to El Nino southern oscillation in the Mojave Desert. Extreme El Nino winter precipitation (2.3-2.5 times normal) typical of the U.S. Southwest would be expected to increase groundwater recharge, which is critical for water resources in semiarid and arid regions. However, lysimeter data indicate that rapid increases in vegetation productivity in response to elevated winter precipitation reduced soil water storage to half of that in a nonvegetated lysimeter, thereby precluding deep drainage below the root zone that would otherwise result in groundwater recharge. Vegetation dynamics have been controlling the water cycle in interdrainage desert areas throughout the U.S. Southwest, maintaining dry soil conditions and upward soil water flow since the last glacial period (10,000-15,000 yr ago), as shown by soil water chloride accumulations. Although measurements are specific to the U.S. Southwest, correlations between satellite-based vegetation productivity and elevated precipitation related to El Nino southern oscillation indicate this model may be applicable to desert basins globally. Understanding the two-way coupling between vegetation dynamics and the water cycle is critical for predicting how climate variability influences hydrology and water resources in water-limited landscapes.

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Year:  2005        PMID: 15837922      PMCID: PMC1087913          DOI: 10.1073/pnas.0408571102

Source DB:  PubMed          Journal:  Proc Natl Acad Sci U S A        ISSN: 0027-8424            Impact factor:   11.205


  4 in total

1.  Elevated CO2 increases productivity and invasive species success in an arid ecosystem.

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Authors:  C J Vörösmarty; P Green; J Salisbury; R B Lammers
Journal:  Science       Date:  2000-07-14       Impact factor: 47.728

3.  Soil water balance and ecosystem response to climate change.

Authors:  Amilcare Porporato; Edoardo Daly; Ignacio Rodriguez-Iturbe
Journal:  Am Nat       Date:  2004-09-22       Impact factor: 3.926

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Authors:  C Whitlock
Journal:  Science       Date:  1990-11-16       Impact factor: 47.728

  4 in total
  3 in total

1.  The geospatial relationship of geologic strata, geological fractures, and land use attained by a time-series aridity index in a semiarid region.

Authors:  Victor M Rodríguez-Moreno; Thomas G Kretzschmar; J Saúl Padilla-Ramírez
Journal:  Environ Monit Assess       Date:  2015-06-23       Impact factor: 2.513

Review 2.  Vegetation Response to Groundwater Variation in Arid Environments: Visualization of Research Evolution, Synthesis of Response Types, and Estimation of Groundwater Threshold.

Authors:  Feng Huang; Danrong Zhang; Xi Chen
Journal:  Int J Environ Res Public Health       Date:  2019-05-24       Impact factor: 3.390

3.  Phylogeography and ecological niche modeling unravel the evolutionary history of the Yarkand hare, Lepus yarkandensis (Mammalia: Leporidae), through the Quaternary.

Authors:  Brawin Kumar; Jilong Cheng; Deyan Ge; Lin Xia; Qisen Yang
Journal:  BMC Evol Biol       Date:  2019-06-01       Impact factor: 3.260

  3 in total

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