Field bioassessments for selecting test systems to evaluate military training lands in tallgrass prairie. Ecosystem health. V |
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Authors: | D. J. Schaeffer T. R. Seastedt D. J. Gibson D. C. Hartnett B. A. D. Hetrick S. W. James D. W. Kaufman A. P. Schwab E. E. Herricks E. W. Novak |
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Affiliation: | (1) Department of Veterinary Biosciences, University of Illinois, 2001 South Lincoln Avenue, 61801 Urbana, Illinois, USA;(2) Department of Biology, Kansas State University, 66506 Manhattan, Kansas, USA;(3) Department of Civil Engineering, University of Illinois, 61801 Urbana, Illinois, USA;(4) USA-CERL (EN), P.O. Box 4005, 61820 Champaign, Illinois, USA;(5) Present address: Department of Biology, Maharishi University, 52556 Fairfield, Iowa |
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Abstract: | Ecosystem responses to physical or chemical stress may vary from changes in single organisms to alteration of the structure and function of the ecosystem. These responses to stress cannol be predicted exactly. Ecosystems repeatedly exposed to physical and/or chemical stress can be used to study the separate and combined environmental effects of stress. Such studies also allow the development of procedures to select test systems for the analysis of stress in ecosystems. A preliminary field survey of six military training sites at Fort Riley, Kansas, USA, was conducted to identify and verify ecological test systems for evaluating ecosystem responses to physical and/or chemical stress. Comparisons of these data with data collected concurrently from Konza Prairie Research Natural Area reference sites showed that soil microarthropods, some species of macroarthropods, small mammals, and native earthworm species were negatively affected by stress. In contrast, plant species diversity, plant foliage biomass, soil mycorrhizae, and many soil characteristics were within the boundaries of nominal variations observed on “pristine” Konza Prairie. Introduced European earthworms appeared to be positively affected by training activities. This study provided a test of systematic procedures to support impact analysis, ecological toxicology, and ecosystem risk assessments. This is paper IX in D. J. Schaeffer's “Environmental Audit” series. |
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Keywords: | Ecological test systems Physical stress Chemical stress Military training sites Prairie Ecosystem risk assessment |
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