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Applying ecological principles to wildland weed management

Published online by Cambridge University Press:  20 January 2017

Tony Svejcar*
Affiliation:
USDA-Agricultural Research Service, Eastern Oregon Agricultural Research Center, Burns, OR 97720; tony.svejcar@oregonstate.edu

Abstract

Recent advances in our understanding of plant succession will provide new conceptual tools for wildland weed managers. Some of the conceptual advances should allow better linkages between the general management of wildlands and weed management specifically. For example, in the future we should be more capable of evaluating the impact of a management action on the risk of weed invasion than we have been in the past. Much of the discussion in this paper focuses on soil resource availability as a primary ecological factor in wildland weed management. Much of the research upon which this premise is based is less than 15 yr old; thus, we are in the testing stages of applying these concepts. Wider application of ecological principles to wildland weed management will require a coordinated education program and effective interaction among researchers and managers.

Type
Research Article
Copyright
Copyright © Weed Science Society of America 

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References

Literature Cited

Bates, J. D. 1996. Understory Vegetation Response and Nitrogen Cycling Following Cutting of Western Juniper. Ph.D. dissertation. Oregon State University, Corvallis, OR.Google Scholar
Bates, J. D., Miller, R. F., and Svejcar, T. J. 2000. Understory dynamics in cut and uncut western juniper woodlands. J. Range Manage. 53:119126.Google Scholar
Binkley, D. and Hart, S. C. 1989. The components of nitrogen availability assessments in forest soils. Adv. Soil Sci. 10:57112.Google Scholar
Blank, R. R., Allen, F., and Young, J. A. 1994. Extractable anions in soils following wildfire in a sagebrush-grass community. Soil Sci. Soc. Am. J. 58:564570.Google Scholar
Davis, M. A., Grime, J. P., and Thompson, K. 2000. Fluctuating resources in plant communities: a general theory of invasibility. Ecology 88:528534.Google Scholar
Frederick, B. A. and Klein, D. A. 1994. Nitrogen effects on rhizosphere processes of range grasses from different successional seres. Plant Soil 161:241250.CrossRefGoogle Scholar
Hirsch, S. A. and Leitch, J. A. 1996. The Impact of Knapweed on Montana's Economy. Fargo, ND: Agricultural Experiment Station, North Dakota State University Agricultural Economics Rep. 355. 43 p.Google Scholar
Hobbs, N. T. and Schimel, D. S. 1984. Fire effects on nitrogen mineralization and fixation in mountain shrub and grassland communities. J. Range Manage. 37 (5): 402405.Google Scholar
Leistritz, F. L., Thompson, F., and Leitch, J. A. 1992. Economic impact of leafy spurge (Euphorbia esula) in North Dakota. Weed Sci. 40:275280.Google Scholar
Leitch, J. A., Leistritz, F. L., and Bangsund, D. A. 1994. Economic Effect of Leafy Spurge in the Upper Great Plains; Methods, Models, and Results. Fargo, ND: Agricultural Experiment Station, North Dakota State University, Agricultural Economics Rep. 316. 7 p.Google Scholar
Luken, J. O. 1990. Directing Ecological Succession. New York: Chapman and Hall.Google Scholar
McLendon, T. and Redente, E. F. 1991. Nitrogen and phosphorus effects on secondary succession dynamics on a semi-arid sagebrush site. Ecology 72:20162024.CrossRefGoogle Scholar
McLendon, T. and Redente, E. F. 1992. Effects of nitrogen limitation on species replacement dynamics during early secondary succession on a semiarid sagebrush site. Oecologia 91:312317.CrossRefGoogle ScholarPubMed
Miller, R. F., Svejcar, T. J., and Rose, J. A. 2000. Impacts of western juniper on plant community composition and structure. J. Range Manage. 53:574585.CrossRefGoogle Scholar
Pickett, S.T.A., Collins, S. L., and Armesto, J. J. 1987. Models, mechanisms and pathways of succession. Bot. Rev. 53:335371.Google Scholar
Risser, P. G. 1988. Abiotic controls on primary productivity and nutrient cycles in North American grasslands. Pages 115129 In Pomeroy, L. R. and Alberts, J. J., eds. Concepts of Ecosystem Ecology. New York: Springer-Verlag.CrossRefGoogle Scholar
Seagle, S. W. and McNaughton, S. J. 1993. Simulated effects of precipitation and nitrogen on Serengeti grassland productivity. Biogeochemistry 22:157178.Google Scholar
Sheley, R. and Krueger-Mangold, J. 2003. Principles for restoring invasive plant-infested rangeland. Weed Sci. 51:260265.Google Scholar
Sheley, R. L., Svejcar, T. J., and Maxwell, B. D. 1996. A theoretical framework for developing successional weed management strategies on rangeland. Weed Technol. 10:766773.CrossRefGoogle Scholar
Stenger, R., Priesack, E., and Beese, F. 1995. Rates of net nitrogen mineralization in disturbed and undisturbed soils. Plant Soil 171:323332.CrossRefGoogle Scholar
Stohlgren, T. J., Binkley, D., Chong, G. W. et al. 1999. Exotic plant species invade hot spots of native plant diversity. Ecol. Monogr. 69:2546.Google Scholar
Svejcar, T. J. and sheley, R. L. 1995. A conceptual framework for integrating natural resource management and research. Pages 547548 In Proceedings of the Fifth International Rangeland Congress. Salt Lake City, UT.Google Scholar
Tilman, D. and Cowan, M. L. 1989. Growth of old field herbs on a nitrogen gradient. Funct. Ecol. 3:425438.Google Scholar
Tilman, D. and Wedin, D. 1991. Dynamics of nitrogen competition between successional grasses. Ecology 72:10381049.Google Scholar
Tyser, R. W. and Key, C. H. 1988. Spotted knapweed in natural area fescue grasslands: an ecological assessment. Northwest Sci. 62:151160.Google Scholar
Vinton, M. A. and Burke, I. C. 1995. Interactions between individual plant species and soil nutrient status in shortgrass steppe. Ecology 76:11161133.Google Scholar
Vitousek, P. M., Matson, P. A., and Van Cleve, K. 1989. Nitrogen availability and nitrification during succession: primary, secondary, and old-field seres. Plant Soil 115:229239.CrossRefGoogle Scholar
West, N. E. 1991. Nutrient cycling in soils of semiarid and arid regions. Pages 295332 In Skujins, J., ed. Semiarid Lands and Deserts: Soil Resource and Reclamation. New York: Marcel Dekker.Google Scholar