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Establishment of woody riparian vegetation in relation to annual patterns of streamflow, Bill Williams River, Arizona

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Abstract

Previous studies have revealed the close coupling of components of annual streamflow hydrographs and the germination and establishment ofPopulus species. Key hydrograph components include the timing and magnitude of flood peaks, the rate of decline of the recession limb, and the magnitude of base flows. In this paper, we retrospectively examine establishment of four woody riparian species along the Bill Williams River, Arizona, USA, in the context of annual patterns of streamflow for the years 1993–1995. The four species examined were the nativePopulus fremontii, Salix gooddingii, andBaccharis salicifolia and the exoticTamarix ramosissima. We modeled locations suitable for germination of each species along eight study transects by combining historic discharge data, calculated stage-discharge relationships, and seed-dispersal timing observations. This germination model was, a highly significant predictor of seedling establishment. Where germination was predicted to occur, we compared values of several environmental variables in quadrats where we observed successful establishment with quadrats where establishment was unsuccessful. The basal area of mature woody vegetation, the maximum annual, depth to ground water, and the maximum rate of water-table decline were the variables that best discriminated between quadrats with and without seedlings. The results of this study suggest that the basic components of models that relate establishment ofPopulus spp. to annual patterns of streamflow may also be applicable to other woody riparian species. Reach-to-reach variation in stage-discharge relationships can influence model parameters, however, and should be considered if results such as ours are to be used in efforts to prescribe reservoir releases to promote establishment of native riparian vegetation.

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Literature Cited

  • Arcement, G. J. and V. R. Schneider. 1989. Guide for selecting Manning’s roughness coefficients for natual channels and flood plains. U. S. Geological Survey Water-Supply Paper 2339.

  • Auble, G. T. and M. L. Scott. 1998. Fluvial disturbance patches and cottonwood recruitment along the upper Missouri River, Montana. Wetlands 18:546–556.

    Google Scholar 

  • Auble, G. T., M. L. Scott, J. M. Friedman, J. Back, and V. J. Lee. 1997. Constraints on establishment of plains cottonwood in an urban riparian preserve. Wetlands 17:138–148.

    Article  Google Scholar 

  • Braatne, J. H., S. B. Rood, and P. E. Heilman. 1996. Life history, ecology, and conservation of riparian cottonwoods in North America. p. 57–85.In R. E. Stettler, H. D. Bradshaw, P. E. Heilman, and T. M. Hinckley (eds.) Biology ofPopulus and Its Implications for Management and Conservation. NRC Research Press, Ottawa, ON, Canada.

    Google Scholar 

  • Bradley, C. E. and D. G. Smith. 1986. Plains cottonwood recruitment and survival on a prairie meandering river floodplain, Milk River, southern Alberta and northern Montana. Canadian Journal of Botany 64:1433–1442.

    Article  Google Scholar 

  • Brinson, M. M., B. L. Swift, R. C. Plantico, and J. S. Barclay, 1981. Riparian ecosystems: their ecology and status. U. S. Fish and Wildlife Service, Office of Biological Services. Washington, DC, USA. FWS/OBS-81/17.

    Google Scholar 

  • Brown, D. H. 1982. Biotic communities of the American Southwest — United States and Mexico. Desert Plants 4:1–342.

    CAS  Google Scholar 

  • Busch, D. E. and S. D. Smith. 1995. Mechanisms associated with decline of woody species in riparian ecosystems of the southwestern U. S. Ecological Monographs 65:347–370.

    Article  Google Scholar 

  • Christensen, J. 1996. Helping a river help itself. Nature Conservancy 46:8–9.

    Google Scholar 

  • Christensen, N. L., A. M. Bartuska, J. H. Brown, S. Carpenter, C. D’Antonio, R. Francis, J. F. Franklin, J. A. MacMahon, R. F. Noss, D. J. Parsons, C. H. Peterson, M. G. Turner, and R. G. Woodmansee. 1996. The report of the Ecological Society of America committee on the scientific basis for ecosystem management. Ecological Applications 6:665–691.

    Article  Google Scholar 

  • Cooper, D. T. and D. F. Van Haverbeke. 1990. Populus deltoides Bart. Ex Marsh. p. 530–543.In R. M. Burns and B. H. Honkala (tech. coord.) Silvics of North America, Volume 2, Hardwoods. U. S. Department of Agriculture Forest Service, Washington, DC, USA. Agriculture Handbook 654.

    Google Scholar 

  • Davies, B. R., M. C. Thomas, K. F. Walker, J. H. O’Keefe, and J. A. Gore, 1994. Dryland rivers: their ecology, conservation and management. p. 484–511.In P. Calow and G. E. Petts (eds.) The Rivers Handbook, Volume 2. Blackwell Scientific, Cambridge, MA, USA.

    Chapter  Google Scholar 

  • Day, P. R. 1965. Particle fractionation and particle-size analysis. p. 545–568.In C. A. Black (ed.) Methods of Soil Analysis. American Society of Agronomy, Madison, WI, USA.

    Google Scholar 

  • Ellis, L. M., M. C. Molles, and C. S. Crawford. 1996. Seasonal flooding and riparian forest restoration in the middle Rio Grande valley. Final Report under Cooperative Agreement 14-16-0002-91-228. U. S. Fish and Wildlife Service, Albuquerque, NM, USA.

    Google Scholar 

  • Everitt, B. L. 1980. Ecology of saltcedar a plea for research. Environmental Geology 3:77–84.

    Article  Google Scholar 

  • Friedman, J. M. and G. T. Auble. 1999. Mortality of riparian boxelder from sediment mobilization and extended inundation. Regulated Rivers 15:(in press).

  • Friedman, J. M., M. L. Scott, and G. T. Auble. 1997. Water management and cottonwood forest dynamics along prairie streams. Ecological Studies 125:49–71.

    Google Scholar 

  • Friedman, J. M., M. L. Scott, and W. M. Lewis, Jr. 1995. Restoration of riparian forest using irrigation, artificial disturbance, and natural seedfall. Environmental Management 19:547–557.

    Article  Google Scholar 

  • Garrett, J. M. and D. J. Gellenbeck. 1991. Basin characteristics and streamflow statistics in Arizona as of 1989. U.S. Geological Survey Water Resources Investigations Report 91-4041.

  • Gladwin, D. N. and J. E. Roelle. 1998. Survival of plains cottonwood (Populus deltoides subsp.monilifera) and saltcedar (Tamarix ramosissima) seedlings in response to flooding. Wetlands 18:669–674.

    Article  Google Scholar 

  • Grant, G. E., J. E. Duval, G. J. Koerper, and J. L. Fogg. 1992. XSPRO: a channel cross-section analyzer. Bureau of Land Management, Denver, CO, USA. Technical Note 387.

    Google Scholar 

  • Harshman, C. A. and T. Maddock. 1993. The hydrology and riparian restoration of the Bill Williams River basin near Parker, Arizona. Department of Hydrology and Water Resources, University of Arizona. Tucson, AZ, USA. HWR No. 93 040.

    Google Scholar 

  • Horton, J. S., F. C. Mounts, and J. M. Kraft. 1960. Seed germination and seedling establishment of phreatophyte species. U.S. Forest Service, Fort Collins, CO, USA. Rocky Mountain Forest and Range Experiment Station Paper No. 48.

    Google Scholar 

  • House, P. K. and K. K. Hirschboeck. 1995. Hydroclimatological and paleohydrological context of extreme winter flooding in Arizona, 1993. Arizona Geological Survey, Tucson, AZ, USA. Open-File Report 95-12.

    Google Scholar 

  • Jackson, J., J. T. Ball, and M. R. Rose. 1990. Assessment of the salinity, tolerance of eight Sonoran, desert riparian, trees and shrubs. Final Report, U.S. Bureau of Reclamation Contract No. 9-CP-30-07170, Biological Sciences Center, Desert Research Institute, University of Nevada System, Rena, NV, USA.

    Google Scholar 

  • Johnson, W. C. 1992. Dams and riparian forests: case study from the upper Missouri River. Rivers 3:229–242.

    Google Scholar 

  • Johnson, W. C., R. L. Burgess, and W. R. Keammerer. 1976. Forest overstory vegetation and environment on the Missouri River floodplain in North Dakota. Ecological Monographs 46:59–84.

    Article  Google Scholar 

  • Mahoney, J. M. and S. B. Rood. 1991. A device for studying the influence of declining water table on poplar growth and survival. Tree Physiology 8:305–314.

    PubMed  Google Scholar 

  • Mahoney, J. M. and S. B. Rood. 1992. Response of a hybrid poplar to water table decline in different substrates. Forest Ecology and Management 54:141–156.

    Article  Google Scholar 

  • Mahoney, J. M. and S. B. Rood. 1993a. A model for assessing the effects of altered river flows on the recruitment of riparian cottonwoods. p. 228–232.In B. Tellman, H. J. Cortner, M. G. Wallace, L. F. DeBano, and R. H. Hamre, (tech. coord. Riparian management: common threads and shared interests. U.S. Forest Service, Fort Collins, CO, USA. General Technical Report RM-226.

    Google Scholar 

  • Mahoney, J. M. and S. B. Rood. 1993b. The potential effects of an operating plan for the Oldman River Dam on riparian cottonwood forests. Oldman River Dam Mitigation Program Downstream Vegetation Project report Volume II. Report prepared for Alberta public Works, Supply and Services, Edmonton, AB, Canada.

  • Mahoney, J. M. and S. B. Rood. 1998. Streamflow requirements for cottonwood seedling recruitment — an integrative model. Wetlands 18:634–645.

    Google Scholar 

  • McBride, J. R., N. Sugihara, and E. Norberg. 1988. Growth and survival of three riparian woodland species in relation to simulated water table dynamics. Department of Forestry and Resource Management, University of California, Berkeley, CA, USA.

    Google Scholar 

  • Ohmart, R. D. and B. W. Anderson. 1982. North American desert riparian ecosystems. p. 433–479.In G. L. Bender (ed.) Reference Handbook of the Deserts of North America. Greenwood Press, Westport, CT, USA.

    Google Scholar 

  • Ohmart, R. D., B. W. Anderson, and W. C. Hunter. 1988. The ecology of the lower Colorado River from Davis Dam to the Mexico-United States International Boundary: a community profile. U. S. Fish and Wildlife Service, Washington, DC, USA. Biological Report 85(7.19).

    Google Scholar 

  • Patterson, J. L. and W. P. Somers. 1966. Magnitude and frequency of floods in the United States: Part 9. Colorado River Basin. U.S. Geological Survey Water-Supply Paper 1683.

  • Poff, N. L., J. D. Allan, M. B. Bain, J. R. Karr, K. L. Prestegaard, B. D. Richter, R. E. Sparks, and J. C. Stromberg. 1997. The natural flow regime: a paradigm for river conservation and restoration. Bioscience 47:769–784.

    Article  Google Scholar 

  • Rivers West, Inc. with Water and Environmental Systems Technology, Inc. 1990. Water resources assessment: Bill Williams Unit, Havasu National Wildlife Refuge. Report prepared for U. S. Fish and Wildlife Service, Region 2, Albuquerque, NM, USA.

  • Rood, S. B., A. R. Kalischuk, and J. M. Mahoney. 1998. Initial cottonwood seedling recruitment following the flood of the century of the Oldman River, Alberta, Canada. Wetlands 18:557–570.

    Article  Google Scholar 

  • Rood, S. B. and J. M. Mahoney. 1990. Collapse of riparian poplar forests, dewnstream from dams in western prairies: probable causes and prospects for mitigation. Environmental Management, 14: 451–464.

    Article  Google Scholar 

  • Rood, S. B., J. M. Mahoney, D. E. Reid, and L. Zilm. 1995. Instream flows and the decline of riparian cottonwoods along the St. Mary River, Alberta. Canadian Journal of Botany 73:1250–1260.

    Article  Google Scholar 

  • Sacchi, C. E. and P. W. Price. 1992. The relative roles of abiotic and biotic factors in seedling demography of arroyo willow (Salix lasiolepis: Salicaceae). American Journal of Botany 79:395–405.

    Article  Google Scholar 

  • Schmidt, J. C., R. H. Webb, R. A. Valdez, G. R. Marzolf, and L. E. Stevens. 1998. Science and values in river restoration in the Grand Canyon. BioScience 48:735–747.

    Article  Google Scholar 

  • Scott, M. L., G. T. Auble, and J. M. Friedman. 1997. Flood dependency of cottonwood establishment along the Missouri River, Montana, USA. Ecological Applications 7:677–690.

    Article  Google Scholar 

  • Scott, M. L., J. M. Friedman, and G. T. Auble 1996. Fluvial process and the establishment of bottomland trees. Geomorphology 14: 327–340.

    Article  Google Scholar 

  • Scott, M. L., M. A. Wondzell, and G. T. Auble. 1993. Hydrograph characteristics relevant to the establishment and growth of western riparian vegetation. p. 237–246.In H. J. Morel-Seytoux (ed.) Proceedings of the Thirteenth Annual American Geophysical Union Hydrology Days. Hydrology Days Publications. Aterton, CA, USA.

  • Segelquist C. A., M. L. Scott, and G. T. Auble. 1993. Establishment ofPopulus deltoides under simulated alluvial groundwater declines. American Midland Naturalist 130:274–285.

    Article  Google Scholar 

  • Shafroth, P. B., G. T. Auble, and M. L. Scott. 1995a. Germination and establishment of the native plains cottonwood (Populus deltoides Marshall subsp.monilifera) and the exotic Russian-olive (Elaeagnus angustifolia L.). Conservation Biology 9:1169–1175.

    Article  Google Scholar 

  • Shafroth, P. B., J. M. Friedman, and L. S. Ischinger. 1995b. Effects of salinity on establishment ofPopulus fremontii, (cottonwood) andTamarix ramosissima (saltcedar) in southwestern United States. Great Basin Naturalist 55:58–65.

    Google Scholar 

  • Sparks, R. E. 1995. Need for ecosystem management of large rivers and their floodplains. BioScience 45:168–182.

    Article  Google Scholar 

  • Stanford, J. A., J. V. Ward, W. J. Liss, C. A. Frissell, R. N. Williams, J. A. Lichatowich, and C. C. Coutant. 1996. A general protocol for restoration of regulated rivers. Regulated Rivers: Research & Management 12:391–413.

    Article  Google Scholar 

  • Stromberg, J. C. 1997. Growth and survivorship of Fremont cottonwood, Goodding willow, and salt cedar seedlings after large floods in central Arizona. Great Basin Naturalist 57:198–208.

    Google Scholar 

  • Stromberg, J. C., J. Fry, and D. T. Patten. 1997. Marsh development after large floods in an alluvial, arid-land river. Wetlands 17:292–300.

    Google Scholar 

  • Stromberg, J. C., B. D. Richter, D. T. Patten, and L. G. Wolden. 1993. Response of a Sonoran riparian forest to a 10-year return flood. Great Basin Naturalist 53:118–130.

    Google Scholar 

  • Stromberg, J. C., D. T. Patten, and B. D. Richter. 1991. Flood flows and dynamics of Sonoran riparian forests. Rivers 2:221–235.

    Google Scholar 

  • Toth, L. A., S. L. Melvin, D. A. Arrington, and J. Chamberlain. 1998. Hydrologic manipulations of the channelized Kissimmee River. BioScience 48:757–764.

    Article  Google Scholar 

  • U.S. Army Corps of Engineers. 1996. Reconnaissance report, review of existing project: Alame Lake, Arizona. Los Angeles, CA, USA.

  • Warren, D. K. and R. M. Turner. 1975. Saltcedar (Tamarix chinensis) seed production, seedling establishment, and response to inundation. Journal of the Arizona Academy of Science 10:135–144.

    Google Scholar 

  • Zentner, J. J. and S. S. Talley. 1993. Flood channel design and wetland restoration: mitigation and maintenance considerations. p. 251–258.In M. C. Landin (ed.) Wetlands: proceedings of the 13th annual conference, Society of Wetland Scientists. SWS South Central Chapter, Utica, MS, USA.

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Shafroth, P.B., Auble, G.T., Stromberg, J.C. et al. Establishment of woody riparian vegetation in relation to annual patterns of streamflow, Bill Williams River, Arizona. Wetlands 18, 577–590 (1998). https://doi.org/10.1007/BF03161674

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