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Waterbird response indicates floodplain wetland restoration

  • RIVER FLOODPLAIN RESTORATION
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Abstract

Despite extensive anthropogenic degradation of most wetlands and other aquatic habitats associated with large rivers in the Midwest, the region still supports continentally important numbers of waterbirds during autumn and spring migration; however, few data exist to evaluate wetland restoration success and identify thresholds where changes in management may be necessary to meet conservation targets. We tracked waterbird response to restoration of a historical floodplain wetland complex along the Illinois River during 2007–2013 relative to waterbird use of other wetlands and floodplain lakes in the region. Dabbling ducks and other waterbirds showed dramatic responses to restoration, each accumulating more than 3 million use-days/year and comprising more than 30% of the total waterbird use-days in the Illinois River Valley during autumn and spring migrations. We identified use that was strongly disproportionate to availability within the region for several waterbird taxa and documented nesting by several species of conservation concern. Many species and foraging guilds of waterbirds [e.g., American coot (Fulica americana), dabbling ducks (Anatini)] responded rapidly to wetland restoration, continued to use Emiquon Preserve regardless of changing conditions at reference sites, and showed relatively limited temporal variation, thereby demonstrating their utility as indicators of habitat conditions and restoration trajectory.

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References

  • Afton, A. D. & M. G. Anderson, 2001. Declining scaup populations: a retrospective analysis of long-term population and harvest survey data. Journal of Wildlife Management 65: 781–796.

    Article  Google Scholar 

  • Altmann, J., 1974. Observational study of behavior: sampling methods. Behavior 49: 227–267.

    Article  CAS  Google Scholar 

  • Anteau, M. J. & A. D. Afton, 2008. Diet shifts of lesser scaup are consistent with the spring condition hypothesis. Canadian Journal of Zoology 84: 779–786.

    Article  Google Scholar 

  • Anteau, M. J. & A. D. Afton, 2009. Lipid reserves of lesser scaup (Aythya affinis) migrating across a large landscape are consistent with the spring condition hypothesis. Auk 126: 873–883.

    Article  Google Scholar 

  • Anteau, M. J. & A. D. Afton, 2011. Lipid catabolism of invertebrate predator indicates widespread wetland ecosystem degradation. PLoS One 6: e16029. doi:10.1371/journal.pone.0016029.

    Article  CAS  PubMed  PubMed Central  Google Scholar 

  • Arzel, C. & J. Elmberg, 2015. Time use and foraging behavior in pre-breeding dabbling ducks Anas spp. in sub-arctic Norway. Journal of Ornithology 156: 499–513.

    Article  Google Scholar 

  • Austin, J. E., T. K. Buhl, G. R. Guntenspergen, W. Norling & H. T. Sklebar, 2001. Duck populations as indicators of landscape condition in the Prairie Pothole Region. Environmental Management and Assessment 69: 29–47.

    Article  CAS  Google Scholar 

  • Bajer, P. G., G. Sullivan & P. W. Sorensen, 2009. Effects of a rapidly increasing population of common carp on vegetative cover and waterfowl in a recently restored Midwestern shallow lake. Hydrobiologia 632: 235–245.

    Article  Google Scholar 

  • Baldassarre, G. A., S. L. Paulus, A. Tamisier & R. D. Titman, 1988. Workshop summary: techniques for timing activity of wintering waterfowl. In Weller, M. W. (ed.), Waterfowl in Winter. University Minnesota Press, Minneapolis: 181–188.

    Google Scholar 

  • Baldassarre, G. A. & E. G. Bolen, 2006. Waterfowl ecology and Management, 2nd ed. Krieger Publishing Company, Malabar, FL.

    Google Scholar 

  • Beatty, W. S., E. B. Webb, D. C. Kesler, A. H. Raedeke, L. W. Naylor & D. D. Humburg, 2014. Landscape effects on mallard habitat selection at multiple spatial scales during the non-breeding period. Landscape Ecology 29: 989–1000.

    Article  Google Scholar 

  • Bellrose, F. C., S. P. Havera, F. L. Paveglio, Jr. & D. W. Steffeck, 1983. The fate of lakes in the Illinois River Valley. Illinois Natural History Survey Biological Notes 119.

  • Blumstein, D. T., E. Fernandez-Juricic, P. A. Zollner & S. C. Garity, 2005. Inter-specific variation in avian responses to human disturbances. Journal of Applied Ecology 42: 943–953.

    Article  Google Scholar 

  • Bornette, G., C. Amoros & N. Lamouroux, 1998. Aquatic plant diversity in riverine wetlands: the role of connectivity. Freshwater Biology 39: 267–283.

    Article  Google Scholar 

  • Bowyer, M. W., J. D. Stafford, A. P. Yetter, C. S. Hine, M. M. Horath & S. P. Havera, 2005. Moist-soil plant seed production for waterfowl at Chautauqua National Wildlife Refuge, Illinois. American Midland Naturalist 154: 331–341.

    Article  Google Scholar 

  • Callicutt, J. T., H. M. Hagy & M. L. Schummer, 2011. The food paradigm: a review of autumn–winter food use by North American dabbling ducks (1900–2009). Journal of Fish and Wildlife Management 2(1): 29–40. doi:10.3996/102010-JFWM-038.

    Article  Google Scholar 

  • Coluccy, J. M., M. V. Castelli, P. M. Castelli, J. W. Simpson, S. R. McWilliams & L. Armstrong, 2015. True metabolizable energy of American black duck foods. Journal of Wildlife Management 79: 344–348.

    Article  Google Scholar 

  • Cowardin, L. M., V. Carter, F. C. Golet & E. T. LaRoe, 1979. Classification of wetlands and deepwater habitats of the United States. U.S. Fish Wildlife Service. FWS/OBS 79/31. U.S. Government Printing Office, Washington, D.C.

  • Dahl, T. E., 1990. Wetlands losses in the United States 1780s to 1980s. U.S. Department of the Interior, Fish and Wildlife Service, Washington, D.C.

    Google Scholar 

  • Dugger, B. D., M. L. Moore, R. S. Finger & M. J. Petrie, 2007. True metabolizable energy for seeds of common moist-soil plant species. Journal of Wildlife Management 71: 1964–1967.

    Article  Google Scholar 

  • Figarski, T. & L. Kajtoch, 2015. Alterations of riverine ecosystems adversely affect bird assemblages. Hydrobiologia 744: 287–296.

    Article  Google Scholar 

  • Gawlik, D. E., 2006. The role of wildlife science in wetland ecosystem restoration: lessons from the Everglades. Ecological Engineering 26: 70–83.

    Article  Google Scholar 

  • Gendron, M. & R. G. Clark, 2002. Survival of mallard and gadwall ducklings in south-central Saskatchewan. Journal of Wildlife Management 66: 170–180.

    Article  Google Scholar 

  • Gollop, J. B. & W. H. Marshall, 1954. A guide for aging duck broods in the field. Mississippi Flyway Council Technical Section Report.

  • Hagy, H. M., A. P. Yetter, K. W. Stodola, M. M. Horath, C. S. Hine, M. P. Ward, T. J. Benson, R. V. Smith & J. D. Stafford, 2014. Stopover duration of mallards during autumn in the Illinois River valley. Journal of Wildlife Management 78: 747–752.

    Article  Google Scholar 

  • Hagy, H. M., M. M. Horath, A. P. Yetter, C. S. Hine & R. V. Smith, 2016. Evaluating tradeoffs between sanctuary for migrating waterbirds and recreational opportunities in a restored wetland complex. Hydrobiologia. doi:10.1007/s10750-016-2711-0.

    Google Scholar 

  • Hagy, H. M., R. V. Smith, A. P. Yetter, C. S. Hine & M. M. Horath, 2012. Vegetation assessment of the south pool of Chautauqua National Wildlife Refuge. Illinois Natural History Survey Technical Report 2012(34)

  • Harwell, M. A., V. Myers, T. Young, A. Bartuska, N. Gassman, J. H. Gentile, C. C. Harwell, S. Appelbaum, J. Barko, B. Causey, C. Johnson, A. McLean, R. Smola, P. Templet & S. Tosini, 1999. A framework for an ecosystem integrity report card. Bioscience 49: 543–556.

    Article  Google Scholar 

  • Havera, S. P., 1999. Waterfowl of Illinois: Status and Management. Illinois Natural History Survey Special Publication, Champaign: 21.

    Google Scholar 

  • Havera, S.P., K.E. Roat & L.L. Anderson. 2003. The Thompson Lake/Emiquon Story. Illinois Natural History Survey Special Publication 25. Champaign, IL. 40 p.

  • Hine, C. S., H. M. Hagy, A. P. Yetter, M. M. Horath, R. V. Smith & J. D. Stafford, 2013. Waterbird and wetland monitoring at the Emiquon Preserve: final report 2007–2013. Illinois Natural History Survey Technical Report 2013 (20)

  • Hine, C. S., H. M. Hagy, A. P. Yetter, M. M. Horath, R. V. Smith & J. D. Stafford, 2016. Response of aquatic vegetation and other wetland cover types to floodplain restoration at Emiquon Preserve. Hydrobiologia. doi:10.1007/s10750-016-2893-5.

    Google Scholar 

  • Hoekman, S. T., T. S. Gabor, R. Maher, H. R. Murkin & L. M. Armstrong, 2004. Factors affecting survival of mallard ducklings in southern Ontario. Condor 106: 485–495.

    Article  Google Scholar 

  • Hohman, W. L., 1984. Diurnal time-activity budgets for ring-necked ducks wintering in central Florida. Proceedings of the Annual Conference of the Southeastern Association of Fish Game Commission 38: 158–164.

    Google Scholar 

  • Horath, M. M. & S. P. Havera, 2002. Illinois waterfowl surveys and investigations. Annual Federal Aid Performance Report W–43–R–49, Amendments 2 & 3. Illinois Natural History Survey, Havana, IL.

  • Ivey, G. L., J. E. Cornely & B. D. Ehlers, 1998. Carp impacts on waterfowl at Malheur National Wildlife Refuge. Transactions of the 63rd North American Wildlife and Natural Resources Conference. Wildlife Management Institute, Washington, D.C.

  • Jackson, C. R. & C. M. Pringle, 2010. Ecological benefits of reduced hydrologic connectivity in intensively developed landscapes. BioScience 60: 37–46.

    Article  Google Scholar 

  • Johnson, D. H., 1980. The comparison of usage and availability measurements for evaluating resource preference. Ecology 61: 65–71.

    Article  Google Scholar 

  • Johnson, M. D., 2000. Evaluation of an arthropod sampling technique for measuring food availability for forest insectivorous birds. Journal of Field Ornithology 71: 88–109.

    Article  Google Scholar 

  • Johnson, M. D., 2007. Measuring habitat quality: a review. Condor 109: 489–504.

    Article  Google Scholar 

  • Kajtoch, L., M. Zmihorski & A. Piestrzynska-Kajtoch, 2014. The goosander as potential indicator of naturalness and biodiversity in submontane river valleys of northern Carpathians. Ecological Indicators 45: 83–92.

    Article  Google Scholar 

  • Kaminski, R. M. & H. H. Prince, 1981. Dabbling duck activity and foraging responses to aquatic invertebrates. Auk 98: 115–126.

    Google Scholar 

  • King, S. L., D. J. Twedt & R. R. Wilson, 2006. The role of Wetland Reserve Program conservation efforts in the Mississippi River Alluvial Valley. Wildlife Society Bulletin 34: 914–920.

    Article  Google Scholar 

  • Kingsford, R. T., K. M. Jenkins & J. L. Porter, 2004. Imposed hydrological stability on lakes in arid Australia and effects on waterbirds. Ecology 85: 2478–2492.

    Article  Google Scholar 

  • Lake, P. S., 2001. On the maturing of restoration: linking ecological research and restoration. Ecological Management and Restoration 2: 110–115.

    Article  Google Scholar 

  • Linz, G. M., D. C. Blixt, D. L. Bergman & W. J. Bleier, 1996. Response of ducks to glyphosate-induced habitat alterations in wetlands. Wetlands 16: 38–44.

    Article  Google Scholar 

  • Littell, R. C., G. A. Milliken, W. W. Stroup, R. D. Wolfinger & O. Schabenberger, 2006. SAS for Mixed Models, 2nd ed. SAS Institute, Inc., Cary, North Carolina, USA.

    Google Scholar 

  • Loegering, J. P. & J. D. Fraser, 1995. Piping plover survival in different brood-rearing habitats. Journal of Wildlife Management 59: 646–655.

    Article  Google Scholar 

  • Lyons, J. E., 2005. Habitat specific foraging of Prothonotary Warblers: deducing habitat quality. Condor 107: 41–49.

    Article  Google Scholar 

  • Mills, H. B., W. C. Starrett & F. C. Bellrose, 1966. Man’s effect on the fish and wildlife of the Illinois River. Illinois Natural History Survey Biological Notes 57.

  • Moore, M., S. P. Romano & T. Cook, 2010. Synthesis of Upper Mississippi River system submersed and emergent aquatic vegetation: past, present, and future. Hydrobiologia 640: 103–114.

    Article  Google Scholar 

  • Morrison, M. I., 1986. Bird populations as indicators of environmental change. In Johnston, R. F. (ed.), Current Ornithology. Plenum, New York: 429–451.

    Chapter  Google Scholar 

  • North American Waterfowl Management Plan (NAWMP), 2012. North American waterfowl management plan: people conserving waterfowl and wetlands [available on internet at http://www.dgif.virginia.gov/wildlife/waterfowl/north-american-waterfowl-management-plan-2012.pdf]

  • Niemi, G. J., J. M. Hanowski, A. R. Lima, T. Nicholls & N. Wiland, 1997. A critical analysis on the use of indicator species in management. Journal of Wildlife Management 61: 1240–1252.

    Article  Google Scholar 

  • O’Neal, B. J., J. D. Stafford & R. P. Larkin, 2012. Stopover duration of fall-migrating dabbling ducks. Journal of Wildlife Management 76: 285–293.

    Article  Google Scholar 

  • Pagano, A. M. & T. W. Arnold, 2009. Estimating detection probabilities of waterfowl broods from ground-based surveys. Journal of Wildlife Management 73: 686–694.

    Article  Google Scholar 

  • Paracuellos, M., 2006. How can habitat selection affect the use of a wetland complex by waterbirds? Biodiversity and Conservation 15: 4569–4582.

    Article  Google Scholar 

  • Parrish, J. D., D. P. Braun & R. S. Unnasch, 2003. Are we conserving what we say we are? Measuring ecological integrity within protected areas. BioScience 53: 851–860.

    Article  Google Scholar 

  • Paulus, S. L., 1984. Activity budgets of nonbreeding gadwalls in Louisiana. Journal of Wildlife Management 48: 371–380.

    Article  Google Scholar 

  • Paulus, S. L., 1988. Time-activity budgets of nonbreeding Anatidae: a review. In Weller, M. W. (ed.), Waterfowl in Winter. University Minnesota Press, Minneapolis, MN: 135–149.

    Google Scholar 

  • Reynolds, C., N. A. Miranda & G. S. Cumming, 2015. The role of waterbirds in the dispersal of aquatic alien and invasive species. Diversity and Distributions 21: 744–754.

    Article  Google Scholar 

  • Ringelman, J. K. & L. D. Flake, 1980. Diurnal visibility and activity of blue-winged teal and mallard broods. Journal of Wildlife Management 44: 822–829.

    Article  Google Scholar 

  • Rumble, M. A. & L. D. Flake, 1982. A comparison of two waterfowl brood survey techniques. Journal of Wildlife Management 46: 1048–1053.

    Article  Google Scholar 

  • Smith, R. V., J. D. Stafford, A. P. Yetter, M. M. Horath, C. S. Hine & J. P. Hoover, 2012. Foraging ecology of fall-migrating shorebirds in the Illinois River valley. PLoS One 7(9): e45121. doi:10.1371/journal.pone.0045121.

    Article  CAS  PubMed  PubMed Central  Google Scholar 

  • Soulliere, G. J., B. A. Potter, J. M. Coluccy, R. C. Gatti, P. W. Brown, C. L. Roy Nielsen, M. W. Eichholz & D. R. Luukkonen, 2007. Upper Mississippi River and Great Lakes Region Joint Venture Waterfowl Habitat Conservation Strategy. U.S. Fish and Wildlife Service, Fort Snelling, Minnesota.

    Google Scholar 

  • Sparks, R. E., 1984. The role of contaminants in the decline of the Illinois River: implications for the Upper Mississippi. In Wiener, J. G., R. V. Anderson & D. R. McConville (eds), Contaminants in the Upper Mississippi River. Butterworth Publishers, Stoneham, MA: 25–66.

    Google Scholar 

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

    Article  Google Scholar 

  • Sparks, R. E., K. D. Blodgett, A. F. Casper, H. M. Hagy, M. L. Lemke, A. F. M. Velho & L. C. Rodrigues, 2016. Why experiment with success? Opportunities and risks in applying assessment and adaptive management to the Emiquon floodplain restoration project. Hydrobiologia. doi:10.1007/s10750-016-2785-8.

  • Stafford, J. D., M. M. Horath, A. P. Yetter, C. S. Hine & S. P. Havera, 2007. Wetland use by mallards during spring and fall in the Illinois and Central Mississippi River Valleys. Waterbirds 30: 394–402.

    Article  Google Scholar 

  • Stafford, J. D., M. M. Horath, A. P. Yetter, R. V. Smith & C. S. Hine, 2010. Historical and contemporary characteristics and waterfowl use of Illinois River valley wetlands. Wetlands 30: 565–576.

    Article  Google Scholar 

  • Stolen, E. D., D. R. Breininger & P. C. Frederick, 2005. Using waterbirds as indicators in Estuarine systems: successes and perils. In. Bortone, S. A. (ed.), Estuarine Indicators. CRC Press, Boca Raton, FL: 409–422

  • Straub, J. N., 2008. Energetic carrying capacity of habitats used by spring-migrating waterfowl in the Upper Mississippi River and Great Lakes region. M.S. Thesis, The Ohio State University, Columbus, OH.

  • Suding, K. N., K. L. Gross & G. R. Houseman, 2004. Alternative states and positive feedbacks in restoration ecology. Trends in Ecology and Evolution 19: 46–53.

    Article  PubMed  Google Scholar 

  • Temple, S. A. & J. A. Wiens, 1989. Bird populations and environmental changes: can birds be bio-indicators? American Birds 43: 260–270.

    Google Scholar 

  • The Nature Conservancy (TNC). 2006. Key attributes and indicators for Illinois River conservation targets at The Nature Conservancy’s Emiquon Preserve. The Nature Conservancy, Peoria, IL. USA. [available on internet at www.uis.edu/emiquon/wp-content/uploads/sites/78/2013/04/KEA_Report_and_Analysis.pdf]

  • Tierney, G. L., D. Faber-Langendoen, B. R. Mitchell, W. G. Shriver & J. P. Gibbs, 2009a. Monitoring and evaluating the ecological integrity of forest ecosystems. Frontiers in Ecology and the Environment 7: 308–316.

    Article  Google Scholar 

  • Tierney, G. L., B. Mitchell, K. Miller, J. Comiskey, A. Kozlowski & D. Faber-Langendoen, 2009b. Long-term forest monitoring protocol: northeast temperate network. Natural Resource Report NPS/NETN/NRR–2009/117. National Park Service, Fort Collins, CO.

  • Tockner, K. & J. A. Stanford, 2002. Riverine flood plains: present state and future trends. Environmental Conservation 29: 308–330.

    Article  Google Scholar 

  • U.S. Fish & Wildlife Service (USFWS), 2014. Waterfowl population status, 2014. U.S. Department of the Interior, Washington, D.C., USA [available on internet at http://flyways.us/sites/default/files/uploads/statusreport2014_final_7-24-14.pdf]

  • van der Valk, A. G. & C. B. Davis, 1978. The role of seed banks in the vegetation dynamics of prairie glacial marshes. Ecology 59: 322–335.

    Article  Google Scholar 

  • Van Middlesworth, T. D., N. N., McClelland, G. G. Sass, A. F. Casper, T. W. Spier & M. J. Lemke, 2016. Fish community succession and biomanipulation to control two common aquatic ecosystem stressors during a large-scale floodplain lake restoration. Hydrobiologia. doi:10.1007/s10750-016-2696-8.

  • Webb, E. B., L. M. Smith, M. P. Vrtiska & T. G. Lagrange, 2010. Effects of local and landscape variables on wetland bird habitat use during migration through the Rainwater Basin. Journal of Wildlife Management 74: 109–119.

    Article  Google Scholar 

  • Weik, A. P. & R. A. Malecki, 1999. Survival of mallard ducklings, broods, and hens in western New York. Northeast Wildlife 54: 1–11.

    Google Scholar 

  • Weller, M. W. & L. H. Fredrickson, 1974. Avian ecology of a managed glacial marsh. Living Bird 12: 269–291.

    Google Scholar 

  • Yetter, A. P., J. D. Stafford, C. S. Hine, M. W. Bowyer, S. P. Havera & M. M. Horath, 2009. Nesting biology of mallards in west-central Illinois. Illinois Natural History Survey Bulletin 39: 1–38.

    Google Scholar 

  • Zar, J. H., 2009. Biostatistical Analysis, 5th ed. Prentice Hall, Upper Saddle River, NJ.

    Google Scholar 

  • Zimpfer, N. L., W. E. Rhodes, E. D. Silverman, G. S. Zimmerman & K. D. Richkus, 2012. Trends in duck breeding populations, 1955–2012. U.S. Fish and Wildlife Service Administrative Report.[available on internet at http://www.fws.gov/migratorybirds/Newreportspublications/PopulationStatus/Trends/2012_Trend_Report_final.pdf].

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Acknowledgments

We thank D. Blodgett, J. Walk, J. Beverlin, M. Lemke, T. Hobson, and others at the Nature Conservancy for supporting this project and allowing access to Emiquon Preserve; M. Cruce of Cruce Aviation for providing flight services; and several anonymous reviewers and guest editors M. Lemke, M. Lemke, and J. Walk for their helpful suggestions which have improved this manuscript. We thank The Nature Conservancy; Illinois Department of Natural Resources through Federal Aid in Wildlife Restoration; and the Illinois Natural History Survey of the Prairie Research Institute at the University of Illinois at Urbana-Champaign for providing funding and in-kind support.

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Correspondence to Heath M. Hagy.

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Guest editors: Michael J. Lemke, A. Maria Lemke & Jeffery W. Walk / Large-Scale Floodplain Restoration in the Illinois River Valley

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Hagy, H.M., Hine, C.S., Horath, M.M. et al. Waterbird response indicates floodplain wetland restoration. Hydrobiologia 804, 119–137 (2017). https://doi.org/10.1007/s10750-016-3004-3

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