Plants as regional indicators of Great Lakes coastal wetland health

Authors

  • D. A. Albert Michigan State University Extension, Michigan Natural Features Inventory, Mason Building, 530 W., Allegan St., Lansing, MI 48909-7944l; Fax: 517-373-6705; E-mail: AlbertD@michigan.gov
  • L. D. Minc Phoenix Memorial Laboratory, University of Michigan, Ann Arbor, MI 48109-2100; E-mail: leahminc@umich.edu

Keywords:

classification, biological integrity, Laurentian Great Lakes

Abstract

In this paper we explore the potential for developing plant-based indicators for key dimensions of wetland stress, including 1) hydrologic flow modification (through water-level regulation and diking), 2) water quality degradation (through nutrient loading and sedimentation), and 3) ecological structural breakdown or physical degradation. Based on a review of the literature, we identify species or species groups that potentially function as indicators of individual dimensions of anthropogenic stress and propose floristic metrics for monitoring wetland health. We then examine the utility of these metrics for evaluating wetland disturbance at both regional and local scales, utilizing a database of wetland sites spanning the entire U.S. Great Lakes shoreline. We conclude that multiple dimensions of wetland disturbance can be measured based on coverage values of key aquatic plants.

References

Albert, D. A., Reese, G., Crispin, S., Wilsmann, L. A. and Ouwinga, S. J. 1987. A survey of Great Lakes marshes in Michigan's Upper Peninsula, Lansing, MI: Michigan Natural Features Inventory.

Albert, D. A., Reese, G., Crispin, S., Penskar, M. R., Wilsmann, L. A. and Ouwinga, S. J. 1988. A survey of Great Lakes marshes in the southern half of Michigan's Lower Peninsula, Lansing, MI: Michigan Natural Features Inventory.

Albert, D. A., Reese, G., Penskar, M. R., Wilsmann, L. A. and Ouwinga, S. J. 1989. A survey of Great Lakes marshes in the northern half of Michigan's Lower Peninsula and throughout Michigan's Upper Peninsula, Lansing, MI: Michigan Natural Features Inventory.

Albert, D. A. and Minc, L. D. 2001. Abiotic and floristic characterization of Laurentian Great Lakes' coastal wetlands. Verh.. Internat. Verein. Limnol., 27: 3413–3419.

Barko, J. W., Smart, R. M., Mathews, M. S., Hardin, D. G., 1982. Sediment-submersed macrophyte relationships in freshwater systems. Tech. Report A-82-3, U.S. Army Engineer Waterways Experiment Station, Vicksburg, MS.

Barko, J. W., Adams, M. S. and Clesceri, N. L. 1986. Environmental factors and their consideration in the management of submersed aquatic plants. J. Aquat. Plant Manage., 24: 1–10.

Bosley, T. R. 1978. Loss of wetlands on the west shore of Green Bay. Wisc. Acad. Sci. Arts Lett., 66: 235–245.

Bosserman, R. W. 1985. “Distribution of heavy metals in aquatic macrophytes from Okefenokee swamp”. In Heavy Metals in Water Organisms, Edited by: Salánki, J. pp. 31–40. Budapest, Hungary: Akadémiai Kiadó.

Burton, T. M., Uzarski, D. G., Gathman, J. P., Genet, J. A., Keas, B. E. and Stricker, C. A. 1999. Development of a preliminary invertebrate index of biotic integrity for Lake Huron coastal wetlands. Wetlands, 19: 869–882.

Busch, W. D. and Lewis, C. N. 1984. Responses of wetland vegetation to water level variations in Lake Ontario. Proceedings of the Third Annual Conference on Lake and Reservoir Management. N. Amer. Lake Manage. Soc., : pp. 519–523. U.S. EPA Washington D.C.

Carter, V. and Rybicki, N. B. 1985. The effects of grazers and light penetration on the survival of transplants of Vallisneria americana Michx. in the tidal Potomac River. Maryland. Aquat. Bot., 23: 197–213.

Casselman, J. M. and Lewis, C. A. 1996. Habitat requirements of northern pike (Esox lucius). Can. J. Fish. Aquat. Sci., 53(Suppl. 1): 161–174.

Chow-Fraser, P. 1998. A conceptual model to aid restoration of Cootes Paradise Marsh, a degraded coastal wetland of Lake Ontario. Canada. Wetl. Ecol. Manage., 6: 43–57.

Chow-Fraser, P., Albert, D. A., 1998. Biodiversity Investment Areas: CoastalWetlands Ecosystems. Identification of “Eco-reaches” of Great Lakes Coastal Wetlands that have high biodiversity value. A discussion paper for the State of the Lakes Ecosystem Conference, 1998. U.S. EPA, Chicago, IL and Environment Canada, Burlington, ON.

Crivelli, A. J. 1983. The destruction of aquatic vegetation by carp.. Hydrobiol., 106: 37–41.

Estabrook, G. F., Burk, D. W., Inman, D. R., Kaufman, P. B., Wells, J. R., Jones, J. D. and Ghosheh, N. 1980. Comparison of heavy metals in aquatic plants on Charity Island, Saginaw Bay, Lake Huron, USA, with plants along the shoreline of Saginaw Bay. Am. J. Bot., 72: 209–216.

Fahnenstiel, G. L., Bridgeman, T. B., Lang, G. A., McCormick, M. J. and Nalepa, T. F. 1995. Phytoplankton productivity in Saginaw Bay, Lake Huron: Effects of zebra mussel (Dreissena polymorpha) colonization. J. Great Lakes Res., 21(4): 465–475.

Francis, G. R., Magnuson, J. J., Regier, H. A., Talhelm, D. R. (Eds.), 1979. Rehabilitating Great Lakes Ecosystems. Great Lakes Fishery Commission, Tech. Rep. No. 37.

Geis, J. W. 1979. Shoreline processes affecting the distribution of wetland habitat. Trans. N. Amer. Wildlife Nat. Res. Conference, 44: pp. 529–542.

Gernes, M. and Helgen, J. C. 1999. Indexes of biotic integrity (IBI) for wetlands: Vegetation and invertebrate IBIs. Final Report to U.S. EPA, Assistance Number CD995525–01, St. Paul, MN: Minnesota Pollution Control Agency, Environmental Outcomes Division.

Greger, M. and Kautsky, L. 1991. Effects of Cu, Pb and Zn on two Potamogeton species grown under field conditions. Vegetatio, 97: 173–184.

Harris, H. J., Fewless, G., Milligan, M. and Jownson, W. 1981. “Recovery processes and habitat quality in a freshwater coastal marsh following a natural disturbance”. In Selected Proceedings of the Midwest Conference on Wetland Values and Management, Edited by: Richardson, B. pp. 363–379. St. Paul, MN: Minnesota Water Planning Board.

Herdendorf, C. E. 1987. The ecology of the coastal marshes of western Lake Erie: A community profile. U.S. Fish and Wildlife Biol. Rep., 85(7.9)

Herdendorf, C. E., 1983. Lake Erie water quality 1970–1982: A management assessment. Cent. Lake Erie Area Res. Tech. Rep. 298. Ohio State Univ., Columbus, OH.

Herdendorf, C. E., Rathke, D. E., Larson, D. D. and Fay, L. A. 1977. “Suspended sediment and plankton relationships in Maumee River and Maumee Bay of Lake Erie”. In Geobotany, Edited by: Romans, R. C. pp. 247–282. New York, NY: Plenum Press.

Jaworski, E. and Raphael, C. N. 1976. Modification of coastal wetlands in southeastern Michigan and management alternatives. Mich. Acad., 8: 303–317.

Jaworski, E., Raphael, C. N., Mansfield, P. J., Williamson, B. B., 1979. Impact of Great LakesWater Level Fluctuations on Coastal Wetlands. U.S.D.I. Office of Water Resources and Technology, Contract Report 14-0001-7163. Institute of Wetland Research, Michigan State University, East Lansing.

Karr, J. R. 1981. Assessment of biotic integrity using fish communities. Fisheries, 6(6): 21–27.

Karr, J. R. and Chu, E. W. 1997. Biological monitoring and assessment using multimetric indexes effectively, Seattle, WA: University of Washington. EPA-235-R97–001. U.S. EPA

Karr, J. R., Fausch, K. D., Angermeier, P. L., Yant, P. R., Schlosser, I. J., 1986. Assessing Biological Integrity in Running Waters: A Method and its Rationale. Illinois Natural History Survey. Special Publ. 5, Champaign, Ill., USA.

Kashian, D. R. and Burton, T. M. 2000. A comparison of macroinvertebrates of two Great Lakes coastal wetlands: testing potential metrics for an index of ecological integrity. J. Great Lakes Res., 26(4): 460–481.

Keddy, P. A. 1989. Competition, London: Chapman and Hall.

Keddy, P. A. 1992. “Water level fluctuations and wetland conservation”. In Wetlands of the Great Lakes: Protection, Restoration, Policies and Status of the Science Edited by: Kusler, J. and Smardon, R. pp. 79–91. Niagara Falls, NY Proceedings of the International Wetland Symposium, May 16–19, 1990

Keough, J. 1987. Response by Scirpus validus to the physical environment and consideration of its role in a Great Lakes estuarine system, Milwaukee: Univ. of Wisconsin. Ph.D. thesis

Keough, J. R. 1992. “The range of water level changes in a Lake Michigan estuary and effects on wetland communities”. In Wetlands of the Great Lakes: Protection, Restoration, Policies and Status of the Science Edited by: Kusler, J. and Smardon, R. p. 97–110. Niagara Falls, NY Proceedings of the International Wetland Symposium, May 16–19, 1990

Kimbel, J. C. 1982. Factors influencing potential intralake colonization by Myriophyllum spicatum. L. Aquat. Bot., 14: 295–307.

Lewis, M. A. and Wang, W. 1999. “Biomonitoring using aquatic vegetation”. In Biomonitoring of Polluted Water, Edited by: Gerhardt, A. pp. 243–273. Zurich, Switzerland: Environmental Research Forum vol. 9. Trans Tech Publications.

Lyon, J. G., Drobney, R. D. and Olson, C. E. Jr. 1986. Effects of Lake Michigan water levels on wetland soil chemistry and distribution of plants in the Straits of Mackinac. J. Great Lakes Res., 12: 175–183.

Manny, B. A., Nichols, S. J. and Schloesser, D. W. 1991. Heavy metals in aquatic macrophytes drifting in a large river. Hydrobiol., 219: 333–344.

Minc, L. D., 1997a. Great Lakes coastal wetlands: An overview of abiotic factors affecting their distribution, form, and species composition. A report in 3 parts. Michigan Natural Features Inventory, Lansing, MI.

Minc, L. D. 1997b. Vegetative response in Michigan's Great Lakes marshes to Great Lakes water-level fluctuations. Michigan Natural Features Inventory Lansing, MI

Minc, L. D. and Albert, D. A. 1998. Great Lakes coastal wetlands: Abiotic and floristic characterization, Lansing, MI: Michigan Natural Features Inventory.

Nalepa, T. F., Fahnenstiel, G. L. and Johengen, T. H. 1999. “Impacts of the zebra mussel (Dreissena polymorpha) on water quality: A case study in Saginaw Bay, Lake Huron”. In Non-Indigenous Freshwater Organisms in North America: Their Biology and Impact, Edited by: Claudi, R. and Leach, J. H. pp. 255–271. Boca Raton, FL: CRC Press, Lewis Publishers.

Niemeier, P. E. and Hubert, W. A. 1986. The 85-year history of the aquatic macrophyte species composition in a eutrophic prairie lake (United States). Aquat. Bot., 25: 83–89.

Patterson, N. J. and Whillans, T. H. 1985. “Human interference with natural water level regimes in the context of other cultural stresses on Great Lakes wetlands”. In Coastal Wetlands, Edited by: Prince, H. H. and D'Itri, F. M. pp. 209–251. Chelsea, MI: Lewis Press.

Phillips, D. J. H. 1978. Use of biological indicator organisms to quantitate organochlorine pollutants in aquatic environments—a review. Environ. Pollut., 16: 167–229.

Potter, K. and Lovett-Doust, L. 1997. Vallisneria americana (American wild celery) as a biomonitor of site quality in the Great Lakes “Areas of Concern.”. Am. J. Bot., 84(6) abstract

Reimer, P. and Duthie, H. C. 1993. Concentations of zinc and chromium in aquatic macrophytes from the Sudbury and Muskoka regions of Ontario, Canada. Environ. Pollut., 79: 261–265. http://dx.doi.org/10.1016/0269-7491%2893%2990098-9http://www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=Retrieve&db=pubmed&dopt=Abstract&list_uids=15091887http://www4.infotrieve.com/newmedline/detail.asp?NameID=15091887&Session=&searchQuery=Environ%2E+Pollut%2E%5BJournal+Name%5D+AND+79%5BVolume%5D+AND+261%5BPage+Number%5D+AND+1993%5BPublication+Date%5D+AND+Reimer%5BAuthor+Name%5D&count=1

Robb, D. M. 1989. Diked and undiked freshwater coastal marshes of western Lake Erie, Columbus, OH: Ohio State University. M. S. thesis

Rorslett, B., Berge, D. and Johansen, S. W. 1986. Lake enrichment by submersed macrophytes: A Norwegian whole-lake experience with Elodea canadensis. Aquat. Bot., 26: 325–340.

Sager, E. P. S., Whillans, T. H. and Fox, M. G. 1998. Factors influencing the recovery of submersed macrophytes in four coastal marshes of Lake Ontario. Wetlands, 18(2): 256–265.

Scheffer, M., Redelijkheid, M. R. and Noppert, F. 1992. Distribution and dynamics of submerged vegetation in a chain of shallow eutrophic lakes. Aquat. Bot., 42: 199–216.

Simon, T. P., Stewart, P. M. and Rothrock, P. E. 2001. Development of multimetric indices of biotic integrity for riverine and palustrine wetland plant communities along southern Lake Michigan. Aquat. Ecosys. Health Manage, 4(3): 293–309.

Srivastava, D. A., Staicer, C. A. and Freedman, B. 1995. Aquatic vegetation of Nova Scotian lakes differing in acidity and trophic status. Aquat. Bot., 51: 181–196.

Stewart, P. M. 1995. “Use of algae in aquatic pollution assessment”. In Nat. Areas J. 234–239.

Stewart, P. M., Butcher, J. T. and Simon, T. P. 2003. “Response signatures of four biological indicators to an iron and steel industrial landfill”. In Biological Response Signatures, Edited by: Simon, T. P. pp. 419–444. New York, NY: CRC Press.

Stewart, P. M., Scribailo, R. W. and Simon, T. P. 1999. “The use of aquatic macrophytes in monitoring and in assessment of biological integrity”. In Biomonitoring of Polluted Water, Edited by: Gerhardt, A. pp. 275–302. Zurich, Switzerland: Environmental Research Forum vol. 9. Trans Tech Publications.

Stuckey, R. L. 1975. A floristic analysis of the vascular plants of a marsh at Perry's Victory Monument. Lake Erie. Mich. Bot., 14: 144–166.

Stuckey, R. L., 1989. Western Lake Erie aquatic and wetland vascular plant flora: its origin and change. In: Lake Erie Estuarine Systems: Issues, Resources, Status, and Management, pp. 205–256. NOAA Estuary-of-the-Month Seminar Series No. 14. U.S. Department of Commerce, National Oceanic and Atmospheric Administration. Washington, D.C.

Toivonen, H. and Huttunen, P. 1995. Aquatic macrophytes and ecological gradients in 57 small lakes in southern Finland. Aquat. Bot., 51: 197–221.

Tubea, B., Hawxby, K. and Mehta, R. 1981. The effects of nutrients, pH and herbicide levels on algal growth. Hydrobiol., 79: 221–227.

U.S. Army Corps of Engineers, 1987. Great Lakes Water Level Facts. U.S. Army Corps of Engineers, Detroit District, Detroit, MI.

U.S. Army Corps of Engineers, 1997. Frequently Asked Questions. Great Lakes Update 128. U.S. Army Corps of Engineers, Detroit District, Detroit, MI.

van der Valk, A. G. 1981. Succession in wetlands: A Gleasonian approach. Ecol., 62: 688–696.

van Dijk, G. M. and van Vierssen, W. 1991. Survival of a Potamogeton pectinatus L. population under various light conditions in a shallow eutrophic lake (Lake Veluwe) in The Netherlands. Aquat. Bot., 39: 121–129. http://dx.doi.org/10.1016/0020-0190%2891%2990106-R

Wells, J. R., Kaufman, P. B. and Jones, J. D. 1980. “Heavy metal contents in some macrophytes from Saginaw Bay (Lake Huron, U.S.A.)”. In Aquat. Bot. 185–193.

Wilcox, D. A., Meeker, J. E., Elias, J., 1993. Impacts of water-level regulation on wetlands of the Great Lakes. Phase 2 Report to Working Committee 2, International Joint Commission, Great Lakes Water Level Reference Study, Natural Resources Task Group.

Williams, D. C. and Lyon, J. G. 1997. Historical aerial photographs and a geographic information system (GIS) to determine effects of long-term water level fluctuations on wetlands along the St. Marys River, Michigan, USA. Aquat. Bot., 58: 363–378.

Yoder, C. O. and Rankin, E. T. 1995. “Biological criteria program development and implementation in Ohio”. In Biological Assessment and Criteria: Tools for Water Resource Planning and Decision Making, Edited by: Davis, W. S. and Simon, T. P. pp. 109–144. Boca Raton, FL: Lewis Publishers.

Published

2004-04-01