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A holistic approach to ecosystem health assessment using fish population characteristics

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Abstract

The status of a fish population is a reflection of the overall condition of the aquatic environment in which that population resides. As such, fish population characteristics can be used as indicators of environmental health. Simple and inexpensive methods to follow fish population responses to environmental degradation are lacking. This paper outlines a protocol whereby environmental impacts on fish populations are classified by five patterns based on characteristics such as mean age, fecundity and condition factor. The patterns summarize population changes and describe responses to exploitation, recruitment failure, the presence of multiple stressors, food limitation and niche shifts. Classification is best based on the selection, and appropriate sampling, of a comparable reference population. Population characteristics can be used to examine ecosystems exposed to stressors for evidence of long-term damage, and when used with biochemical indicators, can be a powerful tool for ecosystem health assessment. The five responses are illustrated using published data on a number of species challenged by increased predation pressure, acidification, eutrophication, mine waste and reservoir impoundment. Application of this scheme will aid in directing and focusing research efforts on crucial aspects impacted by changing conditions.

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References

  • Adams, G. F. & C. H. Olver, 1977. Yield properties and structure of boreal percid communities in Ontario. J. Fish. Res. Bd. Can. 34: 1613–1625.

    Google Scholar 

  • Anderson, R. O. & A. S. Weithman, 1978. The concept of balance for coolwater fish populations. Am. Fish. Soc. Spec. Publ. 11: 371–381.

    Google Scholar 

  • Barnes, M. A., G. Power & R. G. H. Downer, 1984. Stress-related changes in lake whitefish (Coregonus clupeaformis) associated with a hydroelectric control structure. Can. J. Fish. Aquat. Sci. 41: 1528–1533.

    Google Scholar 

  • Beggs, G. L. & J. M. Gunn, 1986. Response of lake trout (Salvelinus namaycush) and brook trout (S. fontinafs) to surface water acidification in Ontario. Wat. Air Soil Pollut. 30: 711–717.

    Google Scholar 

  • Black, J. J., E. D. Evans, J. C. Harshbarger & R. F. Ziegel, 1985. Epizootic neoplasms in fishes from a lake polluted by copper mining wastes. J. Nat. Cancer Inst. 69: 915–926.

    Google Scholar 

  • Bodaly, R. A. & L. F. W. Lesack, 1984. Response of a boreal Northern pike (Esox lucius) population to lake impoundment: Wupaw Bay, Southern Indian Lake, Manitoba. Can. J. Fish. Aquat. Sci. 41: 706–714.

    Google Scholar 

  • Breggazi, P. R. & C. R. Kennedy, 1982. The response of perch, Perca fluviatilis L., population to eutrophication and associated changes in fish fauna in a small lake. J. Fish Biol. 20: 21–31.

    Google Scholar 

  • Burrough, R. J. & C. R. Kennedy, 1979. The occurrence and natural alleviation of stunting in a population of roach, Rutilus rutilus (L.). J. Fish Biol. 15: 93–109.

    Google Scholar 

  • Cairns, V. W., P. V. Hodson & J. O. Nriagu, 1984. Contaminant Effect on Fisheries, Advance. Envir. Sci. Technol. 16: 1–333.

    Google Scholar 

  • Colby, P. J., 1984. Appraising the status of fisheries: rehabilitation techniques. In: V. W. Cairns, P. V. Hodson and J. O. Nriagu (eds.), Contaminant Effects on Fisheries. Adv. Envir. Sci. Technol. 16: 233–257.

  • Colby, P. J. & S. J. Nepszy, 1981. Variation among stocks of walleye (Stizostedion vitreum vitreum): management implications. Can. J. Fish Aquat. Sci. 38: 1814–1831.

    Google Scholar 

  • Donald, D. B. & D. J. Alger, 1986a. Stunted lake trout (Salvelinus namaycush) from the Rocky Mountains. Can. J. Fish. Aquat. Sci. 43: 608–612.

    Google Scholar 

  • Donald, D. B. & D. J. Alger, 1986b. Dynamics of unexploited and lightly exploited populations of rainbow trout (Salmo gairdneri) from coastal, montane, and subalpine lakes in western Canada. Can. J. Fish. Aquat. Sci. 43: 1733–1741.

    Google Scholar 

  • Dutton, M. D., H. S. Majewski & J. F. Klaverkamp, 1988. Biochemical stress indicators in fish from lakes near a metal smelter. Internat. Assoc. Great Lakes Res., 31st Conf, May 17, 1988, Hamilton, Ontario, p. A-14.

  • Elliott, J. M., 1985. Population regulation for different lifestages of migratory trout, Salmo trutta in a Lake District stream, 1966–83. J. Anim. Ecol. 54: 617–638.

    Google Scholar 

  • Erikson, M. O. G. & B. Tengelin, 1987. Short-term effects of liming on perch, Perca fluviatifs populations in acidified lakes in South-west Sweden. Hydrobiologia 146: 187–191.

    Google Scholar 

  • Evans, D. O., 1978. An overview of the ecology of the lake whitefish, Coregonus clupeaformis (Mitchill) in Lake Simcoe, Ontario with special reference to water quality and introduction of the rainbow smelt, Osmerus mordax (Mitchill). Ont. Min. Nat. Res. file rept., 132 pp.

  • George, C. J., 1977. The implication of neuroendocrine mechanisms in the regulation of population character. Fisheries 2(3): 14–19.

    Google Scholar 

  • German, M. J., 1971. Effects of acid mine wastes on the chemistry and ecology of lakes in the Manitouwadge chain district of Thunder Bay, Ont. Water Res. Comm., Spec. Rept., Ont. Min. Env., Thunder Bay, Ontario, 19 pp.

    Google Scholar 

  • Handford, P., G. Bell & T. Reimchen, 1977. A gillnet fishery considered as an experiment in artificial selection. J. Fish. Res. Bd. Can. 34: 954–961.

    Google Scholar 

  • Hanson, J. M. & W. C. Leggett, 1986. Effect of competition between two freshwater fishes on prey consumption and abundance. Can. J. Fish. Aquat. Sci. 43: 1363–1372.

    Google Scholar 

  • Hassler, T. J., 1969. Biology of the northern pike in Oahe reservoir, 1959 through 1965. U.S. Fish Wildl. Serv. Tech. Paper 29, 13 pp.

  • Healey, M. C., 1975. Dynamics of exploited whitefish populations and their management with special reference to the Northwest Territories. J. Fish. Res. Bd. Can. 32: 427–448.

    Google Scholar 

  • Henderson, B. A., 1986. Effects of sea lamprey (Petromyzon marinus) parasitism on the abundance of white sucker (Catostomus commersoni) in South Bay, Lake Huron. J. Appl. Ecol. 23: 381–389.

    Google Scholar 

  • Jensen, A. L., 1981. Population regulation in lake whitefish, Coregonus clupeaformis (Mitchell). J. Fish Biol. 19: 557–573.

    Google Scholar 

  • Jensen, A. L., 1985. Relations among net reproductive rate and life history parameters for lake whitefish (Coregonus clupeaformis). Can. J. Fish. Aquat. Sci. 42: 164–168.

    Google Scholar 

  • Johnson, F. H., 1975. Interspecific relationships of walleye, white sucker and associated species in a Northeastern Minnesota lake, with an evaluation of white sucker removal for increased walleye yield. Minn. Dept. Nat. Res., Div. Fish Wildl., Sect. Fisheries Investig. Rept. No. 338. 19 pp., Duluth, MN.

  • Johnson, L., 1976. Ecology of Arctic populations of lake trout, Salvelinus namaycush, lake whitefish, Coregonus clupeaformis, Arctic char, Salvelinus alpinus, and associated species in unexploited lakes of the Canadian Northwest Territories. J. Fish. Res. Bd. Can. 33: 2459–2488.

    Google Scholar 

  • Lysack, W., 1980. Lake Winnipeg fish stock assessment program. Manitoba Dept. Nat. Res. rep. No. 80-30, 118 pp.

  • Martin, N. V., 1951. A study of the lake trout, Salvelinus namaycush, in two Algonquin Park, Ontario, lakes. Trans. Am. Fish. Soc. 81: 111–137.

    Google Scholar 

  • Martin, N. V., 1955. Limnological and biological observations in the region of the Ungava or Chubb Crater, Province of Quebec. J. Fish. Res. Bd. Can. 12: 487–498.

    Google Scholar 

  • Martin, N. V., 1970. Long-term effects of diet on the biology of the lake trout and the fishery in Lake Opeongo, Ontario. J. Fish. Res. Bd. Can. 27: 125–146.

    Google Scholar 

  • McFarlane, G. A. & W. G. Franzin, 1978. Elevated heavy metals: a stress on a population of white suckers, Catostomus commersoni, in Hamell Lake, Saskatchewan. J. Fish. Res. Bd. Can. 35: 963–970.

    Google Scholar 

  • McFarlane, G. A. & W. G. Franzin, 1980. An examination of Cd, Cu, and Hg concentrations in livers of Northern pike, Esox lucius, and white sucker, Catostomus commersoni, from five lakes near a base metal smelter at Flin Flon, Manitoba. Can. J. Fish. Aquat. Sci. 37: 1573–1578.

    Google Scholar 

  • Mills, K. H., 1985. Responses of lake whitefish (Coregonus clupeaformis) to fertilization of Lake 226, the Experimental Lakes Area. Can. J. Fish. Aquat. Sci. 42: 129–138.

    Google Scholar 

  • Munkittrick, K. R. & D. G. Dixon, 1988a. Evidence for a maternal yolk factor associated with increased tolerance and resistance of feral white sucker (Catostomus commersoni) to waterborne copper. Ecotox. Envir. Safety 15: 7–20.

    Google Scholar 

  • Munkittrick, K. R. & D. G. Dixon, 1988b. Growth, fecundity and energy stores of white sucker (Catostomus commersoni) from lakes containing elevated levels of copper and zinc. Can. J. Fish. Aquat. Sci. 45: 1355–1365.

    Google Scholar 

  • Munkittrick, K. R. & D. G. Dixon, 1988c. The use of white sucker (Catostomus commersoni) populations to assess the health of aquatic ecosystems exposed to low-level contaminant stress. Can. J. Fish. Aquat. Sci. in press.

  • Munkittrick, K. R. & D. G. Dixon, 1988d. In situ assessment of mixed copper and zinc impacts on white sucker populations in the Manitouwadge chain of lakes. Final Report, Ont. Min. Environ., Project 193RR, Rexdale, Ontario, 240 pp.

  • Munkittrick, K. R. & J. F. Leatherland, 1984. Abnormal pituitary-gonad function in feral populations of goldfish suffering epizootics of an ulcerative disease. J. Fish. Dis. 7: 433–447.

    Google Scholar 

  • Nelson, W. R., 1974. Age, growth and maturity of thirteen species of fish from Lake Oahe during the early years of impoundment, 1963–1968. U.S. Fish Wildl. Serv. Tech. Paper 77, 29 pp.

  • NRCC, 1985. The role of biochemical indicators in the assessment of ecosystem health — their development and validation. Publ. No. NRCC 24371, Ottawa, 119 p.

  • Persson, L., 1986. Effects of reduced interspecific competition on resource utilization in perch (Perca fluviatilis). Ecology 67: 355–364.

    Google Scholar 

  • Persson, L., 1987. The effect of resource availability and distribution on size class interactions in perch, Perca fluviatilis. Oikos 48: 48–160.

    Google Scholar 

  • Power, G. & J. Gregoire, 1978. Predation by freshwater seals on the fish community of Lower Seal Lake, Quebec. J. Fish. Res. Bd. Can. 35: 844–850.

    Google Scholar 

  • Pugh, D. M. & L. W. Maki, 1986. Benthic communities in the Manitouwadge Lakes chain, 1975. Tech. Support Section, Ont. Min. Env., NW Region, Thunder Bay, Ontario, 10 pp.

  • Reimers, N., 1958. Conditions of existence, growth and longevity of brook trout in a small, high-altitude lake of eastern Sierra Nevadas. Calif. Fish. Game 44: 319–333.

    Google Scholar 

  • Reimers, N., 1979. A history of stunted brook trout population in an alpine lake: a lifespan of 24 years. Calif. Fish. Game 65: 196–215.

    Google Scholar 

  • Rosseland, B. O., 1986. Ecological effects of acidification on tertiary consumers. Fish population responses. Wat. Air Soil Pollut. 30: 451–460.

    Google Scholar 

  • Ryder, R. A. & C. J. Edwards, 1985. A conceptual approach for the application of biological indicators of ecosystem quality in the Great Lakes basin. Great Lakes Fish. Comm., Internat. Joint Comm., Windsor, Ontario, 169 pp.

    Google Scholar 

  • Schiavone, A., 1981. Decline of the walleye population in Black Lake. N.Y. Fish Game J. 28: 68–72.

    Google Scholar 

  • Schiavone, A., 1983. The Black Lake fish community: 1931 to 1979. N.Y. Fish Game J. 30: 78–90.

    Google Scholar 

  • Schindler, D. W., 1987. Detecting ecosystem responses to anthropogenic stress. Can. J. Fish. Aquat. Sci. 44 (Suppl. 1): 6–25.

    Google Scholar 

  • Schneider, J. C. & J. H. Leach, 1977. Walleye (Stizostedion vitreum vitreum) fluctuations in the Great Lakes and possible causes, 1800–1975. J. Fish. Res. Bd. Can. 34: 1878–1889.

    Google Scholar 

  • Sun, J. & H. H. Harvey, 1986. Population dynamics of yellow perch (Perca flavescens) and pumpkinseed (Lepomis gibbosus) in two acid-stressed lakes. Wat. Air Soil Pollut. 30: 711–717.

    Google Scholar 

  • Swanson, S. M., 1982. Levels and effects of radionuclides in aquatic fauna of the Beaverlodge area (Saskatchewan). Publ. C-806-5-E-82, Sask. Res. Council. 187 pp.

  • Trippel, E. A. & H. H. Harvey, 1987a. Abundance, growth and food supply of white suckers (Catostomus commersoni) in relation to lake morphometry and pH. Can. J. Zool. 65: 558–564.

    Google Scholar 

  • Trippel, E. A. & H. H. Harvey, 1987b. Reproductive responses of five white sucker (Catostomus commersoni) populations in relation to lake acidity. Can. J. Fish. Aquat. Sci. 44: 1018–1023.

    Google Scholar 

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Munkittrick, K.R., Dixon, D.G. A holistic approach to ecosystem health assessment using fish population characteristics. Hydrobiologia 188, 123–135 (1989). https://doi.org/10.1007/BF00027777

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