Limnological characteristics of Canada's poorly known large lakes
Keywords:
regions, morphometry, chemistry, modelsAbstract
Canada holds several of the world's large lakes (⩾100 km2). Many of these lakes, apart from the largest like the Great Lakes, are almost unknown beyond their location and area. This study documents a recent compilation and analyses of some key limnological features of these lakes: drainage area, lake area, maximum and mean depth, pH, Secchi depth, and total dissolved solids. The analyses showed the relationships among these features and with their primary watershed and ecozone assignments. Lake area and maximum depth were good predictors of some of the other lake variables. Ecozone was generally a better predictor than primary watershed of regional variation in lake variables with lake area or maximum depth as a covariate scaling for lake size. To enable regional impact assessments of cumulative environmental pressures of Canada's large lakes, these predictive regression models provide a stop-gap means for estimating key lake characteristics when data are missing. However, as cumulative pressures increase, Canada needs to increase efforts to undertake limnological inventories and learn more first hand about these poorly known lakes.
References
Anderson, D. R. 2008. Model Based Inference in the Life Sciences: A Primer on Evidence, New York, New York: Springer Science+Business Media.
Bennett, E. M., Carpenter, S. R., Peterson, G. D., Cumming, G. S., Zurek, M. and Pingali, P. 2003. Why global scenarios need ecology. Front. Ecol. Environ., 1: 322–329.
Chu, C., Minns, C. K. and Mandrak, N. E. 2003. Comparative regional assessment of factors impacting freshwater fish biodiversity in Canada. Can. J. Fish. Aquat. Sci., 60: 624–634.
Costanza, R., Graumlich, L., Steffen, W., Crumley, C., Dearing, J., Hibbard, K., Leemans, R., Redman, C. and Schimel, D. 2007. Sustainability or collapse: what can we learn from integrating the history of humans and the rest of nature?. Ambio, 36: 522–527.
Downing, J. A., Prairie, Y. T., Cole, J. J., Duarte, C. M., Tranvik, L. J., Striegl, R. G., McDowell, W. H., Kortelainen, P., Caraco, N. F., Melack, J. M. and Middelburg, J. J. 2006. The global abundance and size distribution of lakes, ponds, and impoundments. Limnol. Oceanogr., 51: 2388–2397.
Duinker, P. N. and Grieg, L. A. 2006. The impotence of cumulative effects assessment in Canada: ailments and ideas for redeployment. Env. Managem., 37: 153–161.
Ecological Stratification Working Group. 1996. A National Ecological Framework for Canada copy available from http://www.ec.gc.ca/soer-ree/English/Framework/framework.cfm.Pdfcansis/publications/ecostrat/intro.html Agriculture and Agri-Food Canada, Research Branch, Centre for Land and Biological Resources Research and Environment Canada, State of Environment Directorate, Ottawa/Hull. Map at scale 1:7.5 million
Minns, C. K. 2001. Science for freshwater fish and habitat management in Canada: current status. Aquatic Ecosystem Health and Management, 4: 423–436.
Minns, C. K., Moore, J. E., Shuter, B. J. and Mandrak, N. E. 2008. A preliminary analysis of some key characteristics of Canadian lakes. Can. J. Fish. Aquat. Sci., 65: 1763–1778.
Nicholson, H. F. and Moore, J. E. 1988. Bibliography on the limnology and fisheries of Canadian freshwaters No. 10 (Final cumulative edition), Vols. 1, 2, and 3. Can. Tech. Rpt. Fish. Aquat. Sci. 1600
Schindler, D. W. 2001. The cumulative effects of climate warming and other human stresses on Canadian freshwaters in the new millennium. Can. J. Fish. Aquat. Sci., 58: 18–29.
Systat Software. 2005. SYSTAT 11, Point Richmond, California, , USA: Systat Software Inc..
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