Phytoplankton ecology of a culturally eutrophic embayment: Hamilton Harbour, Lake Ontario
Keywords:
Algal blooms, taxonomy, biodiversity, Great Lakes, microscopyAbstract
Hamilton Harbour is a chronically eutrophic embayment located at the western end of Lake Ontario that has experienced many decades of agricultural, industrial, and urban contamination. It has been identified as an Area of Concern under the terms of the Great Lakes Water Quality Agreement between Canada and the United States. This study examines the ecology of the phytoplankton communities at one centrally located station during the ice-free period (May–October) of three non-consecutive years: 2002, 2004 and 2006. This was the first comprehensive study to be conducted since the 1970s. It was found that the phytoplankton communities are diverse and fluctuate throughout the year, along with changing nutrient, physical and environmental conditions. No consistent patterns of seasonal succession were observed throughout the study. Phytoflagellates including Cryptophyceae and Dinophyceae had a tendency to outnumber and out-compete other phytoplankton since they are mobile and able to seek out optimal habitats within the water column. For a highly eutrophic water body, algal biomass (annual mean ≈ 2.0 g m−3) was lower than expected and more consistent with mesotrophic conditions–an observation first made by researchers in the 1970s and attributed to the highly variable physical environment. While our study supports these earlier results, we also conclude that zooplankton grazing likely has a significant role in limiting the size of the algal standing crop. Several algal bloom events were captured during our study. In addition to the somewhat predictable blooms of Diatomeae in the spring and Cyanophyta in the summer, we also observed blooms of Cryptophyceae and Dinophyceae. In one case we observed a bloom with no dominant taxon–it contained a diverse mixture of Cryptophyceae, Euglenophyta and Dinophyceae–challenging the commonly held notion that algal blooms are essentially monocultures. Our results show that such a variable and stressed ecosystem requires frequent sampling to capture the rapid changes that occur.
References
Bowen, K., Currie, W.J.S., 2017. Elevated zooplankton production in a eutrophic Lake Ontario embayment: Hamilton Harbour 2002–2014. Aquat. Ecosyst. Health Mgmt. 20(3), 230– 241.
Brett, M.T., Kainz, M.J., Taipale, S.J., Seshan, H., 2009. Phytoplankton, not allochthonous carbon, sustains herbivorous zooplankton production. PNAS 106(50), 21197–21201.
Charlton, M.N., Le Sage, R., 1996. Water quality trends in Hamilton Harbour: 1987 to 1995. Water Qual. Res. J. Canada 31(3), 473–484.
City of Hamilton (Ontario, Canada), 2014. Hamilton Public Health Services 2014 Beach Monitoring Report.
Deng, J., Qin, B., Paerl, H.W., Zhang, Y., Wu, P., Ma, J., Chen, Y., 2014. Effects of nutrients, temperature and their interactions on spring phytoplankton community succession in Lake Taihu, China. PLoS ONE 9(12), e113960. doi:10.1371/journal.pone.0113960.
Flynn, K.J., Stoecker, D.K., Mitra, A., Raven, J.A., Glibert, P.M. Hansen P., Graneli, E., Burkholder, J.M., 2013. Misuse of the phytoplankton–zooplankton dichotomy: the need to assign organisms as mixotrophs within plankton functional types. J. Plankton Res. 35(1), 3–11.
Haffner, G.D., Harris, G.P., Jarai, M.K., 1980. Physical variability and phytoplankton communities. III. Vertical structure in Phytoplankton populations. Archiv. Hydrobiol. 89(3), 363–381.
Hall, J., O'Connor, K., Ranieri, J., 2006. Progress toward delisting a Great Lakes Area of Concern: the role of integrated research and monitoring in the Hamilton Harbour Remedial Action Plan. Env. Mon. Assmt. 113, 227–243.
Harris, G.P., Piccinin, B.B., 1980. Physical variability and phytoplankton communities: IV. Temporal changes in the phytoplankton community of a physically variable lake. Archiv. Hydrobiol. 89(3), 447–473.
Harris, G.P., Piccinin, B.B., Haffner, G.D., Snodgrass, W., Polak, J., 1980a. Physical variability and phytoplankton communities: I. The descriptive limnology of Hamilton Harbour. Archiv. Hydrobiol. 89(3), 303–327.
Harris, G.P., Haffner, G.D., Piccinin, B.B., 1980b. Physical variability and phytoplankton communities: II. Primary productivity by phytoplankton in a physically variable environment. Archiv. Hydrobiol. 89(3), 393–425.
Hiriart-Baer, V.P., Milne, J., Charlton, M.N., 2009. Water quality trends in Hamilton Harbour: two decades of change in nutrients and chlorophyll a. J. Great Lakes Res. 35, 293–301.
Hutchinson, 1961. The paradox of the plankton. Am. Nat. 95(882), 137–145.
International Joint Commission (IJC), 1987. Revised Great Lakes Water Quality Agreement of 1978: Agreement with Annexes and Terms of Reference between the United States and Canada signed at Ottawa, ON November 22, 1978 and Phosphorus Load Reduction Supplement signed October 16, 1983 as amended by protocol signed November 18, 1987. Windsor, ON, Canada.
Kane, D., Ludsin, S., Briland, R., Culver, D., Munawar, M., 2015a. Ten+ years gone: Continued degradation of offshore planktonic communities in U.S. waters of Lake Erie's western and central basins (2003–2013). J. Great Lakes Res. 41, 930–933.
Kane, D.D., Ludsin, S.A., Briland, R.D., Culver, D.A., Fitzpatrick, M., Rozon, R., Niblock, H., and Munawar, M., 2015b. Ten Years Gone: continued degradation of plankton communities in lakes Erie and Ontario. Paper Presented at the 2015 Conference on Great Lakes Research, Burlington, Vermont.
Lund, J.W.G., Kipling, C., Le Cren, E.D., 1958. The inverted microscope method of estimating algal numbers and the statistical basis of estimation by counting. Hydrobiologia 9, 143–170.
Munawar, M., Fitzpatrick, M., 2011. The application of Vollenweider's eutrophication models for assessing ecosystem health: Hamilton Harbour (Lake Ontario) example. Aquat. Ecosyst. Health Mgmt. 14(2), 204–208.
Munawar, M., Fitzpatrick, M., 2017. Microbial-Planktonic foodweb dynamics of a eutrophic Area of Concern: Hamilton Harbour. Aquat. Ecosyst. Health Mgmt. 20(3), 214–229.
Munawar, M., Munawar, I.F., 1975. Abundance and significance of phytoflagellates and nannoplankton in the St. Laurence Great Lakes. Verh. Internat. Verein. Limnol. 19, 705–723.
Munawar, M., Munawar, I.F., 1982. Phycological studies in Lakes Ontario, Erie, Huron and Superior. Can. J. Bot. 60, 1837–1858.
Munawar, M., Munawar, I.F., 1996. Phytoplankton dynamics in the North American Great Lakes: Lakes Ontario, Erie and St. Clair. Vol. 1. Ecovision World Series, SPB Academic Publishing, Amsterdam.
Munawar, M., Fitzpatrick, M., Munawar, I.F., Niblock, H., Kane, D. 2012. Assessing ecosystem health impairments using a battery of ecological indicators: Bay of Quinte, Lake Ontario example. Aquat. Ecosyst. Health Mgmt. 15(4), 430–441.
National Laboratory for Environmental Testing (NLET), 1997. Manual of Analytical Methods, Volume 3, Organics. The National Laboratory for Environmental Testing. Environment Canada, National Water Research Institute, Burlington, Ontario, NWRI Contribution No. 97-162.
Painter, D.S., Hampson, L., Millard, E.S., 1990. Hamilton Harbour water clarity response to nutrient abatement. Water Poll. Res. J. Can. 25(3), 351–358.
Pavlac, M., Smith, T., Thomas, S., Makarewicz, J., Edwards, W., Pennuto, C., Boyer, G., 2012. Assessment of phytoplankton distribution in the nearshore zone using continuous in situ fluorometry. J. Great Lakes Res. 38, 78–84.
Reynolds, C.S., Huszar, V., Kruk, C., Naselli-Flores, L., Melo, S., 2002. Towards a functional classification of the freshwater phytoplankton. J. Plankton Res. 24(5), 417–428.
Round, F.E. 1972. Stephanodiscus binderanus (Kütz.) Krieger or Melosira binderana Kütz. (Bacillarophyta, Centrales). Phycologia 11, 109–117.
Steffen, M., Belisle, B., Watson, S., Boyer, G., Wilhelm, S., 2014. Status, causes and controls of cyanobacterial blooms in Lake Erie. J. Great Lakes Res. 40, 214–225.
Strickland, J. D. H., Parsons, T.R., 1968. A practical handbook of seawater analysis. Bulletin of the Fisheries Research Board of Canada. Ottawa, Ontario, Canada.
Utermöhl, H., 1958. Zur vervolkommnung der quantitativen phytoplankton-methodik. (The improvement of quantitative phytoplankton methodology. In German.) Mitt. Internat. Verein. Limnol. 9, 1–38.
Vollenweider, R.A., Munawar, M., Stadelmann, P., 1974. A comparative review of phytoplankton and primary production in the Laurentian Great Lakes. J. Fish. Res. Board Can. 31, 739–762.
Yerubandi, R.R., Boegman, L., Bolkhari, H., Hiriart-Baer, V., 2016. Physical processes affecting water quality in Hamilton Harbour. Aquat. Ecosyst. Health Mgmt. 19(2), 114–123.
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