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Phytoplankton succession in the oligotrophic Lake Stechlin (Germany) in 1994 and 1995

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Abstract

Phytoplankton samples were taken weekly from January to December of 1994 (epilimnion) and 1995 (0–25 m, euphotic zone) from the deep, stratified, alkaline, oligotrophic Lake Stechlin, Baltic Lake District, Germany. The purpose of the study was to gain detailed information about phytoplankton changes including those of picophytoplankton, to relate these changes to stratification patterns and nutrient chemistry of the lake and to compare them to results from other lakes of similar character.

During 1994–1995, a total of 142 phytoplankton taxa was encountered in quantitative samples, most being common in deep, oligotrophic lakes. Seasonal development of phytoplankton is characterized by a definite spring peak followed by a moderate summer peak. Autotrophic picophytoplankton made the largest contribution to the annual total biomass. This is probably true for other, temperate, non-acidic, oligotrophic lakes.

Development of the spring assemblage (autotrophic picophytoplankton and centric diatoms) starts in February–March and is terminated by the onset of stratification when diatoms sink to the hypolimnion. Picophytoplankton, especially Synechococcus sp., assembles in a narrow deep-layer maximum in the upper hypolimnion.

Our data show that neither deep circulations nor decreased incident radiation under winter ice and snow cover prevent the development of some specially adapted low-light – high-nutrient species. Our views about the length of vegetation period for phytoplankton need to be revised with respect to winter and isothermal conditions.

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References

  • Allan, R. J., M. Dickmann, C. B. Gray & V. Cromie, 1994. The book of Canadian lakes. The Canadian Association on Water Quality, Monogr. ser. 3: 563–570.

    Google Scholar 

  • Blomquist, P., A. Pettersson & P. Hyenstrand, 1995. Ammonium-nitrogen: a key regulatory factor causing dominance of non-nitrogen-fixing cyanobacteria in aquatic systems. Arch. Hydrobiol. 132: 141–164.

    Google Scholar 

  • Carney, H. J., P. J. Richerson & P. Eloranta, 1987. Lake Titicaca (Peru/Bolivia) phytoplankton: Species composition and structural comparison with other tropical and temparate lakes. Arch. Hydrobiol. 110: 365–385.

    Google Scholar 

  • Casper, S. J. (ed.), 1985a. Lake Stechlin. A temperate oligotrophic lake. Dr. W. Junk Publ., Dordrecht, Boston, Lancaster.

  • Casper, S. J., 1985b. The phytoplankton. In Casper, S.J. (ed), 1985a. Lake Stechlin. A temperate oligotrophic lake. Dr. W. Junk Publ., Dordrecht, Boston, Lancaster: 157–195.

    Google Scholar 

  • Casper, P. & R. Koschel, 1995. Description of Lake Stechlin. Limnologica, Berlin 25: 281–284.

    Google Scholar 

  • Fängström, I. & E. Willén, 1987. Clustering and canonical correspondence analysis of phytoplankton and environmental variables. Vegetatio 71: 87–95.

    Google Scholar 

  • Hamilton, P. B. 1990. The revised edition of a computerized plankton counter for plankton, periphyton and sediment analyses. Hydrobiologia 194: 23–30.

    Article  Google Scholar 

  • Hecky, R. E., E. J. Fee, H. Kling & J. W. Rudd, 1978. Studies on the planktonic ecology of Lake Tanganyika. Can. Fish. mar. Serv. tech. Rep. 816, 51 pp.

  • ILEC, 1987–1989. Data book of world lake environments – a survey of the state of world lakes. ILEC and UNEP, Otsu.

    Google Scholar 

  • ILEC, 1995. Data book of world lake environments – a survey of the state of world lakes – 3. The Americas. ILEC and UNEP, Kusatsu.

    Google Scholar 

  • Ilmavirta, V., 1974. Diel periodicity in the phytoplankton community of the oligotrophic lake Pä äjärvi, southern Finland. I. Phytoplanktonic primary production and related factors. Ann. Bot. Fenn. 11: 136–177.

    Google Scholar 

  • Ilmavirta, V., 1975. Diel periodicity of phytoplankton community of the oligotrophic Lake Pä äjärvi, southern Finland. II. Late summer phytoplanktonic biomass. Ann. Bot. Fenn. 12: 37–44.

    Google Scholar 

  • Ilmavirta, V., 1981. The ecosystem of the oligotrophic Lake Pä äjärvi 1. Lake basin and primary production. Verh. int. Ver. Limnol. 21: 442–447.

    Google Scholar 

  • Jónasson, P. M., H. Adalsteinsson & G. St. Jónasson, 1992. Production and nutrient supply of phytoplankton in subarctic, dimictic Thingvallavatn, Iceland. Oikos 64: 162–187.

    Google Scholar 

  • Koschel, R., 1981. Bilanz der Primärproduktion des Phytoplanktons in den Gewässern des Stechlinseesystems. Limnologica, Berlin 13: 55–81.

    Google Scholar 

  • Koschel, R., 1985. The primary production of the phytoplankton. In Casper, S.J. (ed), 1985. Lake Stechlin: a temperate oligotrophic lake. Dr. W. Junk Publ., Dordrecht, Boston, Lancaster: 287–313.

    Google Scholar 

  • Koschel, R., 1995. Manipulation of whole-lake ecosystems and longterm limnological observation in the BrandenburgMecklenburg lake district, Germany. Int. Rev. ges. Hydrobiol. 80: 1–12.

    Google Scholar 

  • Koschel, R. & J. Casper, 1986. Die ökologische Bedeutung des Kernkraftwerkes I der DDR ‘Rheinsberg’ für den Stechlin. Biol. Rundschau 24: 179–195.

    Google Scholar 

  • Koschel, R., Mothes, G. & Casper, S. J., 1985. The nuclear power plant and its role in the life of Lake Stechlin. In Casper, S.J. (ed), 1985. Lake Stechlin: a temperate oligotrophic lake. Dr. W. Junk Publ., Dordrecht, Boston, Lancaster: 419–432.

    Google Scholar 

  • Krieger, 1927. Die Gattung Centronella Voigt. Ber. Deutsch. Bot. Ges. 45: 281–290.

    Google Scholar 

  • Krienitz, L. & W. Scheffler, 1994. The Selenastraceae of the oligotrophic Lake Stechlin (Brandenburg, Germany). Biologia, Bratislava, 49: 463–471.

    Google Scholar 

  • Küchler, L., 1981. Phytoplanktonuntersuchungen im Stechlinseegebiet in den Jahren 1973–1975. Limnologica, Berlin 13: 83–99.

    Google Scholar 

  • Küchler, L., 1982. Phytoplanktonuntersuchungen im Stechlin und im Nordbecken des Nehmitzsees. Limnologica, Berlin 14: 231– 241.

    Google Scholar 

  • Mothes, G., Koschel, R. & Proft, G., 1985. The chemical environment. In Casper, S.J. (ed), 1985. Lake Stechlin: a temperate oligotrophic lake. Dr. W. Junk Publ., Dordrecht, Boston, Lancaster, 87–128.

    Google Scholar 

  • Munawar, M. & I. F.Munawar, 1986. The seasonality of phytoplankton in the North American Great Lakes, a comparative synthesis. Hydrobiologia 138: 85–116.

    Article  Google Scholar 

  • Ólafsson, J., 1992. Chemical characteristics and trace elements of Thingvallavatn. OIKOS 64: 151–161.

    Google Scholar 

  • Padisák, J., R. Koschel, L. Krienitz & J. Nedoma, 1997. Deep layer autotrophic picophytoplankton maximum in the oligotrophic Stechlinsee, Germany: origin, activity, development and erosion. European J. Phycol. 32: 403–416.

    Article  Google Scholar 

  • Persson, G., H. Olsson, T. Wiederholm & E. Willén, 1989. Lake Vättern, Sweden: A 20year perspective. Ambio 18: 208–218.

    Google Scholar 

  • Ramberg, L., 1987. Phytoplankton succession in the Sanyati basin, Lake Kariba. Hydrobiologia 153: 193–202.

    Google Scholar 

  • Reinertsen, H., 1982. The effect of nutrient addition on the phytoplankton community of an oligotrophic lake. Holarctic Ecol. 5: 225–252.

    CAS  Google Scholar 

  • Rigler, 1974. Char Lake Project. PF2. Final Report. Can. Comm. Int. Biol. Progr., Toronto, 96 pp.

    Google Scholar 

  • Scheffler, W., 1994. Cyclotella pseudocomensis nov. spec. (Bacillariophyceae) aus norddeutschen Seen. Diatom Res. 9: 355–369.

    Google Scholar 

  • Scheffler, W. & J. Padisák, 1997a. Cyclotella tripartita (Bacillariophyceae), a dominant species in the oligotrophic Stechlinsee (Germany). Nova Hedw. 65: 221–232.

    Google Scholar 

  • Scheffler, W. & J. Padisák, 1997b. Cyclotella tripartita, eine für Deutschland neue Diatomee des Planktons. DGL Jahrestagung, Wissenschaftliche Kurzreferaten, Schwedt/Oder, Germany, 16– 20 September, 1996.

    Google Scholar 

  • Sieburth, J. M., V. Smetacek & J. Lenz. 1978. Pelagic ecosystem structure: heterotrophic compartments of the plankton and their relationship to plankton size fractionation. Limnol. Oceanogr. 23: 1256–1263.

    Article  Google Scholar 

  • Sommer, U., 1991. Phytoplankton: directional succession and forced cycles. In Remmert, H. (ed), The MosaicCycle Concept of Ecosystems, Springer Verlag, Berlin: 132–146.

    Google Scholar 

  • Søndergaard, M., 1991. Phototropic picoplankton in temperate lakes: seasonal abundance and importance along trophic gradient. Int. Rev. ges. Hydrobiol. 76: 502–522.

    Google Scholar 

  • Stockner, J. C., 1991. Autotrophic picoplankton in freshwater environments: the view from the summit. Int. Rev. ges. Hydrobiol. 76: 483–492.

    Google Scholar 

  • Vega, J. C., C. de Hoyos & J. J. Aldasoro, 1992. The Sanabria lake. The largest natural freshwater lake in Spain. Limnetica 8: 49–57.

    Google Scholar 

  • Wiedner, C. & B. Nixdorf, 1997. Success of chrysophytes, cryptophytes and dinoflagellates over bluegreens (cyanobacteria) during an extreme winter (1995/96) in eutrophic shallow lakes. Hydrobiologia 369/370: 229–235.

    Article  Google Scholar 

  • Willén, E., 1976. Phytoplankton in L. Hjälmaren. Acta Univ. Upsal. 378: 1–18.

    Google Scholar 

  • Willén, T., 1980. Phytoplankton from Swedish lakes, 3. Lake Hundsj ön and other kettle lakes of central Sweden. Arch. Hydrobiol. 89: 135–159.

    Google Scholar 

Download references

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Padisák, J., Krienitz, L., Scheffler, W. et al. Phytoplankton succession in the oligotrophic Lake Stechlin (Germany) in 1994 and 1995. Hydrobiologia 369, 179–197 (1998). https://doi.org/10.1023/A:1017059624110

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