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Winter bloom of some motile phytoplankton under ice cover in a mesotrophic lake : vertical distribution and environmental factors

Autorzy
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The research was carried out in mesotrophic Lake Krasne during winter with thick ice/snow cover. Water samples for biological and physicochemical analyses were collected vertically from the water column. Several phytoplankton groups were identified during the study, however, only two main groups of motile phytoplankton, Cyanophyceae (the dominant species − Planktothrix rubescens) and Cryptophyceae (Cryptomonas spp. and Plagioselmis nannoplanctica), were analyzed in the gradient of nutrients, light and thermal conditions. In the studied water column, values of physicochemical parameters did not vary in a wide range. Nevertheless, high discrepancies were noted in the values of phytoplankton biomass and the concentration of chlorophyll-a which had shallower maxima and deeper minima. Statistically significant relationships were found between the biomass of two main phytoplankton groups, light conditions (PAR) and depth, however, no significant relationships were found between the biomass, biogenic compounds and water temperature. The studies showed that in the winter season with ice/snow cover, cryptomonads and Planktothrix rubescens occupied different ecological niches and the main factor determining their distribution were light conditions. The ice/snow cover probably plays an important role in protection of P. rubescens winter filaments against photoinhibition.
Rocznik
Strony
164--171
Opis fizyczny
Bibliogr. 36 poz., tab., wykr.
Twórcy
autor
  • Department of Botany and Hydrobiology, Institute of Environment Protection, The John Paul II Catholic University of Lublin, ul. Konstantynów 1H, 20-708 Lublin, Poland
Bibliografia
  • [1]. Babanazarova O., Siddelev S. & Schischeleva S. (2013, September). The structure of winter phytoplankton in Lake Nero, a hypertrophic lake dominated by Planktothrix- like Cyanobacteria. Aquatic Biosystems 9: 18. Retrieved September 30, 2013, from PMC database on the World Wide Web: http://www.ncbi.nlm.nih.gov/pmc. DOI: 10.1186/2046-9063-9-18.
  • [2]. Barone, R. & Naselli-Flores L. (2003). Distribution and seasonal dynamics of Cryptomonads in Sicilian water bodies. Hydrobiologia 502: 325-329. DOI: 10.1023/B:HYDR.0000004290.22289.c2.
  • [3]. Danilov, R.A. & Ekelund N.G.A. (2001). Phytoplankton communities at different depths in two eutrophic and two oligotrophic temperate lakes at higher latitude during the period of ice cover. Acta Protozool. 40: 197-201.
  • [4]. Dokulil, M.T. & Herzig A. (2009). An analysis of long-term winter data on phytoplankton and zooplankton in Neusiedler See, a shallow temperate lake, Austria. Aquatic Ecology 43(3): 715¬725. DOI: 10.1007/s10452-009-9282-3.
  • [5]. Halstvedt, C.B., Rohlack T., Andersent T., Skulberg O. & Edvardsen B. (2007). Seasonal dynamics and depth distribution of Planktothrix spp. in Lake Steinsfjorden (Norway) related to environmental factors. Journal of Plankton Research 29: 471-482.
  • [6]. Hammer, A., Schumann R. & Schubert H. (2002). Light and temperature acclimation of Rhodomonas salina (Cryptophyceae): photosynthetic performance. Aquatic Microbial Ecology 29: 287-296. DOI: 10.3354/ame029287.
  • [7]. Havens, K., James R.T., East T.L. & Smith V.H. (2003). N:P ratios, light limitation, and cyanobacterial dominance in a subtropical lake impacted by non-point source nutrient pollution. Environmental Pollution 122: 379-390. DOI: 10.1016/S0269-7491(02)00304-4.
  • [8]. Hermanowicz, W, Dojlido J., Dożańska W., Koziorowski B. & Zerbe J. (1999). Physical-chemical investigation of water and sewage. Arkady, Warsaw. (in Polish)
  • [9]. Hillebrand, H., Durselen C.D., Kirschtel D., Pollingher U. & Zohary T. (1999). Biovolume calculation for pelagic and benthic microalgae. Journal of Phycology 35: 403-424. DOI: 10.1046/j.1529-8817.1999.3520403.x.
  • [10]. Jacquet, S., Briand J.F., Leboulanger C., Avois-Jacquet C., Oberhaus L., Tassin B., Vincon-Leite B., Paolini G., Druart J.C., Anneville O. & Humbert J.F. (2005). The proliferation of the toxic cyanobacterium Planktothrix rubescens following restoration of the largest natural French lake (Lac du Bourget). Harmful Algae 4: 651-672. DOI: 10.1016/j. hal.2003.12.006.
  • [11]. Jones, R.I. (1988). Vertical distribution and diel migration of flagellated phytoplankton In a small humic lake. In R.I. Jones & V. Ilmavirta (eds.), Flagellates in Freshwater Ecosystems. Hydrobiologia 161: 75-87. DOI: 10.1007/BF00044102.
  • [12]. Kiili, M., Pulkkanen M. & Salonen K. (2009). Distribution and development of under-ice phytoplankton in 90-m deep water column of Lake Paijanne (Finland) during spring convection. Aquatic Ecology 43(3): 707-713. DOI: 10.1007/ s10452-009-9262-7.
  • [13]. Kromkamp, J.C., Domin A., Dubinsky Z., Lehmann C. & Schanz F. (2001). Changes in photosynthetic properties measured by oxygen evolution and variable chlorophyll fluorescence in a simulated entrainment experiment with the cyanobacterium Planktothrix rubescens. Aquatic Sciences 63: 363-382. DOI: 10.1007/PL00001360.
  • [14]. Krupa, D. & Czernaś K. (2003). Mass appearance of cyanobacterium Planktothrix rubescens in Lake Piaseczno, Poland. Water Quality Research Journal of Canada 38(1): 141-152.
  • [15]. Legnani, E., Copetti D., Oggioni A., Tartari G., Palumbo M.T. & Morabito G. (2005). Planktothrix rubescens’ seasonal dynamics and vertical distribution in Lake Pusiano (North Italy). Journal of Limnology 64: 61-73. DOI: 10.4081/ jlimnol.2005.61.
  • [16]. Lepparanta, M., Reinart A., Erm A., Arst H., Hussainov M. & Sipelgas L. (2003). Investigation of ice and water properties and under-ice light fields in fresh and brackish water bodies. Nordic Hydrology 34(3): 245-266. DOI: 10.2166/nh.2003.015.
  • [17]. McKnight, D.M., Howes B.L., Taylor C.D. & Goehringer D.D. (2000). Phytoplankton dynamics in a stably stratified Antarctic lake during winter darkness. Journal of Phycology 36(5): 852-861. DOI: 10.1046/j.1529-8817.2000.00031.x.
  • [18]. Messineo, V., Mattei D., Melchiorre S., Salvatore G., Bogialli S., Salzano R., Mazza R., Capelli G. & Bruno M. (2006). Microcystin diversity in a Planktothrix rubescens population from Lake Albano (Central Italy). Toxicon 48: 160-174. DOI: 10.1016/j.toxicon.2006.04.006.
  • [19]. Mitrofanova, E.Y., Kirillov V.V. & Kotovshchikov A.V (2007). Phytoplankton below the ice cover in Lake Telestkoye, a deep oligotrophic lake in western Siberia. Lakes & Reservois: Research & Management 12(3): 129-134. DOI: 10.1111/j.1440-1770.2007.00333.x.
  • [20]. Noges, P., Adrian R., Anneville O., Arvola L., Blenckner T., George G., Jankowski T., Jarvinen M., Maberly S., Padisak J., Straile D., Teubner K. & Weyhenmeyer G. (2010). The Impact of Variations in the Climate on Seasonal Dynamics of Phytoplankton. In D. G. George (ed.), The Impact of Climate Change on European Lakes. Aquatic Ecology, Series 4: 253-274. DOI:10.1007/978-90-481-2945-4_14.
  • [21]. Nush, E.A. (1980). Comparison of different methods for chlorophyll and pheopigment determination. Arch. Hydrobiol. Beih. Ergebn. Limnol. 14: 14-36.
  • [22]. Oberhaus, L., Briand J.F., Leboulanger C., Jacquet S. & Humbert J.F. (2007). Comparative effects of the quality and quantity of light and temperature on the growth of Planktothrix agardhii and P. rubescens. Journal of Phycology 43: 1191-1199. DOI: 10.1111/j.1529-8817.2007.00414.x.
  • [23]. Phillips, K.A. & Fawley M.W. (2002). Winter phytoplankton community structure in three shallow temperate lakes during ice cover. Hydrobiologia 470: 97-113. DOI:10.1023/A:1015667803372.
  • [24]. Smith, V.H. (1983). Low nitrogen to phosphorus ratios favor dominance by blue-green algae in lake phytoplankton. Science 221: 669-671. DOI: 10.1126/science.221.4611.669
  • [25]. Smolander, U. & Arvola L. (1988). Seasonal variation in the diel vertical distribution of the migratory alga Cryptomonas marssonii (Cryptophyceae) in a small, highly humic lake. In R.I. Jones & V. Ilmavirta (eds.), Flagellates in Freshwater Ecosystems. Hydrobiologia 161: 89-98. DOI: 10.1007/ BF00044103
  • [26]. Sokal, R.R. & Rohlf F.J. (1995). Biometry, third ed. W. H. Freeman and Company, New York.
  • [27]. Teubner, K. & Dokulil M.T. (2002). Ecological stoichiometry of TN:TP:SRSi in freshwaters: nutrient ratios and seasonal shifts in phytoplankton assemblages. Archiv für Hydrobiologie 154: 625-646.
  • [28]. Toporowska, M., Pawlik-Skowrońska B., Krupa D. & Kornijów R. (2010). Winter versus summer blooming of phytoplankton in a shallow lake: effect of hypertrophic conditions. Polish Journal of Ecology 58: 3-12.
  • [29]. Utermöhl, H. (1958). Zür Vervolkommnung der quantitativen Planktonmethodik. Mitt. Int. Ver. für Theor. Angew. Limnol. 9: 1-38.
  • [30]. Vehmaa, A. & Salonen K. (2009). Development of phytoplankton in Lake Paajarvi (Finland) during under-ice convective mixing period. Aquatic Ecology 43: 693-705. DOI: 10.1007/ s10452-009-9273-4.
  • [31]. Walsby., A.E., Dubinsky Z, Kromkamp J., Lehmann C., Schanz F. (2001). The effects of diel changes in photosynthetic coefficients and depth of Planktothrix rubescens on the daily integral of photosynthesis in Lake Zurich. Aquatic Sciences 63: 326-349. DOI: 10.1007/PL00001358.
  • [32]. Walsby, A.E. & Schanz F. (2002). Light-dependent growth rate determines changes in the population of Planktothrix rubescens over the annual cycle in Lake Zurich, Switzerland. New Phytologist 154: 671-687. DOI: 10.1046/j.1469- 8137.2002.00401.x.
  • [33]. Wetzel, R.G. (2001). Limnology. Lake and river ecosystems. San Diego, San Francisco, New York, Boston, London, Sydney, Tokyo: Academic press.
  • [34]. Wiedner, C. & Nixdorf B. (1998). Success of chrysophytes, cryptophytes and dinoflagellates over blue-greens (cyanobacteria) during an extreme winter (1995/96) in eutrophic shallow lakes. Hydrobiologia 369/370: 229-335. DOI: 10.1023/A:1017054011389.
  • [35]. Wilgat, T., Michalczyk Z., Turczyński M. & Wojciechowski K. (1991). Łęczna-Włodawa Lakes. Studia Ośr. Dok. Fizjogr. PAN 19: 23-140. (in Polish).
  • [36]. Wojciechowska, W. & Lenard T., (2014). Effect of extremely severe winters on under-ice phytoplankton development in a mesotrophic lake (Eastern Poland). Oceanological and Hydrobiological Studies 43:147-153. DOI:10.2478/s13545- 014-0127-X.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-b9fd144a-aa25-4e83-90d6-dc85b0a664cf
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