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Phytoplankton of two river lakes in relation to flooding period (River Bug, Eastern Poland)

Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Studies were carrying out in two shallow (mean depth ≈ 0.3 m) and small (area 2.7-8.2 ha) river lakes, which were flooded by water of River Bug (Eastern Poland) once a year (in spring). The species composition, biomass of phytoplankton and concentration of chlorophyll a were studied. Samples were taken in June (after flooding) and in August (after three months of isolation from river water). About 150 species of phytoplankton were determined. After the flood period phytoplankton biomass was dominated by nannoplankton belonging to Cryptophyceae and Chrysophyceae (strategy-r) and in the stabilization period by microplanktonic green and blue-green algae (strategy-K). The higher biomass and concentration of chlorophyll a values were noted in August than in June. The differentiation of phytoplankton was also stated between near-by stations in both lakes.
Rocznik
Strony
419--425
Opis fizyczny
Bibliogr. 13 poz., rys., tab., wykr.
Twórcy
  • Department of Botany and Hydrobiology, Catholic University of Lublin Norwida 4, 20-061 Lublin, Poland
  • Department of Botany and Hydrobiology, Catholic University of Lublin Norwida 4, 20-061 Lublin, Poland
autor
  • Department of Botany and Hydrobiology, Catholic University of Lublin Norwida 4, 20-061 Lublin, Poland
  • Department of Hydrography, Maria Curie-Skłodowska University Akademicka 19, 20-033 Lublin, Poland
autor
  • Department of Hydrography, Maria Curie-Skłodowska University Akademicka 19, 20-033 Lublin, Poland
Bibliografia
  • 1. Amoros C. 2001 – The concept of habitat diversity between and within ecosystems applied to river sidearm restoration – Environ. Manag. 28: 805–817.
  • 2. Chmiel S., Dawidek J., Szwajgier W., Turczyński M. 2003 – Genetic types and transformations of lakes in the Middle Bug valley-floor – Limnol. Rev. 3: 31–36.
  • 3. De Olivera M. D., Calheiros D. F. 2000 – Flood pulse influence on phytoplankton communities of the south Pantanal floodplain, Brazil – Hydrobiologia, 427: 101–112.
  • 4. Garcia de Emiliani M. O. 1993 – Seasonal succession of phytoplankton in a lake of the Paraná River floodplain, Argentina – Hydrobiologia, 264: 101–114.
  • 5. Hermanowicz W., Dojlido J., Dożańska W., Koziorowski B., Zerbe J. 1999 – Fizyczno–chemiczne badanie wody i ścieków [Physico-chemical investigation of sewage and water] – Arkady, Warszawa. (in Polish).
  • 6. Hillebrand H., Dürselen C.-D., Kirschtel D., Pollingher U., Zahary T. 1999 Biovolume calculation for pelagic and benthic microalgae – J. Phycol. 35: 403–424.
  • 7. Lloyd M. R., Ghelardi J. 1964 – A table for calculating the “equitability” component of species diversity – J. Anim. Ecol. 33: 217–225.
  • 8. Nusch E. A. 1980 – Comparison of different methods for chlorophyll and pheopigment determination - Arch. Hydrobiol. Beih. Ergebn. Limnol. 14: 14–36.
  • 9. Pavoni M. 1963 – Die Bedeutung des Nannoplanktons im Vergleich zum Netzplankton - Schweizerische Zeitschrift für Hydrologie, 25: 219–341.
  • 10. Reynolds C. S. 1984 – The ecology of freshwater phytoplankton – Cambridge University Press, Cambridge, London, New York, New Rochelle, Melbourne, Sydney.
  • 11. Shannon C. E., Weaver W. 1949 – The mathematical theory of communication – University of Illinois Press, Urbana IL, 117 pp.
  • 12. Van den Brink F.W.B., Van Katwijk M. M., Van der Velde G. 1994 – Impact of hydrology on phyto- and zooplankton community composition in floodplain lakes along the Lower Rhine and Meuse – J. Plankton Res. 16: 351–373.
  • 13. Wilk-Woźniak E., Bucka H. 2004 – Flora glonów w rezerwacie wodnym Wiślisko Kobyle – starorzecze rzeki Wisły (Puszcza Niepołomicka, okolice Krakowa) [Algae in the oxbow-lake – Wiślisko Kobyle, protected area in the Niepołomice Forest (Kraków)] – Mat. Konf. 53 Zjazdu PTB, Toruń-Bydgoszcz, pp. 55. (in Polish).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BGPK-1042-4201
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