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Microbiological processes taking place in Dobczyce reservoir during spring water bloom

Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
In waters of Dobczyce reservoir, the organic carbon content, biomass of algae and bacteria, respiration of bacteria and respiration of aquatic organisms (measured by oxygen uptake), and energetic expenditures per unit of bacterial biomass ('costs of maintenance') at the beginning of spring water bloom (May, 1996) caused by Nitzschia palea (Kutz.) W. Sm. were greater than those in the second phase of bloom. However, photosynthesis of algae was greater in the second one. In the surface layer of bottom sediments, the greatest values of measured parameters were noted in the second phase of water bloom but the 'costs of maintenance' of bacteria reached maximum values one week after of water bloom break.
Rocznik
Strony
13--21
Opis fizyczny
Bibliogr. 21 poz., rys.
Twórcy
autor
  • Karol Starmach Institute of Freshwater Biology, Polish Academy of Science, Sławkowska 17,31-016 Kraków, Poland
autor
  • Karol Starmach Institute of Freshwater Biology, Polish Academy of Science, Sławkowska 17,31-016 Kraków, Poland
Bibliografia
  • [1.] Azam F., Fenchel T., Field J. G., Gray J. S., Meyer-Reil L. A., Thingstad F., 1983, The ecological role of water-column microbes in the sea,. Mar. Ecol. Prog. Ser., 10, 257-263.
  • [2.] Bucka H., 1987, Ecological aspects of the mass appearance of planktonic algae of southern Poland, Acta Hydrobiol., 29, 149-191.
  • [3.] Bucka H., 1989, Ecology of selected planktonic algae causing water blooms, Acta Hydrobiol., 31, 207-258.
  • [4.] Bucka H., (in press), The mass invasion of several blue-green algae in two drinking water supply reservoirs in southern Poland, [in:j NATO Proceedings - Management of lakes and reservoirs during global change, C. S. Reynolds (ed.), Freshwater Biol. Assoc. Lake District, U. K., et alli.
  • [5.] Bucka H., Wilk-Woźniak E., (in press), Dynamics of algae and cyanobacteria species developing abundantly in dam reservoirs: Wisła Czarne and Dobczyce (southern Poland), Fragm. Flor. et Geobot. ser. Polonica (in Polish).
  • [6.] Bucka H., Żurek R., 1992, Trophic relations between phyto- and zooplankton in a field experiment in the aspect of the formation and decline of water bloom, Acta Hydrobiol., 34, 139-155.
  • [7.] Burchardt L., 1987, Changes of population in Lake Świętokrzyskie against a back-ground of changes of environmental conditions, Univ. A. Mickiewicza, Poznań, ser. Biology, 44. 5-90 (in Polish).
  • [8.] Cholonky B., J., 1968, Die Okologie der Binnengewässern, Weinheinz. J. Cramer Verlag (in German).
  • [9.] Chróst R., 1984, Use of 14C-dissolved organie carbon (RDOC) released by algae as a realistic tracer of heterotrophic activity measurements for aquatic bacteria, Arch. Hydrobiol. Beih. Ergebn. Limnol., 19, 207-214.
  • [10.] Kawecka B., Eloranta P. V. 1994, Ecology of algae inhabiting freshwaters and terres-trial environments, PWN, Warszawa (in Polish).
  • [11.] Kirk J. T. O., 1983, Light and photosynthesis in aquatic ecosystems, Cambridge Univ. Press, Cambridge, London, New York, New Rochelle, Melbourne, Sydney.
  • [12.] Lam A. K. Y., Prepas E. E., Spink D., Hrudey S. E., 1995, Chemical control of hepato-toxic phytoplankton blooms: implications for human health, Water Res., 29, 1845-1854.
  • [13.] Reynolds C. S., 1991, Toxic blue-green algae: the 'problem' in perspective, Freshwater Forum, 1, 29-38.
  • [14.] Reynolds C. S., Walsby A. E., 1975, Water-blooms, Biol. Rev., 50, 437-481.
  • [15.] Starzecka A, Bednarz T., 1994, Decomposition of organic matter in bottom sediments of a stream and the Dobczyce dam-reservoir in the area of the Wolnica creek (southern Poland), Arch. Hydrobiol., 129, 327-337.
  • [16.] Starzecka A., T. Bednarz, 1997, Metabolit activity of microorganisms in the bottom sediments of a stream and of the Dobczyce dam reservoir in the region of the Mycelenice Basin (southern Poland), Pol. Arch. Hydrobiol., 44, 301-311.
  • [17.] Tilzer M. M., 1988, Secchi disk - chlorophyll relationships in a lake with highly variable phytoplankton biomass, Hydrobiologia, 162, 163-171.
  • [18.] Vadstein O., Harkjerr B. O., Jensen A., 1989, Cycling of organie carbon in the photic zone of an eutrophic lake with special reference to heterotrophic bacteria, Limnol. Oceanogr., 34, 840-855.
  • [19.] Van Dam H., Mertens A., Sinkeldam J., 1994, A coded checklist and ecological indicator values off freshwater diatoms from the Netherlands, Netherlands J. Aquatic Ecol., 28, 117-133.
  • [20.] Wołowski K., Kruk J., Chudyba D., 1990, Planktothrix suspensa causing water-blooms in Lake Długie in Olsztyn, Acta Hydrobiol., 32, 67-74.
  • [21.] Watson S. .W., Novitsky T. J., Quinby H. L., Valois F. W., 1977, Determination of bacterial number and biomass in the marine environment, Appl. Environ. Microbiol., 33, 940-946.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BUS8-0025-0031
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