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Vertical distribution of chosen species of Rotifera was studied in Piaseczno Lake, during a water stagnation period, in the summer of 2004. Environmental factors, such as temperature, dissolved oxygen and water transparency in the whole water column were measured. The presence of a total of 45 species of Rotifera was found. The analysis of the diel vertical distribution of the examined species of rotifer communities revealed differentiated models. Diel vertical migrations were observed in the case of Gastropus stylifer, Asplanchna priodonta and Trichocerca similis. The remaining species (Kellicottia longispina, Polyarthra dolichopter and P. vulgaris) did not undergo migrations, they remained within a certain water layer throughout the day and night. These differences in the diel behaviour of particular species of rotifers may be mostly dependent on particular ecological requirements and different forms of predation caused by invertebrate and young fish predators.
Słowa kluczowe
Czasopismo
Rocznik
Tom
Strony
29--37
Opis fizyczny
bibliogr. 26 poz., tab., wykr.
Twórcy
autor
autor
autor
- Department of Water Protection, Adam Mickiewicz University Drzymały 24, 60–613 Poznań, kippen@hot.pl
Bibliografia
- Dagg M.J., 1985, The effects of food limitation on dial migration behaviour in marine zooplankton, Archiv fűr Hdrobiologie Beiheft der Ergebnissen Limnologia 21, 247-255.
- De Meester L., Dawidowicz P., Van Gool E., Loose C. J., 1998, Ecology and evolution of predator-induced behavior of zooplankton: Depth selection behavior and diel vertical migration, [in:] R Tollrian, C. D, Harvell, (red.), The ecology and evolution of inducible defenses, Princeton University Press, Princeton, New Jersey, 160-177.
- Gliwicz Z.M., 1986, Predation and the evolution on vertical migration behavior in zooplankton, Nature, 320, 746-748.
- Goszczyński J., 2001, Stan czystości jeziora Piaseczno w 2000 roku [Purity condition of lake Piaseczno in 2000], WIOŚ, Bydgoszcz. 89 pp.
- Grzegorz G., Kuczyńska-Kippen N., 2004, The Rotifera and crustacean plankton in differentiated phytocoenosis of the aquatic vegetation of Piaseczno Lake, Teka Commission of Protection and Formation of Natural and Environment. 1, 64-70.
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- Hays G. C., 2003, A review of the adaptive significance and ecosystem consequences of zooplankton dial vertical migrations, Hydrobiologia 00, 1-8.
- Hofmann W., 1977, The influence of abiotic environmental factors on population dynamic in planktonic rotifers, Arch. Hydrobiol., Beinhefte: Ergebn., Limnol. 8, 77-83.
- Horppila J., 1997, Diurnal changes in the vertical distribution of cladocerans in a biomanipulated lake, Hydrobiologia 34, 215-220.
- Huntley M., Brooks E. R., 1982, Effects of age and food availability on dial vertical migration of Calanus pacyficus, Marine Biology 71, 23-31.
- Johnsen G. H., Jacobsen P. J., 1987, The effect of food limitation on vertical migration in Daphnia longispina, Limnology and Oceanography 32, 873-880.
- Karabin A., 1985, Pelagic zooplankton (Rotatoria + Crustacea). Variation in the process of lake eutrophication. I Structural and quantitative features, Ekol. Pol. 33(4), 567-616.
- Kerfoot W. C., 1985, Adaptive value o vertical migration: comments on the predation hypothesis and some alternatives, [in:] Rankin M. A. (ed.), Migration mechanisms and adaptive significance, Contrib. Mar, Sci. 27, 91-113. Univ. Texas. Port Aransas.
- Kitchell J. F., O'Neil R. V., Weeb D., Gallepp G. W., Bartell J. F., Koonce J. F., Ausmus B. S., 1979, Consumer regulation of nutrient cycling, Bioscience 29, 28-34.
- Koste W., 1978, Rotatoria. Die Radertier Mitteleurope [Rotifera. Rotifera of the Central Europe], Berlin Stuttgart, 673 pp.
- Lampert W., 1989, The adaptive significance of dial vertical migration of zooplankton, Funct. Ecol. 3, 21-27.
- Lampert W., 1993, Ultimate causes of dial vertical migrations in zooplankton: New evidence for the predator avoidance hypothesis, Arch. Hydrobiol. Beih. Ergebn. Limnol. 39, 79-88.
- Lampert W., Sommer H., 1996, Ekologia wód śródlądowych [Ecology of freshwaters], PWN, Warszawa., 392 pp.
- Padisák J., Krienitz L., Koschel R., Nedoma J., 1997, Deep-layer aututrophic picoplankton maximum in the oligotrophic Lake Stechlin, Germany: origin, activity, development and erosion, Eur. J. Phycol. 32, 403-416.
- Pijanowski J., Dawidowicz P., 1997, The lack o vertical migration in Daphnia: the effect of homogeneously distributed food, Hydrobiologia 148, 175-181.
- Ringelberg J., Flik B. J. G., Lindenaar D., Royackerrs K., 1991, Dial vertical migration of Daphnia hyalina (sensu latiori) in Lake Maaesseveen: Part 1. Aspects of seasonal and daily timing, Arch. Hydrobiol. 121, 129-145.
- Rutttner-Kolisko A., 1974, Plankton Rotifers. Biology and Taxonomy, Vol. XXVI, part. 1. Stuttgart., 146 pp.
- Szeląg-Wasilewska E., Gołdyn R., Bernaciak A., 1999, Fitoplankton, a stan trofii wód Jeziora Jeleń na Pojezierzu Bytowskim [Phytoplankton in relation to trophy status of Jeleń Lake at the Bytów Lake district], Badania fizjograficzne nad Polską Zachodnią, seria B -Botanika, tom 48, 203-223.
- Stich H. B., Lampert W., 1981, Predator evasion as an explanation of diurnal vertical migration by zooplankton, Nature 293, 396-398.
- Wright D. I., Shapiro J., 1990, Refuge availability: a key to understanding the summer disappearance of Daphnia, Freshwater Biology. 24, 43-62.
- Zaret T. M., Suffera, J.S., 1976, Vertical migration in zooplankton as a predator avoidance mechanism, Limnology and Oceanography 21, 804-813.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BUS5-0005-0030