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Tytuł artykułu

The diurnal distribution of the zooplankton community of the littoral zone of Lake Wielkowiejskie (Wielkopolski National Park, Poland)

Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The main aim of this study was to analyze the diel distribution of zooplankton communities within the zones of Nymphaea albae, Myriophyllum verticillatum, and Typha angustifolia, and, compared to that, in the open water area of a lake. It also aimed to analyze the relationship between zooplankton densities and the concentration of physicochemical factors and chlorophyll a content. A total of 149 zooplankton taxa were noted, and, despite the narrow range of the research in the analyzed lake, some rare species were noted, among which two - Colurella sinistra and Lecane inopinata – were recorded for the first time among Polish fauna. The rush zone was taxonomically the richest, while the open water area was the poorest. The highest number of individuals was observed in the Myriophyllum bed, while the lowest was noted in the zone dominated by Nymphaea alba. The highest densities of zooplankton occurred at dusk, while the lowest occurred during the day, irrespective of the sampling station. Because Lake Wielkowiejskie is a shallow and macrophyte-dominated water body, the differences in the diurnal distribution of zooplankton communities may suggest horizontal migrations between the pelagic zone and the phytolittoral, as well as between particular macrophyte stands. A positive correlation between the densities of some zooplankters and the concentration of chlorophyll a was found, while a negative relationship with the concentration of nitrites was recorded for Lecane quadridentata and Alonella nana.
Słowa kluczowe
Rocznik
Strony
91--98
Opis fizyczny
bibliogr. 20 poz., wykr.
Twórcy
autor
  • Department of Water Protection, Faculty of Biology Adam Mickiewicz University ul. Umultowska 89, 61-614 Poznań, Poland, kippen@hot.pl
Bibliografia
  • Blindow I., 1987, The composition and density of epiphyton on several species of submerged macrophytes - the neutral substrate hypothesis tested, Aquat. Bot., 29: 157-68
  • Bogdan K.G., Gilbert J.J., 1987, Quantitative comparison of food nitches in some freshwater zooplankton. A multi-tracer cell approach, Oecologia, 72: 331-40
  • Bohman I., Hansson M., Herrmann J., 2000, Horizontal diurnal migration (HDM) of zooplankton - a littoral pelagic coupling?, Verh. Internat. Verein. Limnol., 27: 2870-74
  • Burks R.L., Lodge D.M., Jeppesen E., Lauridsen T.L., 2002, Diel horizontal migration of zooplankton: costs and benefits of inhabiting the littoral, Freshwat. Biol., 47: 343-65
  • Crowder L.B., Cooper W.E., 1982, Habitat structural complexity and the interaction between bluegills and their prey, Ecology, 63: 1802-13
  • Currie D.J., 1991, Energy and large-scale patterns of animal- and plant-species richness, Am. Nat., 137: 27-49
  • Fussmann G., 1996, The importance of crustacean zooplankton in structuring rotifer and phytoplankton communities, an enclosure study. J. Plankt. Res. 18/10: 1897-1915
  • Gilbert J.J., 1988, Suppression of rotifer populations by Daphnia: A review of the evidence, the mechanisms, and the effects on zooplankton community structure, Limnol. Oceanogr., 33: 1286-1303
  • Gliwicz Z.M., Rybak J.I., 1976, Zooplankton [in:] E. Pieczyńska (ed.), Selected problems of lake littoral ecology, Uniwersytet Warszawski Press, Warszawa, pp. 69-96
  • Gliwicz Z.M., 1986, Predation and the evolution of vertical migration in zooplankton, Nature, 320: 746-48
  • Kuczyńska-Kippen N., Nagengast B., 2006, The influence of the spatial structure of hydromacrophytes and differentiating habitat on the structure of the rotifer and cladoceran communities, Hydrobiologia, 559: 203-212
  • Leibold M.A., 1991, Trophic interactions and habitat segregation between competing Daphnia species, Oecologia, 86: 510-20
  • Meerhoff M., Mazzeo N., Moss B., Rodriguez-Gallego L., 2003, The structuring role of freefloating versus submerged plants in a subtropical shallow lake, Aquatic Ecology, 37: 377-91
  • Pejler B., 1995, Relation to habitat in rotifers, Hydrobiologia, 313-314: 267-278
  • Radwan S., Bielańska-Grajner I., Ejsmont-Karabin J., 2004, Wrotki (Rotifera), Fauna słodkowodna Polski [Rotifers (Rotifera), Freshwater fauna of Poland], 32, Łódź, Oficyna Wydawnicza Tercja, (in Polish)
  • Ruttner-Kolisko A., 1974, Planktonic rotifers: biology and taxonomy, Die Binnengewasser Suppl., 26: 1-146
  • Saunders-Davies A.P., 1989, Horizontal distribution of the plankton rotifers Keratella cochlearis (Bory de St Vincent) and Polyarthra vulgaris (Carlin) in a small eutrophic lake, Hydrobiologia, 186/187: 153-56
  • Van Dijk G.M., 1993, Dynamics and attenuation characteristics of periphyton upon artificial substratum under various light conditions and some additional observations on periphyton upon Potamogeton pectinatus L., Hydrobiologia, 252: 143-61
  • Wetzel R.R., 1975, Limnology, Sauders, W.B. Co. Philadelphia, pp. 743
  • Wickham S.A., Gilbert J.J., 1990, Relative vulnerabilities of natural rotifer and ciliate communities to cladocerans: laboratory and field experiments, Freshwat. Biol., 26: 77-86
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BUS5-0016-0059
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