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Changes in levels of infection with Schistocephalus solidus (Müller 1776) of the three-spined stickleback Gasterosteus aculeatus (Actinopterygii: Gasterosteidae) from the Gdynia Marina [commun.]

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
This paper analyses the changes in the level of infection with the freshwater parasite Schistocephalus solidus of the three-spined stickleback from the Gdynia Marina. Environmental factors such as salinity, pollution and eutrophication or the presence of other species affect the transmission of parasites. Infection indices have been increasing since the 1990s. Differences in the infection level of morphological forms were also found: this may be due to their environmental preferences.
Czasopismo
Rocznik
Strony
181--187
Opis fizyczny
Bibliogr. 25 poz., tab.
Twórcy
  • Department of Aquatic Ecology, Pomeranian University, Arciszewskiego 22B, PL-76-200 Słupsk, Poland, morgo@onet.eu
Bibliografia
  • 1.Andrulewicz E., Witek Z., 2002, Anthropogenic pressure and environmental effects on the Gulf of Gdansk: recent management efforts, [in:] Baltic coastal ecosystems, structure, function and coastal zone management, G. Schernewski & U. Schiewer (eds.), CEDES, Springer Verlag, Berlin, 119-139.
  • 2.Bańbura J., 1994, Lateral plate morph differentiation on freshwater and marine populations of the three-spined stickleback, Gasterosteus aculeatus, in Poland, J. Fish Biol., 44 (5), 773-783.
  • 3.Bańbura J., Przybylski M., 1987, Występowanie form morfologicznych ciernika Gasterosteus aculeatus o różym stopniu opancerzenia wzdłuż polskiego wybrzeża Bałtyku, [Occurrence of morphological forms of the three-spined stickleback Gasterosteus aculeatus with different number of lateral plates along the Polish coast of the Baltic], XIV Zjazd Pol. Tow. Zool., 17-19 Sept. 1987, Szczecin, 12.
  • 4.Barber I., Ruxton G.D., 1998, Temporal prey distribution affects the competitive ability of parasitized sticklebacks, Anim. Behav., 56 (6), 1477-1483.
  • 5.Bergersen R., 1996, Sticklebacks from Greenland, J. Fish Biol., 48 (4), 799-801.
  • 6.Bush A.O., Lafferty K.D., Lotz J.M., Shostak A.W., 1997, Parasitology meets ecology on its own terms: Margolis et al. revisited, J. Parasitol., 83 (4), 575-583.
  • 7.Czapliński B., Sulgostowska T., Czaplińska D., 1992, Katalog fauny pasożytniczej Polski. Catalogus Faunae Parasiticae Poloniae, Część IV. Pasożyty ptaków Parasiti Avium, Zeszyt 2A. Tasiemce - Cestoda, [Catalogue of parasitic fauna of Poland, Part IV. Parasites of birds, Tapeworms - Cestoda], Pol. Tow. Parazytol., Warszawa, 184 pp.
  • 8.Girdwoyń M., 1883, Pasożyty ryb naszych, [Parasites of our fish], Warszawa, 8 pp.
  • 9.Kanarek G., Rokicki J., 2005, The status of studies on the helminth fauna of the Great Cormorant (Phalacrocorax carbo sinensis) in northern Poland, Wiad. Parazytol., 51 (2), 165.
  • 10.Kanarek G., Sitko J., Rolbiecki L., Rokicki J., 2003, Digenean fauna of the great cormorant Phalacrocorax carbo sinensis (Blumenbach, 1798) in the brackish waters of the Vistula Lagoon and the Gulf of Gdańsk (Poland), Wiad. Parazytol., 49 (3), 293-299.
  • 11.Kavetska K.M., Królaczyk K., Kalisińska E., Kornyushin V.V., Korol E.N., 2008, Helmintofauna nurogęsi Mergus merganser L., 1758 z północno-zachodniej Polski, [Helminthofauna of the goosander Mergus merganser L., 1758 from the north-western Poland], Wiad. Parazytol., 54 (4), 325-330.
  • 12.Lundberg C., 2005, Eutrophication in the Baltic Sea - from area-specific biological effects to interdisciplinary consequences, ˚Abo Akad. Univ., ˚Abo, 166 pp.
  • 13.Marcogliese D. J., 1992, Metazoan parasites of sticklebacks on Sable Island, north-west Atlantic Ocean: biogeographic considerations, J. Fish Biol., 41 (3), 399-407.
  • 14.Möller H., 1978, The effects of salinity and temperature on the development and survival of fish parasites, J. Fish Biol., 12 (4), 311-323.
  • 15.Normant M., Kubicka M., Lapucki T., Czarnowski W., Michalowska M., 2005, Osmotic and ionic haemolymph concentrations in the Baltic Sea amphipod Gammarus oceanicus in relation to water salinity, Comp. Biochem. Phys. A, 141 (1), 94-99.
  • 16.Pojmańska, T., 1991, Pasożyty ryb Polski. Tasiemce - Cestoda. Klucze do oznaczania, [Parasites of fish from Poland. Cestoda. Taxonomic keys], Inst. Parazytol. PAN, Warszawa, 135 pp.
  • 17.Reimchen T.E., Nosil P., 2001, Dietary differences between phenotypes with symmetrical and asymmetrical pelvis in the stickleback Gasterosteus aculeatus, Can. J. Zool., 79 (3), 533-539.
  • 18.Rokicki J., Skóra K.E., 1989, The role of the stickleback Gasterosteus aculeatus L. as a host of plerocercoids Schistocephalus solidus (Müller, 1776) in the Bays of Gdańsk and Puck, Abstracts 11th BMB Symp., 11-16 Sept. 1989, Szczecin, Poland, p. 31.
  • 19.Rokicki J., Strömberg J.-O., 1995, The influence of environment al factors on the external parasites of saithe Pollachius virens (L.), Acta Ichthyol. Piscat., 25 (2), 81-87.
  • 20.Rolbiecki L., Rokicki J., Morozińska-Gogol J., Chibani M., 1999, Larval stages of helminths in fish from the Vistula Lagoon and the Gulf of Gdańsk in relation to bird occurrence, Bull. Sea Fish. Inst., 2 (147), 51-60.
  • 21.Sures B., 2003, Accumulation of heavy metals by intestinal helminths in fish: an overview and perspective, Parasitology, 126 (Suppl.), S53-S60.
  • 22.Sures B., 2004, Environmental parasitology: relevancy of parasites in monitoring environmental pollution, Trends Parasitol., 20 (4), 170-177.
  • 23.Wedekind C., Milinski M., 1996, Do three-spined sticklebacks avoid consuming copepods, the first intermediate host of Schistocephalus solidus? - an experimental analysis of behavioural resistance, Parasitology, 112 (4), 371-383.
  • 24.Wootton R. J., 1976, The biology of the sticklebacks, London Acad. Press., 387 pp.
  • 25.Zander C.D., 2007, Parasite diversity of sticklebacks from the Baltic Sea, Parasitol. Res., 100 (2), 287-297.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BUS8-0008-0022
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