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First report of endosymbionts in Dreissena polymorpha from the brackish Curonian Lagoon, SE Baltic Sea

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EN
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EN
We report the first results of a parasitological study of Dreissena polymorpha (zebra mussels) from the brackish Curonian Lagoon, SE Baltic Sea. Zebra mussels were collected monthly from May to October 2011 from a site near the mouth of the River Nemunas. Three types of endosymbionts were found in the mantle cavity and visceral mass of the molluscs during dissections, i.e. the commensal ciliate Conchophthirus acuminatus and parasitic ciliate Ophryoglena sp., and rarely encountered, unidentified nematodes. The abundances of C. cuminatus and Ophryoglena sp. were positively associated with host shell length and water temperature, but no effect of water salinity was detected. As the endosymbionts are either highly host-specific to zebra mussels (C. acuminatus and Ophryoglena sp.) or are probably free-living organisms that inadvertently infect the molluscs (nematodes), we conclude that the presence of D. polymorpha in the Curonian Lagoon does not pose any serious parasitological risk to native biota. We emphasize, however, that this conclusion should be treated with caution as it is based on a study conducted only at a single location. Our work extends the currently scarce records of D. polymorpha parasites and commensals from brackish waters, and adds to a better understanding of the ecological impact this highly invasive mollusc causes in the areas it has invaded.
Czasopismo
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701--713
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Bibliogr. 40 poz., wykr.
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autor
autor
Bibliografia
  • 1.Breslow N.E., 1984, Extra-Poisson variation in log-linear models, Appl. Stat., 33 (1), 38-44.
  • 2.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.
  • 3.Cullen A.C., Frey H.C., 1999, Probabilistic techniques in exposure assessment. A handbook for dealing with variability and uncertainty in models and inputs, Plenum Press, New York, London, 335 pp.
  • 4.Chubarenko B., Margonski P., 2008, The Vistula Lagoon, [in:] Ecology of Baltic coastal waters, Schiewer U. (ed.), Ecological Studies 197, Springer-Verlag, Berlin, Heidelberg, 167-195 pp.
  • 5.Dzialowski A.R., Jessie W., 2009, Zebra mussels negate or mask the increasing effect of nutrient enrichment on algal biomass: a preliminary mesocosm study, J. Plankton Res., 31 (11), 1437-1440, http://dx.doi.org/10.1093/plankt/fbp071
  • 6.Elliott P., Aldridge D.C., Moggridge G.D., 2008, Zebra mussel filtration and its potential uses in industrial water treatment, Water Res., 42 (6-7), 1664-1674, http://dx.doi.org/10.1016/j.watres.2007.10.020
  • 7.Gasi—unaitė Z.R., Daunys D., Olenin S., Razinkovas A., 2008, The Curonian Lagoon, [in]: Ecology of Baltic coastal waters, Schiewer U. (ed.), Ecological Studies 197, Springer-Verlag, Berlin, Heidelberg, 197-215 pp.
  • 8.Goedkoop W., Naddafi R., Grandin U., 2011, Retention of N and P by the zebra mussel (Dreissena polymorpha Pallas) and its quantitative role in the nutrient budget of eutrophic Lake Ekoln, Sweden, Biol. Invasions, 13 (5), 1077-1086, http://dx.doi.org/10.1007/s10530-011-9950-9
  • 9.Hilbe J.M., 2011, Negative binomial regression, 2nd edn., Cambridge Univ. Press, Cambridge, 572 pp.
  • 10.Jankowski A.W., 2001, Ciliates - Rhynchodida, [in:] European register of marine species: a check-list of the marine species in Europe and a bibliography of guides to their identification, CostelloM. J. et al. (eds.), Collection Patrimoines Naturels 50, 44-47.
  • 11.Karatayev A.Y., Burlakova L.E., Molloy D.P., Mastitsky S.E., 2007, Dreissena polymorpha and Conchophthirus acuminatus: what can we learn from host-commensal relationships, J. Shellfish Res., 26 (4), 1153-1160, http://dx.doi.org/10.2983/0730-8000(2007)26[1153:DPACAW]2.0.CO;2
  • 12.Karatayev A.Y., Burlakova L.E., Molloy D.P., Volkova L.K., 2000b, Endosymbionts of Dreissena polymorpha (Pallas) in Belarus, Int. Rev. Hydrobiol., 85 (5-6), 539-555.
  • 13.Karatayev A.Y., Burlakova L.E., Molloy D. P., Volkova L.K., Volosyuk V.V., 2002, Field and laboratory studies of Ophryoglena sp. (Ciliata: Ophryoglenidae) infection in zebra mussels, Dreissena polymorpha (Bivalvia: Dreissenidae), J. Invertebr. Pathology, 79, 80-85.
  • 14.Karatayev A.Y., Burlakova L.E., Padilla D.K., 1998, Physical factors that limit the distribution and abundance of Dreissena polymorpha (Pall.), J. Shellfish Res., 17 (4), 1219-1235.
  • 15.Karatayev A.Y., Mastitsky S.E., Burlakova L.E., Molloy D.P., Vezhnovets G.G., 2003, Seasonal dynamics of endosymbiotic ciliates and nema-todes in Dreissena polymorpha, J. Invertebr. Pathology, 83 (1), 73-82, http://dx.doi.org/10.1016/S0022-2011(03)00043-0
  • 16.Karatayev A.Y., Mastitsky S.E., Burlakova L.E., Olenin S., 2008, Past, current, and future of the central European corridor for aquatic invasions in Belarus, Biol. Invasions, 10, 215-232, http://dx.doi.org/10.1007/s10530-007-9124-y
  • 17.Karatayev A.Y., Molloy D.P., Burlakova L.E., 2000a, Seasonal dynamics of Conchophthirus acuminatus (Ciliophora, Conchophthiridae) infection in Dreissena polymorpha and D. bugensis (Divalvia, Dreissenidae), Europ. J. Protistol., 36, 397-404.
  • 18.Leppäkoski E., Olenin S., 2000, Xenodiversity of the European brackish water seas: the North American contribution, [in:] Marine bioinvasions, Pederson J. (ed.), Proc. 1st Natl. Conf., Mass. Inst. Technol., Cambridge, 107 pp.
  • 19.Mackie G. L., Wright C.A., 1994, Ability of the zebra mussel, Dreissena polymor-pha, to biodeposit and remove phosphorus and BOD from diluted activated sewage sludge,Water Res., 28 (5), 1123-1130, http://dx.doi.org/10.1016/0043-1354(94)90199-6
  • 20.Mastitsky S.E., 2004, Endosymbionts of bivalve mollusc Dreissena polymorpha in waterbodies of Belarus, Ph.D. thesis, Inst. Zool. Natl. Acad. Sci. Rep. Bel., Minsk, 208 pp., (in Russian).
  • 21.Mastitsky S.E., 2005, Role of the mollusc Dreissena polymorpha Pallas (Bivalvia: Dreissenidae) in transmission of trematode infections to vertebrate animals, Vestnik Tyumenskogo Gosudarstvennogo Universiteta 5, 130-134, (in Russian with English summary).
  • 22.Mastitsky S.E., Gagarin V.G., 2004, Nematodes which infect the mollusc Dreissena polymorpha (Bivalvia: Dreissenidae) in the Narochanskie Lakes, Vestnik Belorusskogo Gosudarstvennogo Universiteta. Ser. 2, 3, 22-25, (in Russian with English summary).
  • 23.Mastitsky S.E., Lucy F., Gagarin V.G., 2008, First report of endosymbionts in Dreissena polymorpha from Sweden, Aquat. Invasions, 3 (1), 83-86.
  • 24.Mastitsky S.E., Samoilenko V.M., 2005, Larvae of chironomids (Insecta, Diptera) encountered in the mantle cavity of zebra mussel, Dreissena polymorpha (Bivalvia, Dreissenidae), Int. Rev. Hydrobiol., 90, 42-50.
  • 25.Mastitsky S.E., Veres J.K., 2010, Field evidence for a parasite spillback caused by exotic mollusc Dreissena polymorpha in an invaded lake, Parasitol. Res., 106, 667-675.
  • 26.Minguez L., Giambirini L., 2012, Seasonal dynamics of zebra mussel parasite populations, Aquat. Biol., 15, 145-151.
  • 27.Molloy D.P., Karatayev A.Y., Burlakova L.E., Kurandina D.P., Laruelle F., 1997, Natural enemies of zebra mussels: predators parasites and ecological competitors, Rev. Fish. Sci., 5 (1), 27.97, http://dx.doi.org/10.1080/10641269709388593
  • 28.Olenin S., Orlova M., Minchin D., 1999, Dreissena polymorpha (Pallas, 1771), [in:] Case histories on introduced species: their general biology, distribution, range expansion and impact, Gollasch S., Minchin D., Rosenthal H. & Voigt M. (eds.), Logos-Verlag, Berlin, 37.42 pp.
  • 29.Orlova M., Golubkov S., Kalinina L., Ignatieva N., 2004, Dreissena polymorpha (Bivalvia: Dreissenidae) in the Neva estuary (eastern Gulf of Finland, Baltic Sea): is it a biofilter or source for pollution?, Mar. Pollut. Bull., 49 (3), 196-205.
  • 30.Petkevičiūtė R., Stanevičiūė G., Molloy D.P., 2003, Chromosome analysis of Phyllodistomum folium (Trematoda, Gorgoderidae) infecting three European populations of zebra mussels, Parasit. Res., 90, 377-382.
  • 31.Raabe Z., 1956, Investigations on the parasitofauna of freshwater molluscs in the brackish waters, Acta Parasitol. Polonica, 4, 375-406.
  • 32.R Development Core Team, 2011, R: A language and environment for statistical computing, R Foundation for Statistical Computing, Vienna, Austria, [ISBN3-900051-07-0], http://www.R-project.org.
  • 33.Reeders H.H., Bij de Vaate A., 1990, Zebra mussels (Dreissena polymorpha): a new perspective for water quality management, Hydrobiologia, 200/201, 437-450.
  • 34.Reid N. J., Holovachov O., Anderson M.A., 2012, Nematodes associated with the invasive quagga mussel (Dreissena rostriformis bugensis) in the Colorado River Aqueduct reservoirs, southern California, USA, Nematology, 14 (7), 827-837, http://dx.doi.org/10.1163/156854112X627345
  • 35.Rolbiecki L., Rokicki J., 2008, Helminths of the lumpsucker (Cyclopterus lumpus) from the Gulf of Gda.sk and Vistula Lagoon (Poland), Oceanol. Hydrobiol. Stud., 37 (4), 53-59.
  • 36.Scrucca L., 2012, dispmod: Dispersion models. R package version 1.1, http://CRAN.R-project.org/package=dispmod.
  • 37.Stybel N., Fenske C., Schernewski G., 2009, Mussel cultivation to improve water quality in the Szczecin Lagoon, J. Coastal Res., Spec. iss. 56, 1458-1463.
  • 38.Stunžėnas V., Cryan J.R., Molloy D. P., 2004, Comparison of rDNA sequences from colchicine treated and untreated sporocysts of Phyllodistomum folium and Bucephalus polymorphus (Digenea), Parasitology Int., 53 (3), 223-228, http://dx.doi.org/10.1016/j.parint.2003.12.003
  • 39.Zaiko A., Paškauskas R., Krevš A., 2010, Biogeochemical alteration of the benthic environment by the zebra mussel Dreissena polymorpha (Pallas), Oceanologia, 52 (4), 649-667.
  • 40.Zemlys P., Daunys D., Olenin S., 2001, Modelling of the zebra mussel impact on the Curonian Lagoon ecosystem, Report, Klaipeda Univ., (in Lithuanian).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BUS8-0023-0023
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