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Microcrustacean (Cladocera, Copepoda) source-sink dynamics in a lowland river ecosystem with a dam reservoir

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Dispersal of crustacean zooplankton from a reservoir in a lowland river was observed over a relatively long distance. Zooplankton samples were collected by a unique technique from “the same water”. Large Cladocera (Daphnia cucullata and Diaphanosoma brachyurum) showed the greatest reduction in a river, but they were common over a distance of up to 130 km below a dam. These two planktonic species revealed a low potential for colonizing oxbow lakes. Eurytopic Chydorus sphaericus and Mesocyclops leuckarti transferred from the Siemianówka Reservoir had a great dispersal capacity in the Narew River and could effectively support local populations in oxbow lakes over a distance of 180 km. Similarity between the crustacean communities in the river and the reservoir significantly decreased with the increasing distance from the dam. At the same time, crustacean communities in oxbow lakes were not affected by the distance from the source. Dispersal from the large source of zooplankton to local communities is a very important process but the local environmental factors such as habitat heterogeneity, aquatic vegetation and the hydrological connectivity can be strong enough to affect the structure of local crustacean communities in oxbow lakes.
Słowa kluczowe
Rocznik
Strony
297--303
Opis fizyczny
Bibliogr. 38 poz., rys., tab.
Twórcy
autor
  • Department of Hydrobiology, Institute of Biology, University of Białystok, ul. Ciołkowskiego 1J, 15-245 Białystok, Poland
Bibliografia
  • [1]. Akopian, M., Garnier, J. & Pourriot, R. (1999). A large reservoir as a source of zooplankton for the river: structure of the populations and influence of fish predation. J. Plankton Res. 21: 285-298.
  • [2]. Amarasekare, P. & Nisbet, R. (2001). Spatial heterogeneity, source-sink dynamics and the local coexistence of competing species. Am. Nat. 158: 572-584.
  • [3]. Beisner, B.E., Peres, P.R., Lindstrom, E.S., Barnett, A. & Longhi, M.L. (2006). The role of environmental and spatial processes in structuring lake communities from bacteria to fish. Ecology 87: 2985-2991.
  • [4]. Borthagaray, A.I., Berazategui, M. & Arim, M. (2015). Disentangling the effects of local and regional processes on biodiversity patterns through taxon-contingent metacommunity network analysis. Oikos 124(10): 1383-1390.
  • [5]. Cohen, G.M. & Shurin, J.B. (2003). Scale-dependence and mechanisms of dispersal in freshwater zooplankton. Oikos 103: 603-610.
  • [6]. Cottenie, K., Nuytten, N., Michels E. & De Meester, L. (2001). Zooplankton community structure and environmental conditions in a set of interconnected ponds. Hydrobiologia 442: 339-350.
  • [7]. Cottenie, K. (2005). Integrating environmental and spatial processes in ecological community dynamics. Ecology Letters 8: 1175-1192.
  • [8]. Czerniawski, R. & Domagała, J. (2013). Reduction of zooplankton communities in small lake outlets in relation to abiotic and biotic factors. Oceanological and HydrobiologicalStudies 42(2): 123-131.
  • [9]. Czerniawski, R., Pilecka-Rapacz, M. & Domagała, J. (2013). Zooplankton of inter-connected sections of lower Oder. Cent. Eur. J. Biol. 8: 18-29.
  • [10]. Dussart, B. & Defaye, D. (2001). Introduction to the Copepoda (2nd edition). Guides to the Identification of the Microinvertebrates of the Continental Waters of the World. Backhuys Publishers, Leiden.
  • [11]. Ejsmont-Karabin, J. & Karabin, A. (2004). Zespoły zooplanktonu w ekosystemach wodnych. Wody powierzchniowe Zooplankton communities in water ecosystems. Surface water. In: H. Banaszuk (Ed.) Przyroda Podlasia. Narwiański Park Narodowy [Nature of Podlasie. Narew National Park] (pp. 305-310). Publisher Economy and Environment, (In Polish).
  • [12]. Ejsmont-Karabin, J. (2008). Vertical microzonation of psammon rotifers (Rotifera) in the psammolittoral habitat of an eutrophic lake. Pol. J. Ecol. 56: 351-357.
  • [13]. Flössner, D. (1972). Krebstiere, Crustacea:Kiemen undBlattfuber, Branchiopoda, Fischlöuse, Branchiura. Die Tierwelt Deutschlands 60. Gustav Fischer Verlag, Jena, Germany 501 pp.
  • [14]. Flössner, D. (2000). Die Haplopoda und Cladocera (ohne Bosminidae) Mitteleuropas. Backhuys Publishers, Leiden.
  • [15]. Funk, A., Schiemer, F. & Reckendorfer, W. (2013). Metacommunity structure of aquatic gastropods in a river floodplain: the role of niche breadth and drift propensity. Freshwater Biology 58: 2505-2516.
  • [16]. Górniak A. & Karpowicz, M. (2014). Development of crustacean plankton in a shallow, polyhumic reservoir in the first 20 years after impoundment (northeast Poland). Inland Waters 4: 311-318.
  • [17]. Grabowska, M., Ejsmont-Karabin, J. & Karpowicz, M. (2013). Reservoir river relationships in lowland, shallow, euthrophic systems: an impact of zooplankton from hypertrophic reservoir on river zooplankton. Polish Journal of Ecology 61(4): 757-766.
  • [18]. Grabowska, M. & Mazur-Marzec, H. (2014). Vertical distribution of cyanobacteria biomass and cyanotoxin production in the polymictic Siemianówka Dam Reservoir (eastern Poland). Archives of Polish Fisheries 22: 41-51.
  • [19]. Grabowska, M., Kobos, J., Toruńska-Sitarz, A. & Mazur- Marzec, H. (2014). Non-ribosomal peptides produced by Planktothrix agardhii from Siemianówka Dam Reservoir SDR (north-east Poland). Archives of Microbiology 196: 697-707.
  • [20]. Ivlev, V.S. (1961). Experimental ecology of the feeding of fishes. Yale Univ. Press.
  • [21]. Jacobs, J. (1974). Quantitative measurement of food selection. A modification of the forage ratio and Ivlev's electivity index. Oecologia 14: 413-417.
  • [22]. Kentzer, A., Dembowska, E., Giziński, A. & Napiórkowski, P. (2010). Influence of the Włocławek Reservoir on hydrochemistry and plankton of a big, lowland river (the lower Vistula River, Poland). Ecological Engineering 36: 1747-1753.
  • [23]. Kuglerova, L., Jansson, R., Ryan, A., Sponseller, A., Laudon, H. & Malm-Renöfält, B. (2015). Local and regional processes determine plant species richness in a river-network metacommunity. Ecology 96: 381-391.
  • [24]. Leibold, M.A., Holyoak, M., Mouquet, N., Amarasekare, P., Chase, J.M. et al. (2004). The metacommunity concept: a framework for multi-scale community ecology. Ecology Letters 7: 601-613.
  • [25]. Leibold, M.A. & Norberg, J. (2004). Biodiversity in metacommunities: plankton as complex adaptive systems? Limnol. Oceanogr. 49: 1278-1289.
  • [26]. Louette, G., Vander Elst, M. & De Meester, L. (2006). Establishment success in young cladoceran communities: an experimental test. Limnol. Oceanogr. 51: 1021-1030.
  • [27]. MacArthur, R.H. & Wilson, E.O. (1963). An equilibrium theory of insular zoogeography. Evolution 17: 373-387.
  • [28]. Mouquet, N. & Loreau, M. (2002). Coexistence in metacommunities: The regional similarity hypothesis. Am. Nat. 159: 420-426.
  • [29]. Michels, E., Cottenie, K., Neys, L. & De Meester, L. (2001). Zooplankton on the move: first results on the quantification of dispersal in a set of interconnected ponds. Hydrobiologia 442: 117-126.
  • [30]. Mioduszewski, W., Kowalewski, Z., Szymczak, T., Okruszko, T. Biesiada, M. et al. (2004). Wody powierzchniowe [Surface water] In: H. Banaszuk (Ed.) Przyroda Podlasia. Narwiański Park Narodowy [Nature of Podlasie. Narew National Park] (pp. 83-106), Publisher Economy and Environment.
  • [31]. Napiórkowski, P. & Napiórkowska, T. (2013). The diversity and longitudinal changes of zooplankton in the lower course of a large, regulated European river (the lower Vistula River, Poland). Biologia 68(6): 1163-1171.
  • [32]. Pasztaleniec, A., M. Karpowicz & M. Strzałek, 2013. The inflience of habitat conditions on the plankton in the Białe oxbow lake (Nadbużański Landscape Park). Limnological Review 13(1): 43-50.
  • [33]. Piniewski, M., Acreman, M.C. Stratford, C.S., Okruszko, T., Giełczewski, M. et al. (2011). Estimation of environmental flows in semi-natural lowland rivers - the Narew basin case study. Pol. J. Environ. Stud. 20(5): 1281-1293.
  • [34]. Rybak, J.I. & Błędzki, L.A. (2010). Słodkowodne skorupiaki planktonowe. WUW, Warszawa, 366 pp.
  • [35]. Shurin, J.B & Allen, E.G. (2001). Effects of competition, predation, dispersal on local and regional species richness. American Naturalist 158: 624-637.
  • [36]. Smirnov, N.N. (1996). Cladocera: the Chydorinae and Sayciinae (Chydoridae) of the world. Guides to the identification of the microinvertebrates of the continental waters of the world. SPB Academic Publishing, Amsterdam: 197 pp.
  • [37]. Walks, D.J. & Cyr, H. (2004). Movement of plankton through Lake - Stream Systems - Freshwater Biol. 49: 745-759.
  • [38]. Winegardner, A., Jones, B., Ng I.S.Y., Siqueira, T. & Cottenie, K. (2012). The terminology of metacommunity ecology. Trends in Ecology and Evolution 27: 253-254.
Uwagi
Opracowanie ze środków MNiSW w ramach umowy 812/P-DUN/2016 na działalność upowszechniającą naukę.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-170a736b-4877-4b7c-8d65-45b10138727e
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