Submersed aquatic macrophytes and associated fauna as an effect of dam operation on a large lowland river

Ecological Engineering - Tập 99 - Trang 256-264 - 2017
Maria Grzybkowska1, Leszek Kucharski2, Małgorzata Dukowska1, Alice Michyio Takeda3, Joanna Lik1, Joanna Leszczyńska1
1Department of Ecology & Vertebrate Zoology, Faculty of Biology and Environmental Protection, University of Łódź, 12/16 Banacha Str., Łódź, 90-237, Poland
2Department of Conservation, Faculty of Biology and Environmental Protection, University of Łódź, 1/3 Banacha Str., Łódź, 90-237, Poland
3Nupelia, Department of Biology, National Council of Scientific and Technological Development, State University of Maringá, 5790 Colombo Av., 87020-900, Maringá, Parana, Brazil

Tài liệu tham khảo

Andrzejewski, 1987, Nowy zbiornik zaporowy na Warcie (New dam reservoir on the Warta River), Gosp. Rybna (Fish. Econ.), 10, 17 Armitage, 1984, Environmental changes induced by stream regulation and their effect on lotic macroinvertebrate community, 139 Armitage, 1987, The classification of tailwater sites receiving residual flows from upland reservoirs in Great Britain, using macroinvertebrate data, 131 Bednarek, 2001, Undamming rivers: a reviews of the ecological impacts of dam removal, Environ. Manage., 27, 803, 10.1007/s002670010189 Benítez-Mora, 2014, Ecological responses of aquatic macrophytes and benthic macroinvertebrates to dams in the Henares River Basin (Central Spain), Hydrobiologia, 728, 167, 10.1007/s10750-014-1816-6 Chang, 2008, Longitudinal changes in zooplankton distribution below the reservoir outfall with reference to river planktivory, Limnology, 9, 125, 10.1007/s10201-008-0244-6 Chick, 1997, Habitat selection by three littoral zone fishes: effect predation pressure, plant density and macrophyte type, Ecol. Freshw. Fish, 6, 27, 10.1111/j.1600-0633.1997.tb00139.x van Donk, 2002, Impact of submerged macrophytes including charophytes on phyto- and zooplankton communities: allelopathy versus other mechanisms, Aquat. Bot., 72, 261, 10.1016/S0304-3770(01)00205-4 Dukowska, 2014, Coexistence of fish species in a large lowland river: food niche partitioning between small-sized percids, cyprinids and sticklebacks in submersed macrophytes, PLoS One, 9, e109927, 10.1371/journal.pone.0109927 Dukowska, 2005, Predation of Hydra sp. on epiphytic fauna and zooplankton in a disturbed lowland river, Teka Comm. Prot. Form. Nat. Environ., 2, 48 Dumont, 1975, The dry weight estimate of biomass in a selection of Cladocera, Copepoda and Rotifera from the plankton, periphyton and benthos of continental waters, Oecologia, 19, 75, 10.1007/BF00377592 EMPHP, 2007 Egger, 2012, Dynamic vegetation model as a tool for ecological impact assessments of dam operation, J. Hydro. Environ. Res., 6, 151, 10.1016/j.jher.2012.01.007 Feld, 2011, From natural to degraded rivers and back again: a test of restoration ecology theory and practice, Adv. Ecol. Res., 44, 119, 10.1016/B978-0-12-374794-5.00003-1 Franklin, 2008, Flow controls on lowland river macrophytes, A review. Sci. Total Environ., 400, 369, 10.1016/j.scitotenv.2008.06.018 Górski, 2012, Post-damming flow regime development in a large lowland river (Volga, Russian Federation), implications for floodplain inundation and fisheries, River Res. Appl., 28, 1121, 10.1002/rra.1499 Głowacki, 2011, Effects of damming a large lowland river on chironomids and fish assessed with the (multiplicative partitioning of) true/hill biodiversity measure, River Res. Appl., 37, 612, 10.1002/rra.1380 Galicka, 1996, Composition of phytoplankton in a middle course section of the River Warta, including the Jeziorsko Reservoir (central Poland), Acta Hydrobiol., 38, 25 Galicka, 2000, Hydroconstruction related changes of water quality in the Warta River Poland, Acta Univ. Lodz., Folia limnol., 7, 193 Grabowska, 2013, Reservoir-river relationships in lowland, shallow, eutrohic systems: an impact of zooplankton from hypertrophic reservoir on river zooplankton, Pol. J. Ecol., 61, 759 Graf, 2006, Downstream hydrologic and geomorphic effects of large dams on American rivers, Geomorphology, 79, 336, 10.1016/j.geomorph.2006.06.022 Grenouillet, 2001, Juvenile fishes in macrophyte beds: influence of food resources, habitat structure and body size, J. Fish Biol., 59, 939, 10.1111/j.1095-8649.2001.tb00163.x Grzybkowska, 1992, Diel drift of Chironomidae in a large lowland river (Central Poland), Neth. J. Aquat. Ecol., 26, 355, 10.1007/BF02255262 Grzybkowska, 2001, Impact of the dam-reservoir on river macrobenthic community: long-term study of Jeziorsko reservoir and the Warta River in central Poland, Pol. J. Ecol., 49, 243 Grzybkowska, 2002, Communities of Chironomidae (Diptera) above and below a reservoir on a lowland river: long-term study, Ann. Zool., 52, 235 Grzybkowska, 1990, Seasonal dynamics and production of Chironomidae in a large lowland river upstream and downstream from a new reservoir in Central Poland, Arch. Hydrobiol., 119, 439, 10.1127/archiv-hydrobiol/119/1990/439 Grzybkowska, 1996, Seston (particles>400um) of the Warta River downstream from the new reservoir of Jeziorsko, Acta Univ. Lodz., Folia limnol., 6, 47 Grzybkowska, 2003, Seasonal dynamics of macroinvertebrates associated with submersed macrophytes in a lowland river downstream of the dam reservoir, Ecohydrol. Hydrobiol., 3, 399 Ibáñez, 2012, Monitoring the effects of floods on submerged macrophytes in a large river, Sci. Total Environ., 440, 132, 10.1016/j.scitotenv.2012.07.073 Jeppesen, 1998 Kleeberg, 2010, Effects of aquatic macrophytes on organic matter deposition, resuspension and phosphorus entrainment in a lowland river, Freshw. Biol., 55, 326, 10.1111/j.1365-2427.2009.02277.x Kohler, 2010, Regulation of submersed macrophyte biomass in a temperate lowland river interactions between shading by bank vegetation, epiphyton and water turbidity, Aquat. Bot., 92, 129, 10.1016/j.aquabot.2009.10.018 Kornijów, 2001, Epiphytic fauna associated submerged macrophytes of the Iraqi lakes Tharthar and Habbaniya, Arch. Pol. Fish., 9, 147 Kruk, 2003, Impoundment impact on populations of facultative riverine fish, Ann. Limnol., 39, 197, 10.1051/limn/2003016 Lair, 2006, A review of regulation mechanisms of metazoan plankton in riverine ecosystems: aquatic habitat versus biota, River Res. Appl., 22, 567, 10.1002/rra.923 Li, 2010, Modeling the refuge effect of submerged macrophytes in ecological dynamics of shallow lakes: a new model of fish functional response, Ecol. Model., 221, 2076, 10.1016/j.ecolmodel.2010.05.005 Lik, 2014, Biocenoza zanurzonych makrofitów w Warcie poniżej tamy (Biocenosis of submersed macrophytes downstream of a dam in the Warta River Rocz. Nauk. PZW, Sci. Annu. Pol. Angling Assoc.), 27, 103 Lik, 2015, Przegęszczona płoć i jej baza pokarmowa zasobna w zooplankton poniżej tamy zbiornika Jeziorsko (Overcrowded roach and their zooplankton abundant food base downstream of the Jeziorsko dam reservoir), Rocz. Nauk. PZW (Sci. Annu. Pol. Angling Assoc.), 28, 85 Lindegaard, 1989, A review of secondary production of zoobenthos in freshwater ecosystems with special reference to Chironomidae (Diptera), Acta Biol. Debr. Oecol. Hung., 3, 231 Lorenz, 2012, Macrophytes respond to reach-scale river restorations, J. Appl. Ecol., 49, 202, 10.1111/j.1365-2664.2011.02082.x Manatunge, 2000, The influence of structural complexity on fish-zooplankton interactions: a study using artificial submerged macrophytes, Environ. Biol. Fishes, 58, 425, 10.1023/A:1007691425268 de Nie, 1987 Papas, 2007 Penczak, 2005, Patternizing of impoundment impact (1985–2002) on fish assemblages in a lowland river using the Kohonen algorithm, J. Appl. Ichthyol., 21, 169, 10.1111/j.1439-0426.2005.00649.x Penczak, 2012, Implementation of a self-organizing map for investigation of impoundment impact on fish assemblages in a large, lowland river: long-term study, Ecol. Model., 227, 64, 10.1016/j.ecolmodel.2011.12.006 Petersen, 1989, Microbial and animal processing of detritus in a woodland stream, Ecol. Monogr., 59, 21, 10.2307/2937290 Petts, 1984 Robinson, 2012, Long-term changes in community assembly, resistance, and resilience following experimental floods, Ecol. Appl., 22, 1949, 10.1890/11-1042.1 Rozas, 1988, Occupation of submerged aquatic vegetation by fishes: testing the roles of food and refuge, Oecologia, 77, 101, 10.1007/BF00380932 Spaink, 1998, Plankton dynamics in a dead arm of the River Waal: a comparison with the main channel, J. Plankton Res., 20, 1997, 10.1093/plankt/20.10.1997 Stanford, 1992, Mitigating the impacts of stream and lake regulation in the Flathead River catchment, Montana, U.S.A.: an ecosystem perspective, Aquat. Conserv.: Mar. Freshw. Ecosys., 2, 35, 10.1002/aqc.3270020104 StatSoft Inc, 2011 Szoszkiewicz, 2010, Macrophyte development in unimpacted lowland rivers in Poland, Hydrobiologia, 656, 117, 10.1007/s10750-010-0439-9 Szoszkiewicz, 2010, Zróżnicowanie makrofitów w różnych typach nizinnych rzek referencyjnych w Polsce (Differentiation of macrophytes in the reference conditions of different river types in Poland). Wod.-Środ.-Obsz. Wiej, Water-Environ.-Rural Areas), 31, 297 Szoszkiewicz, 2014, Diversity of macrophyte communities and their relationship to water quality in different types of lowland rivers in Poland, Hydrobiologia, 737, 77, 10.1007/s10750-013-1698-z Tóth, 2012, Are macrophyte-dwelling Chironomidae (Diptera) largely opportunistic in selecting plant species?, Eur. J. Entomol., 109, 247, 10.14411/eje.2012.033 Tarkowska-Kukuryk, 2014, Spatial distribution of epiphytic chironomid larvae in a shallow macrophyte-dominated lake: effect of macrophyte species and food resources, Limnology, 15, 141, 10.1007/s10201-014-0425-4 The Regional Water Management Authority in Poznań, 2013 Tokeshi, 1985, Microhabitats of stream invertebrates on two submersed macrophytes with contrasting leaf morphology, Holarc. Ecol., 8, 313 Ward, 1980, Tailwater biota: ecological response to environmental alternations, 1516 Zhang, 2014, Reservoir-induced hydrological alterations and environmental flow variation in the East River the Pearl River Basin, China, Stoch. Environ. Res. Risk A, 28, 2119, 10.1007/s00477-014-0893-4