1. bookVolume 17 (2017): Issue 2 (June 2017)
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2300-7575
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17 Mar 2011
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4 times per year
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Mass development of phytoplankton in the River Warta in Poznań (Poland) in the 21st century

Published Online: 19 Dec 2017
Volume & Issue: Volume 17 (2017) - Issue 2 (June 2017)
Page range: 79 - 88
Journal Details
License
Format
Journal
eISSN
2300-7575
First Published
17 Mar 2011
Publication timeframe
4 times per year
Languages
English

Allan J.D., Castillo M.M., 2009, Stream ecology. Structure and functioning of running waters, Springer, Dordrecht, 436 pp.Search in Google Scholar

Al-Tebrineh, J., Merrick, C., Ryan, D., Humpage, A., Bowling, L., Neilan, B.A, 2012, Community composition, toxigenicity, and environmental conditions during a cyanobacterial bloom occurring along 1,100 kilometers of the Murray River, Appl. Environ. Microbiol. 78(1): 263–272.10.1128/AEM.05587-11Search in Google Scholar

Amblard C., Carrias J.F., Bourdier G., Maurin N., 1995, The microbial loop in a humic lake: seasonal and vertical variations in the structure of different communities, Hydrobiologia 300/301: 71–84.10.1007/BF00024449Search in Google Scholar

Bucka H., 1987, Ecological aspects of the masws appearance of planktonic algae in dam reservoir of southern Poland, Acta Hydrobiol. 29(2): 149–191.Search in Google Scholar

Bucka H., 1989, Ecology of selected planktonic algae causing water blooms, Acta Hydrobiol. 31(3/4): 207–258.Search in Google Scholar

Bucka H., Wilk-Woźniak E., 2007, Glony pro-i eukariotyczne zbiorowisk fitoplanktonu w zbiornikach wodnych Polski Południowej (Pro- and eukaryotic algae of the phytoplankton communities from water bodies in southern Poland), IOP PAN, Kraków, 352 pp (in Polish).Search in Google Scholar

Burchardt L., 1998, The response of Aphanizomenon flos-aquae (L.) Ralfs to changes of environmental conditions, Oceanol. Studies 27(1): 9–14.Search in Google Scholar

Carmichael W., 2008, A world overview – One-hundred-twenty-seven years of research on toxic cyanobacteria – Where do we go from here?, Adv. Exp. Med. Biol. 619: 104–125.10.1007/978-0-387-75865-7_4Search in Google Scholar

Dodds W.K., Jones J.R., Welch E.B, 1998, Suggested classification of stream trophic state: distributions of temperate stream types by chlorophyll, total nitrogen, and phosphorus, Water Res. 32(5): 1455–1462.10.1016/S0043-1354(97)00370-9Open DOISearch in Google Scholar

Galicka W., Kruk A., 1999, Structure of phytoplankton of the Jeziorsko Reservoir (central Poland) in the spring-autumn period of 1996, Acta Hydrob. 41(1): 17–35.Search in Google Scholar

Galicka W., Lesiak T., 1996a, Composition of phytoplankton in the middle course section of the Warta River, including the Jeziorsko Reservoir (central Poland), Acta Hydrobiol. 38(1/2): 25–33.Search in Google Scholar

Galicka W., Lesiak T., 1996b, Wpływ zbiornika Jeziorsko na fitoplankton środkowego odcinka rzeki Warty (Impact of the Jeziorsko Dam Reservoir on phytoplankton in the Middle Warta River course), Acta Univ. Lodz. Folia Bot. 11: 161–173 (in Polish, English summary).Search in Google Scholar

Gągała I., Izydorczyk K., Jurczak T., Pawełczyk J., Dziadek J., Wojtal-Frankiewicz A., Jóźwik A., Jaskulska A., Mankiewicz-Boczek J., 2014, Role of environmental factors and toxic genotypes in the regulation of microcystins-producing cyanobacterial blooms, Microb. Ecol. 67(2): 465–479.10.1007/s00248-013-0303-3Search in Google Scholar

Grabowska M., 2012, The role of a eutrophic lowland reservoir in shaping the composition of river phytoplankton, Ecohydrol. Hydrobiol. 12(3): 231–243.10.1016/S1642-3593(12)70206-9Search in Google Scholar

Grabowska M., Glińska-Lewczuk K., Obolewski K., Burandt P., Kobus S., Dunalska J., Kujawa R., Goździejewska A., Skrzypczak A., 2014, Effects of hydrological and physicochemical factors on phytoplankton communities in floodplain lakes, Pol. J. Environ. Stud. 23(3): 713–725.Search in Google Scholar

Grabowska M., Mazur-Marzec H., 2011, The effect of cyanobacterial blooms in the Siemianówka Dam Reservoir on the phytoplankton structure in the Narew River, Oceanol. Hydrobiol. Stud. 40(1): 19–26.10.2478/s13545-011-0003-xSearch in Google Scholar

Grabowska M., Pawlik-Skowrońska B., 2008, Replacement of Chroococcales and Nostocales by Oscillatoriales caused a significant increase in microcystin concentrations in a dam reservoir, Oceanol. Hydrobiol. Stud. 37(4): 23–33.10.2478/v10009-008-0016-ySearch in Google Scholar

[GUS] Główny Urząd Statystyczny (Central Statistical Office), 2016, Ochrona środowiska 2016 (Environment 2016), Wydaw. GUS, Warszawa, 560 pp (in Polish and English). Retrieved from http://stat.gov.pl/obszary-tematyczne/srodowisko-energia/srodowisko/ochrona-srodowiska-2016,1,17.html [accessed 21 June 2017].Search in Google Scholar

Ha K., Kim H.-W., Joo G.-J., 1998, The phytoplankton succession in the lower part of hypertrophic Nakdong River (Mulgum), South Korea, Hydrobiologia (369/370): 217–227.10.1023/A:1017067809089Search in Google Scholar

Hašler P., Hindák F., Hindákowá A., 2007, Phytoplankton of the Morava and Dyje Rivers in spring and summer 2006, Fottea 7(1): 49–68.10.5507/fot.2007.005Search in Google Scholar

Hawley G.R.W., Whitton B.A., 1991a, Survey of algal picoplankton from lakes in five continents, Verh. Int. Ver. Limnol. 24: 1220–1223.10.1080/03680770.1989.11898948Search in Google Scholar

Hawley G.R.W., Whitton B.A, 1991b, Seasonal changes in chlorophyll containing picoplankton population of ten lakes in northern England, Int. Revue Ges. Hydrobiol. 76(4): 545–554.10.1002/iroh.19910760407Search in Google Scholar

Hermanowicz W., Dojlido J.R., Dożański W., Koziorowski B., Zerbe J., 1999, Fizyczno-chemiczne badanie wody i ścieków (Physical-chemical examination of water and wastewater), Wydaw. Arkady Warszawa, 556 pp (in Polish).Search in Google Scholar

Hoppówna I., 1925, Plankton rzeki Warty pod Poznaniem (Plankton of the River Warta near Poznań), Pr. Kom. Mat. Przyr. PTPN 3: 1–41 (in Polish).Search in Google Scholar

Istvánovics V., Honti M., Vörös L., Kozma Z., 2010, Phytoplankton dynamics in relation to connectivity, flow dynamics and resource availability – the case of a large, lowland river, the Hungarian Tisza, Hydrobiologia 637: 121–141.10.1007/s10750-009-9991-6Search in Google Scholar

Kasza H., 2009, Zbiorniki zaporowe. Znaczenie – eutrofizacja – ochrona (Dam Reservoirs. Importance – eutrophication – protection.), Wydaw. ATH, Bielsko-Biała, 366 pp (in Polish).Search in Google Scholar

Kentzer A., Dembowska E., Giziński A., Napiórkowski P., 2010, Influence of the Włocławek Reservoir on hydrochemistry and plankton of large lowland river (the Lower Vistula River, Poland), Ecol. Eng. 36(12): 1747–1753.10.1016/j.ecoleng.2010.07.024Search in Google Scholar

Kniat J., Kołaczkowski S., 1963, Stan sanitarny rzeki Warty na terenie miasta Poznania (The sanitary condition of the River Warta in the city of Poznań), Pr. Kom. Nauk Podst. Stosow. PTPN 1(4): 1–54 (in Polish, English summary).Search in Google Scholar

Kobos J., Błaszczyk A., Hohlfeld N., Toruńska-Sitarz A., Krakowiak A., Hebel A., Sutryk K., Grabowska M., Toporowska M., Kokociński M., Messyasz B., Rybak A., Napiórkowska-Krzebietke A., Nawrocka L., Pełechata A., Budzyńska A., Zagajewski P., Mazur-Marzec H., 2013, Cyanobacteria and cyanotoxins in Polish freshwater bodies, Oceanol. Hydrobiol. Stud. 42(4): 358–378.10.2478/s13545-013-0093-8Search in Google Scholar

Kołaczkowski S., Preis B., 1962, Zmienność składu fizykochemicznego, biologicznego i bakteriologicznego wody rzeki Warty w Poznaniu (Variability of the physicochemical, biological and bacteriological composition of the waters of the River Warta in Poznań) [manuscript], Instytut Gospodarki Komunalnej, Poznań, 59 pp (in Polish).Search in Google Scholar

Mankiewicz-Boczek J., Palus J., Gągała I., Izydorczyk K., Jurczak T., Dziubałtowska E., Stępnik M., Arkusz J., Komorowska M., Skowron A., Zalewski M., 2011, Effects of microcystins-containing cyanobacteria from a temperate ecosystem on human lymphocytes culture and their potential for adverse human health effects, Harmful Algae 10(4): 356–365.10.1016/j.hal.2011.01.001Open DOISearch in Google Scholar

Mądrecka B., 2015, Dynamika zmian fitoplanktonu w środkowym biegu rzeki Warty i jej wpływ na koncepcje uzdatniania wody (Dynamics of phytoplankton changes in the middle reaches of the river Warta and its impact on water treatment concepts) [Dissertation], Politechnika Poznańska, Poznań, 250 pp (in Polish, English summary).Search in Google Scholar

Merel S., Walker D., Chicana R., Snyder S., Baurès E., Thomas O., 2013, State of knowledge and concerns on cyanobacterial blooms and cyanotoxins, Environ. Int. 59: 303–327.10.1016/j.envint.2013.06.01323892224Search in Google Scholar

Mihaljević M., Špoljarić D., Stević F., Cvijanović V., Hackenberger Kutuzović B., 2010, The influence of extreme floods from the River Danube in 2006 on phytoplankton communities in a floodplain lake: Shift to a clear state, Limnologica 40: 260–268.10.1016/j.limno.2009.09.001Open DOISearch in Google Scholar

Mohamed Z.A., Deyab M.A., Abou-Dobara M.I., El-Sayed A.K., El-Raghi W.M., 2015, Occurrence of cyanobacteria and microcystin toxins in raw and treated waters of the Nile River, Egypt: implication for water treatment and human health, Environ. Sci. Pollut. Res. 22: 11716–11727.10.1007/s11356-015-4420-z25854210Search in Google Scholar

Napiórkowska-Krzebietke A., 2014, Phytoplankton of artificial ecosystems – an attempt to assess water quality, Arch. Pol. Fish. 22(1): 81–96.10.2478/aopf-2014-0008Search in Google Scholar

O’Neil J.M., Davis T.W., Burford M.A., Gobler C.J., 2012, The rise of harmful cyanobacteria blooms: The potential roles of eutrophication and climate change, Harmful Algae 14: 313–334.10.1016/j.hal.2011.10.027Open DOISearch in Google Scholar

Palus J., Dziubałtowska E., Stańczyk M., Lewińska D., Mankiewicz-Boczek J., Izydorczyk K., Bonisławska A., Jurczak T., Zalewski M., Wąsowicz W., 2007, Biomonitoring of cyanobacterial blooms in polish water reservoir and cytotoxicity and genotoxicity of selected cyanobacterial extracts, Inter. Journ. Occup. Med. Envir. Health. 20(1): 48–65.10.2478/v10001-007-0008-2Search in Google Scholar

Pavoni M., 1963, Die Bedeutung des Nanoplanktons im Vergleich zum Netzplankton (The importance of nanoplankton in comparison to net plankton), Schweiz. Z. Hydrol. 25: 219–341 (in German, English summary).10.1007/BF02505197Search in Google Scholar

Piontek M., Czyżewska W., Mankiewicz-Boczek J., 2017, The occurrence of cyanobacteria blooms in the Obrzyca River catchment area (Poland), a source of drinking water, Pol. J. Environ. Stud. 26(3): 1191–1201.10.15244/pjoes/66851Search in Google Scholar

Porter K.G., Feig Y.S., 1980, The use of DAPI for identyfying and counting aquatic microflora, Limnol. Oceanogr. 25: 943–948.10.4319/lo.1980.25.5.0943Search in Google Scholar

Prygiel J., Leitao M., 1994, Cyanophycean blooms in the reservoir of Val Joly (northern France) and their development in downstream rivers, Hydrobiologia 289: 85–96.10.1007/978-94-017-2670-2_8Search in Google Scholar

Pułyk M. (ed.), 2010, Stan wód Warty na terenie województwa wielkopolskiego w latach 1999–2009 (Water quality of the River Warta within the Greater Poland Voivodeship in 1999–2009), Wydaw. WIOŚ w Poznaniu, Poznań, 73 pp (in Polish). Retrieved from http://docplayer.pl/37546-Inspekcja-ochrony-srodowiska-stan-wod-warty.html [accessed 21 June 2017].Search in Google Scholar

[RZGW] Regionalny Zarząd Gospodarki Wodnej w Poznaniu (Regional Water Management Authority in Poznań), 2007, Charakterystyka regionu wodnego Waty i identyfikacja istotnych problemów gospodarki wodnej (Characteristics of the Warta water region and identification of significant problems of water management), Wydaw. RZGW w Poznaniu, Poznań 67 pp (in Polish). Retrieved from http://poznan.rzgw.gov.pl/images/stories/o_rzgw/udzial-spoleczenstwa/Charakterystyka-regionu-wodnego-Warty.pdf [accessed 21 June 2017].Search in Google Scholar

Reynolds C.S., 2000, Hydroecology of river plankton: the role of variability in channel flow, Hydrol. Process. 14(16–17): 3119–3132.10.1002/1099-1085(200011/12)14:16/17<3119::AID-HYP137>3.0.CO;2-6Search in Google Scholar

Reynolds C.S., Descy J.-P., 1996, The production, biomass and structure of phytoplankton in large rivers, Large Rivers 10(1–4): 161–187.10.1127/lr/10/1996/161Search in Google Scholar

Severn S.R.T., Munawar M., Mayfield C.I., 1989, Measurements of sediment toxicity of autotrophic and heterotrophic picoplankton by epifluorescence microscopy, Hydrobiologia 176/177: 525–530.10.1007/BF00026587Search in Google Scholar

Sierosławska A., Rymuszka A., Kalinowska R., Skowroński T., Bownik B., Pawlik-Skowrońska B., 2010, Toxicity of cyanobacterial bloom in the eutrophic dam reservoir (southeast Poland), Environ. Toxicol. Chem. 29(3): 556–560.10.1002/etc.86Open DOISearch in Google Scholar

Sługocki Ł., Goździk I., Pilecka-Rapacz M., Czerniawski R., Domagała J., 2014, The effect of environmental factors on the structure of phytoplankton in the lower Odra River, Pol. J. Natur. Sc. 29(2): 137–152.Search in Google Scholar

Stanković I., Vlahović T., Udowič M.G., Várbíró G., Borics G., 2012, Phytoplankton functional and morpho-functional approach in large floodplain rivers, Hydrobiologia 698: 217–231.10.1007/s10750-012-1148-3Search in Google Scholar

Szeląg-Wasielewska E., 2004, Dynamics of autotrophic picoplankton communities in the epilimnion of a eutrophic lake (Strzeszyńskie Lake, Poland), Ann. Limnol. – Int. J. Lim. 40(2): 113–120.10.1051/limn/2004009Open DOISearch in Google Scholar

Szeląg-Wasielewska E., Stachnik W., Gawrońska R., 2005, Variability of picophytoplankton communities during cold-water period in small lowland river, Rocz. AR Pozn. 357, Bot.-Stec. 8: 151–159.Search in Google Scholar

Szeląg-Wasielewska E., Zagajewski P., Stachnik W., 2009, Cyanobacterial communities of the lowland Warta River (Poland), Oceanol. Hydrobiol. Stud. 38(Suppl. 2): 1–7.Search in Google Scholar

Weisse T., 1991, The microbial food web and its sensitivity to eutrophication and contaminant enrichment: a cross-system overview, Int. Rev. Ges. Hydrobiol. 76(3): 327–337.10.1002/iroh.19910760305Search in Google Scholar

Weisse T., Mindl B., 2002, Picocyanobacteria – sensitive bioindicators of contaminant stress in an alpine lake (Traunsee, Austria), Water Air Soil Pollut. 2: 191–210.10.1023/A:1020312210740Search in Google Scholar

Wetzel R.G. and Likens G.E., 1991, Limnological analyses, Springer, New York, 391 pp.10.1007/978-1-4757-4098-1Search in Google Scholar

Wilk-Woźniak E., Bucka H., Mrozińska T., 2003, Contribution to a broadening of taxonomical and ecological knowledge on Woronichinia naegeliana (Unger) Elenkin, Algol. Stud. 109: 609–615.10.1127/1864-1318/2003/0109-0609Search in Google Scholar

Zagajewski P., Gołdyn R., Fabiś M., 2007, Water blooms and their toxicity in the public swimming areas in the Poznań district, Oceanol. Hydrobiol. Stud. 36(Suppl. 1): 181–187.Search in Google Scholar

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