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Research Article

Under-ice environmental conditions, planktonic communities and ichthyofauna in dystrophic lakes

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Pages 340-351 | Received 29 Apr 2020, Accepted 06 Feb 2021, Published online: 05 Mar 2021

References

  • Adámek Z. 2014. Hydrobiology in fisheries. In: Adámek Z, Helešic J, Maršálek B, Rulik M, editors. Applied hydrobiology. Vodňany, Czech Republic: Faculty of Fisheries and Protection of Waters, University of South Bohemia in České Budéjovice. pp. 307–351.
  • 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. DOI: 10.1007/BF00024449.
  • American Public Health Association. 1999. Standard methods for the examination of water and wastewater. New York: American Public Health Association, American Water Works Association, Water Environment Federation.
  • Amundsen P-A, Knudsen R. 2009. Winter ecology of Arctic charr (Salvelinus alpinus) and brown trout (Salmo trutta) in a subarctic lake, Norway. Aquatic Ecology 43:765–775. DOI: 10.1007/s10452-009-9261-8.
  • Arvola L, Kankaala P. 1989. Winter and spring variability in phyto- and bacterioplankton in lakes with different water colour. Aqua Fennica 19:29–39.
  • Arvola L, Metsälä TR, Similä A, Rask M. 1990. Phyto- and zooplankton in relation to water pH and humic content in small lakes in southern Finland. Verhandlungen des Internationalen Verein. Limnologie 24:688–692.
  • Arvola L, Tulonen T. 1998. Effects of allochthonous dissolved organic matter (DOM) and nutrients on the growth of bacteria and algae from a highly humic lake. Environment International 24:509–520. DOI: 10.1016/S0160-4120(98)00045-2.
  • Beaver JR, Crisman TL. 1989. The role of ciliated protozoa in pelagic freshwater ecosystems. Microbial Ecology 17:111–136. DOI: 10.1007/BF02011847.
  • Bengtsson L. 2011. Ice-covered lakes: Environment and climate – Required research. Hydrobiological Processes 25:2767–2769. DOI: 10.1002/hyp.8098.
  • Berggren M, Bergström A-K, Karlsson J. 2015. Intraspecific autochthonous and allochthonous resource use by zooplankton in a humic lake during the transitions between winter, summer and fall. PLoS ONE 10(3):e0120575. DOI: 10.1371/journal.pone.0120575.
  • Bertilsson S, Burgin A, Carey CC, Fey SB, Grossart H-P, Grubisic LM, Jones ID, Kirillin G, Lennon JT, Shade A, Smyth RL. 2013. The under-ice microbiome of seasonally frozen lakes. Limnology and Oceanography 58:1998–2012. DOI: 10.4319/lo.2013.58.6.1998.
  • Białokoz W, Krzywosz T. 1992. Struktura ichtiofauny w jeziorach Wigierskiego Parku Narodowego. In: Zdanowski B, editor. Lakes of Wigry National Park: Trophic status and protection directions. Zeszyty Naukowe Czlowiek i Srodowisko 3:153–162. ( in Polish)
  • Bižić-Ionescu M, Amann R, Grossart H-P. 2014. Massive regime shifts and high activity of heterotrophic bacteria in an ice-covered lake. PLoS ONE 9:e113611. DOI: 10.1371/journal.pone.0113611.
  • Blanchfield PJ, Tate LS, Plumb JM, Acolas M-L, Beaty KG. 2009. Seasonal habitat selection by lake trout (Salvelinus namaycush) in a small Canadian shield lake: Constraints imposed by winter conditions. Aquatic Ecology 43:777–787. DOI: 10.1007/s10452-009-9266-3.
  • Bolsenga SJ, Vanderploeg HA. 1992. Estimating photosynthetically available radiation into open and ice covered freshwater lakes from surface characteristics; a high transmittance case study. Hydrobiologia 243/244:95–104. DOI: 10.1007/BF00007024.
  • Bottrell HH, Duncan A, Gliwicz ZM, Grygierek E, Herzig A, Hillbricht-Ilkowska A, Kurasawa H, Larsson P, Węgleńska T. 1976. A review of some problems in zooplankton production studies. Norwegian Journal of Zoology 24:419–456.
  • Drzymulska D, Zieliński P. 2013. Developmental changes in the historical and present-day trophic status of brown water lakes. Are humic water bodies a uniform aquatic ecosystem? Wetlands 33:610–919. DOI: 10.1007/s13157-013-0452-7.
  • Ejsmont-Karabin J. 1998. Empirical equations for biomass calculation of planktonic rotifers. Polish Archives of Hydrobiology 45:513–522.
  • Ejsmont-Karabin J, Kalinowska K, Karpowicz M. 2020. Structure of ciliate, rotifer and crustacean communities in lake systems of northeastern Poland. In: Korzeniewska E, Harnisz M, editors. Polish river basins and lakes – Part II: Biological status and water management. The handbook of environmental chemistry 87. Springer Nature Switzerland. pp. 77–101. DOI: 10.1007/978-3-030-12139-6_4.
  • Eloranta P. 1986. Phytoplankton structure in different lake types in central Finland. Holarctic Ecology 9:214–224.
  • Foissner W, Berger H, Schaumburg J. 1999. Identification and ecology of limnetic plankton ciliates. Informationberichte des Bayer Landesamtes für Wasserwirtschaft, München.
  • Golterman HL. 1969. Methods for chemical analysis of fresh waters. IBP Handbook No 8. Oxford and Edinburgh: Blackwell Scientific Publications.
  • Górniak A, Jekatierynczuk E, Dobrzyń P. 1999. Hydrochemistry of three dystrophic lakes in northeastern Poland. Acta Hydrochimica et Hydrobiologica 27:12–18. DOI: 10.1002/(SICI)1521-401X(199901)27:1<12::AID-AHEH12>3.0.CO;2-X.
  • Grabowska M, Górniak A. 2004. Summer phytoplankton of some dystrophic lakes of Wigry National Park. Rocznik Augustowsko-Suwalski 4:99–104. ( in Polish)
  • Guiry MD, Guiry GM. 2016. AlgaeBase. World-wide electronic publication, National University of Ireland, Galway. Available: http://www.algaebase.org. Accessed Oct 2016 13.
  • Hansen PJ. 2002. Effect of high pH on the growth and survival of marine phytoplankton: Implications for species succession. Aquatic Microbial Ecology 28:279–288. DOI: 10.3354/ame028279.
  • Jakkila J, Leppäranta M, Kawamura T, Shirasawa K, Salonen K. 2009. Radiation transfer and heat budget during the ice season in Lake Pääjärvi, Finland. Aquatic Ecology 43:681–692. DOI: 10.1007/s10452-009-9275-2.
  • James RT. 1991. Microbiology and vchemistry of acid lakes in Florida: II. Seasonal relationships. Hydrobiologia 213:227–240. DOI: 10.1007/BF00016424.
  • Jones RI, Arvola L. 1984. Light penetration and some related characteristics in small forest lakes in southern Finland. Verhandlungen des Internationalen Verein. Limnologie 22:811–816.
  • Jones RI, Ilmavirta V. 1978. Vertical and seasonal variation of phytoplankton photosynthesis in a brown‐water lake with winter ice cover. Freshwater Biology 8:561–572. DOI: 10.1111/j.1365-2427.1978.tb01478.x.
  • Kalinowska K. 2000. Ciliates in small humic lakes (Masurian Lakeland, Poland): Relationship to acidity and trophic parameters. Polish Journal of Ecology 48:169–183.
  • Kalinowska K. 2004. Bacteria, nanoflagellates and ciliates as components of the microbial loop in three lakes of different trophic status. Polish Journal of Ecology 52:19–34.
  • Kalinowska K, Grabowska M. 2016. Autotrophic and heterotrophic plankton under ice in a eutrophic temperate lake. Hydrobiologia 777:111–118. DOI: 10.1007/s10750-016-2769-8.
  • Kalinowska K, Karpowicz M. 2020. Ice-on and ice-off dynamics of ciliates and metazooplankton in the Łuczański Canal (Poland). Aquatic Ecology 54:1121–1134. DOI: 10.1007/s10452-020-09797-3.
  • Kalinowska K, Napiórkowska-Krzebietke A, Bogacka-Kapusta E, Hutorowicz J, Pyka J, Stawecki K, Kapusta A, Chybowski Ł. 2017. Microbial and classic food web components under ice cover in eutrophic lakes of different morphometry and fisheries management. Oceanological and Hydrobiological Studies 46:271–282. DOI: 10.1515/ohs-2017-0029.
  • Karpowicz M, Ejsmont-Karabin J. 2018. Influence of environmental factors on vertical distribution of zooplankton communities in humic lakes. Annales De Limnologie – International Journal of Limnology 54:17. DOI: 10.1051/limn/2018004.
  • Karpowicz M, Ejsmont-Karabin J, Kozłowska J, Feniova I, Dzialowski AR. 2020. Zooplankton community responses to oxygen stress. Water 12:706. DOI: 10.3390/w12030706.
  • Kiili M, Pulkkanen M, Salonen K. 2009. Distribution and development of under-ice phytoplankton in 90-m deep water column of Lake Pääjärvi (Finland) during spring convection. Aquatic Ecology 43:707–713. DOI: 10.1007/s10452-009-9262-7.
  • Müller H, Geller W. 1993. Maximum growth rates of aquatic ciliated protozoa: The dependence on body size and temperature reconsidered. Archiv für Hydrobiologie 126:315–327.
  • Napiórkowska-Krzebietke A, Kobos J. 2016. Assessment of the cell biovolume of phytoplankton widespread in coastal and inland water bodies. Water Research 104:532–546. DOI: 10.1016/j.watres.2016.08.016.
  • Pęczuła W, Grabowska M, Zieliński P, Karpowicz M, Danilczyk M. 2018. Vertical distribution of expansive, bloom-forming algae Gonyostomum semen vs. plankton community and water chemistry in four small humic lakes. Knowledge and Management of Aquatic Ecosystems 419:28. DOI: 10.1051/kmae/2018017.
  • Radwan S, Bielańska-Grajner I, Ejsmont-Karabin J. 2004. Część ogólna, Monogononta– Część systematyczna. 32.A. In: Radwan S, editor. Wrotki (Rotifera). Fauna słodkowodna Polski. 32. Łódź: Polskie Towarzystwo Hydrobiologiczne, Uniwersytet Łódzki. Oficyna Wydawnicza Tercja. pp. 1–146.
  • Rybak JI, Błędzki LA. 2005. Widłonogi, Copepoda: Cyclopoida, Klucz do oznaczania. Warszawa: Biblioteka Monitoringu Środowiska.
  • Salonen K, Leppäranta M, Viljanen M, Gulati RD. 2009. Perspectives in winter limnology: Closing the annual cycle of freezing lakes. Aquatic Ecology 43:609–616. DOI: 10.1007/s10452-009-9278-z.
  • Shannon CE, Weaver W. 1949. The mathematical theory of communication. Urbana: University of Illinois Press.
  • Tulonen T, Kankaala P, Ojala A, Arvola L. 1994. Factors controlling production of phytoplankton and bacteria under ice in a humic, boreal lake. Journal of Plankton Research 16:1411–1432. DOI: 10.1093/plankt/16.10.1411.
  • Utermöhl H. 1958. Guidance on the quantitative analysis of phytoplankton–Methods. Mitteilung Internationale Vereinigung für Theoretische und Angewandte Limnologie 9:1–38. ( in German)
  • Vehmaa A, Salonen K. 2009. Development of phytoplankton in Lake Pääjärvi (Finland) during under-ice convective mixing period. Aquatic Ecology 43:693–705. DOI: 10.1007/s10452-009-9273-4.
  • Ventelä AM, Saarikari V, Vuorio K. 1998. Vertical and seasonal distributions of microorganisms, zooplankton and phytoplankton in a eutrophic lake. Hydrobiologia 363:229–240. DOI: 10.1023/A:1003181923569.
  • Weyhenmeyer GA, Livingstone DM, Meili M, Jensen O, Benson B, Magnuson JJ. 2011. Large geographical differences in the sensitivity of ice-covered lakes and rivers in the Northern Hemisphere to temperature changes. Global Change Biology 17:268–275. DOI: 10.1111/j.1365-2486.2010.02249.x.