Uneingeschränkter Zugang

Relationships among ciliated protozoa and water chemistry in small peat-bog reservoirs (Łęczna-Włodawa Lakeland, Eastern Poland)

   | 13. Juni 2007

Zitieren

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, 300/3001: 71-8410.1007/978-94-011-0293-3_6 Search in Google Scholar

Beaver J.R., Crisman T.L., 1981, Acid precipitation and the response of ciliated protozoans in Florida lakes, Verh. Int. Verein. Limnol., 21: 353-35810.1080/03680770.1980.11897006 Search in Google Scholar

Beaver J.R., Crisman T.L., 1982, The trophic response of ciliated protozoans in freshwater lakes, Limnol. Oceanogr., 27: 246-25310.4319/lo.1982.27.2.0246 Search in Google Scholar

Beaver J.R., Crisman T.L., 1989, The role of ciliated protozoa in pelagic freshwater ecosystems, Microb. Ecol., 17: 111-13610.1007/BF02011847 Search in Google Scholar

Błedzki A.L., Ellison A., 2003, Diversity of rotifers from north-eastern U.S.A. bogs with new species records from North America and New England, Hydrobiologia, 497: 53-6310.1023/A:1025457503900 Search in Google Scholar

Carrias J.F., Amblard C., Bourdier G., 1994, Vertical and temporal heterogeneity of planktonic ciliated protozoa in a humic lake, J. Plankton Res., 16: 471-48510.1093/plankt/16.5.471 Search in Google Scholar

Carrick H.J., Fahnenstiel G.L., 1990, Planktonic protozoa in lakes Huron and Michigan: seasonal abundance and composition of ciliates and dinoflagellates, J. Great Lakes Res., 16(2): 319-32910.1016/S0380-1330(90)71424-4 Search in Google Scholar

Crisman T.L., Brezonik P.L., 1980, Acid rain: threat to sensitive aquatic ecosystems, Proc. 73rd Air poll Contr Assoc. Search in Google Scholar

Deneke R., 2000, Review of rotifers and crustaceans in highly acid environments of pH≤3, Hydrobiologia, 433: 167-17210.1023/A:1004047510602 Search in Google Scholar

Dillon P.J., Yan N.D., Harvey H.H., 1984, Acid deposition: effects on aquatic ecosystems, CRC Crit. Rev. in Env. Cont., 13: 167-19410.1080/10643388409381706 Search in Google Scholar

Finlay B.J., 1982, Procedures for the isolation, cultivation and identification of protozoa, Experimental Microbial Ecology, Blackwell Scientific Publications, Oxford: 44-65 Search in Google Scholar

Foissner W., Berger H., 1996, A user-friendly guide to the ciliates (Protozoa, Ciliophora) commonly used by hydrobiologists as bioindicators in rivers, lakes and waste waters, with notes on their ecology, Freshwater Biol., 35: 375-47010.1111/j.1365-2427.1996.tb01775.x Search in Google Scholar

Fisher M.M., Graham J.M., Graham L.E., 1998, Bacterial abundance and activity across sites within two northern Wisconsin Sphagnum bogs, Microb. Ecol., 36: 259-26910.1007/s002489900113 Search in Google Scholar

Hermanowicz W., Dożańska W., Dolido J., Koziorowski B., 1976, Physical and chemical investigation methods of water and sewage, Arkady, Warszawa, p. 846 (in Polish) Search in Google Scholar

Järvinen M., 1993, Pelagic ciliates in an acidified mesohumic forest lake before and after lime addition, Ver. Internat. Verein. Limnol., 25: 534-53810.1080/03680770.1992.11900184 Search in Google Scholar

Jerome C.A., Montagnes D.J.S., Taylor F.J.R., 1993, The effect of the quantitative protargol stain and Lugols and Buinos fixatives on cell size: A more accurate estimate of ciliate species biomass, J. Euk. Microbiol., 40: 254-25910.1111/j.1550-7408.1993.tb04913.x Search in Google Scholar

Kalinowska K., 2000, Ciliates in small humic lakes (Masurian Lakeland, Poland): relationship to acidity and trophic parameters, Pol. J. Ecol., 48: 169-183 Search in Google Scholar

Kaur P., Mehra N.K., 1994, An evaluation of a new method for quantitative analysis of epiphytic biota on roots of water hyacinth, Verh. Internat. Limnol., 25(3): 1137-1141 Search in Google Scholar

Madoni P., Davoli D., Cavagnoli G., Cuchi A., Pedroni M., Rossi F., 2000, Microfauna and filamentous microflora in biological filters for tap water production, Wat. Res., Vol. 34(14): 561-57210.1016/S0043-1354(00)00102-0 Search in Google Scholar

Mieczan T., 2005, Periphytic ciliates in littoral zone of three lakes of different trophic status, Pol. J. Ecol., 53: 105-111 Search in Google Scholar

Mieczan T., 2007, Size spectra and abundance of planktonic ciliates within various habitats in a macrophyte - dominated lake (Eastern Poland), Biologia Bratislava, 62: 28-3610.2478/s11756-007-0028-1 Search in Google Scholar

Packroff G., 2000, Protozooplankton in acid mining lakes with special respect to ciliates, Hydrobiologia, 433: 157-16610.1023/A:1004095426532 Search in Google Scholar

Sarvala J., Kankaala P., Zingel P., Arvola L., 1999, Food webs of humic waters. Zooplankton, [in:] Limnology of humic waters, Eds. J. Keskitalo, P. Eloranta, Backhuys Publishers, Leiden, pp. 181-184 Search in Google Scholar

Sonntag B., Posch T., Griebler Ch., Psenner R., 2002, Protozooplankton in the deep oligotrophic traunsee (Austria) influenced by discharges of soda and salt industries, Water, Air, and Soil Pollution, Focus 2: 211-22610.1023/A:1020360125761 Search in Google Scholar

Tranvik L.J., 1988, Availability of dissolved organic carbon for planktonic bacteria in oligotrophic lakes of differing humic content, Microb. Ecol., 16: 311-32210.1007/BF0201170224201716 Search in Google Scholar

Ventelä M.A., Wiąckowski K., Moilanen M., Saarikari V., Vuorio K., Sarvala J., 2002, The effect of small zooplankton on the microbial loop and edible algae during a cyanobacterial bloom, Freshwater Biol., 47: 1807-181910.1046/j.1365-2427.2002.00924.x Search in Google Scholar

eISSN:
1897-3191
Sprache:
Englisch
Zeitrahmen der Veröffentlichung:
4 Hefte pro Jahr
Fachgebiete der Zeitschrift:
Chemie, andere, Geowissenschaften, Biologie