Struktura obiektu
Tytuł:

The relationships between zooplankton and biotic/abiotic factors ; Zależność między zooplanktonem a czynnikami biotycznymi i abiotycznymi

Twórca:

Żurek, Roman ; Lewkowicz, Stanisław ; Ronchetti, Rajmund ; Augustyn, Danuta

Wydawca:

Zakład Biologii Wód Polskiej Akademii Nauk

Miejsce wydania:

Kraków

Data wydania/powstania:

1991

Opis:

24 cm ; ilustracje ; bibliografia na stronach 225-228

Typ obiektu:

Czasopismo/Artykuł

Bibliografia:

Anderson G. C., Comita G. W., Engstron-Heg V. 1955. A note on the phytoplankton-zooplankton relationships in two lakes in Washington. Ecology, 36, 757—759.
Angino E. E., Armitage K. B., Saxena B. 1973. Population dynamics of pond zooplankton. 2. Daphnia ambigua Scourfield. Hydrobiologia, 42, 491— 507.
Antipchuk A. F. 1977. On connection of bacterioplankton with phyto- and zooplankton in fish-keeping pond. Hydrobiol. Zh., 13, 78—81.
Arndt H. 1992. Rotifers as predators on components of the microbial web (Bacteria, heterotrophic flagellates, Ciliates). Hydrobiologia.
Began Μ., Mortimer M. 1981. Population ecology. A unified study of animals and plants. Oxford-London, Black. Sci. Publ.
Berzins B., Pejler B. 1989. Rotiffer occurrence in relation to temperature. Hydrobiologia, 175, 223—231.
Berzins B., Pejler B. 1989. Rotifer occurrence in relation to oxygen content. Hydrobiologia, 183, 165—172.
Bogatova I. B. 1962. Lethal ranges of oxygen content, temperatures and pH for some representatives of the family Chydoridae. Zool. Zh., 41, 58—62.
Bogatova I. B. 1971. Nutrition and food relations of mass forms of pond zooplankton. Trudy VNIIPRCh, 17, 14—35.
Boswell J. P., Perry W. B., Stanford J. A. 1980. Analysis of plankton dynamics in a Southwestern USA reservoir using ATP assays. Int. Rev. ges. Hydrobiol., 65, 155—167.
Buikema A. L. 1975. Some effects of light on the energetics of Daphnia pulex and implications for the significance of vertical migration. Hydrobiologia, 47, 43—58.
Coveney Μ. F., Cronberg G., Enel M., Larsson K., Olofsson L. 1977. Phytoplankton, zooplankton and bacteria standing crop and production relationship in a eutrophic lake. Oikos, 29, 5—21.
Davidson J., Andrewartha H. G. 1948. The influence of rainfall, evaporation and atmospheric temperature on fluctuations in the size of a natural population of Thrips imaginis (Thysanoptera). J. Anim. Ecol., 17, 200—222.
De Costa J. 1975. The crustacean plankton of an acid reservoir. Verh. int. Ver. Limnol., 19, 1805—1813.
De Costa J., Janicki A. 1978. Population dynamics and age structure of Bosmina longirostris in an acid water impoundment. Verh. int. Ver. Limnol., 20, 2479—2483.
De Mott W. R. 1989. The role of competition in zooplankton succession. In: Sommer U. (Ed.): Plankton ecology. Berlin, Heidelberg, New York, Springer-Verl., 195—252.
Dumont H. J. 1977. Biotic factors in the population dynamics of rotifers. Arch. Hydrobiol., Beih., 8, 98—122.
Edmondson W. T. 1964. The rate of egg production by rotifers and copepods in natural populations as controlled by food and temperature. Verh. int. Ver. Limnol., 15, 673—675.
Foran J. A., King R. H. 1982. A regression analysis of the summer population dynamics of Polyarthra vulgaris in a Northern Michigan bog lake. Hydrobiologia, 94, 237—246.
Geller W., Müller H. 1981. The filtration apparatus of Cladocera: filter mesh-sizes and their implications on food selectivity. Oecologia (Berl.), 49, 316—321.
Gilbert J. J. 1967. Asplanchna and postero-lateral spine production in Brachionus calyciflorus. Arch. Hydrobiol., 64, 1—62.
Gliwicz Z. Μ. 1977. Food size selection and seasonal succession on filter feeding zooplankton in a eutrophic lake. Ekol. Pol., 25, 179—225.
Gliwicz Z. Μ. 1980. Filtering rates, food size selection and feeding rates in Cladocerans — another aspect of interspecific competition in filter-feeding zooplankton. In: Kerfoot W. C. (Ed.): Evolution and ecology of zoo-plankton communities. Hanover-New Hampshire-London, Univ. Press of New England, 282—291.
Gliwicz Z. Μ., Pijanowska J. 1989. The role of predation in zooplankton succession. In: Sommer U. (Ed.): Plankton ecology. Berlin-Heidelberg-New York, Springer-Verl., 253—296.
Gophen Μ. 1977. Feeding of Daphnia on Chlamydomonas and Chlorobium. Nature, 265 (27), 271—273.
Gophen Μ., Cavari B., Berman T. 1974. Zooplankton feeding on differentially labelled algae and bacteria. Nature, 247, 393—394.
Grygierek E., Lewkowicz M., Smagowicz K., Szmyt E. 1977. Fertilization of enclosed parts of ponds with nitrogen and phosphorus. 5. Zooplankton. Roczn. Nauk Roln., H, 98, 105—122.
Habib Μ. A., Rahman M. S. 1992. Culture of Rotifera in nursery ponds. Hydrobiologia.
Hadas O., Cavari B. Z., Kott Y., Bachrach U. 1982. Preferential feeding behaviour of Daphnia magna. Hydrobiologia, 89, 49—52.
Halbach U. 1973. Quantitative Untersuchungen zur Assoziation von planktischen Rotatorien in Teichen. Arch. Hydrobiol., 71, 233—254.
Hazelwood D. H., Parker R. A. 1961. Population dynamics of some freshwater zooplankton. 2. The effect of lag. Ecology, 44, 207—211.
Hofmann W. 1972. Zur Populationsöcologie des Zooplankton in Plussee. Verh. int. Ver. Limnol., 18, 410—418.
Hofmann W. 1977. The influence of abiotic environmental factors on population dynamics in planktonic rotifers. Arch, hydrobiol., Beih., 8, 77—83.
Hofmann W., Hofle M. G. 1992. Rotifer population dynamics in response to increased bacterial biomass and DOM: a mesocosm experiment. Hydrobiologia.
Horkan J. P. K., Gallup D. N., Nursall J. R. 1977. Effects of thermal effluent upon the planctonic Rotifera — survival and egg production. Arch. Hydrobiol., Beih., 8, 84—87.
Hutchinson G. E. 1967. A treatise on limnology. 2. New York, J. Willey.
Kerfoot W. C., Sih A. 1987. Predation. Direst and indirect impacts on aquatic communities. Hanover-London, Univ. Press of New England, 386 pp.
Kersting K. 1978. Some features of feeding, respiration and energy conversion of Daphnia magna. Hydrobiologia, 59, 113—120.
Kring R. L., O'Brien W. J. 1976. Effect of varying oxygen concentrations on the filtering rate of Daphnia pulex. Ecology, 57, 808—814.
Lampert W. 1977. Studies on the carbon balance of Daphnia pulex De Geer as related to environmental conditions. 4. Determination of the „threshold” concentration as a factor controlling the abundance of zooplankton species. Arch. Hydrobiol., Suppl. 48, 361—368.
Langeland A., Reinertsen H. 1982. Interactions between phytoplankton and zooplankton in a fertilized lake. Holarct. Ecol., 5, 253—272.
Lewkowicz S., Żurek R. 1991. The effect of fish on resuspension of bottom sediments and relationships between zooplankton and suspended materials. Acta Hydrobiol., 33, 307—317.
Lynch Μ. 1977. Fitness and optimal size in zooplankton populations. Ecology, 58, 763—774.
McNaught D. C., Griesmer D., Kennedy M. 1980. Resource characteristics modifying selective grazing by copepods. In: Kerfoot W. C., (Ed..): Evolution and ecology of zooplankton communities. Hanover-New Hampshire-London, Univ. Press of New England, 292—298.
Moore J. W. 1980. Seasonal cycles of zooplankton and related phytoplankton development in three shallow, mesotrophic lakes in northern Canada. Int. Rev. ges. Hydrobiol., 65, 357—378.
Orsi J. J., Mecum W. L. 1986. Zooplankton distribution and abundance in the Sacramento- San Joaquin Delta in relation to certain environmental factors. Estuaries, 9, 48, 326—339.
Pasternak K. 1958. Wpływ różnych materiałów glebowych dna stawów na skład chemiczny wody. Biul. Zakł. Biol. Stawów PAN., 7, 27—60.
Pasternak K. 1965. Gleby stawowe wytworzone z utworów pyłowych, Acta Hydrobiol., 7, 1, 1—26.
Pliński Μ., Jóźwiak T. 1989. The application of the multiple regression method in the prognosis of the phenomena in the ecosystem. Proc. of the 21 EMBS, Gdańsk, 387—391.
Pourriot R. 1965. Recherches sur l'écologie des rotifères. Paris, Publ. Lb. Arago „Vie et Milieu”, Suppl. 21, 224 pp.
Ramsay A. J. 1976. Heterotrophic bacteria and their relationship with plankton in a new Zealand and freshwater lake. New Zealand J. Mar. and Freshwat. Res., 10, 77—90.
Reale D., Clement P., Esparcia A. 1992. Influence of the concentration of oxygen on the swimming path of Brachionus plicatilis (Rotifera). Hydrobiologia.
Ruttner-Kolisko A. 1980. The abundance and distribution of Filinia terminalis in various types of lakes as related to temperature, oxygen and food. Hydrobiologia, 73, 168—175.
Sommer U. 1989. Plankton ecology. Berlin-Heidelberg, Springer-Verl., 369 pp.
Sushchenya L. Μ., Trubetskova I. L. 1981. The rate of Daphnia magna feeding at long-term acclimation to different temperature. J. Gen. Biol., 42, 669—672.
Taub F. B., Dollar A. M. 1968. The nutritional inadequacy of Chlorella and Chlamydomonas as food for Daphnia pulex. Limnol. and Oceanogr., 13, 607— 617.
Topping Μ. S. 1975. Effect of environmental factors on standing crop of plankton in British Columbia lakes. Verh. int. Ver. Dimnol., 19, 524—529.
Vadstein O., Olsen Y., Oie G. 1992. Particle size dependent feeding by the rotifer Brachionus plicatilis (SINTEF-strain). Hydrobiologia.
Włodek J. 1954. Cracovian method of solving the multiple regression equations in use to biometric investigations in fishery. Biul. Zakł. Biol. Stawów, 2, 22— 50.
Wróbel S. 1971. Production of basic communities in ponds with mineral fertilization and description. Pol. Arch. Hydrobiol., 18, 167—173.
Wynne D., Gophen M. 1981. Phosphatase activity in freshwater zooplankton. Oikos, 37, 369—376.
Żurek R. 1992. Resistance of some rotifer species against low oxygen levels. Hydrobiologia.

Czasopismo/Seria/cykl:

Acta Hydrobiologica

Tom:

Vol. 33

Zeszyt:

3/4

Strona pocz.:

209

Strona końc.:

228

Typ zasobu:

Tekst

Szczegółowy typ zasobu:

Artykuł

Źródło:

Bibl. IOP PAN, sygn. 675/cz

Język:

eng

Język streszczenia:

pol

Prawa:

Licencja Creative Commons Uznanie autorstwa 3.0 Polska

Zasady wykorzystania:

Zasób chroniony prawem autorskim. [CC BY 3.0 PL] Korzystanie dozwolone zgodnie z licencją Creative Commons Uznanie autorstwa 3.0 Polska, której pełne postanowienia dostępne są pod adresem: ; -

Digitalizacja:

Instytut Ochrony Przyrody Polskiej Akademii Nauk

Lokalizacja oryginału:

Instytut Ochrony Przyrody Polskiej Akademii Nauk

Dofinansowane ze środków:

Program Operacyjny Polska Cyfrowa, lata 2014-2020, Działanie 2.3 : Cyfrowa dostępność i użyteczność sektora publicznego; środki z Europejskiego Funduszu Rozwoju Regionalnego oraz współfinansowania krajowego z budżetu państwa

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