Object structure
Title:

Does biotic patchiness in a lake conform to chemical heterogeneity?

Subtitle:

Biotic patchiness in a lake

Creator:

Kufel, Irena ; Kufel, Lech

Contributor:

Polish Academy of Sciences. Institute of Ecology

Publisher:

Polish Academy of Sciences. Institute of Ecology. Publishing Office

Place of publishing:

Dziekanów Leśny

Date issued/created:

2001

Description:

Strony 427-430 : ilustracje ; 27 cm ; Bibliografia na stronie 430

Type of object:

Czasopismo/Artykuł

Subject and Keywords:

nutrients ; chlorophyll ; spatial and temporal variability

Abstract:

Analyses of lake water taken in discrete sites along a c. 2 km transect from a 1 m depth in a eutrophic Lake MikoĊ‚ajskie revealed a uniform horizontal distribution of temperature and oxygen concentrations. Conductivity, soluble reactive phosphorus and particularly chlorophyll concentrations showed, however, a marked variability along the transect. Significant correlation between pH and conductivity suggests that a local photosynthetically induced calcite precipitation may be responsible for the observed horizontal variability of these parameters. Biotic response (inferred from chlorophyll concentrations) was not coupled with chemical differences. Different temporal scales of chemical processes and phytoplankton growth are assumed to explain this discrepancy.

References:

Harris G. P. 1986 – Phytoplankton ecology, structure, function and fluctuation – Chapman and Hall, London, New York.
Harris G. P., Piccinin B. B., Haffner G. D., Snodgrass W., Polak J. 1980a – Physical variability and phytoplankton communities: I. The descriptive limnology of Hamilton Harbour – Arch. Hydrobiol. 88: 303-327.
Harris G. P., Haffner G. D., Piccinin B. B. 1980b - Physical variability and phytoplankton communities: II. Primary productivity by phytoplankton in s physicsally variable environment – Arch. Hydrobiol. 88: 393-425.
Lorenzen C. J. 1966 – A method for the continuous measurement of in vivo chlorophyll concentration – Deep-Sea Res. 13: 223-227.
Masson S., Pinel-Alloul B. 1998 – Spatial distribution of zooplankton biomass size fractions in a bog lake: abiotic and (or?) biotic regulation? – Can. J. Zool. 76: 805-823.
Okubo A. 1977 – Horizontal dispersion and critical scales for phytoplankton patches. In: Ed. J.H. Stele – Spatial pattern in planton communities – Plenum Press, New York and London, 21-42.
Patalas K., Salki A. 1993 – Spatial variation of crustacean plankton in lakes of different size – Can. J. Fish. Aquat. Sci. 50: 2626-2640.
Platt T. 1972 – Local phytoplankton abundance and turbulence – Deep-Sea Res. 19: 183-187.
Platt T. 1977 – Spectral analysis of spatial structure in phytoplankton populations. In: Ed. J.H. Steele – Spatial pattern in plankton communities – Plenum Press, New York and London, 73-84.
Stabel H. H. 1986 – Calcite precipitation in Lake Constance: chemical equilibrium, sedimentation, and nucleation by algae – Limnol. Oceanogr. 31: 1081-1093.
White M. D. 1998 – Horizontal distribution of pelagic zooplankton in relations to predation gradients – Ecography 21: 44-62.

Relation:

Polish Journal of Ecology

Volume:

49

Issue:

4

Start page:

427

End page:

430

Resource type:

Tekst

Detailed Resource Type:

Artykuł

Resource Identifier:

ISSN 1505-2249

Source:

MiIZ PAN, sygn. P.2840 ; click here to follow the link

Language:

eng

Language of abstract:

Rights:

Licencja Creative Commons Uznanie autorstwa 3.0 Polska

Terms of use:

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: ; -

Digitizing institution:

Muzeum i Instytut Zoologii Polskiej Akademii Nauk

Original in:

Biblioteka Muzeum i Instytutu Zoologii PAN

Projects co-financed by:

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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