Phytoplankton and primary production in clear-vegetated, inorganic-turbid, and algal-turbid shallow lakes from the pampa plain (Argentina)

Shallow lakes often alternate between two possible states: one clear with submerged macrophytes, and another one turbid, dominated by phytoplankton. A third type of shallow lakes, the inorganic turbid, result from high contents of suspended inorganic material, and is characterized by low phytoplankt...

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Autor principal: Allende, L.
Otros Autores: Tell, G., Zagarese, H., Torremorell, Ana María, Pérez, G., Bustingorry, J., Escaray, R., Izaguirre, I.
Formato: Capítulo de libro
Lenguaje:Inglés
Publicado: 2009
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Acceso en línea:Registro en Scopus
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100 1 |a Allende, L. 
245 1 0 |a Phytoplankton and primary production in clear-vegetated, inorganic-turbid, and algal-turbid shallow lakes from the pampa plain (Argentina) 
260 |c 2009 
270 1 0 |m Izaguirre, I.; Departamento de Ecología, Genética y Evolución, Facultad de Ciencias Exactas y Naturales, Universidad de Buenos Aires, Buenos Aires 1428, Argentina; email: iri@ege.fcen.uba.ar 
504 |a Agawin, N.S.R., Duarte, C.M., Agusti, S., Nutrient and temperature control of the contribution of picoplankton to phytoplankton biomass and production (2000) Limnology and Oceanography, 45, pp. 591-600 
504 |a (1998), pp. 1268pp. , APHA (American Public Health Association). 20 APHA Washington DC; Baigún, C., Quirós, R., (1985), pp. 1-90. , Departamento de Aguas Continentales (INIDEP) Mar del Plata, Argentina; Callieri, C., Stockner, J.G., Freshwater autotrophic picoplankton: A review (2002) Journal of Limnology, 61, pp. 1-14 
504 |a Cardoso, L., Da Motta Marques, D., Rate of change of the phytoplankton community in Itapeva Lake (North Coast of Rio Grande do Sul, Brazil), based on the wind driven hydrodynamic regime (2003) Hydrobiologia, 497, pp. 1-12 
504 |a Carpenter, S.R., Kitchell, J.F., Hodgson, J.R., Cascading trophic interactions and lake productivity: Fish predation and herbivory can regulate lake ecosystems (1985) Bioscience, 35, pp. 634-639 
504 |a Chorus, I., Bartram, J., (1999), E & F.N. Spon London; Eloranta, P., Phytoplankton of the national park lakes in central and southern Finland (1995) Annales Botanici Fennici, 32, pp. 193-203 
504 |a Fernández Cirelli, A., Miretzky, P., (2002); Ferrero, E., Eöry, M., Ferreyra, G., Schloss, I., Zagarese, H., Vernet, M., Momo, F., Vertical mixing and ecological effects of ultraviolet radiation in planktonic communities (2006) Photochemistry and Photobiology, 82, pp. 898-902 
504 |a Gabellone, N., Solari, L.C., Claps, M.C., Planktonic and physico-chemical dynamics of markedly fluctuating backwater pond associated with a lowland river (Salado River, Buenos Aires, Argentina) (2001) Lakes and Reservoirs: Research and Management, 6, pp. 133-142 
504 |a Happey-Wood, C.M., (1988); Hurley, J.P., Analysis of aquatic pigments by high performance liquid chromatography (1988) Journal of Analytical Purification, 3, pp. 12-16 
504 |a Izaguirre, I., Vinocur, A., Typology of shallow lakes of the Salado River Basin (Argentina), based on phytoplankton communities (1994) Hydrobiologia, 277, pp. 49-62 
504 |a Izaguirre, I., Vinocur, A., Algal assemblages from shallow lakes of the Salado River Basin (Argentina) (1994) Hydrobiologia, 289, pp. 57-64 
504 |a Jasser, I., Arvola, L., Potential effects of abiotic factors on the abundance of autotrophic picoplankton in four boreal lakes (2003) Journal of Plankton Research, 25, pp. 873-883 
504 |a Jones, R.I., Mixotrophy in planktonic protists: An overview (2000) Freshwater Biology, 45, pp. 219-226 
504 |a Kalff, J., (2002), Prentice Hall New Jersey, USA; Katechakis, A., Stibor, H., The mixotroph Ochromonas tuberculata may invade and suppress specialist phago- and photoautotroph plankton communities depending on nutrient conditions (2006) Oecologia, 148, pp. 692-701 
504 |a Kemp, P.F., Sherr, B.F., Sherr, E.B., Cole, J.J., (1993), Lewis Publishers Boca Raton, FL; Kristiansen, J., (2005), A.R.G. Gantner Verlag Kommanditgesellschaft Ruggell, Liechtenstein; Laurion, I., Lami, A., Sommaruga, R., Distribution of mycosporine-like aminoacids and photoprotective caraotenoids among freshwater phytoplankton assemblages (2002) Aquatic Microbial Ecology, 26, pp. 283-294 
504 |a Lepistö, L., Holopainen, A.-L., Occurrence of Cryptophyceae and katablepharids in boreal lakes (2003) Hydrobiologia, 502, pp. 307-314 
504 |a MacDonagh, M., Ruiz, G., Solari, L.C., Gabellone, N., Fitoplancton de una laguna de moderada eutrofia en la provincia de Buenos Aires (2000) Diversidad y Ambiente, 1, pp. 37-43 
504 |a Malinsky-Rushansky, N., Berman, T., Berner, T., Yacobi, Y., Dubinsky, Z., Physiological characteristics of picophytoplankton, isolated from Lake Kinneret: Responses to light and temperature (2002) Journal of Plankton Research, 24, pp. 1173-1183 
504 |a Mantoura, R.F.C., Llewellyn, C.A., The rapid determination of algal chlorophyll and carotenoid pigments and their breakdown products in natural waters by reverse-phase high-performance liquid chromatography (1983) Analytica Chimica Acta, 151, pp. 297-314 
504 |a Padisák, J., Dokulil, M., Meroplankton dynamics in a saline, turbulent shallow lake (Neusiedlersee, Austria and Hungary) (1994) Hydrobiologia, 289, pp. 23-42 
504 |a Padisák, J., Soróczki-Pintér, E., Rezner, Z., Sinking properties of some phytoplankton shapes and the relation of form resistance to morphological diversity plankton-An experimental study (2003) Hydrobiologia, 500, pp. 243-257 
504 |a Paerl, H.W., (1988); Pérez, G.L., Torremorell, A., Bustingorry, J., Escaray, R., Pérez, A.P., Diéguez, M., Zagarese, H.E., Optical characteristics of shallow lakes from the Pampa and Patagonia regions of Argentina Limnologica, , in press 
504 |a Platt, T.C., Gallegos, L., Harrison, W.G., Photoinhibition of photosynthesis in natural assemblages of marine phytoplankton (1980) Journal of Marine Research, 38, pp. 687-701 
504 |a Quirós, R., Drago, E., The environmental state of Argentinean lakes: An overview (1999) Lakes and Reservoirs: Research and Management, 4, pp. 55-64 
504 |a Quirós, R., Renella, A.M., Boveri, M.B., Rosso, J.J., Sosnovsky, A., Factores que afectan la estructura y el funcionamiento de las lagunas pampeanas (2002) Ecología Austral, 12, pp. 175-185 
504 |a Quirós, R., Los efectos de la agriculturización del humedal pampeano sobre la eutrofización de sus lagunas (2006) Eutrofização Na América Do Sul: Causas, Conseqüèncias e Tecnologias de Gerenciamento e Controle, pp. 1-16. , Tundizi, J. G., T. Matsumura-Tundisi & C. Sidagis Galli (eds) 
504 |a Renella, A.M., Quirós, R., The effects of hydrology on plankton biomass in shallow lakes of the Pampa Plain (2006) Hydrobiologia, 556, pp. 181-191 
504 |a Reynolds, C.S., (1988), Cambridge University Press Cambridge; Reynolds, C.S., The long, the short and the stalled: On the attributes of phytoplankton selected by physical mixing in lakes and rivers (1994) Hydrobiologia, 189, pp. 9-21 
504 |a Reynolds, C.S., (1997), Ecology Institute Oldendorf/Luhe; Reynolds, C.S., (2006), Cambridge University Press Cambridge, UK; Reynolds, C.S., Huszar, V.L.M., Kruk, C., Naselli-Flores, L., Melo, S., Towards a functional classification of the freshwater phytoplankton (2002) Journal of Plankton Research, 24, pp. 417-428 
504 |a Roland, F., De Assis Esteves, F., Effects of bauxite tailing on PAR attenuation in an Amazonian crystalline water lake (1998) Hydrobiologia, 377, pp. 1-17 
504 |a Scheffer, M., (1998), Chapman & Hall London; Scheffer, M., Hosper, S.H., Meijer, M.L., Moss, B., Jeppesen, E., Alternative equilibria in shallow lakes (1993) Trends in Ecology and Evolution, 8, pp. 275-279 
504 |a Sharp, J.H., Peltzer, E.T., Alperin, M.J., Cauwet, G., Farrington, J.W., Fry, B., Karl, D.M., Carlson, C.A., Procedures subgroup report (1993) Marine Chemistry, 41, pp. 37-49 
504 |a Sierra, E.M., Long Fernández, M.E., Bustos, C., Cronología de inundaciones y sequías en el noreste de la provincia de Buenos Aires 1911-89 (1994) Revista de la Facultad de Agronomía, 14, pp. 241-249 
504 |a Sinistro, R., Izaguirre, I., Asikian, V., Experimental study on the microbial plankton community in a South American wetland (Lower Paraná River Basin), and the effect of the light deficiency due to floating macrophytes (2007) Journal of Plankton Research, 28, pp. 753-768 
504 |a Sommaruga, M., Robarts, R.D., The significance of autotrophic and heterotrophic picoplankton in hypereutrophic ecosystems (1997) FEMS Microbiology Ecology, 24, pp. 187-200 
504 |a Søndergaard, M., Phototrophic picoplankton in temperate lakes: Seasonal abundance and importance along a trophic gradient (1991) Internationale Revue der Gesamten Hydrobiologie, 76, pp. 505-522 
504 |a Søndergaard, M., Moss, B., Impact of submerged macrophytes on phytoplankton in shallow freshwater lakes (1998) Ecological Studies, 131, pp. 115-132 
504 |a Sorokin, Y.I., (1999), Backhuys Publishers Leiden; Sosnovsky, A., (2007) Factores Que Determinan la Estructura Del Zooplancton en Pequeños Cuerpos de Agua de la Región Pampeana, , Ph.D. Dissertation, Universidad de Buenos Aires, Buenos Aires, Argentina 
504 |a Steeman Nielsen, E., The use of radiocarbon (14C) for measuring organic production in the sea (1952) Journal du Conseil International Pour l'Exploration de la Mer, 18, pp. 117-140 
504 |a Stockner, J.G., Callieri, C., Cronberg, G., (2000); Torremorell, A., Bustingorry, J., Escaray, R., Zagarese, H., Seasonal dynamics of a large, shallow lake, laguna Chascomús: The role of light limitation and other physical variables (2007) Limnologica, 37, pp. 100-108 
504 |a Tranvik, L.J., Porter, K.G., Sieburth, J.M., Occurrence of bacterivory in Cryptomonas, a common freshwater phytoplankter (1989) Oecologia, 78, pp. 473-476 
504 |a Tricart, J.L., (1973), INTA, Colección Científica no XII Buenos Aires; Unrein, F., (2001) Efecto de Los Nutrientes y El PH Sobre la Estructura Del Fitoplancton en Ambientes de la Llanura Aluvial Del Paraná Inferior, , Ph.D. Dissertation, Universidad de Buenos Aires, Buenos Aires, Argentina 
504 |a Unrein, F., Massana, R., Alonso-Sáez, L., Gasol, J.M., Significant year-round effect of small mixotrophic flagellates on bacterioplankton in an oligotrophic coastal system (2007) Limnolology and Oceanography, 52, pp. 456-469 
504 |a Urabe, J., Gurung, T.B., Yoshida, T., Sekino, T., Nakanishi, M., Maruo, M., Nakayama, E., Diel changes in phagotrophy by Cryptomonas in Lake Biwa (2000) Limnology and Oceanography, 45, pp. 1558-1563 
504 |a Utermöhl, H., Zur Vervollkommnung der quantitativen Phytoplankton Methodik (1958) Mitteilungen Internationale Vereinigung Limnologie, 9, pp. 1-38 
504 |a Villar, C., De Cabo, L., Vaithiyanathan, P., Bonetto, C., River-floodplain interactions: Nutrient concentrations in the Lower Paraná River (1998) Archiv für Hydrobiologie, 142, pp. 433-450 
504 |a Vörös, L., Callieri, C., Balogh, K.V., Bertoni, R., Freshwater picocyanobacteria along a trophic gradient and light quality range (1998) Hydrobiologia, 369-370, pp. 117-125 
506 |2 openaire  |e Política editorial 
520 3 |a Shallow lakes often alternate between two possible states: one clear with submerged macrophytes, and another one turbid, dominated by phytoplankton. A third type of shallow lakes, the inorganic turbid, result from high contents of suspended inorganic material, and is characterized by low phytoplankton biomass and macrophytes absence. In our survey, the structure and photosynthetic properties (based on 14C method) of phytoplankton were related to environmental conditions in these three types of lakes in the Pampa Plain. The underwater light climate was characterized. Clear-vegetated lakes were more transparent (K d 4.5-7.7 m-1), had high DOC concentrations (>45 mg l-1), low phytoplankton Chl a (1.6-2.7 μg l -1) dominated by nanoflagellates. Phytoplankton productivity and photosynthetic efficiency (α ~ 0.03 mgC mgChla -1 h -1 W-1 m2) were relatively low. Inorganic-turbid lakes showed highest K d values (59.8-61.4 m -1), lowest phytoplankton densities (dominated by Bacillariophyta), and Chl a ranged from 14.6 to 18.3 μg l-1. Phytoplankton-turbid lakes showed, in general, high K d (4.9-58.5 m-1) due to their high phytoplankton abundances. These lakes exhibited the highest Chl a values (14.2-125.7 μg l-1), and the highest productivities and efficiencies (maximum 0.56 mgC mgChla -1 h-1 W -1 m2). Autotrophic picoplankton abundance, dominated by ficocianine-rich picocyanobacteria, differed among the shallow lakes independently of their type (0.086 × 105-41.7 × 10 5 cells ml-1). This article provides a complete characterization of phytoplankton structure (all size fractions), and primary production of the three types of lakes from the Pampa Plain, one of the richest areas in shallow lakes from South America. © 2008 Springer Science+Business Media B.V.  |l eng 
536 |a Detalles de la financiación: Consejo Nacional de Investigaciones Científicas y Técnicas, PIP 5354 
536 |a Detalles de la financiación: X838 
536 |a Detalles de la financiación: Agencia Nacional de Promoción Científica y Tecnológica, PICT 13550 
536 |a Detalles de la financiación: Acknowledgments This research was supported by a grant from Consejo Nacional de Investigaciones Científicas y Tecnológicas (CONICET) PIP 5354, and a grant from the University of Buenos Aires UBACyT X838, and ANPCyT PICT 13550. We thank the reviewers for their valuable suggestions on the manuscript. 
593 |a Departamento de Ecología, Genética y Evolución, Facultad de Ciencias Exactas y Naturales, Universidad de Buenos Aires, Buenos Aires 1428, Argentina 
593 |a Instituto de Investigaciones Biotecnológicas, Instituto Tecnológico de Chascomús (IIB-INTECH), CONICET, Camino Circunvalación Laguna Km 6. CC 164, Chascomús 7130, Argentina 
651 4 |a SOUTH AMERICA 
651 4 |a SOUTH AMERICA 
651 4 |a ARGENTINA 
651 4 |a SOUTH AMERICA 
690 1 0 |a ALTERNATIVE STABLE STATES 
690 1 0 |a CLEAR-VEGETATED 
690 1 0 |a PHYTOPLANKTON 
690 1 0 |a PHYTOPLANKTON-TURBID AND INORGANIC-TURBID SHALLOW LAKES 
690 1 0 |a BIOMASS 
690 1 0 |a LAKES 
690 1 0 |a LIGHT 
690 1 0 |a PHYTOPLANKTON 
690 1 0 |a RENEWABLE ENERGY RESOURCES 
690 1 0 |a ALTERNATIVE STABLE STATES 
690 1 0 |a C METHODS 
690 1 0 |a CLEAR-VEGETATED 
690 1 0 |a ENVIRONMENTAL CONDITIONS 
690 1 0 |a HIGH CONTENTS 
690 1 0 |a INORGANIC MATERIALS 
690 1 0 |a LIGHT CLIMATES 
690 1 0 |a MACROPHYTES 
690 1 0 |a NANOFLAGELLATES 
690 1 0 |a PHOTOSYNTHETIC EFFICIENCIES 
690 1 0 |a PHYTOPLANKTON BIOMASS 
690 1 0 |a PHYTOPLANKTON DENSITIES 
690 1 0 |a PHYTOPLANKTON PRODUCTIVITIES 
690 1 0 |a PHYTOPLANKTON-TURBID AND INORGANIC-TURBID SHALLOW LAKES 
690 1 0 |a PICOCYANOBACTERIA 
690 1 0 |a PICOPLANKTON 
690 1 0 |a PRIMARY PRODUCTIONS 
690 1 0 |a SIZE FRACTIONS 
690 1 0 |a SUBMERGED MACROPHYTES 
690 1 0 |a ALGAE CONTROL 
690 1 0 |a ABUNDANCE 
690 1 0 |a ALGA 
690 1 0 |a BIOMASS 
690 1 0 |a CHLOROPHYLL A 
690 1 0 |a DISSOLVED ORGANIC CARBON 
690 1 0 |a DOMINANCE 
690 1 0 |a FLAGELLATE 
690 1 0 |a LAKE ECOSYSTEM 
690 1 0 |a MACROPHYTE 
690 1 0 |a PHOTOSYNTHESIS 
690 1 0 |a PHYTOPLANKTON 
690 1 0 |a PRIMARY PRODUCTION 
690 1 0 |a TURBIDITY 
690 1 0 |a PAMPAS 
690 1 0 |a ALGAE 
690 1 0 |a BACILLARIOPHYTA 
700 1 |a Tell, G. 
700 1 |a Zagarese, H. 
700 1 |a Torremorell, Ana María 
700 1 |a Pérez, G. 
700 1 |a Bustingorry, J. 
700 1 |a Escaray, R. 
700 1 |a Izaguirre, I. 
773 0 |d 2009  |g v. 624  |h pp. 45-60  |k n. 1  |p Hydrobiologia  |x 00188158  |w (AR-BaUEN)CENRE-207  |t Hydrobiologia 
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