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Abstract:

We analysed the changes in phytoplankton and in the main limnological features in a shallow lake during its transition from a clear-vegetated regime to a turbid one from 2005 to 2013. As samplings were discontinuous, data were analysed considering three different sampling periods. At the beginning of the first period, the lake was in a clear-vegetated regime, showing low values of chlorophyll a, KdPAR, total suspended solids and nutrients, and high Secchi depth. Phytoplankton was dominated by nano-phytoplanktonic species. During the second period, some evidences of the shift to a turbid regime were observed (mainly in KdPAR and total suspended solids). Towards the end of our study, submerged macrophytes sharply declined; in this period KdPAR and total suspended solids noticeably increased, whereas a significant reduction in Secchi depth occurred. Concomitantly, phytoplankton abundance augmented in two orders of magnitude, changing to a community with a higher proportion of micro-phytoplankton. Although the causes of the regimen shift could not be unequivocally assessed, the drastic reduction in the hydrometric level of the lake probably provoked a declination in macrophytes, with the consequent increase of nutrients in the water column and the increment in phytoplankton densities, carrying the system towards a turbid regime. © 2014, Springer International Publishing Switzerland.

Registro:

Documento: Artículo
Título:Changes in the phytoplankton structure in a Pampean shallow lake in the transition from a clear to a turbid regime
Autor:Sánchez, M.L.; Lagomarsino, L.; Allende, L.; Izaguirre, I.
Filiación:Laboratorio de Limnología, Departamento de Ecología, Genética y Evolución, Universidad de Buenos Aires, Instituto de Ecología, Genética y Evolución de Buenos Aires (IEGEBA - CONICET/UBA), Ciudad Universitaria, Buenos Aires, C1428EHA, Argentina
Laboratorio de Ecología y Fotobiología Acuática, Instituto de Investigaciones Biotecnológicas- Instituto Tecnológico de Chascomús (IIB-INTECH), Chascomús, Buenos Aires, Argentina
Palabras clave:Macrophytes; Pampean plain; Phytoplankton; Shallow lakes; Shift regimes; abundance; chlorophyll a; hydrometeorology; lake; limnology; macrophyte; phytoplankton; population density; population structure; shallow water; turbidity; water column; Argentina; Pampas
Año:2015
Volumen:752
Número:1
Página de inicio:65
Página de fin:76
DOI: http://dx.doi.org/10.1007/s10750-014-2010-6
Título revista:Hydrobiologia
Título revista abreviado:Hydrobiologia
ISSN:00188158
CODEN:HYDRB
Registro:https://bibliotecadigital.exactas.uba.ar/collection/paper/document/paper_00188158_v752_n1_p65_Sanchez

Referencias:

  • APHA, American Public Health Association, (2005) Standard Methods for the Examination of Water and Wastewaters, , APHA, Washington DC:
  • Allende, L., Tell, G., Zagarese, H., Torremorell, A., Pérez, G., Bustingorry, J., Escaray, R., Izaguirre, I., Phytoplankton and primary production in clear-vegetated, inorganic-turbid, and algal-turbid shallow lakes from the pampa plain (Argentina) (2009) Hydrobiologia, 624, pp. 45-60. , COI: 1:CAS:528:DC%2BD1MXhvVKqtLo%3D
  • Bachmann, R.W., Hoyer, M.V., Canfield, D.E., Jr., The restoration of Lake Apopka in relation to alternative stable states (1999) Hydrobiologia, 394, pp. 219-232. , COI: 1:CAS:528:DyaK1MXls1Snsb8%3D
  • Bakker, E.S., Sarneel, J.M., Gulati, R.D., Liu, Z., Van Donk, E., Restoring macrophyte diversity in shallow temperate lakes: biotic versus abiotic constraints (2013) Hydrobiologia, 710, pp. 23-37
  • Bayley, S.E., Creed, I.F., Sass, G.Z., Wong, A.S., Frequent regime shifts in trophic states in shallow lakes on the Boreal Plain: alternative “unstable” states? (2007) Limnology & Oceanography, 52, pp. 2002-2012
  • Blindow, I., Long-and short-term dynamics of submerged macrophytes in two shallow eutrophic lakes (1992) Freshwater Biology, 28, pp. 15-27
  • Blindow, I., Andersson, G., Hargeby, A., Johansson, S., Long-term pattern of alternative stable states in two shallow eutrophic lakes (1993) Freshwater Biology, 30, pp. 159-167
  • Burks, R.L., Mulderij, G., Gross, E., Jones, I., Jacobsen, L., Jeppesen, E., Van Donk, E., Center stage: the crucial role of macrophytes in regulating trophic interactions in shallow lake wetlands (2006) Wetlands: Functioning, Biodiversity Conservation, and Restoration, pp. 37-59. , Bobbink R, Beltman B, Verhoeven JT, Whigham DF, (eds), 191, Springer, Berlin Heidelberg:
  • Cano, M.G., Casco, M.A., Solari, L.C., Mac Donagh, M.E., Gabellone, N.A., Claps, M.C., Implications of rapid changes in Chlorophyll a of plankton, epipelon, and epiphyton in a Pampean shallow lake: an interpretation in terms of a conceptual model (2008) Hydrobiologia, 614, pp. 33-45. , COI: 1:CAS:528:DC%2BD1cXhtFKkurvE
  • Carpenter, S.R., Lodge, D.M., Effects of submersed macrophytes on ecosystem processes (1986) Aquatic Botany, 26, pp. 341-370
  • Casco, M.A., Mac Donagh, M.E., Cano, M.G., Solari, L.C., Claps, M.C., Gabellone, N.A., Phytoplankton and epipelon responses to clear and turbid phases in a Seepage Lake (Buenos Aires, Argentina) (2009) International Review of Hydrobiology, 94, pp. 153-168. , COI: 1:CAS:528:DC%2BD1MXntFyqtbg%3D
  • Chen, F., Shu, T., Jeppesen, E., Liu, Z., Chen, Y., Restoration of a subtropical eutrophic shallow lake in China: effects on nutrient concentrations and biological communities (2013) Hydrobiologia, 718, pp. 59-71. , COI: 1:CAS:528:DC%2BC3sXhsVOkurjK
  • Cristofor, S., Vadineanu, A., Sarbu, A., Postolache, C., Dobre, R., Adamescu, M., Long-term changes of submerged macrophytes in the Lower Danube Wetland System (2003) Hydrobiologia, 506, pp. 625-634
  • Cymbola, J., Ogdahl, M., Steinman, A.D., Phytoplankton response to light and internal phosphorus loading from sediment release (2008) Freshwater Biology, 53, pp. 2530-2542
  • Hansel-Welch, N., Butler, M.G., Carlson, T.J., Hanson, M.A., Changes in macrophyte community structure in Lake Christina (Minnesota), a large shallow lake, following biomanipulation (2003) Aquatic Botany, 75, pp. 323-337
  • Hargeby, A., Blindow, I., Andersson, G., Long-term patterns of shifts between clear and turbid states in Lake Krankesjön and Lake Tåkern (2007) Ecosystems, 10, pp. 28-35. , COI: 1:CAS:528:DC%2BD2sXlslCmsL8%3D
  • Holling, C.S., Resilience and stability of ecological systems (1973) Annual Review of Ecology and Systematics, 4, pp. 1-23
  • Huisman, J., Jonker, R.R., Zonneveld, C., Weissing, F.J., Competition for light between phytoplankton species: experimental tests of mechanistic theory (1999) Ecology, 80, pp. 211-222
  • Ibelings, B.W., Portielje, R., Lammens, E.H., Noordhuis, R., van den Berg, M.S., Joosse, W., Meijer, M.L., Resilience of alternative stable states during the recovery of shallow lakes from eutrophication: Lake Veluwe as a case study (2007) Ecosystems, 10, pp. 4-16. , COI: 1:CAS:528:DC%2BD2sXlslCmsLs%3D
  • Immers, A.K., Van der Sande, M.T., Van der Zande, R.M., Geurts, J.J., Van Donk, E., Bakker, E.S., Iron addition as a shallow lake restoration measure: impacts on charophyte growth (2013) Hydrobiologia, 710, pp. 241-251. , COI: 1:CAS:528:DC%2BC3sXms1ygurY%3D
  • Izaguirre, I., Vinocur, A., Algal assemblages from shallow lakes of the Salado River Basin (Argentina) (1994) Hydrobiologia, 289, pp. 57-64
  • Izaguirre, I., Allende, L., Escaray, R., Bustingorry, J., Pérez, G., Tell, G., Comparison of morpho-functional phytoplankton classifications in human-impacted shallow lakes with different stable states (2012) Hydrobiologia, 698, pp. 203-216. , COI: 1:CAS:528:DC%2BC38XhsVagtb3F
  • Jones, R.I., Mixotrophy in planktonic protists: an overview (2000) Freshwater Biology, 45, pp. 219-226
  • Katsiapi, M., Mazaris, A.D., Charalampous, E., Moustaka-Gouni, M., Watershed land use types as drivers of freshwater phytoplankton structure (2012) Hydrobiologia, 698, pp. 121-131. , COI: 1:CAS:528:DC%2BC38XhsVagtbrP
  • Lorenzen, C.J., Determination of chlorophyll and pheo-pigments: spectrophotometric equations (1967) Limnology & Oceanography, 12, pp. 343-346. , COI: 1:CAS:528:DyaF1cXovFOqsQ%3D%3D
  • May, R.M., Thresholds and breakpoints in ecosystems with a multiplicity of stable states (1977) Nature, 269, pp. 471-477
  • Mjelde, M., Faafeng, B.A., Ceratophyllum demersum hampers phytoplankton development in some small Norwegian lakes over a wide range of phosphorus concentrations and geographical latitude (1997) Freshwater Biology, 37, pp. 355-365
  • Moss, B., Ecology of freshwaters (2010) Oxford
  • Nusch, E.A., Comparison of methods for chlorophyll and phaeopigment determination (1980) Archiv für Hydrobiologie-Beiheft Ergebnisse der Limnologie, 14, pp. 14-36. , COI: 1:CAS:528:DyaL3MXktVaru7o%3D
  • Quirós, R., Boveri, M.B., Renella, A.M., Rosso, J., Sosnovsky, A., von Bernard, H.T., (2006) Los efectos de la agriculturización del humedal pampeano sobre la eutrofización de sus lagunas, pp. 1-16. , Causas, conseqüências e tecnologias de gerenciamento e controle, Eutrofização na América do Sul:
  • Quirós, R., Renella, A.M., Boveri, M.B., Rosso, J., Sosnovsky, A., Factores que afectan la estructura y el funcionamiento de las lagunas pampeanas (2002) Ecología Austral, 12, pp. 175-185
  • Quirós, R., Drago, E., The environmental state of Argentinean lakes: an overview (1999) Lakes & Reservoirs: Research and Management, 4, pp. 55-64
  • Reynolds, C.S., (1984) The Ecology of Freshwater Phytoplankton, , Cambridge University Press, Cambridge:
  • Rodríguez, C.F., Bécares, E., Fernández-Aláes, M., Shift from clear to turbid phase in Lake Chozas (NW Spain) due to the introduction of American red swamp crayfish (Procambarus clarkii) (2003) Hydrobiologia, 506, pp. 421-426
  • Sánchez, M.L., Pizarro, H., Tell, G., Izaguirre, I., Relative importance of periphyton and phytoplankton in turbid and clear vegetated shallow lakes from the Pampa Plain (Argentina): a comparative experimental study (2010) Hydrobiologia, 646, pp. 271-280
  • Sánchez, M.L., Pérez, G.L., Izaguirre, I., Pizarro, H., Influence of underwater light climate on periphyton and phytoplankton communities in shallow lakes from the Pampa plain (Argentina) with contrasting steady states (2013) Journal of Limnology, 72, pp. 62-78
  • Scheffer, M., (1998) Ecology of shallow lakes, , Chapman & Hall, London:
  • Scheffer, M., Alternative attractors of shallow lakes (2001) The Scientific World Journal, 1, pp. 254-263. , COI: 1:STN:280:DC%2BD3s3nvV2qtw%3D%3D
  • Scheffer, M., (2009) Critical Transitions in Nature and Society, , Princeton University, Oxford:
  • Scheffer, M., Carpenter, S.R., Catastrophic regime shifts in ecosystems: linking theory to observation (2003) TRENDS in Ecology and Evolution, 18, pp. 648-656
  • Scheffer, M., van Nes, E.H., Shallow lakes revisited: various alternative regimes driven by climate, nutrients, depth and lake size (2007) Hydrobiologia, 584, pp. 455-466. , COI: 1:CAS:528:DC%2BD2sXlsVequr0%3D
  • Scheffer, M., Hosper, S.H., Moss, B., Jeppesen, E., Alternative equilibria in shallow lakes (1993) Trends in Ecology and Evolution, 8, pp. 275-279. , COI: 1:STN:280:DC%2BC3M7itVyqtQ%3D%3D, PID: 21236168
  • Scheffer, M., Rinaldi, S., Gragnani, A., Mur, L., van Nes, E., On the dominance of filamentous cyanobacteria in shallow, turbid lakes (1997) Ecology, 78, pp. 272-282
  • Schröder, A., Persson, L., De Roos, A.M., Direct experimental evidence for alternative stable states: a review (2005) Oikos, 110, pp. 3-19
  • Silvoso, J., Izaguirre, I., Allende, L., Picoplankton structure in clear and turbid eutrophic shallow lakes: a seasonal study (2010) Limnologica, 41, pp. 181-190
  • Søndergaard, M., Johansson, L.S., Lauridsen, T.L., Jørgensen, T.B., Liboriussen, L., Jeppesen, E., Submerged macrophytes as indicators of the ecological quality of lakes (2010) Freshwater Biology, 55, pp. 893-908
  • Søndergaard, M., Moss, B., Impact of submerged macrophytes on phytoplankton in shallow freshwaters lakes (1997) The structuring Role of Submerged Macrophytes in Lakes, pp. 115-132. , Jeppesen E, Søndergaard M, Søndergaard M, Christoffersen K, (eds), Springer, New York:
  • Stomp, M., Huisman, J., De Jongh, F., Veraart, A.J., Gerla, D., Rijkeboer, M., Ibelings, B.W., Stal, L.J., Adaptive divergence in pigment composition promotes phytoplankton biodiversity (2004) Nature, 432, pp. 104-107. , COI: 1:CAS:528:DC%2BD2cXpt1eitL8%3D, PID: 15475947
  • Tátrai, I., Boros, G., György, Á.I., Mátyás, K., Korponai, J., Pomogyi, P., Havasi, M., Kucserka, T., Abrupt shift from clear to turbid state in a shallow eutrophic, biomanipulated lake (2009) Hydrobiologia, 620, pp. 149-161
  • Ter Braak, C.J.F., Canonical Correspondence Analysis: A New Eigenvector Technique for Multivariate Direct Gradient Analysis (1986) Ecology, 67, pp. 1167-1179
  • Utermohl, M., Zur Vervollkommung der quantitativen Phytoplankton Methodik (1958) Mitteilungen Internationale Vereinigung Limnologie, 9, pp. 1-38
  • Van Geest, G.J., Coops, H., Scheffer, M., Van Nes, E.H., Long transients near the ghost of a stable state in eutrophic shallow lakes with fluctuating water levels (2007) Ecosystems, 10, pp. 37-47
  • Venrick, E.L., How many cells to count? (1978) Phytoplankton Manual, pp. 167-180. , Sournia A, (ed), UNESCO, Paris:
  • 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. , COI: 1:CAS:528:DyaK1cXltVGnsbw%3D
  • Zimmer, K.D., Hanson, M.A., Butler, M.G., Relationships among nutrients, phytoplankton, macrophytes, and fish in prairie wetlands (2003) Canadian Journal of Fisheries and Aquatic Sciences, 60, pp. 721-730. , COI: 1:CAS:528:DC%2BD3sXnt1Gitr0%3D

Citas:

---------- APA ----------
Sánchez, M.L., Lagomarsino, L., Allende, L. & Izaguirre, I. (2015) . Changes in the phytoplankton structure in a Pampean shallow lake in the transition from a clear to a turbid regime. Hydrobiologia, 752(1), 65-76.
http://dx.doi.org/10.1007/s10750-014-2010-6
---------- CHICAGO ----------
Sánchez, M.L., Lagomarsino, L., Allende, L., Izaguirre, I. "Changes in the phytoplankton structure in a Pampean shallow lake in the transition from a clear to a turbid regime" . Hydrobiologia 752, no. 1 (2015) : 65-76.
http://dx.doi.org/10.1007/s10750-014-2010-6
---------- MLA ----------
Sánchez, M.L., Lagomarsino, L., Allende, L., Izaguirre, I. "Changes in the phytoplankton structure in a Pampean shallow lake in the transition from a clear to a turbid regime" . Hydrobiologia, vol. 752, no. 1, 2015, pp. 65-76.
http://dx.doi.org/10.1007/s10750-014-2010-6
---------- VANCOUVER ----------
Sánchez, M.L., Lagomarsino, L., Allende, L., Izaguirre, I. Changes in the phytoplankton structure in a Pampean shallow lake in the transition from a clear to a turbid regime. Hydrobiologia. 2015;752(1):65-76.
http://dx.doi.org/10.1007/s10750-014-2010-6