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Abstract:

Functional characteristics play an important role in shaping phytoplankton distributions. This approach can help to explain the success of tropical taxa in temperate ecosystems. We used functional groups (FG) and functional traits (FT) to assess the phytoplankton distribution in five temperate lakes exposed to tropical taxa dispersal. We ran redundancy analyses to assess the relationship between each functional classification and the environment. Both approaches showed similar variance of the phytoplankton biomass and responded to similar environmental variables. The FG approach separated lakes by trophic status (total phosphorus: TP), while the FT approach reflected the lakes' hydromorphology (conductivity, depth, mixing regime). The traits of motility and mixotrophy coincided with low mixing and high light. Tropical taxa were dominant in two lakes, rare in one and absent in two lakes. When dominant, tropical taxa exerted an overwhelming effect on phytoplankton biomass and community composition, and contributed to foam occurrences. The success of tropical taxa in only two lakes seems related to the interplay of their traits (accessory pigments, morphology) and the prevailing environmental filters (low light, deep mixing, and intermediate TP). Their rarity or absence in the other lakes evidences how traits can increase fitness in one environment but not in other. © 2012 Springer Science+Business Media Dordrecht.

Registro:

Documento: Artículo
Título:Using functional approaches to study phytoplankton communities in a temperate region exposed to tropical species dispersal
Autor:Cellamare, M.; de Tezanos Pinto, P.; Leitão, M.; Coste, M.; Boutry, S.; Haury, J.
Filiación:Irstea, UR REBX, 50 avenue de Verdun, 33612 Gazinet Cestas, France
Departamento de Ecología Genética y Evolución, Facultad de Ciencias Exactas y Naturales, Universidad de Buenos Aires, C1428EHA Buenos Aires, Argentina
Consejo Nacional de Investigaciones Científicas y Técnicas (CONICET), Buenos Aires, Argentina
Bi-Eau, 15 Rue Lainé-Laroche, 49000 Angers, France
AGROCAMPUS OUEST/INRA Rennes Ecologie et Santé des Ecosystèmes, 65, rue de Saint-Brieuc, CS 84215, 35042 Rennes Cedex, France
Palabras clave:Functional groups; Functional traits; Phytoplankton; Temperate lakes; Tropical taxa; classification; dispersal; environmental factor; functional group; lake dynamics; lake ecosystem; mixotrophy; new taxon; phytoplankton; species diversity; temperate environment; tropical environment
Año:2013
Volumen:702
Número:1
Página de inicio:267
Página de fin:282
DOI: http://dx.doi.org/10.1007/s10750-012-1330-7
Título revista:Hydrobiologia
Título revista abreviado:Hydrobiologia
ISSN:00188158
CODEN:HYDRB
Registro:https://bibliotecadigital.exactas.uba.ar/collection/paper/document/paper_00188158_v702_n1_p267_Cellamare

Referencias:

  • Abonyi, A., Leitão, M., Lançon, A.M., Padisák, J., Phytoplankton functional groups as indicators of human impacts along the River Loire (France) (2012) Hydrobiologia, , doi:10.1007/s10750-012-1130-0
  • Begg, G.W., Limnological observations on Lake Kariba during 1967 with emphasis on some special features (1970) Limnology and Oceanography, 15, pp. 776-788
  • Bergström, A.K., Jansson, M., Drakare, S., Blomqvist, P., Occurrence of mixotrophic flagellates in relation to bacterioplankton production, light regime and availability of inorganic nutrients in unproductive lakes with differing humic contents (2003) Freshwater Biology, 48, pp. 868-877
  • Biswas, S., Nweze, N.O., Phytoplankton of Ogelube Lake, Opi, Anambra State, Nigeria (1990) Hydrobiologia, 199, pp. 81-86
  • Bormans, M., Condie, S.A., Modelling the distribution of Anabaena and Melosira in a stratified river weir pool (1998) Hydrobiologia, 364, pp. 3-13
  • Capdevielle, P., (1978) Recherches écologiques et systématiques sur le phytoplancton du Lac de Cazaux-Sanguinet-Biscarosse, , Ph. D thesis, Université de Bordeaux 1, Bordeaux
  • Capdevielle, P., Algues d'eau douce rares ou nouvelles pour la flore de France (1982) Cryptogamie, Algologie, 3, pp. 211-225
  • Capdevielle, P., Observations dans la région des Landes d'algues d'eau douce rares ou nouvelles pour la flore de France (1985) Cryptogamie, Algologie, 6, pp. 141-170
  • Capdevielle, P., Couté, A., Quelques Staurastrum Meyen (Chlorophycées, Desmidiacées) rares ou nouveaux pour la France (1980) Nova Hedwigia, 33, pp. 859-872
  • Caputo, L., Naselli-Flores, L., Ordoñez, J., Armengol, J., Phytoplankton distribution along trophic gradients within and among reservoirs in Catalonia (Spain) (2008) Freshwater Biology, 53, pp. 2543-2556
  • Caron, D.A., Sanders, R.W., Lin Lim, E., Marrasé, C., Amaral, L.A., Whitney, S., Aoki, R.B., Porter, K.G., Light-dependent phagotrophy in the freshwater mixotrophic chrysophyte Dinobryon cylindricum (1993) Microbial Ecology, 25, pp. 93-111
  • Cellamare, M., (2009) Évaluation de l'état écologique des plans d'eau aquitains à partir des communautés de producteurs primaires, , Ph. D. thesis, Université de Bordeaux 1, Bordeaux
  • Cellamare, M., Leitão, M., Coste, M., Dutartre, A., Haury, J., Tropical phytoplankton taxa in aquitaine lakes (France) (2010) Hydrobiologia, 639, pp. 129-145
  • Compère, P., Iltis, A., The phytoplankton (1983) Lake Chad: Ecology and Productivity of a Shallow Tropical Ecosystem, Vol. Biologicae 53 Monographiae, pp. 145-198. , In Carmouze, J. P., J. R. Durand & C. Lévèque (eds). Dr W. Junk, The Hague
  • Cózar, A., Bergamino, N., Mazzuoli, S., Azza, N., Bracchini, L., Dattilo, A.M., Loiselle, S.A., Relationships between wetland ecotones and inshore water quality in the Ugandan coast of Lake Victoria (2007) Wetlands Ecology and Management, 15, pp. 499-507
  • de Philippis, R., Faraloni, C., Sili, C., Vincenzini, M., Populations of exopolysaccharide-producing cyanobacteria and diatoms in the mucilaginous benthic aggregates of the Tyrrhenian Sea (Tuscan Archipelago) (2005) Science of the Total Environment, 353, pp. 360-368
  • de Tezanos Pinto, P., Litchman, E., The interactive effects of N:P ratios and light on nitrogen-fixer abundance (2010) Oikos, 119, pp. 567-575
  • Devercelli, M., Phytoplankton of the middle Paraná River during an anomalous hydrological period: a morphological and functional approach (2006) Hydrobiologia, 563, pp. 465-478
  • Dutartre, A., Delarche, A., Dulong, J., (1989) Plan De Gestion De La végétation Aquatique Des Lacs Et étangs Landais, , Bordeaux: Cemagref, Division Qualité des Eaux, Pêche et Pisciculture, GEREA
  • Fonseca, B.M., Bicudo, C.E.D.M., How important can the presence/absence of macrophytes be in determining phytoplankton strategies in two tropical shallow reservoirs with different trophic status? (2010) Journal of Plankton Research, 32, pp. 31-46
  • Golterman, H.L., Clymo, R.S., Ohnstad, M.A.M., (1978) Methods of Physical and Chemical Analysis of Freshwaters, , Oxford: Blackwell
  • Graham, L.E., Wilcox, L.W., (1999) Algae, , Upper Saddle River, NJ: Prentice Hall
  • Hansen, P.J., Hjorth, M., Growth and grazing responses of Chrysochromulina ericina (Prymnesiophyceae): the role of irradiance, prey concentration and pH (2002) Marine Biology, 141, pp. 975-983
  • Hare, L., Carter, J.C.H., Diel and seasonal physico-chemical fluctuations in a small natural West African lake (1984) Freshwater Biology, 14, pp. 597-610
  • Hill, M.O., Gauch, H.G., Detrended correspondence analysis: an improved ordination technique (1980) Vegetatio, 42, pp. 47-58
  • Hillebrand, H., Dürselen, C.-D., Kirschtel, D., Pollingher, U., Zohary, T., Biovolume calculation for pelagic and benthic microalgae (1999) Journal of Phycology, 35, pp. 403-424
  • Hooper, D.U., Chapin III, F.S., Ewel, J.J., Hector, A., Inchausti, P., Lavorel, S., Lawton, J.H., Wardle, D.A., Effects of biodiversity on ecosystem functioning: a consensus of current knowledge (2005) Ecological Monographs, 75, pp. 3-35
  • Hughes, L., Biological consequences of global warming: is the signal already apparent? (2000) Trends in Ecology & Evolution, 15, pp. 56-61
  • Huisman, J., Sharples, J., Stroom, J.M., Visser, P.M., Kardinaal, W.E.A., Verspagen, J.M.H., Sommeijer, B., Changes in turbulent mixing shift competition for light between phytoplankton species (2004) Ecology, 85, pp. 2960-2970
  • Hulot, F.D., Lacroix, G., Lescher-Moutoué, F., Loreau, M., Functional diversity governs ecosystem response to nutrient enrichment (2000) Nature, 405, pp. 340-344
  • Huszar, V., Kruk, C., Caraco, N., Steady-state assemblages of phytoplankton in four temperate lakes (NE U.S.A.) (2003) Hydrobiologia, 502, pp. 97-109
  • 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, , doi:10.1007/s10750-012-1069-1:1-14
  • Izaguirre, I., Sinistro, R., Schiaffino, M.R., Sánchez, M.L., Unrein, F., Massana, R., Grazing rates of protists in wetlands under contrasting light conditions due to floating plants (2012) Aquatic Microbial Ecology, 65, pp. 221-232
  • Jones, R.I., Phytoplankton migrations: patterns, processes and profits (1993) Archiv für Hydrobiologie, 39, pp. 67-77
  • Jones, R.I., Mixotrophy in planktonic protists as a spectrum of nutritional strategies (1994) Marine Microbial Food Webs, 8, pp. 87-96
  • Kirk, J.T.O., (1994) Light and Photosynthesis in Aquatic Ecosystems, , Melbourne: Cambridge University Press
  • Komárek, J., Cronberg, G., Some chroococalean and oscillatorialean Cyanoprokaryotes from African lakes, ponds and pools (2001) Nova Hedwigia, 73, pp. 129-160
  • Kruk, C., Huszar, V.L.M., Peeters, E., Bonilla, S., Costa, L., Lurling, M., Reynolds, C.S., Scheffer, M., A morphological classification capturing functional variation in phytoplankton (2010) Freshwater Biology, 55, pp. 614-627
  • Kruk, C., Peeters, E.T.H.M., Nes, E.H.V., Huszar, V.L.M., Costa, L.S., Scheffer, M., Phytoplankton community composition can be predicted best in terms of morphological groups (2011) Limnology and Oceanography, 56, pp. 110-118
  • Litchman, E., Klausmeier, C.A., Trait-based community ecology of phytoplankton (2008) The Annual Review of Ecology, Evolution, and Systematics, 39, pp. 615-639
  • Litchman, E., de Tezanos Pinto, P., Klausmeier, C.A., Thomas, M.K., Yoshiyama, K., Linking traits to species diversity and community structure in phytoplankton (2010) Hydrobiologia, 653, pp. 15-28
  • Lund, J.W.G., Kipling, C., Le Cren, E.D., The inverted microscope method of estimating algal numbers and the statistical basis of estimations by counting (1958) Hydrobiologia, 11, pp. 143-170
  • Magadza, C.H.D., Kariba reservoir: experience and lessons learned (2006) Lakes & Reservoirs: Research & Management, 11, pp. 271-286
  • McGill, B.J., Enquist, B.J., Weiher, E., Westoby, M., Rebuilding community ecology from functional traits (2006) Trends in Ecology & Evolution, 21, pp. 178-185
  • Naselli-Flores, L., Barone, R., Steady-state assemblages in a Mediterranean hypertrophic reservoir. The role of Microcystis ecomorphological variability in maintaining an apparent equilibrium (2003) Hydrobiologia, 502, pp. 133-143
  • Naselli-Flores, L., Barone, R., Pluriannual morphological variability of phytoplankton in a highly productive Mediterranean reservoir (Lake Arancio, Southwestern Sicily) (2007) Hydrobiologia, 578, pp. 87-95
  • O'Farrell, I., de Tezanos Pinto, P., Izaguirre, I., Phytoplankton morphological response to the underwater light conditions in a vegetated wetland (2007) Hydrobiologia, 578, pp. 65-77
  • (1982) Eutrophication of Waters, Monitoring, Assessment and Control, , OECD, Paris: Organisation for Economic Cooperation and Development
  • Olenina, I., Hajdu, S., Edler, I., Andersson, A., Wasmund, N., Busch, S., Göbel, J., Niemkiewicz, E., Biovolumes and size-classes of phytoplankton in the Baltic Sea (2006) Baltic Sea Environment Proceedings, 106, pp. 1-144
  • Padisák, J., Cylindrospermopsis raciborskii (Woloszyńska) Seenayya et Subba Raju, an expanding, highly adaptive cyanobacterium: Worldwide distribution and review of its ecology (1997) Archiv für Hydrobiologie-Supplement, 107, pp. 563-593
  • Padisák, J., Soróczki-Pintér, É., Rezner, Z., Sinking properties of some phytoplankton shapes and the relation of form resistance to morphological diversity of plankton-an experimental study (2003) Hydrobiologia, 500, pp. 243-257
  • Padisák, J., Crossetti, L., Naselli-Flores, L., Use and misuse in the application of the phytoplankton functional classification: a critical review with updates (2009) Hydrobiologia, 621, pp. 1-19
  • Parmesan, C., Ecological and evolutionary responses to recent climate change (2006) Annual Review of Ecology, Evolution, and Systematics, 37, pp. 637-669
  • R: A Language and Environment for Statistical Computing (2008) R Foundation for Statistical Computing, , http://www.R-project.org, R Development Core Team, Vienna
  • Reynolds, C.S., Phytoplankton assemblages and their periodicity in stratifying lake systems (1980) Holarctic Ecology, 3, pp. 141-159
  • Reynolds, C.S., Phytoplankton periodicity: the interactions of form, function and environmental variability (1984) Freshwater Biology, 14, pp. 111-142
  • Reynolds, C.S., (2006) The Ecology of Freshwater Phytoplankton, , Cambridge: Cambridge University Press
  • 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
  • (2004) Lacs Médocains: Etat des lieux, , S. A. G. E, Schéma d'Aménagement et de Gestion des Eaux, Hourtin
  • Salmaso, N., Padisák, J., Morpho-functional groups and phytoplankton development in two deep lakes (Lake Garda, Italy and Lake Stechlin, Germany) (2007) Hydrobiologia, 578, pp. 97-112
  • Scheffer, M., Rinaldi, S., Gragnani, A., Mur, L.R., van Nes, E.G., On the dominance of filamentous cyanobacteria in shallow, turbid lakes (1997) Ecology, 78, pp. 272-282
  • Schwaderer, A., Yoshiyama, K., de Tezanos Pinto, P., Swenson, N.G., Klausmeier, C.A., Litchman, E., Eco-evolutionary differences in light utilization traits and distributions of freshwater phytoplankton (2011) Limnology and Oceanography, 56, pp. 589-598
  • Senna, P.A.C., Delazari, A., Sant' Anna, C.L., A new planktic cyanoprokaryotic species, Cyanodictyon tropicalis (Cyanophyceae) from Espirito Santo State (Southeastern), Brazil (1999) Algological Studies, 94, pp. 293-303
  • Simberloff, D., Dayan, T., The guild concept and the structure of ecological communities (1991) Annual Review of Ecology and Systematics, 22, pp. 115-143
  • Souza, M., Barros, C., Barbosa, F., Hajnal, É., Padisák, J., Role of atelomixis in replacement of phytoplankton assemblages in Dom Helvécio Lake, South-East Brazil (2008) Hydrobiologia, 607, pp. 211-224
  • ter Braak, C.J.F., Šmilauer, P., (2002) CANOCO for Windows. Version 4.5, , Wageningen: Biometris Plant Research International
  • Violle, C., Navas, M.-L., Vile, D., Kazakou, E., Fortunel, C., Hummel, I., Garnier, E., Let the concept of trait be functional! (2007) Oikos, 116, pp. 882-892
  • Weithoff, G., The concepts of 'plant functional types' and 'functional diversity' in lake phytoplankton-a new understanding of phytoplankton ecology? (2003) Freshwater Biology, 48, pp. 1669-1675

Citas:

---------- APA ----------
Cellamare, M., de Tezanos Pinto, P., Leitão, M., Coste, M., Boutry, S. & Haury, J. (2013) . Using functional approaches to study phytoplankton communities in a temperate region exposed to tropical species dispersal. Hydrobiologia, 702(1), 267-282.
http://dx.doi.org/10.1007/s10750-012-1330-7
---------- CHICAGO ----------
Cellamare, M., de Tezanos Pinto, P., Leitão, M., Coste, M., Boutry, S., Haury, J. "Using functional approaches to study phytoplankton communities in a temperate region exposed to tropical species dispersal" . Hydrobiologia 702, no. 1 (2013) : 267-282.
http://dx.doi.org/10.1007/s10750-012-1330-7
---------- MLA ----------
Cellamare, M., de Tezanos Pinto, P., Leitão, M., Coste, M., Boutry, S., Haury, J. "Using functional approaches to study phytoplankton communities in a temperate region exposed to tropical species dispersal" . Hydrobiologia, vol. 702, no. 1, 2013, pp. 267-282.
http://dx.doi.org/10.1007/s10750-012-1330-7
---------- VANCOUVER ----------
Cellamare, M., de Tezanos Pinto, P., Leitão, M., Coste, M., Boutry, S., Haury, J. Using functional approaches to study phytoplankton communities in a temperate region exposed to tropical species dispersal. Hydrobiologia. 2013;702(1):267-282.
http://dx.doi.org/10.1007/s10750-012-1330-7