Artículo

El editor solo permite decargar el artículo en su versión post-print desde el repositorio. Por favor, si usted posee dicha versión, enviela a
Consulte el artículo en la página del editor
Consulte la política de Acceso Abierto del editor

Abstract:

We investigated the phytoplankton structure in 60 lakes across a latitudinal gradient (2150 km), from Austral Patagonia to Antarctica, including environments ranging from oligotrophic to eutrophic. We analysed the latitudinal variation of species richness (local and regional) and evenness, as well as the similarity decay in phytoplankton composition in Patagonia and Antarctica. The following hypotheses were tested: (1) there is a decline of phytoplankton species richness with increasing latitude; (2) phytoplankton structure is influenced by both geographical and environmental factors. (3) The predominant algal trophic strategy (autotrophic vs mixotrophic) is influenced by lake trophic status. Phytoplankton was analysed using a polyphasic approach (morphologically based species diversity, functional diversity, dominant molecular diversity). We found a significant decline in phytoplankton richness with increasing latitude. Multivariate analyses showed that phytoplankton is structured by the lake geographic position (mainly latitude) and variables related with trophic state (nutrients, conductivity and pH). The autotrophs/ mixotrophs ratio increased towards higher trophic states. The initial similarity was higher in Antarctica than in Patagonia, whereas the halving distance was lower for Antarctic lakes. The three biodiversity approaches of this meta-analysis evidenced that both geographic and environmental factors influence phytoplankton diversity at large spatial scale, although the local effect was stronger. © Springer International Publishing Switzerland 2015.

Registro:

Documento: Artículo
Título:Drivers of phytoplankton diversity in patagonian and antarctic lakes across a latitudinal gradient (2150 km): The importance of spatial and environmental factors
Autor:Izaguirre, I.; Saad, J.F.; Romina Schiaffino, M.; Vinocur, A.; Tell, G.; Sánchez, M.L.; Allende, L.; Sinistro, R.
Filiación:Departamento de Ecología, Genética y Evolución, IEGEBA (UBA-CONICET), Facultad de Ciencias Exactas y Naturales, Universidad de Buenos Aires, Buenos Aires, Argentina
Departamento de Biodiversidad y Biología Experimental, Facultad de Ciencias Exactas y Naturales, Universidad de Buenos Aires, Buenos Aires, Argentina
Palabras clave:Biogeography; Diversity; Lakes; Latitudinal gradient; Phytoplankton; Trophic gradient; biodiversity; biogeography; community structure; environmental factor; lacustrine environment; latitudinal gradient; meta-analysis; phytoplankton; species diversity; species evenness; species richness; trophic status; trophic structure; Antarctica; Patagonia; algae
Año:2015
Volumen:764
Número:1
Página de inicio:157
Página de fin:170
DOI: http://dx.doi.org/10.1007/s10750-015-2269-2
Título revista:Hydrobiologia
Título revista abreviado:Hydrobiologia
ISSN:00188158
CODEN:HYDRB
Registro:https://bibliotecadigital.exactas.uba.ar/collection/paper/document/paper_00188158_v764_n1_p157_Izaguirre

Referencias:

  • Baas-Becking, L.G.M., (1934) Geobiologie, of Inleiding Tot de Milieukunde: Met Literatuurlijst en Ind, , Van Stockum
  • Baigun, C., Marinone, M.C., Cold-temperate lakes of South America: Do they fit northern hemisphere models? (1995) Archiv für Hydrobiologie, 135, pp. 23-51
  • Beisner, B.E., Peres-Neto, P.R., Lindstrom, E.S., Barnett, A., Longhi, M.L., The role of environmental and spatial processes in structuring lake communities from bacteria to fish (2006) Ecology, 87, pp. 2985-2991
  • Boëchat, I.G., Wetthoff, G., Kruger, A., Gucker, B., Adrian, R., A biochemical explanation for the success of mixotrophy in the flagellate Ochromonas sp (2007) Limnology and Oceanography, 52, p. 1624
  • Borcard, D., Lengendre, P., Drapeau, P., Partialling out the spatial component of ecological variation (1992) Ecology, 73, pp. 1045-1055
  • Coesel, P.F., Krienitz, L., Diversity and geographic distribution of desmids and other coccoid green algae (2008) Biodiversity and Conservation, 17, pp. 381-392
  • Darling, K.F., Kucera, M., Pudsey, C.J., Wade, C.M., Molecular evidence links cryptic diversification in polar planktonic protists to Quaternary climate dynamics (2004) Proceedings of the National Academy of Sciences of the United States of America, 101, pp. 7657-7662
  • Dolan, J.R., Biogeography of aquatic microbes (2005) Aquatic Microbial Ecology, 41, pp. 39-48
  • Epstein, S., López-García, P., ‘‘Missing’’ protists: A molecular prospective (2008) Biodiversity and Conservation, 17, pp. 261-276
  • Fenchel, T.O.M., Finlay, B.J., The ubiquity of small species: Patterns of local and global diversity (2004) Bioscience, 54, pp. 777-784
  • Finlay, B.J., The global diversity of protozoa and other small species (1998) International Journal of Parasitology, 28, pp. 29-48
  • Finlay, B.J., Global dispersal of free-living microbial eukaryote species (2002) Science, 296, pp. 1061-1063
  • Flynn, K.J., Stoecker, D.K., Mitra, A., Raven, J.A., Glibert, P.M., Hansen, P.J., Granéli, E., Burkholder, J.M., Misuse of the phytoplankton-zooplankton dichotomy: The need to assign organisms as mixotrophs within plankton functional types (2013) Journal of Plankton Research, 35 (1), pp. 3-11
  • Foissner, W., Biogeography and dispersal of micro-organisms: A review emphasizing protists (2006) Acta Protozoologica, 45, pp. 111-136
  • Foissner, W., Protist diversity and distribution: Some basic considerations (2008) Biodiversity and Conservation, 17, pp. 235-242
  • Futuyma, D.J., (1998) Evolutionary Biology, , Sinauer Associates, Sunderland, MA
  • Gaston, K.J., Global patterns in biodiversity (2000) Nature, 405, pp. 220-227
  • Hillebrand, H., On the generality of the latitudinal diversity gradient (2004) The American Naturalist, 163, pp. 192-211
  • 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
  • Hillebrand, H., Gruner, D.S., Borer, E.T., Bracken, M.E.S., Cleland, E.E., Elser, J.J., Stanley Harpole, W., Smith, J.E., Consumer versus resource control of producer diversity depends on ecosystem type and producer community structure (2007) Proceedings of the National Academy of Sciences of the United States of America, 104 (26), pp. 10904-10909
  • Irigoien, X., Flynn, K.J., Harris, R.P., Phytoplankton blooms: A ‘‘loophole’’ in microzooplankton grazing impact? (2005) Journal of Plankton Research, 27 (4), pp. 313-321
  • Izaguirre, I., Vinocur, A., Mataloni, G., Pose, M., Comparison of phytoplankton communities in relation to trophic status in lakes from Hope Bay (Antarctic Peninsula) (1998) Hidrobiologia, 369-370, pp. 73-87
  • Izaguirre, I., Allende, L., Marinone, M.C., Comparative study of the planktonic communities of three lakes of contrasting trophic status at Hope Bay (Antarctic Peninsula) (2003) Journal of Plankton Research, 25, pp. 1079-1097
  • 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
  • Jones, R.I., Mixotrophy in planktonic protests: An overview (2000) Fresh water Biology, 45, pp. 219-226
  • Jost, L., The relationship between evenness and diversity (2010) Diversity, 2, pp. 207-232
  • Katechakis, A., Stibor, H., The mixotroph Ochromonas tuberculata may invade and suppress specialist phago- and phototroph plankton communities depending on nutrient conditions (2006) Oecologia, 148, pp. 692-701
  • Kirk, J.T.O., (1994) Light and Photosynthesis in Aquatic Ecosystems, , Cambridge University Press, Cambridge
  • Kruk, C., Huszar, V.L., Peeters, E.T., Bonilla, S., Costa, L., Lürling, M., Reynolds, C.S., Scheffer, M., A morphological classification capturing functional variation in phytoplankton (2010) Fresh water Biology, 55, pp. 614-627
  • Lopes, P.M., Caliman, A., Carneiro, L.S., Bini, L.M., Esteves, F.A., Farjalla, V., Bozelli, R.L., Concordance among assemblages of upland Amazonian lakes and the structuring role of spatial and environmental factors (2011) Ecological Indicators, 11, pp. 1171-1176
  • Magurran, A.E., (2008) Measuring Biological Diversity, , Blackwell Publishing, Oxford
  • Maidana, N.I., Izaguirre, I., Vinocur, A., Mataloni, G., Pizarro, H., Diatomeas en una transecta patagónicoant ártica (2005) Ecología Asutral, 15, pp. 159-176
  • Martiny, J.B.H., Bohannan, B.J., Brown, J.H., Colwell, R.K., Fuhrman, J.A., Green, J.L., Horner-Devine, M.C., Staley, J.T., Microbial biogeography: Putting microorganisms on the map (2006) Nature Reviews Microbiology, 4, pp. 102-112
  • Marker, A.F.H., Nusch, A., Rai, H., Riemann, B., The measurement of photosynthetic pigments in fresh water and standardization of methods: Conclusions and recommendations (1980) Archiv fü r Hydrobiologie Beihefte Ergebnise Limnology, 14, pp. 91-106
  • Mazaris, A.A., Moustaka-Gouni, M., Michaloudi, E., Bobori, D.C., Biogeographical patterns of fresh water micro- and macroorganisms: A comparison between phytoplankton, zooplankton and fish in the eastern Mediterranean (2010) Journal of Biogeography, 37, pp. 1341-1351
  • Nabout, J.C., Siqueira, T., Bini, L.M., de Nogueira, I.S., No evidence for environmental and spatial processes in structuring phytoplankton communities (2009) Acta Oecologica, 35, pp. 720-726
  • Padisák, J., Crosetti, L.O., 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
  • Petchey, O.L., Gaston, K.J., Dendrograms and measuring functional diversity (2007) Oikos, 116, pp. 1422-1426
  • Petchey, O.L., Hector, A., Gaston, K.J., How do different measures of functional diversity perform? (2004) Ecology, 85, pp. 847-857
  • Quirós, R., Drago, E., The environmental state of Argentinean lakes: An overview (1999) Lakes & Reservoirs: Research & Management, 4, pp. 55-64
  • Raven, J.A., Beardall, J., Flynn, K.J., Maberly, S.C., Phagotrophy in the origins of photosynthesis in eukaryotes and as a complementary mode of nutrition in phototrophs: Relation to Darwin’s insectivorous plants (2009) Journal of Experimental Botany, 60, pp. 3975-3987
  • Reynolds, C.S., Huszar, V., Kruk, C., Naselli-Flores, L., Melo, S., Towards a functional classification of the fresh water phytoplankton (2002) Journal of Plankton Research, 24, pp. 417-428
  • Rosenberg, D.C.A., Gurevitch, J., (2000) Meta Win: Statistical Software for Meta-Analysis. Version 2.0, , Sinauer, Sunderland, MA
  • Rosenzweig, M.L., (1995) Species Diversity in Space and Time, , Cambridge University Press, Cambridge
  • Saad, J.F., Schiaffino, M.R., Vinocur, A., O’Farrell, I., Tell, G., Izaguirre, I., Microbial planktonic communities of fresh water environments from Tierra del Fuego: Dominant trophic strategies in lakes with contrasting features (2013) Journal of Plankton Research, 35, pp. 1220-1233
  • Saez, A.G., Lozano, E., Body doubles (2005) Nature, 433, p. 111
  • Schiaffino, M.R., Unrein, F., Gasol, J.M., Massana, R., Balague, V., Izaguirre, I., Bacterial community structure in a latitudinal gradient of lakes: The roles of spatial versus environmental factors (2011) Fresh water Biology, 56, pp. 1973-1991
  • Schmera, D., Erős, T., Podani, J., A measure for assessing functional diversity in ecological communities (2009) Aquatic Ecology, 43, pp. 157-167
  • Sharp, J.H., Peltzer, E.T., Alperin, M.J., Cauwet, G., Farrington, J.W., Fry, B., Karl, D.M., Tugrul, S., Procedures subgroup report (1993) Marine Chemistry, 41, pp. 37-49
  • Soininen, J., Species turnover along abiotic and biotic gradients: Patterns in space equal patterns in time? (2010) BioScience, 60, pp. 433-439
  • Soininen, J., Macroecology of unicellular organisms - Patterns and process (2012) Environmental Microbiology Reports, 4, pp. 10-22
  • Soininen, J., McDonald, R., Hillebrand, H., The distance decay of similarity in ecological communities (2007) Ecography, 30, pp. 3-12
  • Soininen, J., Kokocinski, M., Estlander, S., Kotanen, J., Heino, J., Neutrality, niches, and determinants of plankton metacommunity structure across boreal wetland ponds (2007) Ecoscience, 14, pp. 146-154
  • Soininen, J., Korhonen, J.J., Karhu, J., Vetterli, A., Disentangling the spatial patterns in community composition of prokaryotic and eukaryotic lake plankton (2011) Limnology & Oceanography, 56, pp. 508-520
  • Soininen, J., Passy, S., Hillebrand, H., The relationship between species richness and evenness: A meta-analysis of studies across aquatic ecosystems (2012) Oecologia, 169, pp. 803-809
  • Sun, J., Liu, D., Geometric models for calculating cell biovolume and surface area for phytoplankton (2003) Journal of Plankton Research, 25, pp. 1331-1346
  • Tell, G., Izaguirre, I., Allende, L., Diversity and geographic distribution of Chlorococcales (Chlorophyceae) in contrasting lakes along a latitudinal transect in Argentinean Patagonia (2011) Biodiversity and Conservation, 20, pp. 703-727
  • Ter Braak, C.J.F., (1991) CANOCO Version 3.12, , Agricultural Mathematics Group, Wageningen
  • Ter Braak, C.J.F., Canonical community ordination. Part I: Basic theory and linear methods (1994) Ecoscience, 1, pp. 127-140
  • Tittel, J., Bissinger, V., Zippel, B., Gaedke, U., Bell, E., Lorke, A., Kamjunke, N., Mixotrophs combine resource use to outcompete specialists: Implications for aquatic food webs (2003) Proceedings of the National Academy of Sciences of the United States of America, 100 (22), pp. 12776-12781
  • Unrein, F., Izaguirre, I., Massana, R., Balagué, V., Gasol, J.M., Nanoplankton assemblages in maritime Antarctic lakes: Characterisation and molecular fingerprinting comparison (2005) Aquatic Microbial Ecology, 40, pp. 269-282
  • 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) Limnology and Oceanography, 52, pp. 456-469
  • Unrein, F., Gasol, J.M., Massana, R., Dinobryon faculiferum (Chrysophyta) in coastal Mediterranean seawater: Presence and grazing impact on bacteria (2010) Journal of Plankton Research, 32, pp. 559-564
  • Unrein, F., Gasol, J.M., Not, F., Forn, I., Massana, R., Mixotrophic haptophytes are key bacterial grazers in oligotrophic coastal waters (2014) The ISME Journal, 8, pp. 164-176
  • 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
  • Vanormelingen, P., Cottenie, K., Muchels, E., Muylaert, K., Vyverman, W., de Meester, L., The relative importance of dispersal and local processes in structuring phytoplankton communities in a set of highly interconnected ponds (2008) Fresh water Biology, 53, pp. 2170-2183
  • Venrick, E.L., How Many Cells to Count. Phytoplankton Manual (1978) UNESCO, pp. 167-180. , Paris
  • Vinocur, A., Unrein, F., Typology of lentic water bodies at Potter Peninsula (King George Island, Antarctica) based on physical-chemical characteristics and phytoplankton communities (2000) Polar Biology, 23, pp. 858-870
  • Weisse, T., Distribution and diversity of aquatic protists: An evolutionary and ecological perspective (2008) Biodiversity and Conservation, 17, pp. 243-259
  • Willig, M.R., Kaufman, D.M., Stevens, R.D., Latitudinal gradients of biodiversity: Pattern, process, scale, and synthesis (2003) Annual Review of Ecology, Evolution, and Systematics, 34, pp. 273-309

Citas:

---------- APA ----------
Izaguirre, I., Saad, J.F., Romina Schiaffino, M., Vinocur, A., Tell, G., Sánchez, M.L., Allende, L.,..., Sinistro, R. (2015) . Drivers of phytoplankton diversity in patagonian and antarctic lakes across a latitudinal gradient (2150 km): The importance of spatial and environmental factors. Hydrobiologia, 764(1), 157-170.
http://dx.doi.org/10.1007/s10750-015-2269-2
---------- CHICAGO ----------
Izaguirre, I., Saad, J.F., Romina Schiaffino, M., Vinocur, A., Tell, G., Sánchez, M.L., et al. "Drivers of phytoplankton diversity in patagonian and antarctic lakes across a latitudinal gradient (2150 km): The importance of spatial and environmental factors" . Hydrobiologia 764, no. 1 (2015) : 157-170.
http://dx.doi.org/10.1007/s10750-015-2269-2
---------- MLA ----------
Izaguirre, I., Saad, J.F., Romina Schiaffino, M., Vinocur, A., Tell, G., Sánchez, M.L., et al. "Drivers of phytoplankton diversity in patagonian and antarctic lakes across a latitudinal gradient (2150 km): The importance of spatial and environmental factors" . Hydrobiologia, vol. 764, no. 1, 2015, pp. 157-170.
http://dx.doi.org/10.1007/s10750-015-2269-2
---------- VANCOUVER ----------
Izaguirre, I., Saad, J.F., Romina Schiaffino, M., Vinocur, A., Tell, G., Sánchez, M.L., et al. Drivers of phytoplankton diversity in patagonian and antarctic lakes across a latitudinal gradient (2150 km): The importance of spatial and environmental factors. Hydrobiologia. 2015;764(1):157-170.
http://dx.doi.org/10.1007/s10750-015-2269-2