Artículo

González Sagrario, M.A.; Rodríguez Golpe, D.; La Sala, L.; Sánchez Vuichard, G.; Minotti, P.; Panarello, H.O. "Lake size, macrophytes, and omnivory contribute to food web linkage in temperate shallow eutrophic lakes" (2018) Hydrobiologia. 818(1):87-103
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:

Physical, chemical and biological processes facilitate cross-habitat connections in lakes, prompting food webs to be supported by different subsidies. We tested the hypothesis that the pelagic food web is subsidized by littoral resources and fish foraging behaviour plays a major role in carbon flux and on food web structure in shallow hypereutrophic lakes. We performed a fish diet and carbon and nitrogen isotope analyses to predict the linkage between littoral and pelagic habitats in three shallow hypereutrophic lakes. Lakes differed in morphology, fetch, macrophyte composition and width of the littoral zone. δ13C signals of seston differed among lakes, but were similar to other producers. Macroinvertebrates and fish carbon signatures were more enriched in the lake co-dominated by emergent and submerged vegetation. Fish foraging behaviour indicates that more than the 80% of the carbon that sustain adult fish was channelled from the littoral. In conclusion, littoral carbon were relevant and sustain, in part, food web in these shallow lakes. Factors like the extension of the littoral zone, lake morphometry, and the dominance of multi-chain omnivorous fish facilitate the connection among lake compartments and the transference of littoral carbon to lake food web. © 2018, Springer International Publishing AG, part of Springer Nature.

Registro:

Documento: Artículo
Título:Lake size, macrophytes, and omnivory contribute to food web linkage in temperate shallow eutrophic lakes
Autor:González Sagrario, M.A.; Rodríguez Golpe, D.; La Sala, L.; Sánchez Vuichard, G.; Minotti, P.; Panarello, H.O.
Filiación:Instituto de Investigaciones Marinas y Costeras (IIMyC), UNMDP-CONICET, J. B. Justo 2550, Mar del Plata, 7600, Argentina
Dpto. Biología, FCEyN, Universidad Nacional de Mar del Plata, J. B. Justo 2550, Mar del Plata, 7600, Argentina
Instituto de Investigación e Ingeniería Ambiental, Universidad Nacional de San Martín, Campus Miguelete - Edificio 3iA, 25 de Mayo y Francia, San Martín, Provincia de Buenos Aires 1650, Argentina
Instituto de Geocronología y Geología Isotópica (INGEIS), CONICET, Universidad Nacional de Buenos Aires, Pabellón INGEIS - Ciudad Universitaria, (C1428EHA), Ciudad Autónoma de Buenos Aires, Argentina
Palabras clave:Carbon stable isotope; Fish; Macroinvertebrates; Nitrogen stable isotopes; carbon isotope; diet; eutrophic environment; fish; food web; foraging behavior; habitat structure; lake; littoral environment; macroinvertebrate; nitrogen isotope; omnivory; pelagic environment; shallow water; stable isotope; temperate environment
Año:2018
Volumen:818
Número:1
Página de inicio:87
Página de fin:103
DOI: http://dx.doi.org/10.1007/s10750-018-3594-z
Título revista:Hydrobiologia
Título revista abreviado:Hydrobiologia
ISSN:00188158
CODEN:HYDRB
Registro:https://bibliotecadigital.exactas.uba.ar/collection/paper/document/paper_00188158_v818_n1_p87_GonzalezSagrario

Referencias:

  • Ahlgren, M.O., Bowen, S.H., Comparison of quantitative light microscopy techniques used in diet studies of detritus-consuming omnivores (1992) Hydrobiologia, 239, pp. 79-83
  • Aichner, B., Herzschuh, U., Wilkes, H., Influence of aquatic macrophytes on the stable carbon isotopic signatures of sedimentary organic matter in lakes on the Tibetan Plateau (2010) Organic Geochemistry, 41, pp. 706-718
  • 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
  • Andersen, T., Hessen, D.O., Carbon, nitrogen, and phosphorus content of freshwater zooplankton (1991) Limnology and Oceanography, 36, pp. 807-814
  • (1992) Standard methods for the examination of water and wastewater, , American Public Health Association, Washington DC
  • Attayde, J.L., Ripa, J.R., The coupling between grazing and detritus food chains and the strength of trophic cascades across a gradient of nutrient enrichment (2008) Ecosystems, 11, pp. 980-990
  • Benke, A.C., Huryn, A.D., Smock, L.A., Wallace, J.B., Length-mass relationships for freshwater macroinvertebrates in North America with particular reference to the Southeastern United States (1999) Journal of the North American Benthological Society, 18, pp. 308-343
  • Bohn, V.Y., Perillo, G.M., Piccolo, M.C., Distribution and morphometry of shallow lakes in temparate zone (Buenos Aires Province, Argentina) (2011) Limnetica, 30, pp. 89-102
  • Bottrell, H.H., Duncan, A., Gliwicz, Z.M., Grygierek, E., Herzig, A., Hillbricht-Ilkowska, A., Kurasawa, H., Weglenska, T., A review of some problems in zooplankton production studies (1976) Norwegian Journal of Zoology, 24, pp. 419-456
  • Bowen, S.H., A nutritional constraint in detritivory by fishes: the stunted population of Sarotherodon mossambicus in Lake Sibaya, South Africa (1979) Ecological Monographs, 49, pp. 17-31
  • Colautti, D., Baigún, C., Llompart, F., Maiztegui, T., Garcia De Souza, J., Solimano, P., Balboni, L., Berasain, G., Fish assemblage of a Pampean shallow lake, a story of instability (2015) Hydrobiologia, 752, pp. 175-186
  • Colautti, D.C., Design and handling of fish traps in shallow ponds of Buenos Aires Province, Argentina (1998) Revista de Ictiología, 6, pp. 17-23
  • Coplen, T.B., Krouse, H.R., Bohlke, J.K., Reporting of nitrogen-isotope abundances (1992) Pure & Applied Chemistry, 64, pp. 907-908
  • Córdoba, F., (2012) El registro Climático del Holoceno Tardío en Latitudes Medias del SE de Sudamérica: Limnogeología de las Lagunas Encadenadas del Oeste, , Universidad Nacional de Córdoba, Córdoba, Argentina
  • Crawley, M.J., (2007) The R Book, , Wiley, West Sussex
  • De Brabandere, L., Frazer, T.K., Montoya, J.P., Stable nitrogen isotope ratios of macrophytes and associated periphyton along a nitrate gradient in two subtropical, spring-fed streams (2007) Freshwater Biology, 52, pp. 1564-1575
  • Dionne, M., Butler, M., Folt, C., Plant-specific expression of antipredator behaviour by larval damselflies (1990) Oecologia, 83, pp. 371-377. , PID: 28313009
  • Diovisalvi, N., Bohn, V.Y., Piccolo, M.C., Perillo, G.M.E., Baigún, C., Zagarese, H.E., Shallow lakes from the Central Plains of Argentina: an overview and worldwide comparative analysis of their basic limnological features (2015) Hydrobiologia, 752, pp. 5-20
  • Dolson, R., Mccann, K., Rooney, N., Ridgway, M., Lake morphometry predicts the degree of habitat coupling by a mobile predator (2009) Oikos, 118, pp. 1230-1238
  • Dumont, H.J., Van De Velde, I., Dumont, S., The dry weight estimate of biomass in a selection of Cladocera, Copepoda and Rotifera from the plankton, periphyton and benthos of continental waters (1975) Oecologia, 19, pp. 75-97. , PID: 28308833
  • Fee, E.J., Hecky, R.E., Kasian, S.E.M., Cruikshank, D.R., Effects of lake size, water clarity, and climatic variability on mixing depths in Canadian Shield lakes (1996) Limnology and Oceanography, 41, pp. 912-920
  • Fellerhoff, C., Voss, M., Wantzen, K.M., Stable carbon and nitrogen isotope signatures of decomposing tropical macrophytes (2003) Aquatic Ecology, 37, pp. 361-375
  • France, R.L., Omnivory, vertical food-web structure and system productivity: stable isotope analysis of freshwater planktonic food webs (2012) Freshwater Biology, 57, pp. 787-794
  • France, R.L., Del Giorgio, P.A., Westcott, K.A., Productivity and heterotrophy influences on zooplankton delta13C in northern temperate lakes (1997) Aquatic Microbial Ecology, 12, pp. 85-93
  • Frost, P.C., Tank, S.E., Turner, M.A., Elser, J.J., Elemental composition of littoral invertebrates from oligotrophic and eutrophic Canadian Lakes (2003) Journal of the North American Benthological Society, 22, pp. 51-62
  • Goericke, R., Montoya, J.P., Fry, B., Physiology of isotopic fractionation in algae and cyanobacteria (1994) Stable Isotopes in Ecology and Environmental Sciences, pp. 187-229. , Goericke R, Montoya JP, Fry B, (eds), Blackwell Scientific Publications, Boston
  • Gonfiantini, R., Standards for stable isotope measurements in natural compounds (1978) Nature, 271, pp. 534-536
  • González Sagrario, M.A., Balseiro, E., The role of macroinvertebrates and fish in regulating the provision by macrophytes of refugia for zooplankton in a warm temperate shallow lake (2010) Freshwater Biology, 55, pp. 2153-2166
  • González Sagrario, M.A., Ferrero, L., The trophic role of Cyphocharax voga (Hensel, 1869) according to habitat foraging and diet analysis in two turbid shallow lakes (2013) Fundamental and Applied Limnology, 183, pp. 75-88
  • Grey, J., Jones, R.I., Sleep, D., Stable isotope analysis of the origins of zooplankton carbon in lakes of differing trophic state (2000) Oecologia, 123, pp. 232-240. , PID: 28308728
  • Grey, J., Jones, R.I., Sleep, D., Seasonal changes in the importance of the source of organic matter to the diet of zooplankton in Loch Ness, as indicated by stable isotope analysis (2001) Limnology and Oceanography, 46, pp. 505-513
  • Herman, P.M.J., Heip, C., Growth and respiration of Cyprideis torosa Jones 1850 (Crustacea Ostracoda) (1982) Oecologia, 54, pp. 300-303. , PID: 28309951
  • Herwig, B.R., Soluk, D.A., Dettmers, J.M., Wahl, D.H., Trophic structure and energy flow in backwater lakes of two large floodplain rivers assessed using stable isotopes (2004) Canadian Journal of Fisheries and Aquatic Sciences, 61, pp. 12-22
  • Izaguirre, I., Sánchez, M.L., Schiaffino, M.R., O’farrell, I., Huber, P., Zunino, J., Lagomarsino, L., Mancini, M., Which environmental factors trigger the dominance of phytoplankton species across a moisture gradient of shallow lakes? (2015) Hydrobiologia, 752, pp. 47-64
  • Jones, J.I., Waldron, S., Combined stable isotope and gut contents analysis of food webs in plant-dominated, shallow lakes (2003) Freshwater Biology, 48, pp. 1396-1407
  • Keeley, J.E., Sandquist, D.R., Carbon: freshwater plants (1992) Plant Cell and Environment, 15, pp. 1021-1035
  • Kosten, S., Vernooij, M., Van Nes, E.H., González Sagrario, M.A., Clevers, J.G.P.W.A., Scheffer, M., Bimodal transparency as an indicator for alternative states in South American lakes (2012) Freshwater Biology, 57, pp. 1191-1201
  • Lee, J.-Y., Kim, J.-K., Owen, J.S., Choi, Y., Shin, K., Jung, S., Kim, B., Variation in carbon and nitrogen stable isotopes in POM and zooplankton in a deep reservoir and relationship to hydrological characteristics (2013) Journal of Freshwater Ecology, 28, pp. 47-62
  • Lorenzen, C.J., Determination of chlorophyll and pheo-pigments: spectrophotometric equations (1967) Limnology and Oceanography, 12, pp. 343-346
  • Mcintyre, P.B., Flecker, A.S., Vanni, M.J., Hood, J.M., Taylor, B.W., Thomas, S.A., Fish distributions and nutrient cycling in streams: can fish create biogeochemical hotspots (2008) Ecology, 89, pp. 2335-2346. , PID: 18724743
  • Mendonça, R., Kosten, S., Lacerot, G., Mazzeo, N., Roland, F., Ometto, J.P., Paz, E., Scheffer, M., Bimodality in stable isotope composition facilitates the tracing of carbon transfer from macrophytes to higher trophic levels (2013) Hydrobiologia, 710, pp. 205-218
  • Moss, B., The art and science of lake restoration (2007) Hydrobiologia, 581, pp. 15-24
  • Oksanen, L., Fretwell, S.D., Arruda, J., Niemela, P., Exploitation ecosystems in gradients of primary productivity (1981) The American Naturalist, 118, pp. 240-261
  • Osmond, C.B., Valaane, N., Haslam, S.M., Uotila, P., Roksandic, Z., Comparisons of δ13C values in leaves of quatic macrophytes from different habitats in Britain and Finland; some implications for photosynthetic processes in aquatic plants (1981) Oecologia, 50, pp. 117-124. , PID: 28310072
  • Parnell, A.C., Inger, R., Bearhop, S., Jackson, A.L., Source partitioning using stable isotopes: coping with too much variation (2010) PLoS ONE, 5. , PID: 20300637
  • Polis, G.A., Anderson, W.B., Holt, R.D., Toward an integration of landscape and food web ecology: the dynamics of spatially subsidized food webs (1997) Annual Review of Ecology and Systematics, 28, pp. 289-316
  • Post, M.P., Using stable isotopes to estimate trophic position: models, methods, and assumptions (2002) Ecology, 83, pp. 703-718
  • Quirós, R., Rennella, A.M., Boveri, M.B., Rosso, J.J., Sosnovsky, A., Factores que afectan la estructura y funcionamiento de las lagunas pampeanas (2002) Ecologia Austral, 12, pp. 175-185
  • Read, J.S., Rose, K.C., Physical responses of small temperate lakes to variation in dissolved organic carbon concentrations (2013) Limnology and Oceanography, 58, pp. 921-931
  • Rowland, F.E., Bricker, K.J., Vanni, M.J., González, M.J., Light and nutrients regulate energy transfer through benthic and pelagic food chains (2015) Oikos, 124, pp. 1648-1663
  • Saigo, M., Marchese, M.R., Wantzen, K.M., Sources contribution for benthic invertebrates: an inter-lake comparison in a flood plain system (2016) Hydrobiologia, 770, pp. 27-36
  • Schindler, D.E., Scheuerell, M.D., Habitat coupling in lake ecosystems (2002) Oikos, 98, pp. 177-189
  • Small, G.E., Pringle, C.M., Pyron, M., Duff, J.H., Role of the fish Astyanax aeneus (Characidae) as a keystone nutrient recycler in low-nutrient Neotropical streams (2010) Ecology, 92, pp. 386-397
  • Solomon, C.T., Carpenter, S.R., Clayton, M.K., Cole, J.J., Coloso, J.J., Pace, M.L., Vander Zanden, M.J., Weidel, B.C., Terrestrial, benthic, and pelagic resource use in lakes: results from a three-isotope Bayesian mixing model (2011) Ecology, 92, pp. 1115-1125. , PID: 21661572
  • Stenroth, P., Holmqvist, N., Nyström, P., Berglund, O., Larsson, P., Granéli, W., The influence of productivity and width of littoral zone on the trophic position of a large-bodied omnivore (2008) Oecologia, 156, pp. 681-690. , PID: 18368427
  • Teixeira-De Mello, F., Meerhoff, M., Pekcan-Hekim, Z., Jeppesen, E., Substantial differences in littoral fish community structure and dynamics in subtropical and temperate shallow lakes (2009) Freshwater Biology, 54, pp. 1202-1215
  • Vadeboncoeur, Y., Mccann, K.S., Vanderzanden, M.J., Rasmussen, J.B., Effects of multi-chain omnivory on the strength of trophic control in lakes (2005) Ecosystems, 8, pp. 682-693
  • Vadeboncoeur, Y., Peterson, G., Vander Zanden, M.J., Kalff, J., Benthic algal production across lake size gradients: interactions among morphometry, nutrients and light (2008) Ecology, 89, pp. 2542-2552. , PID: 18831175
  • Valderrama, J.C., The simultaneous analysis of total nitrogen and total phosphorus in natural waters (1981) Marine Chemistry, 10, pp. 109-122
  • Vander Zanden, M.J., Vadeboncoeur, Y., Fishes as integrators of benthic and pelagic food webs in lakes (2002) Ecology, 83, pp. 2152-2161
  • Vander Zanden, M.J., Vadeboncoeur, Y., Chandra, S., Fish reliance on littoral–benthic resources and the distribution of primary production in lakes (2011) Ecosystems, 14, pp. 894-903
  • Vanni, M.J., Boros, G., Mcintyre, P.B., When are fish sources vs. sinks of nutrients in lake ecosystems? (2013) Ecology, 94, pp. 2195-2206. , PID: 24358706
  • Vanni, M.J., Bowling, A.M., Dickman, E.M., Hale, R.S., Higgins, K.A., Horgan, M.J., Knoll, L.B., Stein, R.A., Nutrient cycling by fish supports relatively more primary production as lake productivity increases (2006) Ecology, 87, pp. 1696-1709. , PID: 16922320
  • Vanni, M.J., Flecker, A.S., Hood, J.M., Headworth, J.L., Stoichiometry of nutrient recycling by vertebrates in a tropical stream: linking species identity and ecosystem processes (2002) Ecology Letters, 5, pp. 285-293
  • Wetzel, R.G., Likens, G.E., (1991) Limnological Analyses, , Springer-Verlag, New York
  • Wilkinson, G.M., Carpenter, S.R., Cole, J.J., Pace, M.L., Yang, C., Terrestrial support of pelagic consumers: patterns and variability revealed by a multilake study (2013) Freshwater Biology, 58, pp. 2037-2049
  • Winemiller, K.O., Spatial and temporal variation in tropical fish trophic networks (1990) Ecological Monographs, 60, pp. 331-367
  • Zhang, H., Wu, G., Zhang, P., Xu, J., Trophic fingerprint of fish communities in subtropical floodplain lakes (2013) Ecology of Freshwater Fish, 22, pp. 246-256

Citas:

---------- APA ----------
González Sagrario, M.A., Rodríguez Golpe, D., La Sala, L., Sánchez Vuichard, G., Minotti, P. & Panarello, H.O. (2018) . Lake size, macrophytes, and omnivory contribute to food web linkage in temperate shallow eutrophic lakes. Hydrobiologia, 818(1), 87-103.
http://dx.doi.org/10.1007/s10750-018-3594-z
---------- CHICAGO ----------
González Sagrario, M.A., Rodríguez Golpe, D., La Sala, L., Sánchez Vuichard, G., Minotti, P., Panarello, H.O. "Lake size, macrophytes, and omnivory contribute to food web linkage in temperate shallow eutrophic lakes" . Hydrobiologia 818, no. 1 (2018) : 87-103.
http://dx.doi.org/10.1007/s10750-018-3594-z
---------- MLA ----------
González Sagrario, M.A., Rodríguez Golpe, D., La Sala, L., Sánchez Vuichard, G., Minotti, P., Panarello, H.O. "Lake size, macrophytes, and omnivory contribute to food web linkage in temperate shallow eutrophic lakes" . Hydrobiologia, vol. 818, no. 1, 2018, pp. 87-103.
http://dx.doi.org/10.1007/s10750-018-3594-z
---------- VANCOUVER ----------
González Sagrario, M.A., Rodríguez Golpe, D., La Sala, L., Sánchez Vuichard, G., Minotti, P., Panarello, H.O. Lake size, macrophytes, and omnivory contribute to food web linkage in temperate shallow eutrophic lakes. Hydrobiologia. 2018;818(1):87-103.
http://dx.doi.org/10.1007/s10750-018-3594-z