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Abstract:

Several satellite models classify phytoplankton functional types (PFT) based on cell size. In this study we used field data from the Argentine Sea on both the photosynthetic and the bio-optical properties of phytoplankton to distinguish photosynthetic and bio-optical phytoplankton types (PBPT). Cluster analyses were run using data from 70 stations sampled during 3 periods to distinguish different PBPT, and principal component analysis was used to describe them. We examined the main taxonomic composition and percentage of chl a in the <5 μm size fraction found within the PBPT. The distribution of PBPT in relation to hourly primary production and environmental conditions was also investigated. The results showed a high degree of variability in biooptical and photosynthetic properties, e.g. the specific absorption coefficient of phytoplankton, aB ph(440), varied between 0.015 and 0.067 m2 (mg chl a)-1, and the maximum production at light saturation, PB m, varied between 0.68 and 10.05 mg C (mg chl a)-1 h-1. This resulted in the discrimination of 11 PBPT. Some had similar average cell sizes but differed in their bio-optical or photosynthetic characteristics, e.g. PBPT1 (with diatoms <5 μm and Emiliania huxleyi 2-5 μm) and PBPT6 (with diatoms <5 μm and coccal cells ∼2 μm) had markedly different PB m values (PBPT1: 1.20 mg C (mg chl a)-1 h-1 and PBPT6: 6.71 mg C (mg chl a)-1 h-1). This variability in the bio-optical and physiological properties is most likely the result of adaptation by phytoplankton communities to the high heterogeneity in environmental conditions in this region. These results indicate that satellite models describing the distribution of PFT based on cell size alone will not provide a realistic representation of the phytoplankton composition in this highly productive and heterogeneous area. © 2013 The authors.

Registro:

Documento: Artículo
Título:Phytoplankton types and primary production in the Argentine Sea
Autor:Segura, V.; Lutz, V.A.; Dogliotti, A.; Silva, R.I.; Negri, R.M.; Akselman, R.; Benavides, H.
Filiación:Instituto Nacional de Investigación y Desarrollo Pesquero (INIDEP), Paseo Victoria Ocampo No. 1, B7602HSA, Mar del Plata, Argentina
Instituto de Investigaciones Marinas y Costeras, Consejo Nacional de Investigaciones Científicas y Técnicas (CONICET), Dean Funes 3350, B7602AYL, Mar del Plata, Argentina
Instituto de Astronomía y Física Del Espacio (IAFE), CONICET/UBA, CC 67, Suc. 28, 1428 Buenos Aires, Argentina
Instituto Franco-Argentino Para El Estudio Del Clima y Sus Impactos (UMI IFAECI/CNRS-CONICET-UBA), Ciudad Universitaria Pabellón II Piso 2, C1428EHA ,Ciudad Autónoma de Buenos Aires, Argentina
Palabras clave:Argentine sea; Cell size; Photosynthetic and bio-optical phytoplankton types; Phytoplankton functional types; Primary production; chlorophyll a; coccolith; community composition; environmental conditions; functional group; photosynthesis; phytoplankton; primary production; satellite imagery; taxonomy; Argentine Sea; Atlantic Ocean
Año:2013
Volumen:491
Página de inicio:15
Página de fin:31
DOI: http://dx.doi.org/10.3354/meps10461
Título revista:Marine Ecology Progress Series
Título revista abreviado:Mar. Ecol. Prog. Ser.
ISSN:01718630
CODEN:MESED
PDF:https://bibliotecadigital.exactas.uba.ar/download/paper/paper_01718630_v491_n_p15_Segura.pdf
Registro:https://bibliotecadigital.exactas.uba.ar/collection/paper/document/paper_01718630_v491_n_p15_Segura

Referencias:

  • Aiken, J., Fishwick, J.R., Lavender, S.J., Barlow, R.G., Validation of MERIS reflectance and chlorophyll during the BENCAL cruise October 2002: Preliminary validation of new demonstration products for phytoplankton functional types and photosynthetic parameters (2007) Int J Remote Sens, 28, pp. 497-516. , others
  • Alvain, S., Moulin, C., Dandonneau, Y., Bréon, F.M., Remote sensing of phytoplankton groups in case 1 waters from global SeaWiFS imagery (2005) Deep-Sea Res i, 52, pp. 1989-2004
  • Balech, E., Los dinoflagelados del Atlántico sudoccidental (1988) Publ Espec Inst Esp Oceanogr, 1. , Ministerio de Agricultura, Pesca y Alimentación, Madrid
  • Bouman, H.A., Platt, T., Sathyendranath, S., Stuart, V., Dependence of light-saturated photosynthesis on temperature and community structure (2005) Deep-Sea Res i, 52, pp. 1284-1299
  • Brainerd, K.E., Gregg, M.C., Surface mixed and mixing layer depths (1995) Deep-Sea Res i, 42, pp. 1521-1543
  • Brewin, R.J.W., Hardaman-Mountford, N.J., Lavender, S.J., Raitsos, D.E., An intercomparison of bio-optical techniques for detecting dominant phytoplankton size class from satellite remote sensing (2011) Remote Sens Environ, 115, pp. 325-339. , others
  • Brown, C.W., Podestá, G.P., Remote sensing of coccolithophore blooms in the western South Atlantic Ocean (1997) Remote Sens Environ, 60, pp. 83-91
  • Carreto, J.I., Negri, R.N., Benavides, H.R., Fitoplancton, pigmentos y nutrients. Resultados campañas III y VI del B/I 'Shinkai Maru', 1978 (1981) Rev Invest Desarrollo Pesq, 383, pp. 181-201
  • Carreto, J.I., Montoya, N.G., Benavides, H.R., Guerrero, R., Carignan, M.O., Characterization of spring phytoplankton communities in the Río de la Plata maritime front using pigment signatures and cell microscopy (2003) Mar Biol, 143, pp. 1013-1027
  • Cermeño, P., Marañón, E., Rodríguez, F., Fernández, E., Large-sized phytoplankton sustain higher carbon-specific photosynthesis than smaller cells in a coastal eutrophic ecosystem (2005) Mar Ecol Prog ser, 297, pp. 51-60
  • Claustre, H., Babin, M., Merien, D., Ras, J., Toward a taxon-specific parameterization of bio-optical models of primary production: A case study in the North Atlantic (2005) J Geophys Res, 110, pp. C07S12. , others doi: 10.1029/ 2004JC002634
  • Falkowski, P.G., Light-shade adaption in marine phytoplankton (1980) Primary Productivity in the Sea, pp. 99-119. , Falkowski PG (ed) Plenum Press, New York, NY
  • Fernández, C.I., Raimbault, P., Garcia, N., Rimmelin, P., An estimation of annual new production and carbon fluxes in the northeast Atlantic Ocean during 2001 (2005) J Geophys Res, 110, pp. C07S13. , doi: 10.1029/2004JC002616
  • Garcia, V.M.T., Garcia, C.A.E., Mata, M.M., Pollery, R.C., Environmental factors controlling the phytoplankton blooms at the Patagonia shelf-break in spring (2008) Deep-Sea Res i, 55, pp. 1150-1166. , others
  • Geider, R.J., Platt, T., Raven, J.A., Size dependence of growth and photosynthesis in diatoms: A synthesis (1986) Mar Ecol Prog ser, 30, pp. 93-104
  • Gómez, M.I., Piola, A.R., Kattner, G., Alder, V.A., Biomass of autotrophic dinoflagellates under weak vertical stratification and contrasting chlorophyll levels in subantarctic shelf waters (2011) J Plankton Res, 33, pp. 1304-1310
  • Gregg, W.W., Casey, N.W., McClain, C., Recent trends in global ocean chlorophyll (2005) Geophys Res Lett, 32, pp. L03606. , doi: 10.1029/2004GL021808
  • Hama, T., Miyazaki, T., Ogawa, Y., Iwakuma, T., Takahashi, M., Otsuki, A., Ichimura, S., Measurement of photosynthetic production of a marine phytoplankton population using a stable 13C isotope (1983) Mar Biol, 73, pp. 31-36
  • Hasle, G.R., Using the inverted microscope (1978) Monographs on Oceanographic Methodology, 6, pp. 191-196. , Sournia A (ed) Phytoplankton manual UNESCO, Paris
  • Hirata, T., Aiken, J., Hardman-Mountford, N., Smyth, T.J., Barlow, R.G., An absorption model to determine phytoplankton size classes from satellite ocean colour (2008) Remote Sens Environ, 112, pp. 3153-3159
  • Hoepffner, N., Sathyendranath, S., Bio-optical characteristics of coastal waters: Absorption spectra of phytoplankton and pigment distribution in the western North Atlantic (1992) Limnol Oceanogr, 37, pp. 1660-1679
  • Holm-Hansen, O., Lorenzen, C.J., Holmes, R.W., Strickland, D.H., Fluorometric determination of chlorophyll (1965) J Cons Int Explor Mer, 30, pp. 3-15
  • Kiefer, D.A., Fluorescence properties of natural phytoplankton populations (1973) Mar Biol, 22, pp. 263-269
  • Le Quéré, C., Harrison, S.P., Prentice, I.C., Buitenhuis, E.T., Ecosystem dynamics based on plankton functional types for global ocean biogeochemistry models (2005) Glob Change Biol, 11, pp. 2016-2140
  • Lee, Z., Carder, K.L., Arnone, R., Deriving inherent optical properties from water color: A multi-band quasi-analytical algorithm for optically deep waters (2002) Appl Opt, 41, pp. 5755-5772
  • Lutz, V.A., Carreto, J.I., A new spectrofluorometric method for the determination of chlorophylls and degradation products and its application in two frontal areas of the Argentine Sea (1991) Cont Shelf Res, 11, pp. 433-451
  • Lutz, V.A., Segura, V., Dogliotti, A.I., Gagliardini, D.A., Bianchi, A., Balestrini, C.E., Primary production in the Argentine Sea during spring estimated by field and satellite models (2010) J Plankton Res, 32, pp. 181-195
  • Mitchell, B.G., Algorithms for determining the absorption coefficient of aquatic particulates using the quantitative filter technique (1990) Proc SPIE Ocean Optics, 10, pp. 137-148
  • Moreno, D.V., Marrero, J.P., Morales, J., García, C.L., Úbeda, M.J., Rueda, M.J., Llinás, O., Phytoplankton functional community structure in Argentinian continental shelf determined by HPLC pigment signature (2012) Estuar Coast Shelf Sci, 100, pp. 78-81
  • Nair, A., Sathyendaranath, S., Platt, T., Morales, J., Remote sensing of phytoplankton functional types (2008) Remote Sens Environ, 112, pp. 3366-3375. , others
  • Negri, R.N., Carreto, J.I., Benavides, H.R., Akselman, R., Lutz, V.A., An unusual bloom of Gyrodinium cf (1992) Aureolum in the Argentine Sea: Community Structure and Conditioning Factors. J Plankton Res, 14, pp. 261-269
  • Omachi, C.Y., Garcia, V.M.T., Garcia, C.A.E., Campos, E.J., Distribuicao espaco-temporal da estrutura da comunidade fitoplanctonica na Patagonia (2010) III Congresso Brasileiro de Oceanografia-CBO'2010, Rio Grande, 17 A 21 de Maio 2010, pp. 161-164. , AOCEANO
  • Platt, T., Gallegos, C.L., Modeling primary production (1980) Primary Productivity in the Sea, pp. 339-362. , Falkowski PG (ed). Plenum Press, New York, NY
  • Platt, T., Gallegos, C.L., Harrison, W.G., Photoinhibition and photosynthesis in natural assemblages of marine phytoplankton (1980) J Mar Res, 38, pp. 687-701
  • Platt, T., Rao, D.V.S., Irwin, B., Photosynthesis of picoplankton in the oligotrophic ocean (1983) Nature, 301, pp. 702-704
  • Platt, T., Sathyendranath, S., Ulloa, O., Harrison, W.G., Hoepffner, N., Goes, J., Nutrient control of phytoplankton photosynthesis in the western North Atlantic (1992) Nature, 356, pp. 229-231
  • Pope, R.M., Fry, E.S., Absorption spectrum (380-700 nm) of pure water (1997) II. Integrating Cavity Measurements. Appl Opt, 36, pp. 8710-8723
  • Raitsos, D.E., Lavender, S.J., Maravelias, C.D., Haralabous, J., Richardson, A., Reid, P.C., Identifying four phytoplankton functional types from space: An ecological approach (2008) Limnol Oceanogr, 53, pp. 605-613
  • Rivas, A.L., Dogliotti, A.I., Gagliardini, D.A., Seasonal variability in satellite-measured surface chlorophyll in the Patagonian shelf (2006) Cont Shelf Res, 26, pp. 703-720
  • Sabatini, M., Akselman, R., Reta, R., Negri, M.R., Spring plankton communities in the southern Patagonian shelf: Hydrography, mesozooplankton patterns and trophic relationships (2012) J Mar Syst, 94, pp. 33-51
  • Sathyendranath, S., Platt, T., The spectral irradiance field at the surface and in the interior of the ocean: A model for applications in oceanography and remote sensing (1988) J Geophys Res, 93, pp. 9270-9280. , doi: 10.1029/JC093iC08p09270
  • Sathyendranath, S., Lazzara, L., Prieur, L., Variations in the spectral values of specific absorption of phytoplankton (1987) Limnol Oceanogr, 32, pp. 403-415
  • Sathyendranath, S., Watts, L.J., Devred, E., Platt, T., Caverhill, C., Maass, H., Discrimination of diatoms from other phytoplankton using ocean-colour data (2004) Mar Ecol Prog ser, 272, pp. 59-68
  • Schloss, I.R., Ferreyra, M.E., Almandoz, G.O., Codina, R., Role of plankton communities in sea-air variation in pCO2 in the SW Atlantic Ocean (2007) Mar Ecol Prog ser, 332, pp. 93-106. , others
  • Silva, R.I., Negri, R., Lutz, V., Summer succession of ultraphytoplankton at the EPEA coastal station (northern Argentina) (2009) J Plankton Res, 31, pp. 447-458
  • Stuart, V., Sathyendranath, S., Head, E.J.H., Platt, T., Irwin, B., Maass, H., Bio-optical characteristics of diatoms and prymnesiophyte populations in the Labrador Sea (2000) Mar Ecol Prog ser, 201, pp. 91-106
  • Subramaniam, A., Carpenter, E.J., Karentz, D., Falkowski, P.G., Optical properties of the marine diazotrophic cyanobacteria Trichodesmium spp (1999) I. Absorption and Spectral Photosynthetic Characteristics. Limnol Oceanogr, 44, pp. 608-617
  • Throndsen, J., Productivity and abundance of ultraand nanoplankton in Oslofjorden (1978) Sarsia, 63, pp. 273-284
  • Tomas, C.R., Identifying marine phytoplankton. Academic Press, San Diego, CA Uitz J, Claustre H, Morel A, Hooker S (2006) Vertical distribution of phytoplankton communities in open ocean: An assessment based on surface chlorophyll (1997) J Geophys Res, 111, pp. C08005. , doi: 10.1029/2005JC003207
  • Uitz, J., Huot, Y., Bruyant, F., Babin, M., Claustre, H., Relating phytoplankton photophysiological properties to community structure on large scales (2008) Limnol Oceanogr, 53, pp. 614-630

Citas:

---------- APA ----------
Segura, V., Lutz, V.A., Dogliotti, A., Silva, R.I., Negri, R.M., Akselman, R. & Benavides, H. (2013) . Phytoplankton types and primary production in the Argentine Sea. Marine Ecology Progress Series, 491, 15-31.
http://dx.doi.org/10.3354/meps10461
---------- CHICAGO ----------
Segura, V., Lutz, V.A., Dogliotti, A., Silva, R.I., Negri, R.M., Akselman, R., et al. "Phytoplankton types and primary production in the Argentine Sea" . Marine Ecology Progress Series 491 (2013) : 15-31.
http://dx.doi.org/10.3354/meps10461
---------- MLA ----------
Segura, V., Lutz, V.A., Dogliotti, A., Silva, R.I., Negri, R.M., Akselman, R., et al. "Phytoplankton types and primary production in the Argentine Sea" . Marine Ecology Progress Series, vol. 491, 2013, pp. 15-31.
http://dx.doi.org/10.3354/meps10461
---------- VANCOUVER ----------
Segura, V., Lutz, V.A., Dogliotti, A., Silva, R.I., Negri, R.M., Akselman, R., et al. Phytoplankton types and primary production in the Argentine Sea. Mar. Ecol. Prog. Ser. 2013;491:15-31.
http://dx.doi.org/10.3354/meps10461