Régime de production primaire dans le bassin algérien : interaction facteurs du milieu successions planctoniques
| Références bibliographiques
estimator for microbial taxonomy based on biomarkers. Limnol. Oceanogr. Methods 6,
190–199. https://doi.org/10.4319/lom.2008.6.190
Venrick, E., 2002. Floral patterns in the California Current System off southern California:
1990–1996. J. Mar. Res. 60.
Videau, C., Sournia, A., Prieur, L., Fiala, M., 1994. Phytoplankton and primary production
characteristics at selected sites in the geostrophic Almeria-Oran front system (SW
Mediterranean Sea). J. Mar. Syst., Processes and Fluxes in the Geostrophic AlmeriaOran Front 5, 235–250. https://doi.org/10.1016/0924-7963(94)90049-3
Vidussi, F., Claustre, H., Manca, B.B., Luchetta, A., Marty, J.-C., 2001. Phytoplankton
pigment distribution in relation to upper thermocline circulation in the eastern
Mediterranean Sea during winter. J. Geophys. Res. Oceans 106, 19939–19956.
https://doi.org/10.1029/1999JC000308
Vidussi, F., Marty, J.-C., Chiavérini, J., 2000. Phytoplankton pigment variations during the
transition from spring bloom to oligotrophy in the northwestern Mediterranean sea.
Deep Sea Res. Part Oceanogr. Res. Pap. 47, 423–445. https://doi.org/10.1016/S09670637(99)00097-7
Volpe, G., Colella, S., Brando, V.E., Forneris, V., La Padula, F., Di Cicco, A., Sammartino,
M., Bracaglia, M., Artuso, F., Santoleri, R., 2019. Mediterranean ocean colour Level 3
operational
multi-sensor
processing.
Ocean
Sci.
15,
127–146.
https://doi.org/10.5194/os-15-127-2019
Waterbury, J., Watson, S., Valois, F., Franks, D., 1986. Biological and ecological
characterization of the marine unicellular cyanobacterium Synechococcus, in:
Photosynthetic Picoplankton. pp. 71-.
Wood, A.M., 1985. Adaptation of photosynthetic apparatus of marine ultraphytoplankton to
natural light fields. Nature 316, 253–255. https://doi.org/10.1038/316253a0
Wright, S.W., Ishikawa, A., Marchant, H.J., Davidson, A.T., Van Den Enden, R.L., Nash,
G.V., 2009. Composition and significance of picophytoplankton in Antarctic waters.
Polar Biol. 32, 797–808. https://doi.org/10.1007/s00300-009-0582-9
Wright, S.W., Thomas, D.P., Marchant, H.J., Higgins, H.W., Mackey, M.D., Mackey, D.J.,
1996. Analysis of phytoplankton of the Australian sector of the Southern Ocean:
Comparisons of microscopy and size frequency data with interpretations of pigment
HPLC data using the “CHEMTAX” matrix factorisation program. Mar. Ecol. Prog.
Ser. 144, 285–298. https://doi.org/10.3354/meps144285
Zapata, M., Garrido, J.L., Jeffrey, S.W., 2006. Chlorophyll c Pigments: Current Status, in:
Grimm, B., Porra, R.J., Rüdiger, W., Scheer, H. (Eds.), Chlorophylls and
Bacteriochlorophylls: Biochemistry, Biophysics, Functions and Applications. Springer
Netherlands, Dordrecht, pp. 39–53. https://doi.org/10.1007/1-4020-4516-6_3
Zapata, M., Jeffrey, S.W., Wright, S.W., Rodríguez, F., Garrido, J.L., Clementson, L., 2004.
Photosynthetic pigments in 37 species (65 strains) of Haptophyta: implications for
146
Précédent

Régime de production primaire dans le bassin algérien interaction facteurs du milieu successions planctoniques - 169/180

Suivant