A. Aguilera-belmonte, I. Inostroza, J. M. Franco, P. Riobo, and P. I. Gomez, The growth, toxicity and genetic characterization of seven strains of Alexandrium catenella (Whedon and Kofoid) Balech 1985 (Dinophyceae) isolated during the 2009 summer outbreak in southern Chile, Harmful Algae, vol.12, pp.105-112, 2011.

D. M. Anderson and K. Stolznbach, Selective retention of 2 dinoflagellates in a well-mixed estuarine embayment -the importance of diel vertical migration and surface avoidance, Marine Ecol. Progr. Ser, vol.25, pp.39-50, 1985.

J. Arino, J. L. Gouze, and A. Sciandra, A discrete, size-structured model of phytoplankton growth in the chemostat -introduction of inhomogeneous cell division size, J. Math. Biol, vol.45, pp.313-336, 2002.

G. Arzul, M. Seguel, L. Guzman, E. Denn, and E. , Comparison of allelopathic properties in three toxic Alexandrium species, J. Exp. Marine Biol. Ecol, vol.232, pp.285-295, 1999.

A. D. Barton, S. Dutkiewicz, G. Flierl, J. Bragg, and M. J. Follows, Patterns of diversity in marine phytoplankton, Science, vol.327, pp.1509-1511, 2010.

L. Bass-becking, Geobiologie of Inleiding Tot de Milieukunde. The Hague: W. P. Van Stockum & Zoon, 1934.

J. M. Burkholder, Implications of harmful microalgae and heterotrophic dinoflagellates in management of sustainable marine fisheries, Ecol. Appl, vol.8, pp.37-62, 1998.

A. Chambouvet, P. Morin, D. Marie, and L. Guillou, Control of Toxic Marine Dinoflagellate Blooms by Serial Parasitic Killers, Science, vol.322, pp.1254-1257, 2008.
URL : https://hal.archives-ouvertes.fr/hal-02409729

A. Chapelle, C. Labry, M. Sourisseau, C. Lebreton, A. Youenou et al., Alexandrium minutum growth controlled by phosphorus: an applied model. GEOHAB Model, vol.83, pp.181-191, 2010.

D. W. Coats and M. G. Park, Parasitism of photosynthetic dinoflagellates by three strains of Amoebophrya (Dinophyta): parasite survival, infectivity, generation time, and host specificity, J. Phycol, vol.38, pp.520-528, 2002.

P. Cugier, G. Billen, J. F. Guillaud, J. Garnier, and A. Menesguen, , 2005.

, Modelling the eutrophication of the Seine Bight (France) under historical, present and future riverine nutrient loading, J. Hydrol, vol.304, pp.381-396

K. Davidson and W. S. Gurney, An investigation of non-steady-state algal growth. II. Mathematical modelling of co-nutrient-limited algal growth, J. Plankton Res, vol.21, pp.839-858, 1999.

M. R. Droop, Vitamin B12 and Marine Ecology. IV. The Kinetics of Uptake, Growth and Inhibition in Monochrysis Lutheri, J. Marine Biol. Assoc. U.K, vol.48, pp.689-733, 1968.

M. R. Droop, Some thoughts on nutrient limitation in algae, Coll. Reprints Scott. Marine Biol. Assoc, vol.9, p.263, 1974.

S. Dutkiewicz, M. J. Follows, and J. G. Bragg, Modeling the coupling of ocean ecology and biogeochemistry, Global Biogeoch. Cycles, vol.23, p.4017, 2009.

K. F. Edwards, M. K. Thomas, C. A. Klausmeier, and E. Litchman, Allometric scaling and taxonomic variation in nutrient utilization traits and maximum growth rate of phytoplankton, Limnol. Oceanogr, vol.57, pp.554-566, 2012.

J. Elith, M. Kearney, and S. Phillips, The art of modelling range-shifting species, Methods Ecol. Evol, vol.1, pp.330-342, 2010.

R. W. Eppley, Temperature and phytoplankton growth in the sea, Fish. Bull, vol.70, pp.1063-1085, 1972.

E. Erard-le-denn, Alexandrium minutum, Efflorescences Toxiques Des Eaux Cotieres Francaises. Ecologie, Ecophysiologie, Toxicologie, Ifremer Edn, pp.53-65, 1997.

E. Erard-le-denn, M. J. Chretiennot-dinet, and I. Probert, First report of parasitism on the toxic dinoflagellate Alexandrium minutum Halim, Estuar. Coast. Shelf Sci, vol.50, pp.109-113, 2000.

P. G. Falkowski and M. J. Oliver, Mix and match: how climate selects phytoplankton, Nat. Rev. Microbiol, vol.5, pp.813-819, 2007.

J. Fauchot, F. J. Saucier, M. Levasseur, S. Roy, and B. Zakardjian, Winddriven river plume dynamics and toxic Alexandrium tamarense blooms in the St. Lawrence estuary (Canada): a modeling study, Harmful Algae, vol.7, pp.214-227, 2008.
URL : https://hal.archives-ouvertes.fr/hal-00833652

R. I. Figueroa, E. Garces, R. Massana, and J. Camp, Description, host-specificity, and strain selectivity of the dinoflagellate parasite Parvilucifera sinerae sp. nov. (Perkinsozoa), Protist, vol.159, pp.563-578, 2008.

K. J. Flynn, Modelling marine phytoplankton growth under eutrophic conditions, J. Sea Res, vol.54, pp.92-103, 2005.

K. J. Flynn, M. Oceanography, and . Biology, Use, abuse, misconceptions and insights from quota modelsthe droop cell quota model 40 years on, An Annual Review, vol.46, pp.1-23, 2008.

M. J. Follows and S. Dutkiewicz, Modeling diverse communities of marine microbes, Annu. Rev. Mar. Sci, vol.3, pp.427-451, 2011.

W. Forsythe, E. Rykiel, R. Stahl, H. Wu, and R. Schoolfiled, A model comparison for daylength as a function of latitude and day of year, Ecol. Model, vol.80, pp.87-95, 1995.

F. Gohin, S. Loyer, M. Lunven, C. Labry, J. Froidefond et al., Satellite-derived parameters for biological modelling in coastal waters: illustration over the eastern continental shelf of the Bay of Biscay, Remote Sens. Environ, vol.95, pp.29-46, 2005.

E. Graneli, P. S. Salomon, G. O. Fistarol, L. Evangelista, A. M. Barsanti et al., The role of allelopathy for harmful algae bloom formation, Algal Toxins: Nature, Occurrence, Effect and Detection, NATO Science for Peace and Security Series A: Chemistry and Biology, pp.159-178, 2008.

J. Grover, Resource competition in a variable environment -phytoplankton growing according to the variable-internal-stores model, Am. Nat, vol.138, pp.811-835, 1991.

J. Grover, Constant-yield and variable-yield models of population-growth -responses to environmental variability and implications for competition, J. Theor. Biol, vol.158, pp.409-428, 1992.

J. P. Grover and F. Wang, Competition and allelopathy with resource storage: two resources, J. Theo. Biol, vol.351, pp.9-24, 2014.

L. Guillou, M. Viprey, A. Chambouvet, R. M. Welsh, A. R. Kirkham et al., Widespread occurrence and genetic diversity of marine parasitoids belonging to Syndiniales (Alveolata), Environ. Microbiol, vol.10, pp.3349-3365, 2008.
URL : https://hal.archives-ouvertes.fr/hal-02409722

C. Guisande, M. Frangopulos, I. Maneiro, A. R. Vergara, and I. Riveiro, Ecological advantages of toxin production by the dinoflagellate Alexandrium minutum under phosphorus limitation, Marine Ecol. Prog. Ser, vol.225, pp.169-176, 2002.

I. Hadjadji, E. Masseret, B. Plisson, M. Laabir, P. Cecchi et al., Clonal variation in physiological parameters of Alexandrium tamarense: implications for biological invasions and maintenance, Cahiers De Biologie Marine, vol.53, pp.357-363, 2012.

G. M. Hallegraeff, A review of harmful algal blooms and their apparent global increase, Phycologia, vol.32, pp.79-99, 1993.

G. M. Hallegraeff, Ocean climate phytoplankton community responses, and harmful algal blooms: a formidable predictive challenge, J. Phycol, vol.46, pp.220-235, 2010.

R. He, D. J. Mcgillicuddy, B. A. Keafer, A. , and D. M. , Historic 2005 toxic bloom of Alexandrium fundyense in the western Gulf of Maine: 2. Coupled biophysical numerical modeling, J. Geophys. Res. Oceans, vol.113, p.7040, 2008.

A. E. Hickman, S. Dutkiewicz, R. G. Williams, and M. J. Follows, Modelling the effects of chromatic adaptation on phytoplankton community structure in the oligotrophic ocean, Marine Ecol. Prog. Ser, vol.406, pp.1-17, 2010.

F. D. Hulot and J. Huisman, Allelopathic interactions between phytoplankton species: the roles of heterotrophic bacteria and mixing intensity, Limnol. Oceanogr, vol.49, pp.1424-1434, 2004.

A. Ianora, M. G. Bentley, G. S. Caldwell, R. Casotti, A. D. Cembella et al., The relevance of marine chemical ecology to Plankton and Ecosystem Function: an emerging field, Marine Drugs, vol.9, pp.1625-1648, 2011.

G. S. Janowitz and D. Kamykowski, Modeled Karenia brevis accumulation in the vicinity of a coastal nutrient front, Marine Ecol. Prog. Ser, vol.314, pp.49-59, 2006.

A. Jassby and T. Platt, mathematical formulation of relationship between photosynthesis and light for phytoplankton, Limnol. Oceanogr, vol.21, pp.540-547, 1976.

H. J. Jeong, A. S. Lim, P. J. Franks, K. H. Lee, J. H. Kim et al., A hierarchy of conceptual models of red-tide generation: Nutrition, behavior, and biological interactions, Harmful Algae, vol.47, pp.97-115, 2015.

P. R. Jonsson, H. Pavia, and G. Toth, Formation of harmful algal blooms cannot be explained by allelopathic interactions, Proc. Natl. Acad. Sci. U.S.A, vol.106, pp.11177-11182, 2009.

D. Kamykowski, Trajectories of autotrophic marine dinoflagellates, J. Phycol, vol.31, pp.200-208, 1995.

D. Kamykowski, R. E. Reed, and G. J. Kirkpatrick, Comparison of sinking velocity, swimming velocity, rotation and path characteristics among six marine dinoflagellate species, Marine Biol, vol.113, pp.319-328, 1992.

M. Kearney, S. J. Simpson, D. Raubenheimer, H. , and B. , Modelling the ecological niche from functional traits, Philos. Trans. R. Soc. B Biol. Sci, vol.365, pp.3469-3483, 2010.

A. Kremp, A. Godhe, J. Egardt, S. Dupont, S. Suikkanen et al., Intraspecific variability in the response of bloom-forming marine microalgae to changed climate conditions, Ecol. Evol, vol.2, pp.1195-1207, 2012.

C. Labry, E. E. Denn, .. Chapelle, A. Fauchot, J. Youenou et al., Competition for phosphorus between two dinoflagellates: a toxic Alexandrium minutum and a non-toxic Heterocapsa triquetra, J. Exp. Marine Biol. Ecol, vol.358, pp.124-135, 2008.

G. Lacroix, K. Ruddick, Y. Park, N. Gypens, L. et al., Validation of the 3D biogeochemical model MIRO&CO with field nutrient and phytoplankton data and MERIS-derived surface chlorophyll a images, J. Marine Sys, vol.64, pp.66-88, 2007.

P. Lazure and F. Dumas, An external-internal mode coupling for a 3D hydrodynamical model for applications at regional scale (MARS), Adv. Water Res, vol.31, pp.233-250, 2008.

L. Borgne, P. Legendre, G. Marsouin, and A. , Validation of the OSI SAF radiative fluxes, Proceedings of the 2006 EUMETSAT Meteorological Satellite Conference (Helsinki), 2006.

T. Legovic and A. Cruzado, A model of phytoplankton growth on multiple nutrients based on the Michaelis-Menten-Monod uptake, Droop's growth and Liebig's law, Ecol. Model, vol.99, pp.19-31, 1997.

E. Litchman, K. F. Edwards, C. A. Klausmeier, and M. K. Thomas, Phytoplankton niches, traits and eco-evolutionary responses to global environmental change, Marine Ecol. Prog. Ser, vol.470, pp.235-248, 2012.

E. Litchman and C. A. Klausmeier, Trait-based community ecology of Phytoplankton, Ann. Rev. Ecol. Evol. Syst, vol.39, pp.615-639, 2008.

E. Litchman, C. A. Klausmeier, O. M. Schofield, and P. G. Falkowski, The role of functional traits and trade-offs in structuring phytoplankton communities: scaling from cellular to ecosystem level, Ecol. Lett, vol.10, pp.1170-1181, 2007.

H. L. Macintyre, M. W. Lomas, J. Cornwell, D. J. Suggett, C. J. Gobler et al., Mediation of benthic-pelagic coupling by microphytobenthos: an energy-and material-based model for initiation of blooms of Aureococcus anophagefferens, Harmful Algae, vol.3, pp.403-437, 2004.

E. Maranon, P. Cermeno, D. C. Lopez-sandoval, T. Rodriguez-ramos, C. Sobrino et al., Unimodal size scaling of phytoplankton growth and the size dependence of nutrient uptake and use, Ecol. Lett, vol.16, pp.371-379, 2013.

R. Margalef, Life-forms of phytoplankton as survival alternatives in an unstable environment, Oceanol. Acta, vol.1, pp.493-509, 1978.

A. Nì-rathaille, Modelling Alexandrium Bloom Dynamics in Cork Harbour, 2007.

R. A. Parker, Dynamic models for ammonium inhibition of nitrate uptake by phytoplankton, Ecol. Modell, vol.66, issue.93, p.90042, 1993.

M. Pascual, Periodic-response to periodic forcing of the droop equations for phytoplankton growth, J. Math. Biol, vol.32, pp.743-759, 1994.

A. E. Prowe, M. Pahlow, S. Dutkiewicz, M. Follows, and A. Oschlies, Top-down control of marine phytoplankton diversity in a global ecosystem model, Prog. Oceanogr, vol.101, pp.1-13, 2012.

R. Raine, A review of the biophysical interactions relevant to the promotion of HABs in stratified systems: the case study of Ireland, Deep Sea Res. II Topic. Stud. Oceanogr, vol.101, pp.21-31, 2014.

C. S. Reynolds, Pelagic community assemblage and the habitat template, Bocconea, vol.16, pp.323-339, 2003.

S. Rolinski, H. Horn, T. Petzoldt, P. , and L. , Identifying cardinal dates in phytoplankton time series to enable the analysis of long-term trends, Oecologia, vol.153, pp.997-1008, 2007.

S. Roy and J. Chattopadhyay, Toxin-allelopathy among phytoplankton species prevents competitive exclusion, J. Biol. Sys, vol.15, pp.73-93, 2007.

Y. Seity, P. Brousseau, S. Malardel, G. Hello, P. Benard et al., The AROME-France convective-scale operational model, Mon. Weather Rev, vol.139, pp.976-991, 2011.

H. L. Smith, The periodically forced Droop model for phytoplankton growth in a chemostat, J. Math. Biol, vol.35, pp.545-556, 1997.

H. L. Smith and X. Q. Zhao, Competitive exclusion in a discrete-time, sizestructured chemostat model. Discrete Continuous Dyn, Sys. Ser. B, vol.1, pp.183-191, 2001.

U. Sommer, A comparison of the droop and the monod models of nutrient limited growth applied to natural-populations of phytoplankton, Funct. Ecol, vol.5, pp.535-544, 1991.

S. Pouvreau, M. Daniele, I. Auby, F. Lagarde, P. Le-gall et al., VELYGER Database: The Oyster Larvae Monitoring French Project, 2016.

W. G. Sunda, K. W. Shertzer, and D. R. Hardison, Ammonium uptake and growth models in marine diatoms: Monod and Droop revisited, Marine Ecol. Prog. Ser, vol.386, pp.29-41, 2009.

S. M. Vallina, B. A. Ward, S. Dutkiewicz, and M. J. Follows, Maximal feeding with active prey-switching: a kill-the-winner functional response and its effect on global diversity and biogeography, Prog. Oceanogr, vol.120, pp.93-109, 2014.

J. A. Wiens, D. Stralberg, D. Jongsomjit, C. A. Howell, and M. A. Snyder, Niches, models, and climate change: assessing the assumptions and uncertainties, Proc. Natl. Acad. Sci. U.S.A, vol.106, pp.19729-19736, 2009.