J. M. Arrieta, M. G. Weinbauer, C. Lute, and G. J. Herndl, Reconsidering the relatioship between virally indiced bacterial mortality and frequency of infected cells, Aquat. Microb. Ecol, vol.49, pp.207-215, 1999.

S. Blain, B. Quéguiner, L. Armand, S. Belviso, B. Bombled et al., Nature, vol.446, pp.1070-1074, 2007.

S. Blain, B. Quéguiner, and T. Trull, The natural iron fertilization experiment keops (kerguelen ocean and plateau compared study): An overview, Deep-Sea Res, Pt. II, vol.55, pp.559-565, 2008.

S. Blain, L. Oriol, J. Capparos, A. Guéneuguès, and I. Obernosterer, Distributions and stoichiometry of dissolved nitrogen and phosphorus in the iron fertilized region near Kerguelen, 2014.
URL : https://hal.archives-ouvertes.fr/hal-01207307

O. Bonilla-findji, A. Malits, D. Lefèvre, E. Rochelle-newall, R. Lemée et al., Viral effects on bacterial respiration, production and growth efficiency: Consistent trends in the southern ocean and the mediterranean sea, Deep-Sea Res. Pt. II, vol.55, pp.790-800, 2008.

P. W. Boyd, T. Jickells, C. S. Law, S. Blain, E. A. Boyle et al.,

U. Christaki, Optimization of procedures for counting viruses by flow cytometry, Mesoscale iron enrichment experiments 1993-2005: Synthesis and future directions, vol.315, pp.1506-1513, 2004.

C. P. Brussaard, K. R. Timmermans, J. Uitz, and M. J. Veldhuis, Virioplankton dynamics and virally induced phytoplankton lysis versus microzooplankton grazing southeast of the kerguelen (southern ocean), Deep-Sea Res, Pt. II, vol.55, pp.752-765, 2008.

F. Carlotti, D. Botha, A. Nowaczyck, D. Lefèvre, F. Carlotti et al., Structure, biomass, feeding and respiration of the mesozooplankton community during KEOPS, Deep-Sea Res, Mesozooplankton structure and functioning during the onset of the, vol.55, pp.720-733, 2008.

U. Christaki, A. Giannakourou, F. Van-wambeke, and G. Gregori, Nanoflagellate predation on auto-and heterotrophic picoplankton in the oligotrophic Mediterranean Sea, J. Plankton Res, vol.23, pp.1297-1310, 2001.
URL : https://hal.archives-ouvertes.fr/hal-00801542

U. Christaki, I. Obernosterer, F. Van-wambeke, M. Veldhuis, N. Garcia et al., Microbial food web structure in a naturally iron fertilized area in the southern ocean, Deep-Sea Res. Pt. II, vol.55, pp.706-719, 2008.
URL : https://hal.archives-ouvertes.fr/hal-00481045

U. Christaki, C. Courties, R. Massana, P. Catala, P. Lebaron et al., Optimized routine flow cytometric enumeration of heterotrophic flagellates using SYBR Green I, Limnol. Oceanogr. Methods, vol.9, pp.329-339, 2011.

I. Closset, M. Lasbleiz, K. Leblanc, B. Quéguiner, A. Cavagna et al., Seasonal evolution of net and regenerated silica production around a natural Fefertilized area in the Southern Ocean estimated with Si isotopic approaches, Biogeosciences, vol.11, pp.5827-5846, 2014.
URL : https://hal.archives-ouvertes.fr/hal-01138239

W. P. Cochlan, H. J. De-baar, P. W. Boyd, K. H. Coale, M. R. Landry et al., Synthesis of iron fertilization experiments: From the iron age in the age of enlightenment, The heterotrophic bacterial response during a mesoscale iron enrichment experiment (ironex II) in the eastern equatorial pacific ocean, vol.46, pp.9-16, 2001.

C. M. Duarte, S. Agusti, D. Vaqué, N. S. Agawin, J. Felipe et al., Experimental test of bacteria-phytoplankton coupling in the Southern Ocean, Limnol. Oceanogr, vol.50, pp.1844-1854, 2005.

H. Ducklow, Bacterial production and biomass in the oceans, Microbial Ecology of the Oceans, pp.85-121, 2000.

T. Fenchel, Ecology of heterotrophic microflagellates II, Bioenergetics and growth, Mar. Ecol. Prog. Ser, vol.8, pp.225-231, 1982.

R. Fukuda, H. Ogawa, T. Nagata, and I. I. Koike, Direct determination of carbon and nitrogen contents of natural bacterial assemblages in marine environments, Appl. Environ. Microbiol, vol.64, pp.3352-3358, 1998.

J. A. Hall and K. Safi, The impact of in situ Fe fertilisation on the microbial food web in the Southern Ocean, Deep-Sea Res, Pt. II, vol.48, pp.2591-2613, 2001.

J. L. Higgins, I. Kudo, J. Nishioka, A. Tsuda, and S. W. Wilhelm, The response of the virus community to the seeds ii mesoscale iron fertilization, Deep-Sea Res, Pt. II, vol.56, pp.2788-2795, 2009.

D. L. Kirchman, X. A. Morán, and H. Ducklow, Microbial growth in the polar oceans -role of temperature and potential impact of climate change, Nat. Rev. Microbiol, vol.7, pp.451-459, 2009.

D. L. Kirchman, P. F. Kemp, B. F. Sherr, E. B. Sherr, C. et al., Leucine incorporation as a measure of biomass production by heterotrophic bacteria, in: Handbook of methods in aquatic microbial ecology, pp.509-512, 1993.

J. Kuparinen, J. Hall, M. Ellwood, K. Safi, J. Peloquin et al., Bacterioplankton responses to iron enrichment during the SAGE experiment, Deep-Sea Res. Pt. II, vol.58, pp.800-807, 2011.

M. R. Landry, M. E. Ondrusek, S. J. Tanner, S. L. Brown, J. Costantinou et al., Biological response to iron fertilization in the eastern equatorial Pacific (IronEx II), I. Microplankton community abundances and biomass, Mar. Ecol. Prog. Ser, vol.201, pp.27-42, 2000.

M. Lasbleiz, K. Leblanc, S. Blain, J. Ras, V. Cornet-barthaux et al., and stoichiometry of particulate matter in the naturally iron fertilized region of Kerguelen in the Southern Ocean, Pigments, elemental composition, vol.11, pp.5931-5955, 2014.
URL : https://hal.archives-ouvertes.fr/hal-01664909

D. Lefèvre, C. Guigue, and I. Obernosterer, The metabolic balance during a phytoplankton bloom induced by natural iron fertilization in the Southern Ocean, Deep-Sea Res. Pt. II, vol.55, pp.766-776, 2008.

K. Lochte, P. K. Bjørnsen, H. Giesenhagen, and A. Weber, Bacterial standing stock and production and their relation to phytoplankton in the Southern Ocean, Deep-Sea Res, Pt. II, vol.44, pp.321-340, 1997.

A. Malits, U. Christaki, I. Obenosterer, and M. G. Weinbauer, Enhanced viral production and virus-mediated mortality of bacterioplankton in a natural iron, 2014.
URL : https://hal.archives-ouvertes.fr/hal-01308035

D. Marie, C. Brussaard, F. Partensky, and D. Vaulot, Flow cytometric analysis of phytoplankton, bacteria and viruse, Current Protocols in Cytometry, pp.1-15, 1999.

J. H. Martin and S. E. Fitzwater, Iron deficiency limits phytoplankton growth in Antarctic waters, Global Biogeochem. Cy, vol.4, pp.5-12, 1990.

M. Middelboe and P. G. Lyck, Regeneration of dissolved organic matter by viral lysis in marine microbial communities, Aquat. Microb. Ecol, vol.27, pp.187-194, 2002.

I. Obernosterer, U. Christaki, D. Lefèvre, P. Catala, F. Van-wambeke et al., Rapid bacterial mineralization of organic carbon produced during a phytoplankton bloom induced by natural iron fertilization in the southern ocean, Deep-Sea Res. Pt. II, vol.55, pp.777-789, 2008.

I. Obernosterer, P. Catala, P. Lebaron, and N. West, Distinct bacterial groups contribute to carbon cycling during a naturally fertilized phytoplankton bloom in the Southern Ocean, Limnol. Oceanogr, vol.55, pp.2391-2401, 2011.

I. Obernosterer, M. Fourquez, and S. Blain, Fe nad C co-limitation of heterotrophic bacterial activity in the naturally fertilized region off Kerguelen island, this volume, 2014.

J. L. Oliver, R. T. Barber, W. O. Smith, and H. W. Ducklow, The heterotrophic bacterial response during Southern Ocean Iron Experiment (SOFeX), Limnol. Oceanogr, vol.49, pp.2129-2140, 2004.

J. H. Paul, M. B. Sullivan, A. M. Segall, F. Rohwer, Y. H. Park et al., Polar front around the Kerguelen islands: An up-to-date determination and associated circulation of surface/subsurface water, Comp. Biochem. Physiol. B, vol.133, pp.1-18, 2002.

F. Planchon, D. Ballas, A. J. Cavagna, P. Van-der-merwe, A. Bowie et al., Carbon export in the naturally iron fertilized Kerguelen area of the Southern Ocean using 234Th-based approach, 2014.

R. Pollard, I. Salter, R. Sanders, M. Lucas, C. Moore et al., Southern Ocean deep-water carbon export enhanced by natural iron fertilization, Nature, vol.457, pp.577-581, 2009.

F. Quéroué, G. Sarthou, H. F. Planquette, E. Bucciarelli, F. Chever et al., High variability of dissolved iron concentrations in the vicinity of Kerguelen Island, 2014.

O. Sackett, L. Armand, J. Beardall, R. Hill, M. Doblin et al., Taxonspecific responses of Southern Ocean diatoms to Fe enrichment revealed by synchrotron radiation FTIR microspectroscopy, Biogeosciences, vol.11, pp.5795-5808, 2014.

H. Saito, K. Suzuki, A. Hinuma, O. Takahashi, K. Fukami et al., Responses of microzooplankton to in situ iron fertilization in the western subarctic Pacific (SEEDS), Prog. Oceanogr, vol.64, pp.223-236, 2005.

N. Savoye, T. W. Trull, S. H. Jacquet, C. M. Navez, and F. Dehairs, 234Th-based export fluxes during a natural iron fertilization experiment (KEOPS), Deep-Sea Res, Pt. II, vol.55, pp.841-855, 2008.

V. Smetacek, C. Klaas, V. H. Strass, P. Assmy, M. Montresor et al., Deep carbon export from a Southern Ocean iron-fertilized diatom bloom, Nature, vol.487, pp.313-319, 2012.
URL : https://hal.archives-ouvertes.fr/hal-00757250

K. Suzuki, A. Hinuma, H. Saito, H. Kiyosawa, H. Liu et al., Responses of phytoplankton and heterotrophic bacteria in the northwest subarctic Pacific to in situ iron fertilization as estimated by HPLC pigment analysis and flow cytometry, Prog. Oceanogr, vol.64, pp.167-187, 2005.

S. Thiele, B. M. Fuchs, N. Ramaiah, A. , and R. , Microbial community response during the Iron Fertilization Experiment LOHAFEX, Appl. Environ. Microbiol, vol.78, pp.8803-8812, 2012.

T. F. Thingstad, Elements of a theory for the mechanisms controlling abundance, diversity, and biogeochemical role of lytic viruses in aquatic systems, Limnol. Oceanogr, vol.45, pp.1320-1328, 2000.

M. G. Weinbauer and C. A. Suttle, Potential significance of lysogeny to bacteriophage production and bacterial mortality in coastal waters of the gulf of mexico, Appl. Environ. Microbiol, vol.62, pp.4374-4380, 1996.

M. Weinbauer, C. Winter, and M. Höfle, Reconsidering transmission electron microscopy based estimates of viral infection of bacterioplankton using conversion factors derived from natural communities, Aquat. Microb. Ecol, vol.27, pp.103-110, 2002.

M. G. Weinbauer, I. Brettar, M. G. Höfle, M. G. Weinbauer, J. M. Arrieta et al., Enhanced viral production and infection of bacterioplankton during an iron induced phytoplankton bloom in the southern ocean, Limnol. Oceanogr, vol.48, pp.774-784, 2003.

N. West, I. Obernosterer, O. Zemb, L. Baron, and P. , Major difference of baterial diversity and activity inside and outside of a natural iron-fertilizes phytoplankton bloom in the Southern Ocean, Environ. Microbiol, vol.10, pp.738-756, 2008.

S. W. Wilhelm and C. A. Suttle, Virus and nutrient cycles in the sea, BioScience, vol.49, pp.781-787, 1999.

S. J. Williamson, L. A. Houchin, L. Mcdaniel, and J. H. Paul, Seasonal variation in lysogeny as depicted by prophage induction in tampa bay, florida, Appl. Environ. Microbiol, vol.68, pp.4307-4314, 2002.

M. V. Zubkov, R. J. Holland, P. H. Burkill, I. W. Croudache, and P. E. Warwick, Microbial abundance, activity and iron uptake in vicinity of Crozet isles in, Deep-Sea Res. Pt. II, vol.54, pp.2126-2137, 2004.
URL : https://hal.archives-ouvertes.fr/hal-01651683