109
Church, M. J., Mahaffey, C., Letelier, R. M., Lukas, R., Zehr, J. P., et al. (2009). Physical forcing
of nitrogen fixation and diazotroph community structure in the North Pacific subtropical gyre.
Global Biogeochemical Cycles, 23, GB2020. https://doi.org/10.1029/2008GB003418.
Colon-Lopez, M. S., Sherman, D. M., & Sherman, L. A. (1997). Transcriptional and translational
regulation of nitrogenase in light-dark- and continuous-light-grown cultures of the unicellular cyanobacterium Cyanothece sp. strain ATCC 51142. Journal of Bacteriology, 179(13),
4319–4327.
Conroy, B.  J., Steinberg, D.  K., Song, B., Kalmbach, A., Carpenter, E.  J., et  al. (2017).
Mesozooplankton graze on cyanobacteria in the Amazon River Plume and Western Tropical
North Atlantic. Frontiers in Microbiology, 8, 1436.
Cornejo-Castillo, F. M., & Zehr, J. P. (2019). Hopanoid lipids may facilitate aerobic nitrogen fixation in the ocean. Proceedings of the National Academy of Sciences of the United States of
America, 116(37), 18269–18271. https://doi.org/10.1073/pnas.1908165116.
Dekaezemacker, J., Bonnet, S., Grosso, O., Moutin, T., Bressac, M., et  al. (2013). Evidence of
active dinitrogen fixation in surface waters of the eastern tropical South Pacific during El Niño
and La Niña events and evaluation of its potential nutrient controls. Global Biogeochemical
Cycles, 27(3), 768–779.
Deutsch, C., Sarmiento, J.  L., Sigman, D.  M., Gruber, N., & Dunne, J.  P. (2007). Spatial coupling of nitrogen inputs and losses in the ocean. Nature, 445, 163–167. https://doi.org/10.1038/
nature05392.
Dicker, H. J., & Smith, D. W. (1981). Effects of salinity on acetylene reduction (nitrogen fixation) and respiration in a marine Azotobacter. Applied and Environmental Microbiology, 42(4),
740–744.
Doney, S.  C. (2009). Ocean acidification: The other CO 2 problem. Annual Review of Marine
Science, 1, 169–192.
Dugenne, M., Hendrikx Freitas, F., Wilson, S. T., Karl, D. M., & White, A. E. (2020). Life and
death of Crocosphaera sp. in the Pacific Ocean: Fine scale predator–prey dynamics. Limnology
and Oceanography, 65, 2603. https://doi.org/10.1002/lno.11473.
Dyhrman, S. T., Benitez-Nelson, C. R., Orchard, E. D., Haley, S. T., & Pellechia, P. J. (2009). A
microbial source of phosphonates in oligotrophic marine systems. Nature Geoscience, 2(10),
696.
Eichner, M., Kranz, S.  A., & Rost, B. (2014). Combined effects of different CO 2 levels and N
sources on the diazotrophic cyanobacterium Trichodesmium. Physiologia Plantarum, 152(2),
316–330.
Eichner, M., Basu, S., Gledhill, M., de Beer, D., & Shaked, Y. (2019a). Hydrogen dynamics
in Trichodesmium colonies and their potential role in mineral iron acquisition. Frontiers in
Microbiology, 10, 1565. https://doi.org/10.3389/fmicb.2019.01565.
Eichner, M., Thoms, S., Rost, B., Mohr, W., Ahmerkamp, S., et al. (2019b). N 2 fixation in freefloating filaments of Trichodesmium is higher than in transiently suboxic colony microenvironments. The New Phytologist, 222(2), 852–863.
Falkowski, P. G., Barber, R. T., & Smetacek, V. (1998). Biogeochemical controls and feedbacks on
ocean primary production. Science, 281(5374), 200–206.
Fay, P. (1992). Oxygen relations of nitrogen fixation in cyanobacteria. Microbiology and Molecular
Biology Reviews, 56(2), 340–373.
Fredriksson, C., & Bergman, B. (1995). Nitrogenase quantity varies diurnally in a subset of cells
within colonies of the non-heterocystous cyanobacteria Trichodesmium spp. Microbiology,
141, 2471–2478.
Fu, F., Mulholland, M., Garcia, N., Beck, A., Bernhardt, P., et  al. (2008). Interactions between
changing pCO 2 , N 2 fixation, and Fe limitation in the marine unicellular cyanobacterium
Crocosphaera. Limnology and Oceanography, 53(6), 2472–2484.
Garcia, N. S., Fu, F., Sedwick, P. N., & Hutchins, D. A. (2015). Iron deficiency increases growth
and nitrogen-fixation rates of phosphorus-deficient marine cyanobacteria. The ISME Journal,
9(1), 238.
References
Précédent

- 117/191

Suivant