110
Glibert, P. M., & Bronk, D. A. (1994). Release of dissolved organic nitrogen by marine diazotrophic cyanobacteria Trichodesmium spp. Applied and Environmental Microbiology, 11,
3996–4000.
Gobler, C. J., & Baumann, H. (2016). Hypoxia and acidification in ocean ecosystems: Coupled
dynamics and effects on marine life. Biology Letters, 12(5), 20150976.
Gómez-Consarnau, L., Raven, J. A., Levine, N. M., Cutter, L. S., Wang, D., et al. (2019). Microbial
rhodopsins are major contributors to the solar energy captured in the sea. Science Advances,
5(8), eaaw8855.
Gutschick, V. P. (1978). Energy and nitrogen fixation. BioScience, 28(9), 571–575.
Halm, H., Lam, P., Ferdelman, T. G., Lavik, G., Dittmar, T., et al. (2012). Heterotrophic organisms
dominate nitrogen fixation in the South Pacific gyre. The ISME Journal, 6(6), 1238–1249.
https://doi.org/10.1038/ismej.2011.182.
Hansell, D. A., & Carlson, C. A. (2015). Biogeochemistry of marine dissolved organic matter (2nd
ed.). Saint Louis: Academic.
Harding, K., Turk-Kubo, K. A., Sipler, R. E., Mills, M. M., Bronk, D. A., et al. (2018). Symbiotic
unicellular cyanobacteria fix nitrogen in the Arctic Ocean. Proceedings of the National
Academy of Sciences, 115(52), 13371–13375. https://doi.org/10.1073/pnas.1813658115.
Hewson, I., Govil, S. R., Capone, D. G., Carpenter, E. J., & Fuhrman, J. A. (2004). Evidence for
Trichodesmium viral lysis and potential significance for biogeochemical cycling in the oligotrophic ocean. Aquatic Microbial Ecology, 36(1), 1–8.
Howarth, R. W., & Cole, J. J. (1985). Molybdenum availability, nitrogen limitation, and phytoplankton growth in natural waters. Science, 229(4714), 653–655. https://doi.org/10.1126/science.229.4714.653. PMID - 17739378.
Howarth, R. W., & Marino, R. (1988). Nitrogen fixation in freshwater, estuarine, and marine ecosystems. 2. Biogeochemical controls. Limnology and Oceanography, 33, 688–701.
Howarth, R. W., Marino, R., Lane, J., & Cole, J. J. (1988). Nitrogen fixation in freshwater, estuarine, and marine ecosystems. 1. Rates and importance. Limnology and Oceanography, 33,
669–687.
Howarth, R. W., Butler, T., Lunde, K., Swaney, D., & Chu, C. R. (1993). Turbulence and planktonic
nitrogen fixation: A mesocosm experiment. Limnology and Oceanography, 38, 1696–1711.
Huang, T. C., & Grobbelaar, N. (1995). The circadian clock in the prokaryote Synechococcus
RF-1. Microbiology-UK, 141(MAR), 535–540.
Hunt, B. P., Conroy, B. J., & Foster, R. A. (2016). Contribution and pathways of diazotrophderived nitrogen to zooplankton during the VAHINE mesocosm experiment in the oligotrophic
New Caledonia lagoon. Biogeosciences, 13(10), 3131.
Hutchins, D. A. (1995). Iron and the marine phytoplankton community. Progress in Phycological
Research, 11, 1–48.
Hutchins, D. A., & Fu, F. (2017). Microorganisms and ocean global change. Nature Microbiology,
2, 17058. https://doi.org/10.1038/nmicrobiol.2017.58.
Hutchins, D. A., Fu, F. X., Zhang, Y., Warner, M. E., Feng, Y., et al. (2007). CO 2 control of
Trichodesmium N 2 fixation, photosynthesis, growth rates, and elemental ratios: Implications
for past, present, and future ocean biogeochemistry. Limnology and Oceanography, 52(4),
1293–1304.
Hutchins, D. A., Fu, F. X., Webb, E., Walworth, N., & Tagliabue, A. (2013). Taxon-specific response
of marine nitrogen fixers to elevated carbon dioxide concentrations. Nature Geoscience, 6,
790–795.
Inomura, K., Bragg, J., Riemann, L., & Follows, M. J. (2018). A quantitative model of nitrogen
fixation in the presence of ammonium. PLoS One, 13(11), e0208282. https://doi.org/10.1371/
journal.pone.0208282.
Inomura, K., Deutsch, C., Wilson, S. T., Masuda, T., Lawrenz, E., et al. (2019). Quantifying oxygen management and temperature and light dependencies of nitrogen fixation by Crocosphaera
watsonii. mSphere, 4(6), e00531. https://doi.org/10.1128/mSphere.00531- 19.
6 Factors Controlling N 2 Fixation
Glibert, P. M., & Bronk, D. A. (1994). Release of dissolved organic nitrogen by marine diazotrophic cyanobacteria Trichodesmium spp. Applied and Environmental Microbiology, 11,
3996–4000.
Gobler, C. J., & Baumann, H. (2016). Hypoxia and acidification in ocean ecosystems: Coupled
dynamics and effects on marine life. Biology Letters, 12(5), 20150976.
Gómez-Consarnau, L., Raven, J. A., Levine, N. M., Cutter, L. S., Wang, D., et al. (2019). Microbial
rhodopsins are major contributors to the solar energy captured in the sea. Science Advances,
5(8), eaaw8855.
Gutschick, V. P. (1978). Energy and nitrogen fixation. BioScience, 28(9), 571–575.
Halm, H., Lam, P., Ferdelman, T. G., Lavik, G., Dittmar, T., et al. (2012). Heterotrophic organisms
dominate nitrogen fixation in the South Pacific gyre. The ISME Journal, 6(6), 1238–1249.
https://doi.org/10.1038/ismej.2011.182.
Hansell, D. A., & Carlson, C. A. (2015). Biogeochemistry of marine dissolved organic matter (2nd
ed.). Saint Louis: Academic.
Harding, K., Turk-Kubo, K. A., Sipler, R. E., Mills, M. M., Bronk, D. A., et al. (2018). Symbiotic
unicellular cyanobacteria fix nitrogen in the Arctic Ocean. Proceedings of the National
Academy of Sciences, 115(52), 13371–13375. https://doi.org/10.1073/pnas.1813658115.
Hewson, I., Govil, S. R., Capone, D. G., Carpenter, E. J., & Fuhrman, J. A. (2004). Evidence for
Trichodesmium viral lysis and potential significance for biogeochemical cycling in the oligotrophic ocean. Aquatic Microbial Ecology, 36(1), 1–8.
Howarth, R. W., & Cole, J. J. (1985). Molybdenum availability, nitrogen limitation, and phytoplankton growth in natural waters. Science, 229(4714), 653–655. https://doi.org/10.1126/science.229.4714.653. PMID - 17739378.
Howarth, R. W., & Marino, R. (1988). Nitrogen fixation in freshwater, estuarine, and marine ecosystems. 2. Biogeochemical controls. Limnology and Oceanography, 33, 688–701.
Howarth, R. W., Marino, R., Lane, J., & Cole, J. J. (1988). Nitrogen fixation in freshwater, estuarine, and marine ecosystems. 1. Rates and importance. Limnology and Oceanography, 33,
669–687.
Howarth, R. W., Butler, T., Lunde, K., Swaney, D., & Chu, C. R. (1993). Turbulence and planktonic
nitrogen fixation: A mesocosm experiment. Limnology and Oceanography, 38, 1696–1711.
Huang, T. C., & Grobbelaar, N. (1995). The circadian clock in the prokaryote Synechococcus
RF-1. Microbiology-UK, 141(MAR), 535–540.
Hunt, B. P., Conroy, B. J., & Foster, R. A. (2016). Contribution and pathways of diazotrophderived nitrogen to zooplankton during the VAHINE mesocosm experiment in the oligotrophic
New Caledonia lagoon. Biogeosciences, 13(10), 3131.
Hutchins, D. A. (1995). Iron and the marine phytoplankton community. Progress in Phycological
Research, 11, 1–48.
Hutchins, D. A., & Fu, F. (2017). Microorganisms and ocean global change. Nature Microbiology,
2, 17058. https://doi.org/10.1038/nmicrobiol.2017.58.
Hutchins, D. A., Fu, F. X., Zhang, Y., Warner, M. E., Feng, Y., et al. (2007). CO 2 control of
Trichodesmium N 2 fixation, photosynthesis, growth rates, and elemental ratios: Implications
for past, present, and future ocean biogeochemistry. Limnology and Oceanography, 52(4),
1293–1304.
Hutchins, D. A., Fu, F. X., Webb, E., Walworth, N., & Tagliabue, A. (2013). Taxon-specific response
of marine nitrogen fixers to elevated carbon dioxide concentrations. Nature Geoscience, 6,
790–795.
Inomura, K., Bragg, J., Riemann, L., & Follows, M. J. (2018). A quantitative model of nitrogen
fixation in the presence of ammonium. PLoS One, 13(11), e0208282. https://doi.org/10.1371/
journal.pone.0208282.
Inomura, K., Deutsch, C., Wilson, S. T., Masuda, T., Lawrenz, E., et al. (2019). Quantifying oxygen management and temperature and light dependencies of nitrogen fixation by Crocosphaera
watsonii. mSphere, 4(6), e00531. https://doi.org/10.1128/mSphere.00531- 19.
6 Factors Controlling N 2 Fixation
