92
Tang, W., Li, Z., & Cassar, N. (2019). Machine learning estimates of global marine nitrogen fixation. Journal of Geophysical Research – Biogeosciences, 124(3), 717–730.
Tang, W., Cerdán-García, E., Berthelot, H., Polyviou, D., Wang, S., et al. (2020). New insights into
the distributions of nitrogen fixation and diazotrophs revealed by high-resolution sensing and
sampling methods. The ISME Journal, 14(10), 2514–2526.
Taylor, G. T. (2019). Windows into microbial seascapes: Advances in nanoscale imaging and
application to marine sciences. Annual Review of Marine Science, 11, 465–490.
Thingstad, T. F., Krom, M. D., Mantoura, R. F. C., Flaten, G. A. F., Groom, S., et al. (2005). Nature
of phosphorus limitation in the ultraoligotrophic eastern Mediterranean. Science, 309(5737),
1068–1071.
Thompson, A. W., Foster, R. A., Krupke, A., Carter, B. J., Musat, N., et al. (2012). Unicellular cyanobacterium symbiotic with a single-celled eukaryotic alga. Science, 337(6101), 1546–1550.
Tringe, S., von Mering, C., Kobayashi, A., Salamov, A., Chen, K., et al. (2005). Comparative
metagenomics of microbial communities. Science, 308(5721), 554–557.
Tripp, H. J., Bench, S. R., Turk, K. A., Foster, R. A., & Brian A. Desany, et al. (2010). Metabolic
streamlining in an open-ocean nitrogen-fixing cyanobacterium. Nature, 464(7285), 90–94.
https://doi.org/10.1038/nature08786.
Venter, J. C., Remington, K., Heidelberg, J. F., Halpern, A. L., Rusch, D., et al. (2004).
Environmental genome shotgun sequencing of the Sargasso Sea. Science, 304(5667), 66–74.
Villareal, T. A. (1990). Laboratory culture and preliminary characterization of the nitrogen-fixing
Rhizosolenia-Richelia symbiosis. Marine Ecology, 11(2), 117–132.
Wang, W.-L., Moore, J. K., Martiny, A. C., & Primeau, F. W. (2019). Convergent estimates of
marine nitrogen fixation. Nature, 566(7743), 205.
Wannicke, N., Benavides, M., Dalsgaard, T., Dippner, J. W., Montoya, J. P., et al. (2018). New perspectives on nitrogen fixation measurements using
15
N 2 gas. Frontiers in Marine Science, 5, 120.
Waterbury, J. B., & Rippka, R. (1989). Cyanobacteria. Subsection I. Order Chroococcales Wettstien
1924, Emend. Rippka et al., 1979. In J. T. Staley, M. P. Bryant, N. Pfenning, & J. G. Holt (Eds.),
Bergey’s manual of systematic bacteriology (Vol. 3, pp. 1728–1729). Baltimore: Williams &
Wilkins.
Webb, E., Moffett, J., & Waterbury, J. (2001). Iron stress in open-ocean cyanobacteria
(Synechococcus, Trichodesmium, and Crocosphaera spp.): Identification of the IdiA protein.
Applied and Environmental Microbiology, 67, 5444–5452.
Webb, E. A., Ehrenreich, I. M., Brown, S. L., Valois, F. W., & Waterbury, J. B. (2009). Phenotypic
and genotypic characterization of multiple strains of the diazotrophic cyanobacterium,
Crocosphaera watsonii, isolated from the open ocean. Environmental Microbiology, 11(2),
338–348.
Weber, T., & Deutsch, C. (2014). Local versus basin-scale limitation of marine nitrogen fixation. Proceedings of the National Academy of Sciences, 111(24), 8741–8746. https://doi.
org/10.1073/pnas.1317193111.
Werner, D., Evans, H. J., & Seidler, R. J. (1974). Facultatively anaerobic nitrogen-fixing bacteria
from the marine environment. Canadian Journal of Microbiology, 20(1), 59–64.
Westberry, T., Siegel, D., & Subramaniam, A. (2005). An improved bio-optical model for the
remote sensing of Trichodesmium spp. blooms. Journal of Geophysical Research, Oceans,
110(C6), 1–11.
White, A. E., Granger, J., Selden, C., Gradoville, M. R., Potts, L., et al. (2020). A critical review of
the
15
N 2 tracer method to measure diazotrophic production in pelagic ecosystems. Limnology
and Oceanography: Methods, 18(4), 129–147.
Wilson, P. W., & Burris, R. H. (1947). The mechanism of biological nitrogen fixation.
Bacteriological Reviews, 11, 41–73.
Wilson, S. T., Foster, R. A., Zehr, J. P., & Karl, D. M. (2010a). Hydrogen production by
Trichodesmium erythraeum, Cyanothece sp. and Crocosphaera watsonii. Aquatic Microbial
Ecology, 59(2), 197.
Wilson, S. T., Tozzi, S., Foster, R. A., Ilikchyan, I., Kolber, Z. S., et al. (2010b). Hydrogen cycling
by the unicellular marine diazotroph Crocosphaera watsonii Strain WH8501. Applied and
Environmental Microbiology, 76(20), 6797.
5 Measurements of Organism Abundances and Activities
Tang, W., Li, Z., & Cassar, N. (2019). Machine learning estimates of global marine nitrogen fixation. Journal of Geophysical Research – Biogeosciences, 124(3), 717–730.
Tang, W., Cerdán-García, E., Berthelot, H., Polyviou, D., Wang, S., et al. (2020). New insights into
the distributions of nitrogen fixation and diazotrophs revealed by high-resolution sensing and
sampling methods. The ISME Journal, 14(10), 2514–2526.
Taylor, G. T. (2019). Windows into microbial seascapes: Advances in nanoscale imaging and
application to marine sciences. Annual Review of Marine Science, 11, 465–490.
Thingstad, T. F., Krom, M. D., Mantoura, R. F. C., Flaten, G. A. F., Groom, S., et al. (2005). Nature
of phosphorus limitation in the ultraoligotrophic eastern Mediterranean. Science, 309(5737),
1068–1071.
Thompson, A. W., Foster, R. A., Krupke, A., Carter, B. J., Musat, N., et al. (2012). Unicellular cyanobacterium symbiotic with a single-celled eukaryotic alga. Science, 337(6101), 1546–1550.
Tringe, S., von Mering, C., Kobayashi, A., Salamov, A., Chen, K., et al. (2005). Comparative
metagenomics of microbial communities. Science, 308(5721), 554–557.
Tripp, H. J., Bench, S. R., Turk, K. A., Foster, R. A., & Brian A. Desany, et al. (2010). Metabolic
streamlining in an open-ocean nitrogen-fixing cyanobacterium. Nature, 464(7285), 90–94.
https://doi.org/10.1038/nature08786.
Venter, J. C., Remington, K., Heidelberg, J. F., Halpern, A. L., Rusch, D., et al. (2004).
Environmental genome shotgun sequencing of the Sargasso Sea. Science, 304(5667), 66–74.
Villareal, T. A. (1990). Laboratory culture and preliminary characterization of the nitrogen-fixing
Rhizosolenia-Richelia symbiosis. Marine Ecology, 11(2), 117–132.
Wang, W.-L., Moore, J. K., Martiny, A. C., & Primeau, F. W. (2019). Convergent estimates of
marine nitrogen fixation. Nature, 566(7743), 205.
Wannicke, N., Benavides, M., Dalsgaard, T., Dippner, J. W., Montoya, J. P., et al. (2018). New perspectives on nitrogen fixation measurements using
15
N 2 gas. Frontiers in Marine Science, 5, 120.
Waterbury, J. B., & Rippka, R. (1989). Cyanobacteria. Subsection I. Order Chroococcales Wettstien
1924, Emend. Rippka et al., 1979. In J. T. Staley, M. P. Bryant, N. Pfenning, & J. G. Holt (Eds.),
Bergey’s manual of systematic bacteriology (Vol. 3, pp. 1728–1729). Baltimore: Williams &
Wilkins.
Webb, E., Moffett, J., & Waterbury, J. (2001). Iron stress in open-ocean cyanobacteria
(Synechococcus, Trichodesmium, and Crocosphaera spp.): Identification of the IdiA protein.
Applied and Environmental Microbiology, 67, 5444–5452.
Webb, E. A., Ehrenreich, I. M., Brown, S. L., Valois, F. W., & Waterbury, J. B. (2009). Phenotypic
and genotypic characterization of multiple strains of the diazotrophic cyanobacterium,
Crocosphaera watsonii, isolated from the open ocean. Environmental Microbiology, 11(2),
338–348.
Weber, T., & Deutsch, C. (2014). Local versus basin-scale limitation of marine nitrogen fixation. Proceedings of the National Academy of Sciences, 111(24), 8741–8746. https://doi.
org/10.1073/pnas.1317193111.
Werner, D., Evans, H. J., & Seidler, R. J. (1974). Facultatively anaerobic nitrogen-fixing bacteria
from the marine environment. Canadian Journal of Microbiology, 20(1), 59–64.
Westberry, T., Siegel, D., & Subramaniam, A. (2005). An improved bio-optical model for the
remote sensing of Trichodesmium spp. blooms. Journal of Geophysical Research, Oceans,
110(C6), 1–11.
White, A. E., Granger, J., Selden, C., Gradoville, M. R., Potts, L., et al. (2020). A critical review of
the
15
N 2 tracer method to measure diazotrophic production in pelagic ecosystems. Limnology
and Oceanography: Methods, 18(4), 129–147.
Wilson, P. W., & Burris, R. H. (1947). The mechanism of biological nitrogen fixation.
Bacteriological Reviews, 11, 41–73.
Wilson, S. T., Foster, R. A., Zehr, J. P., & Karl, D. M. (2010a). Hydrogen production by
Trichodesmium erythraeum, Cyanothece sp. and Crocosphaera watsonii. Aquatic Microbial
Ecology, 59(2), 197.
Wilson, S. T., Tozzi, S., Foster, R. A., Ilikchyan, I., Kolber, Z. S., et al. (2010b). Hydrogen cycling
by the unicellular marine diazotroph Crocosphaera watsonii Strain WH8501. Applied and
Environmental Microbiology, 76(20), 6797.
5 Measurements of Organism Abundances and Activities
