Articles | Volume 15, issue 16
https://doi.org/10.5194/bg-15-4923-2018
https://doi.org/10.5194/bg-15-4923-2018
Research article
 | 
21 Aug 2018
Research article |  | 21 Aug 2018

Colony formation in Phaeocystis antarctica: connecting molecular mechanisms with iron biogeochemistry

Sara J. Bender, Dawn M. Moran, Matthew R. McIlvin, Hong Zheng, John P. McCrow, Jonathan Badger, Giacomo R. DiTullio, Andrew E. Allen, and Mak A. Saito

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Cited articles

Abedin, M. and King, N.: Diverse and evolutionary paths to cell adhesion, Trends Cell Biol., 20, 734–742, 2010. 
Alderkamp, A. C., Buma, A. G. J., and Van Rijssel, M.: The carbohydrates of Phaeocystis and their degradation in the microbial food web, Biogeochemistry, 83, 99–118, 2007. 
Alexander, H., Jenkins, B. D., Rynearson, T. A., Saito, M. A., Mercier, M. L., and Dyhrman, S. T.: Identifying reference genes with stable expression from high throughput sequence data, Front Microbiol., 9, 385, https://doi.org/10.3389/fmicb.2012.00385, 2012. 
Allen, A. E., LaRoche, J., Maheswari, U., Lommer, M., Schauer, N., Lopez, P. J., Finazzi, G., Fernie, A. R., and Bowler, C.: Whole-cell response of the pennate diatom Phaeodactylum tricornutum to iron starvation, P. Natl. Acad. Sci. USA, 105, 10438–10443, 2008. 
Arrigo, K. R., Worthen, D., Schnell, A., and Lizotte, M. P.: Primary production in Southern Ocean waters, J. Geophys. Res., 103, 15587–15600, 1998. 
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Short summary
Phaeocystis antarctica is an important phytoplankter of the Antarctic coastal environment where it dominates the early season bloom after sea ice retreat. Iron nutrition was found to be an important factor that results in Phaeocystis colony formation and a large restructuring of the proteome, including changes associated with the flagellate to colonial transition and adaptive responses to iron scarcity. Analysis of Phaeocystis proteins from the Ross Sea revealed the presence of both cell types.
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