Publications

Found 68 results
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Book Chapter
Valiadi M.  2016.  Bioluminescent Microalgae. Microalgae: Current research and applications.
M Iglesias-Rodriguez D, Fabricius K, McElhany P.  2016.  Ecological effects of ocean acidification. :195-212.
Jones BM, Rouco M, M. Iglesias-Rodriguez D, Halsey KH.  2016.  Emiliania huxleyi in the Genomic Era. Microalgae: Current Research and Applications. :73-106.
Iglesias-Rodriguez MD.  2013.  Ocean Acidification. Earth System Monitoring. :269–289.
Conference Proceedings
Lebrato M.  2011.  Elemental carbonate chemistry selectivity in coccolithophores in present and future oceans. European Journal of Phycology.
Journal
Kaplan M.  2010.  Sea stars suck up carbon. Nature news.
Pidcock R.  2010.  Sea urchins tolerate acid water. BBC news: Science and Environment.
Journal Article
Gately JA, Kim SM, Welch Z, Martínez JMartínez, Catlett D, Jin B, Manzagol M, Larson A, Brzezinski MA, Iglesias-Rodriguez MD.  2026.  Abrupt alkalinization alters microbial diversity and promotes the proliferation of marine parasites in coastal microcosm experiments (accepted). ICES Journal of Marine Science.
Johns CT, Bondoc-Naumovitz KGrace, Matthews A, Matson PG, M. Iglesias-Rodriguez D, Taylor AR, Fuchs HL, Bidle KD.  2023.  Adsorptive exchange of coccolith biominerals facilitates viral infection. Science Advances. 9(3)
Nimer NA.  1997.  Bicarbonate utilization by marine phytoplankton species. Journal of Phycology. 33(4):625–631.
McElhany P., Cape M., Faucher G., Frieder C., Hemery L.G., Iglesias-Rodriguez M.D.  2026.  Biological thresholds for marine carbon dioxide removal (mCDR): the effect of changes in carbonate chemistry. EGUsphere.
Welch Z.S., Kim S.M., Liu M., Bui A., Grigolite J., Jones J.L., M. Iglesias-Rodríguez D.  2025.  Brucite-inspired ocean alkalinity enhancement alters the biogeochemistry and composition of a phytoplankton community: a Santa Barbara channel case report. Environmental Research Letters. 20(11)
Iglesias-Rodriguez MD.  1998.  Carbon dioxide-concentrating mechanism and the development of extracellular carbonic anhydrase in the marine picoeukaryote Micromonas pusilla. New phytologist. 140(4):685–690.
Ratcliffe S, Meyer EM, Walker CE, Knight M, McNair HM, Matson PG, Iglesias‐Rodriguez D, Brzezinski M, Langer G, Sadekov A et al..  2023.  Characterization of the molecular mechanisms of silicon uptake in coccolithophores. Environmental Microbiology. Journal Volume: 25(Journal Issue: 2)
Krumhardt KM, Lovenduski NS, M. Iglesias-Rodriguez D, Kleypas JA.  2017.  Coccolithophore growth and calcification in a changing ocean. Progress in Oceanography. 159:276-295.
Gately JA, Kim SM, Jin B, Brzezinski MA, Iglesias-Rodriguez MD.  2023.  Coccolithophores and diatoms resilient to ocean alkalinity enhancement: A glimpse of hope? Science Advances. 9:eadg6066.
Schofield O.  2003.  Development of regional coastal ocean observatories and the potential benefits to marine sanctuaries. Marine Technology Society Journal. 37(1):54–67.
Iglesias-Rodriguez MD.  1997.  Dissolved inorganic carbon utilization and the development of extracellular carbonic anhydrase by the marine diatom Phaeodactylum tricornutum. New phytologist. 135(1):163–168.
Valiadi M.  2014.  Diversity of the Luciferin Binding Protein Gene in Bioluminescent Dinoflagellates–Insights from a New Gene in Noctiluca scintillans and Sequences from Gonyaulacoid Genera. Journal of Eukaryotic Microbiology. 61(2):134–145.

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