Publications

Found 31 results
Author Title [ Type(Asc)] Year
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Journal Article
Honjo S.  2014.  Understanding the Role of the Biological Pump in the Global Carbon Cycle: An Imperative for Ocean Science. Oceanography. 27(3):10–16.
Iglesias-Rodriguez MD.  2010.  Towards an integrated global ocean acidification observation network. Developing a Global Ocean Acidification Observation Network. :335–353.
Iglesias-Rodriguez MD.  2008.  Response to comment on “Phytoplankton calcification in a high-CO2 world”. Science. 322(5907)
Iglesias-Rodriguez MD.  2002.  Representing key phytoplankton functional groups in ocean carbon cycle models: Coccolithophorids. Global Biogeochemical Cycles. 16(4):1-20.
Blanco-Ameijeiras S.  2012.  Removal of organic magnesium in coccolithophore calcite. Geochimica et Cosmochimica Acta. 89:226–239.
Iglesias-Rodriguez MD.  2002.  Polymorphic microsatellite loci in global populations of the marine coccolithophorid Emiliania huxleyi. Molecular Ecology Notes. 2(4):495–497.
Iglesias-Rodriguez MD.  2008.  Phytoplankton calcification in a high-CO2 world. Science. 320(5874):336–340.
Iglesias-Rodriguez MDebora, Jones BM, Blanco-Ameijeiras S, Greaves M, Huete-Ortega M, Lebrato M.  2017.  Physiological responses of coccolithophores to abrupt exposure of naturally low pH deep seawater. PLOS ONE. 12:1-20.
Baker A.  2008.  Oligonucleotide Primers for the Detection of Bioluminescent Dinoflagellates Reveal Novel Lucifer's Sequences and Information on the Molecular Evolution of this Gene. Journal of Phycology. 44(2):419–428.
Valiadi M.  2014.  Molecular detection of bioluminescent dinoflagellates in surface waters of the Patagonian Shelf during early austral summer 2008. PLoS ONE. 9(6)
Iglesias-Rodriguez MD.  2006.  Intraspecific genetic diversity in the marine coccolithophore Emiliania huxleyi (Prymnesiophyceae): the use of microsatellite analysis in marine phytoplankton population studies. J. Phycol. 42(3):526–536.
Lebrato M, Garbe-Schönberg D, Müller MN, Blanco-Ameijeiras S, Feely RA, Lorenzoni L, Molinero J-C, Bremer K, Jones DOB, Iglesias-Rodriguez D et al..  2020.  Global variability in seawater Mg:Ca and Sr:Ca ratios in the modern ocean. Proceedings of the National Academy of Sciences. 117:22281-22292.
Lebrato M, Garbe-Schönberg D, Müller MN, Blanco-Ameijeiras S, Feely RA, Lorenzoni L, Molinero J-C, Bremer K, Jones DOB, Iglesias-Rodriguez D et al..  2020.  Global variability in seawater Mg:Ca and Sr:Ca ratios in the modern ocean. Proceedings of the National Academy of Sciences. 117:22281-22292.
Lebrato M, Garbe-Schönberg D, Müller MN, Blanco-Ameijeiras S, Feely RA, Lorenzoni L, Molinero J-C, Bremer K, Jones DOB, Iglesias-Rodriguez D et al..  2020.  Global variability in seawater Mg:Ca and Sr:Ca ratios in the modern ocean. Proceedings of the National Academy of Sciences. 117:22281-22292.
Lebrato M, Garbe-Schönberg D, Müller MN, Blanco-Ameijeiras S, Feely RA, Lorenzoni L, Molinero J-C, Bremer K, Jones DOB, Iglesias-Rodriguez D et al..  2020.  Global variability in seawater Mg:Ca and Sr:Ca ratios in the modern ocean. Proceedings of the National Academy of Sciences. 117:22281-22292.
Lebrato M, Garbe-Schönberg D, Müller MN, Blanco-Ameijeiras S, Feely RA, Lorenzoni L, Molinero J-C, Bremer K, Jones DOB, Iglesias-Rodriguez D et al..  2020.  Global variability in seawater Mg:Ca and Sr:Ca ratios in the modern ocean. Proceedings of the National Academy of Sciences. 117:22281-22292.
Lebrato M, Garbe-Schönberg D, Müller MN, Blanco-Ameijeiras S, Feely RA, Lorenzoni L, Molinero J-C, Bremer K, Jones DOB, Iglesias-Rodriguez D et al..  2020.  Global variability in seawater Mg:Ca and Sr:Ca ratios in the modern ocean. Proceedings of the National Academy of Sciences. 117:22281-22292.
Jacquet S.  2002.  Flow cytometric analysis of an Emiliana huxleyi bloom terminated by viral infection. Aquatic Microbial Ecology. 27(2):111–124.
Ladd TM, Bullington JA, Matson PG, Kudela RM, M Iglesias-Rodriguez D.  2018.  Exposure to oil from the 2015 Refugio spill alters the physiology of a common harmful algal bloom species , Pseudo-nitzschia australis , and the ubiquitous coccolithophore , Emiliania huxleyi. 603:61–78.
Rouco M.  2013.  The effect of nitrate and phosphate availability on Emiliania huxleyi (NZEH) physiology under different CO2 scenarios. Frontiers in microbiology. 4
Schofield O.  2003.  Development of regional coastal ocean observatories and the potential benefits to marine sanctuaries. Marine Technology Society Journal. 37(1):54–67.
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.
Ratcliffe S, Meyer EM, Walker CE, Knight M, McNair HM, Matson PG, Iglesias‐Rodriguez D, Brzezinski M, Langer G, Sadekov A et al..  2022.  Characterization of the molecular mechanisms of silicon uptake in coccolithophores. Environmental Microbiology. Journal Volume: 25(Journal Issue: 2)
Ratcliffe S, Meyer EM, Walker CE, Knight M, McNair HM, Matson PG, Iglesias‐Rodriguez D, Brzezinski M, Langer G, Sadekov A et al..  2022.  Characterization of the molecular mechanisms of silicon uptake in coccolithophores. Environmental Microbiology. Journal Volume: 25(Journal Issue: 2)
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)

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