Publications

Found 28 results
Author Title [ Type(Desc)] Year
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Book Chapter
Valiadi M.  2016.  Bioluminescent Microalgae. Microalgae: Current research and applications.
Conference Paper
Joint I.  2009.  Consequences of high CO2 and ocean acidification for microbes in the global ocean. Rising CO2, Ocean Acidification, and Their Impacts on Marine Microbes.
Joint I.  2009.  Consequences of high CO2 and ocean acidification for microbes in the global ocean. Rising CO2, Ocean Acidification, and Their Impacts on Marine Microbes.
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.
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
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.
Rouco M.  2013.  The effect of nitrate and phosphate availability on Emiliania huxleyi (NZEH) physiology under different CO2 scenarios. Frontiers in microbiology. 4
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.
Jacquet S.  2002.  Flow cytometric analysis of an Emiliana huxleyi bloom terminated by viral infection. Aquatic Microbial Ecology. 27(2):111–124.
Matson PG, Washburn L, Fields EA, Gotschalk C, Ladd TM, Siegel DA, Welch ZS, M. Iglesias-Rodriguez D.  2019.  Formation, Development, and Propagation of a Rare Coastal Coccolithophore Bloom. Journal of Geophysical Research: Oceans. 124:3298-3316.
Lebrato M.  2010.  Global contribution of echinoderms to the marine carbon cycle: CaCO3 budget and benthic compartments. Ecological Monographs. 80(3):441–467.
Lebrato M.  2010.  Global contribution of echinoderms to the marine carbon cycle: CaCO3 budget and benthic compartments. Ecological Monographs. 80(3):441–467.
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. PNAS. 117(36):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. PNAS. 117(36):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. PNAS. 117(36):22281-22292.
Matson PG.  2016.  Intraspecific differences in biogeochemical responses to thermal change in the coccolithophore Emiliania huxleyi. PLoS One. 11(9)
Valiadi M, de Rond T, Amorim A, Gittins JR, Gubili C, Moore BS, Iglesias‐Rodriguez MDebora, Latz MI.  2019.  Molecular and biochemical basis for the loss of bioluminescence in the dinoflagellate Noctiluca scintillans along the west coast of the U.S.A.. Limnology and Oceanography. 64(6):2709-2724.
Lampitt RS.  2008.  Ocean Fertilisation: a potential means of geo-engineering? The Royal Society. 366(1882):3919-3945.
Lampitt RS.  2008.  Ocean Fertilisation: a potential means of geo-engineering? The Royal Society. 366(1882):3919-3945.
Lampitt RS.  2008.  Ocean fertilization: a potential means of geoengineering? Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences. 366(1882):3919–3945.
Lampitt RS.  2008.  Ocean fertilization: a potential means of geoengineering? Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences. 366(1882):3919–3945.
Read BA.  2013.  Pan genome of the phytoplankton Emiliania underpins its global distribution. Nature. 499:209–213.
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.

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