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Wheeler, G, Taylor, AR and Brownlee, C 2021 CELLULAR MECHANISMS UNDERLYING THE RESPONSE OF COCCOLITHOPHORES TO FUTURE CHANGES IN OCEAN CARBONATE CHEMISTRY. Phycologia, 60. 56.
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Langer, G, Taylor, AR, Walker, CE, Meyer, EM, Joseph, OB, Gal, A, Harper, GM, Probert, I, Brownlee, C and Wheeler, G 2021 Role of silicon in the development of complex crystal shapes in coccolithophores. New Phytologist, 231 (5). 1845-1857. https://doi.org/10.1111/nph.17230
Walker, CE, Taylor, AR, Langer, G, Durak, GM, Heath, S, Probert, I, Tyrrell, T, Brownlee, C and Wheeler, GL 2018 The requirement for calcification differs between ecologically important coccolithophore species. New Phytologist. https://doi.org/10.1111/nph.15272
Taylor, AR, Brownlee, C and Wheeler, G 2016 Coccolithophore Cell Biology: Chalking Up Progress. Annual Review of Marine Science, 9 (1). 283-310. https://doi.org/10.1146/annurev-marine-122414-034032
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Taylor, AR, Brownlee, C and Wheeler, G 2016 Coccolithophore Cell Biology: Chalking Up Progress. Annual Review of Marine Science, 9 (1). 283-310. https://doi.org/10.1146/annurev-marine-122414-034032
Durak, GM, Taylor, AR, Walker, CE, Probert, I, de Vargas, C, Audic, S, Schroeder, DC, Brownlee, C and Wheeler, G 2016 A role for diatom-like silicon transporters in calcifying coccolithophores.. Nature communications, 7. 10543. https://doi.org/10.1038/ncomms10543
Brownlee, C, Wheeler, G and Taylor, AR 2015 Coccolithophore biomineralization: New questions, new answers.. Seminars in cell & developmental biology, 46. 11-6. https://doi.org/10.1016/j.semcdb.2015.10.027
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Taylor, AR, Brownlee, C and Wheeler, G 2012 Proton channels in algae: reasons to be excited. Trends in Plant Science, 17. 675 - 684. https://doi.org/10.1016/j.tplants.2012.06.009
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Taylor, AR, Chrachri, A, Wheeler, G, Goddard, H and Brownlee, C 2011 A voltage-gated H+ channel underlying pH homeostasis in calcifying coccolithophores. PLoS Biology, 6. 01-Jan. https://doi.org/10.1371/journal.pbio.1001085
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Taylor, AR, Chrachri, A, Wheeler, G, Goddard, H and Brownlee, C 2011 Proton Conductance in Coccolithophores Is an Integral Component of Ph Homeostasis During Calcification. Journal of Phycology, 47. 27 - 27.
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Verret, F, Wheeler, G, Taylor, AR, Farhham, G and Brownlee, C 2010 Calcium channels in photosynthetic eukaryotes: implications for evolution of calcium-based signalling. New Phytologist, 187. 23 - 43. https://doi.org/10.1111/j.1469-8137.2010.03271.x
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Coelho, S, Taylor, AR, Ryan, KP, Sousa-Pinto, I, Brown, MT and Brownlee, C 2002 Spatio-temporal patterning of reactive oxygen production and Ca2+ wave propagation in Fucus rhizoid cells. Plant Cell, 14. 1-15.
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Thompson, SEM, Callow, JA, Callow, ME, Wheeler, G, Taylor, AR and Brownlee, C 2007 Membrane Recycling And Calcium Dynamics During Settlement And Adhesion Of Zoospores Of The Green Alga Ulva Linza. UNSPECIFIED, 733 - 744.
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Wheeler, G, Tait, K, Taylor, AR, Brownlee, C and Joint, IR 2006 Acyl-homoserine lactones modulate the settlement rate of zoospores of the marine alga Ulva intestinalis via a novel chemokinetic mechanism. UNSPECIFIED, 608 - 618.
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Brownlee, C and Taylor, AR 2016 Calcification. In: Borowitzka, MA; Beardall, J; Raven, JA, (eds.) The Physiology of Microalgae. Springer International Publishing, 301-308, 8pp. (Developments in Applied Phycology, 8).
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Koester, J, Brownlee, C and Taylor, AR 2016 Algal Calcification and Silicification. In: eLS. John Wiley & Sons, 1-10.
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Brownlee, C, Chrachri, A, Taylor, AR, Balestreri, C, Krueger-Hadfield, S and Wheeler, G 2013 Understanding the Mechanisms of Cell and Population Responses of Coccolithophores to Changing Ocean Chemistry. In: UNSPECIFIED. 14.
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