Items where Author is "Chrachri, A"

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Number of items: 11.

Publication - Article

Keys, M, Hopkinson, B, Highfield, A, Chrachri, A, Brownlee, C and Wheeler, G 2023 The requirement for external carbonic anhydrase in diatoms is influenced by the supply and demand for dissolved inorganic carbon. Journal of Phycology. https://doi.org/10.1111/jpy.13416

Kleiner, FH, Helliwell, KE, Chrachri, A, Hopes, A, Parry-Wilson, H, Gaikwad, T, Mieszkowska, N, Mock, T, Wheeler, GL and Brownlee, C 2022 Cold-induced [Ca2+]cyt elevations function to support osmoregulation in marine diatoms. Plant Physiology, kiac324. https://doi.org/10.1093/plphys/kiac324

Kottmeier, DM, Chrachri, A, Langer, G, Helliwell, KE, Wheeler, G and Brownlee, C 2022 Reduced H+ channel activity disrupts pH homeostasis and calcification in coccolithophores at low ocean pH. Environmental Sciences, 119 (19), e211800911. 11, pp. https://doi.org/10.1073/pnas.2118009119

Helliwell, KE, Kleiner, FH, Hardstaff, Hayley, Chrachri, A, Gaikwad, T, Salmon, D, Smirnoff, N, Wheeler, G and Brownlee, C 2021 Spatiotemporal patterns of intracellular Ca2+ signalling govern hypo-osmotic stress resilience in marine diatoms. New Phytologist, 230 (1). 155-170. https://doi.org/10.1111/nph.17162

Chrachri, A, Hopkinson, BM, Flynn, KJ, Brownlee, C and Wheeler, G 2018 Dynamic changes in carbonate chemistry in the microenvironment around single marine phytoplankton cells. Nature Communications, 9 (1). https://doi.org/10.1038/s41467-017-02426-y

Brownlee, C, Taylor, A, Wheeler, G and Chrachri, A 2011 Ion Channels Signalling and Cellular Function in Algae: Clues on the Origins of Excitability in Eukaryotes. European Journal of Phycology, 46. 31 - 31.

Item not available from this repository.

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.

Item not available from this repository.

Publication - Conference Item

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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