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Reduced H+ channel activity disrupts pH homeostasis and calcification in coccolithophores at low ocean pH

Authors :
Katherine E. Helliwell
Gerald Langer
Glen L. Wheeler
Abdul Chrachri
Colin Brownlee
Dorothee Kottmeier
Publication Year :
2021
Publisher :
Cold Spring Harbor Laboratory, 2021.

Abstract

Coccolithophores produce the bulk of ocean biogenic calcium carbonate but this process is predicted to be negatively affected by future ocean acidification scenarios. Since coccolithophores calcify intracellularly, the mechanisms through which changes in seawater carbonate chemistry affect calcification remain unclear. Here we show that voltage-gated H+ channels in the plasma membrane of Coccolithus braarudii serve to regulate pH and maintain calcification under normal conditions, but have greatly reduced activity in cells acclimated to low pH. This disrupts intracellular pH homeostasis and impairs the ability of C. braarudii to remove H+ generated by the calcification process, leading to specific coccolith malformations. These coccolith malformations can be reproduced by pharmacological inhibition of H+ channels. Heavily-calcified coccolithophore species such as C. braarudii, which make the major contribution to carbonate export to the deep ocean, have a large intracellular H+ load and are likely to be most vulnerable to future decreases in ocean pH.

Details

Database :
OpenAIRE
Accession number :
edsair.doi...........4e9a0169fe48e735490ad7e3fab1a760
Full Text :
https://doi.org/10.1101/2021.09.06.458185