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- W2071659110 endingPage "134" @default.
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- W2071659110 abstract "Coccolithophores are important calcifying phytoplankton predicted to be impacted by changes in ocean carbonate chemistry caused by the absorption of anthropogenic CO2. However, it is difficult to disentangle the effects of the simultaneously changing carbonate system parameters (CO2, bicarbonate, carbonate and protons) on the physiological responses to elevated CO2. Here, we adopted a multifactorial approach at constant pH or CO2 whilst varying dissolved inorganic carbon (DIC) to determine physiological and transcriptional responses to individual carbonate system parameters. We show that Emiliania huxleyi is sensitive to low CO2 (growth and photosynthesis) and low bicarbonate (calcification) as well as low pH beyond a limited tolerance range, but is much less sensitive to elevated CO2 and bicarbonate. Multiple up-regulated genes at low DIC bear the hallmarks of a carbon-concentrating mechanism (CCM) that is responsive to CO2 and bicarbonate but not to pH. Emiliania huxleyi appears to have evolved mechanisms to respond to limiting rather than elevated CO2. Calcification does not function as a CCM, but is inhibited at low DIC to allow the redistribution of DIC from calcification to photosynthesis. The presented data provides a significant step in understanding how E. huxleyi will respond to changing carbonate chemistry at a cellular level." @default.
- W2071659110 created "2016-06-24" @default.
- W2071659110 creator A5004762708 @default.
- W2071659110 creator A5005675240 @default.
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- W2071659110 creator A5046615201 @default.
- W2071659110 creator A5061454476 @default.
- W2071659110 creator A5091734550 @default.
- W2071659110 date "2013-03-15" @default.
- W2071659110 modified "2023-10-06" @default.
- W2071659110 title "Dissecting the impact of CO <sub>2</sub> and <scp>pH</scp> on the mechanisms of photosynthesis and calcification in the coccolithophore <i>Emiliania huxleyi</i>" @default.
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- W2071659110 doi "https://doi.org/10.1111/nph.12225" @default.
- W2071659110 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/23496417" @default.
- W2071659110 hasPublicationYear "2013" @default.
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