Published on 01 January 2011

Seawater carbonate chemistry and biological processes of Emiliania huxleyi (strains RCC1256 and NZEH) during experiments, 2011

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Hoppe, Clara Jule Marie;Langer, Gerald;Rost, Björn

Description

With respect to their sensitivity to ocean acidification, calcifiers such as the coccolithophore Emiliania huxleyi have received special attention, as the process of calcification seems to be particularly sensitive to changes in the marine carbonate system. For E. huxleyi, apparently conflicting results regarding its sensitivity to ocean acidification have been published (Iglesias-Rodriguez et al., 2008a; Riebesell et al., 2000). As possible causes for discrepancies, intra-specific variability and different effects of CO2 manipulation methods, i.e. the manipulation of total alkalinity (TA) or total dissolved inorganic carbon (DIC), have been discussed. While Langer et al. (2009) demonstrate a high degree of intra-specific variability between strains of E. huxleyi, the question whether different CO2 manipulation methods influence the cellular responses has not been resolved yet. In this study, closed TA as well as open and closed DIC manipulation methods were compared with respect to E. huxleyi's CO2-dependence in growth rate, POC- and PIC-production. The differences in the carbonate chemistry between TA and DIC manipulations were shown not to cause any differences in response patterns, while the latter differed between open and closed DIC manipulation. The two strains investigated showed different sensitivities to acidification of seawater, RCC1256 being more negatively affected in growth rates and PIC production than NZEH.

Citations (2)

Mentions (0)

Metrics

Dataset Index

1.1

FAIR Score

13%

Citations

2

Mentions

0

Metrics Over Time

Publication Details

DOI

Publisher

PANGAEA

Assigned Domain

Subfield

Global and Planetary Change

Field

Environmental Science

Domain

Physical Sciences

Confidence Score

98%

Source

Open Alex

Keywords

Bottles or small containers/Aquaria (<20 L)Calcification/DissolutionChromistaEmiliania huxleyiGrowth/MorphologyHaptophytaLaboratory experimentLaboratory strainsPelagosPhytoplanktonPrimary production/PhotosynthesisSingle speciesSouth PacificSpeciesExperimental treatmentCommentSample IDSalinityTemperature, waterAlkalinity, totalCarbon, inorganic, dissolvedpH, NBS scalePartial pressure of carbon dioxide (water) at sea surface temperature (wet air)Bicarbonate ionCarbonate ionCarbon dioxideCalcite saturation stateGrowth rateCarbon, organic, particulate, per cellCarbon, organic, particulate, production per cellCarbon, inorganic, particulate, per cellCarbon, inorganic, particulate, production per cellParticulate inorganic carbon/particulate organic carbon ratioCarbonate system computation flagpH, total scaleFugacity of carbon dioxide (water) at sea surface temperature (wet air)Aragonite saturation stateAlkalinity, Gran titration (Gran, 1950)Seal QuAAtro SFA Analyzer, Seal Analytical, 800 TMCalculated using CO2SYSCalculatedMass spectrometer ANCA-SL 20-20 Europa ScientificCalculated using seacarb after Nisumaa et al. (2010)Biological Impacts of Ocean Acidification (BIOACID)European network of excellence for Ocean Ecosystems Analysis (EUR-OCEANS)European Project on Ocean Acidification (EPOCA)Mediterranean Sea Acidification in a Changing Climate (MedSeA)Ocean Acidification International Coordination Centre (OA-ICC)

Normalization Factors

FT

15.38

CTw

1.00

MTw

1.00