Seawater carbonate chemistry and impacts of calcium and carbonate ion concentration on Mg and Sr incorporation in cultured benthic foraminifera (Ammonia tepida and Heterostegina depressa), 2011, supplement to: Dueñas-Bohórquez, Adriana; Raitzsch, Markus; de Nooijer, Lennart Jan; Reichart, Gert-Jan (2011): Independent impacts of calcium and carbonate ion concentration on Mg and Sr incorporation in cultured benthic foraminifera. Marine Micropaleontology, 81(3-4), 122-130

Laboratory culture experiments were conducted to determine effects of seawater carbonate ion concentration ([CO32-]), and thereby calcite saturation state, on Mg and Sr incorporation into calcite of two species of shallow-water benthic foraminifera: Ammonia tepida and Heterostegina depressa. Impact...

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Main Authors: Dueñas-Bohórquez, Adriana, Raitzsch, Markus, de Nooijer, Lennart Jan, Reichart, Gert-Jan
Format: Dataset
Language:English
Published: PANGAEA - Data Publisher for Earth & Environmental Science 2011
Subjects:
pH
Online Access:https://dx.doi.org/10.1594/pangaea.770474
https://doi.pangaea.de/10.1594/PANGAEA.770474
id ftdatacite:10.1594/pangaea.770474
record_format openpolar
institution Open Polar
collection DataCite Metadata Store (German National Library of Science and Technology)
op_collection_id ftdatacite
language English
topic Ammonia tepida
Benthos
Bottles or small containers/Aquaria <20 L
Calcification/Dissolution
Chromista
Coast and continental shelf
Foraminifera
Heterostegina depressa
Heterotrophic prokaryotes
Laboratory experiment
Mortality/Survival
North Atlantic
Single species
Temperate
Species
Identification
Salinity
Salinity, standard deviation
Temperature, water
Temperature, standard deviation
Alkalinity, total
Alkalinity, total, standard deviation
Carbon, inorganic, dissolved
Carbon, inorganic, dissolved, standard deviation
pH
pH, standard deviation
Carbonate ion
Carbonate ion, standard deviation
Calcite saturation state
Calcite saturation state, standard deviation
Number of specimens
Ammonia tepida, chambers added
Ammonia tepida, chambers added per individual
Rows of chambers added
Rows of chambers added per individual
Replicates
Ammonia tepida, magnesium/calcium ratio
Ammonia tepida, magnesium/calcium ratio, standard deviation
Heterostegina depressa, magnesium/calcium ratio
Heterostegina depressa, magnesium/calcium ratio, standard deviation
Ammonia tepida, strontium/calcium ratio
Ammonia tepida, strontium/calcium ratio, standard deviation
Heterostegina depressa, strontium/calcium ratio
Heterostegina depressa, strontium/calcium ratio, standard deviation
Carbonate system computation flag
Carbon dioxide
Partial pressure of carbon dioxide water at sea surface temperature wet air
Fugacity of carbon dioxide water at sea surface temperature wet air
Bicarbonate ion
Aragonite saturation state
Measured
Calculated using CO2SYS
Calculated using seacarb after Nisumaa et al. 2010
European network of excellence for Ocean Ecosystems Analysis EUR-OCEANS
European Project on Ocean Acidification EPOCA
Ocean Acidification International Coordination Centre OA-ICC
spellingShingle Ammonia tepida
Benthos
Bottles or small containers/Aquaria <20 L
Calcification/Dissolution
Chromista
Coast and continental shelf
Foraminifera
Heterostegina depressa
Heterotrophic prokaryotes
Laboratory experiment
Mortality/Survival
North Atlantic
Single species
Temperate
Species
Identification
Salinity
Salinity, standard deviation
Temperature, water
Temperature, standard deviation
Alkalinity, total
Alkalinity, total, standard deviation
Carbon, inorganic, dissolved
Carbon, inorganic, dissolved, standard deviation
pH
pH, standard deviation
Carbonate ion
Carbonate ion, standard deviation
Calcite saturation state
Calcite saturation state, standard deviation
Number of specimens
Ammonia tepida, chambers added
Ammonia tepida, chambers added per individual
Rows of chambers added
Rows of chambers added per individual
Replicates
Ammonia tepida, magnesium/calcium ratio
Ammonia tepida, magnesium/calcium ratio, standard deviation
Heterostegina depressa, magnesium/calcium ratio
Heterostegina depressa, magnesium/calcium ratio, standard deviation
Ammonia tepida, strontium/calcium ratio
Ammonia tepida, strontium/calcium ratio, standard deviation
Heterostegina depressa, strontium/calcium ratio
Heterostegina depressa, strontium/calcium ratio, standard deviation
Carbonate system computation flag
Carbon dioxide
Partial pressure of carbon dioxide water at sea surface temperature wet air
Fugacity of carbon dioxide water at sea surface temperature wet air
Bicarbonate ion
Aragonite saturation state
Measured
Calculated using CO2SYS
Calculated using seacarb after Nisumaa et al. 2010
European network of excellence for Ocean Ecosystems Analysis EUR-OCEANS
European Project on Ocean Acidification EPOCA
Ocean Acidification International Coordination Centre OA-ICC
Dueñas-Bohórquez, Adriana
Raitzsch, Markus
de Nooijer, Lennart Jan
Reichart, Gert-Jan
Seawater carbonate chemistry and impacts of calcium and carbonate ion concentration on Mg and Sr incorporation in cultured benthic foraminifera (Ammonia tepida and Heterostegina depressa), 2011, supplement to: Dueñas-Bohórquez, Adriana; Raitzsch, Markus; de Nooijer, Lennart Jan; Reichart, Gert-Jan (2011): Independent impacts of calcium and carbonate ion concentration on Mg and Sr incorporation in cultured benthic foraminifera. Marine Micropaleontology, 81(3-4), 122-130
topic_facet Ammonia tepida
Benthos
Bottles or small containers/Aquaria <20 L
Calcification/Dissolution
Chromista
Coast and continental shelf
Foraminifera
Heterostegina depressa
Heterotrophic prokaryotes
Laboratory experiment
Mortality/Survival
North Atlantic
Single species
Temperate
Species
Identification
Salinity
Salinity, standard deviation
Temperature, water
Temperature, standard deviation
Alkalinity, total
Alkalinity, total, standard deviation
Carbon, inorganic, dissolved
Carbon, inorganic, dissolved, standard deviation
pH
pH, standard deviation
Carbonate ion
Carbonate ion, standard deviation
Calcite saturation state
Calcite saturation state, standard deviation
Number of specimens
Ammonia tepida, chambers added
Ammonia tepida, chambers added per individual
Rows of chambers added
Rows of chambers added per individual
Replicates
Ammonia tepida, magnesium/calcium ratio
Ammonia tepida, magnesium/calcium ratio, standard deviation
Heterostegina depressa, magnesium/calcium ratio
Heterostegina depressa, magnesium/calcium ratio, standard deviation
Ammonia tepida, strontium/calcium ratio
Ammonia tepida, strontium/calcium ratio, standard deviation
Heterostegina depressa, strontium/calcium ratio
Heterostegina depressa, strontium/calcium ratio, standard deviation
Carbonate system computation flag
Carbon dioxide
Partial pressure of carbon dioxide water at sea surface temperature wet air
Fugacity of carbon dioxide water at sea surface temperature wet air
Bicarbonate ion
Aragonite saturation state
Measured
Calculated using CO2SYS
Calculated using seacarb after Nisumaa et al. 2010
European network of excellence for Ocean Ecosystems Analysis EUR-OCEANS
European Project on Ocean Acidification EPOCA
Ocean Acidification International Coordination Centre OA-ICC
description Laboratory culture experiments were conducted to determine effects of seawater carbonate ion concentration ([CO32-]), and thereby calcite saturation state, on Mg and Sr incorporation into calcite of two species of shallow-water benthic foraminifera: Ammonia tepida and Heterostegina depressa. Impact on Mg and Sr incorporation by increased seawater [CO32-] and thereby higher calcite saturation state, is absent in either species. Comparison to results from a similar culturing experiment, in which calcite saturation state was varied as a function of [Ca2+], reveals that saturation state affects incorporation of Mg and Sr through calcium- rather than carbonate availability. The similarity in response by both species is surprising since the average Mg/Ca ratio is ~ 70 times higher in H. depressa than in A. tepida. Furthermore, these results suggest that the ions involved in biomineralization (i.e. Ca2+ and DIC) are processed by separate cellular transport mechanisms. The similar response of Mg and Sr incorporation in this study suggests that only differences in the Ca2+ transport mechanism affect divalent cation partitioning. : In order to allow full comparability with other ocean acidification data sets, the R package seacarb (Lavigne and Gattuso, 2011) was used to compute a complete and consistent set of carbonate system variables, as described by Nisumaa et al. (2010). In this dataset the original values were archived in addition with the recalculated parameters (see related PI).
format Dataset
author Dueñas-Bohórquez, Adriana
Raitzsch, Markus
de Nooijer, Lennart Jan
Reichart, Gert-Jan
author_facet Dueñas-Bohórquez, Adriana
Raitzsch, Markus
de Nooijer, Lennart Jan
Reichart, Gert-Jan
author_sort Dueñas-Bohórquez, Adriana
title Seawater carbonate chemistry and impacts of calcium and carbonate ion concentration on Mg and Sr incorporation in cultured benthic foraminifera (Ammonia tepida and Heterostegina depressa), 2011, supplement to: Dueñas-Bohórquez, Adriana; Raitzsch, Markus; de Nooijer, Lennart Jan; Reichart, Gert-Jan (2011): Independent impacts of calcium and carbonate ion concentration on Mg and Sr incorporation in cultured benthic foraminifera. Marine Micropaleontology, 81(3-4), 122-130
title_short Seawater carbonate chemistry and impacts of calcium and carbonate ion concentration on Mg and Sr incorporation in cultured benthic foraminifera (Ammonia tepida and Heterostegina depressa), 2011, supplement to: Dueñas-Bohórquez, Adriana; Raitzsch, Markus; de Nooijer, Lennart Jan; Reichart, Gert-Jan (2011): Independent impacts of calcium and carbonate ion concentration on Mg and Sr incorporation in cultured benthic foraminifera. Marine Micropaleontology, 81(3-4), 122-130
title_full Seawater carbonate chemistry and impacts of calcium and carbonate ion concentration on Mg and Sr incorporation in cultured benthic foraminifera (Ammonia tepida and Heterostegina depressa), 2011, supplement to: Dueñas-Bohórquez, Adriana; Raitzsch, Markus; de Nooijer, Lennart Jan; Reichart, Gert-Jan (2011): Independent impacts of calcium and carbonate ion concentration on Mg and Sr incorporation in cultured benthic foraminifera. Marine Micropaleontology, 81(3-4), 122-130
title_fullStr Seawater carbonate chemistry and impacts of calcium and carbonate ion concentration on Mg and Sr incorporation in cultured benthic foraminifera (Ammonia tepida and Heterostegina depressa), 2011, supplement to: Dueñas-Bohórquez, Adriana; Raitzsch, Markus; de Nooijer, Lennart Jan; Reichart, Gert-Jan (2011): Independent impacts of calcium and carbonate ion concentration on Mg and Sr incorporation in cultured benthic foraminifera. Marine Micropaleontology, 81(3-4), 122-130
title_full_unstemmed Seawater carbonate chemistry and impacts of calcium and carbonate ion concentration on Mg and Sr incorporation in cultured benthic foraminifera (Ammonia tepida and Heterostegina depressa), 2011, supplement to: Dueñas-Bohórquez, Adriana; Raitzsch, Markus; de Nooijer, Lennart Jan; Reichart, Gert-Jan (2011): Independent impacts of calcium and carbonate ion concentration on Mg and Sr incorporation in cultured benthic foraminifera. Marine Micropaleontology, 81(3-4), 122-130
title_sort seawater carbonate chemistry and impacts of calcium and carbonate ion concentration on mg and sr incorporation in cultured benthic foraminifera (ammonia tepida and heterostegina depressa), 2011, supplement to: dueñas-bohórquez, adriana; raitzsch, markus; de nooijer, lennart jan; reichart, gert-jan (2011): independent impacts of calcium and carbonate ion concentration on mg and sr incorporation in cultured benthic foraminifera. marine micropaleontology, 81(3-4), 122-130
publisher PANGAEA - Data Publisher for Earth & Environmental Science
publishDate 2011
url https://dx.doi.org/10.1594/pangaea.770474
https://doi.pangaea.de/10.1594/PANGAEA.770474
long_lat ENVELOPE(-62.783,-62.783,-64.667,-64.667)
geographic Adriana
geographic_facet Adriana
genre North Atlantic
Ocean acidification
genre_facet North Atlantic
Ocean acidification
op_relation https://dx.doi.org/10.1016/j.marmicro.2011.08.002
op_rights Creative Commons Attribution 3.0 Unported
https://creativecommons.org/licenses/by/3.0/legalcode
cc-by-3.0
op_rightsnorm CC-BY
op_doi https://doi.org/10.1594/pangaea.770474
https://doi.org/10.1016/j.marmicro.2011.08.002
_version_ 1766137299413762048
spelling ftdatacite:10.1594/pangaea.770474 2023-05-15T17:37:23+02:00 Seawater carbonate chemistry and impacts of calcium and carbonate ion concentration on Mg and Sr incorporation in cultured benthic foraminifera (Ammonia tepida and Heterostegina depressa), 2011, supplement to: Dueñas-Bohórquez, Adriana; Raitzsch, Markus; de Nooijer, Lennart Jan; Reichart, Gert-Jan (2011): Independent impacts of calcium and carbonate ion concentration on Mg and Sr incorporation in cultured benthic foraminifera. Marine Micropaleontology, 81(3-4), 122-130 Dueñas-Bohórquez, Adriana Raitzsch, Markus de Nooijer, Lennart Jan Reichart, Gert-Jan 2011 text/tab-separated-values https://dx.doi.org/10.1594/pangaea.770474 https://doi.pangaea.de/10.1594/PANGAEA.770474 en eng PANGAEA - Data Publisher for Earth & Environmental Science https://dx.doi.org/10.1016/j.marmicro.2011.08.002 Creative Commons Attribution 3.0 Unported https://creativecommons.org/licenses/by/3.0/legalcode cc-by-3.0 CC-BY Ammonia tepida Benthos Bottles or small containers/Aquaria <20 L Calcification/Dissolution Chromista Coast and continental shelf Foraminifera Heterostegina depressa Heterotrophic prokaryotes Laboratory experiment Mortality/Survival North Atlantic Single species Temperate Species Identification Salinity Salinity, standard deviation Temperature, water Temperature, standard deviation Alkalinity, total Alkalinity, total, standard deviation Carbon, inorganic, dissolved Carbon, inorganic, dissolved, standard deviation pH pH, standard deviation Carbonate ion Carbonate ion, standard deviation Calcite saturation state Calcite saturation state, standard deviation Number of specimens Ammonia tepida, chambers added Ammonia tepida, chambers added per individual Rows of chambers added Rows of chambers added per individual Replicates Ammonia tepida, magnesium/calcium ratio Ammonia tepida, magnesium/calcium ratio, standard deviation Heterostegina depressa, magnesium/calcium ratio Heterostegina depressa, magnesium/calcium ratio, standard deviation Ammonia tepida, strontium/calcium ratio Ammonia tepida, strontium/calcium ratio, standard deviation Heterostegina depressa, strontium/calcium ratio Heterostegina depressa, strontium/calcium ratio, standard deviation Carbonate system computation flag Carbon dioxide Partial pressure of carbon dioxide water at sea surface temperature wet air Fugacity of carbon dioxide water at sea surface temperature wet air Bicarbonate ion Aragonite saturation state Measured Calculated using CO2SYS Calculated using seacarb after Nisumaa et al. 2010 European network of excellence for Ocean Ecosystems Analysis EUR-OCEANS European Project on Ocean Acidification EPOCA Ocean Acidification International Coordination Centre OA-ICC Dataset dataset Supplementary Dataset 2011 ftdatacite https://doi.org/10.1594/pangaea.770474 https://doi.org/10.1016/j.marmicro.2011.08.002 2022-02-09T12:06:21Z Laboratory culture experiments were conducted to determine effects of seawater carbonate ion concentration ([CO32-]), and thereby calcite saturation state, on Mg and Sr incorporation into calcite of two species of shallow-water benthic foraminifera: Ammonia tepida and Heterostegina depressa. Impact on Mg and Sr incorporation by increased seawater [CO32-] and thereby higher calcite saturation state, is absent in either species. Comparison to results from a similar culturing experiment, in which calcite saturation state was varied as a function of [Ca2+], reveals that saturation state affects incorporation of Mg and Sr through calcium- rather than carbonate availability. The similarity in response by both species is surprising since the average Mg/Ca ratio is ~ 70 times higher in H. depressa than in A. tepida. Furthermore, these results suggest that the ions involved in biomineralization (i.e. Ca2+ and DIC) are processed by separate cellular transport mechanisms. The similar response of Mg and Sr incorporation in this study suggests that only differences in the Ca2+ transport mechanism affect divalent cation partitioning. : In order to allow full comparability with other ocean acidification data sets, the R package seacarb (Lavigne and Gattuso, 2011) was used to compute a complete and consistent set of carbonate system variables, as described by Nisumaa et al. (2010). In this dataset the original values were archived in addition with the recalculated parameters (see related PI). Dataset North Atlantic Ocean acidification DataCite Metadata Store (German National Library of Science and Technology) Adriana ENVELOPE(-62.783,-62.783,-64.667,-64.667)