Element ratio (Sr/Ca, Ba/Ca, B/Ca, and Mg/Ca) profiles throughout the larval life stage of Mytilus edulis, 2011 ...
Rising anthropogenic CO2 in the surface ocean has raised serious concerns for the ability of calcifying organisms to secrete their shells and skeletons. Previous mollusc carbonate perturbation experiments report deleterious effects at lowered pH (7.8-7.4 pH units), including reduced shell length and...
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Online Access: | https://dx.doi.org/10.1594/pangaea.769719 https://doi.pangaea.de/10.1594/PANGAEA.769719 |
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ftdatacite:10.1594/pangaea.769719 2024-03-31T07:54:46+00:00 Element ratio (Sr/Ca, Ba/Ca, B/Ca, and Mg/Ca) profiles throughout the larval life stage of Mytilus edulis, 2011 ... Dawber, Caroline F Branson, O Elderfield, Henry Harper, Elizabeth M Greaves, Mervyn Gazeau, Frédéric Gattuso, Jean-Pierre Middelburg, Jack J 2011 text/tab-separated-values https://dx.doi.org/10.1594/pangaea.769719 https://doi.pangaea.de/10.1594/PANGAEA.769719 en eng PANGAEA Data access is restricted (moratorium, sensitive data, license constraints) Licensing unknown: Please contact principal investigator/authors to gain access and request licensing terms unknown Species Sample ID Calcium Boron/Calcium ratio Magnesium/Calcium ratio Strontium/Calcium ratio Barium/Calcium ratio Mytilus edulis, weight, shell Inductively coupled plasma-quadrupole-mass spectrometry European Project on Ocean Acidification EPOCA dataset Dataset 2011 ftdatacite https://doi.org/10.1594/pangaea.769719 2024-03-04T13:35:39Z Rising anthropogenic CO2 in the surface ocean has raised serious concerns for the ability of calcifying organisms to secrete their shells and skeletons. Previous mollusc carbonate perturbation experiments report deleterious effects at lowered pH (7.8-7.4 pH units), including reduced shell length and thickness and deformed shell morphology. It is not clear whether the reduced shell growth results from a decrease in calcification rate due to lowered aragonite saturation or from an indirect effect on mollusc metabolism. We take a novel approach to discerning between these two processes by examining the impact of lowered pH on the 'vital-effect' associated with element ratios. Reported herein are the first element ratio (Sr/Ca, Ba/Ca, B/Ca, Mg/Ca and Mn/Ca) profiles throughout the larval life stage of Mytilus edulis. Element ratio data for individuals reared in ambient conditions provide new insights into biomineralization during larval development. Sr/Ca ratios are consistent with Sr incorporation in the ... Dataset Ocean acidification DataCite Metadata Store (German National Library of Science and Technology) |
institution |
Open Polar |
collection |
DataCite Metadata Store (German National Library of Science and Technology) |
op_collection_id |
ftdatacite |
language |
English |
topic |
Species Sample ID Calcium Boron/Calcium ratio Magnesium/Calcium ratio Strontium/Calcium ratio Barium/Calcium ratio Mytilus edulis, weight, shell Inductively coupled plasma-quadrupole-mass spectrometry European Project on Ocean Acidification EPOCA |
spellingShingle |
Species Sample ID Calcium Boron/Calcium ratio Magnesium/Calcium ratio Strontium/Calcium ratio Barium/Calcium ratio Mytilus edulis, weight, shell Inductively coupled plasma-quadrupole-mass spectrometry European Project on Ocean Acidification EPOCA Dawber, Caroline F Branson, O Elderfield, Henry Harper, Elizabeth M Greaves, Mervyn Gazeau, Frédéric Gattuso, Jean-Pierre Middelburg, Jack J Element ratio (Sr/Ca, Ba/Ca, B/Ca, and Mg/Ca) profiles throughout the larval life stage of Mytilus edulis, 2011 ... |
topic_facet |
Species Sample ID Calcium Boron/Calcium ratio Magnesium/Calcium ratio Strontium/Calcium ratio Barium/Calcium ratio Mytilus edulis, weight, shell Inductively coupled plasma-quadrupole-mass spectrometry European Project on Ocean Acidification EPOCA |
description |
Rising anthropogenic CO2 in the surface ocean has raised serious concerns for the ability of calcifying organisms to secrete their shells and skeletons. Previous mollusc carbonate perturbation experiments report deleterious effects at lowered pH (7.8-7.4 pH units), including reduced shell length and thickness and deformed shell morphology. It is not clear whether the reduced shell growth results from a decrease in calcification rate due to lowered aragonite saturation or from an indirect effect on mollusc metabolism. We take a novel approach to discerning between these two processes by examining the impact of lowered pH on the 'vital-effect' associated with element ratios. Reported herein are the first element ratio (Sr/Ca, Ba/Ca, B/Ca, Mg/Ca and Mn/Ca) profiles throughout the larval life stage of Mytilus edulis. Element ratio data for individuals reared in ambient conditions provide new insights into biomineralization during larval development. Sr/Ca ratios are consistent with Sr incorporation in the ... |
format |
Dataset |
author |
Dawber, Caroline F Branson, O Elderfield, Henry Harper, Elizabeth M Greaves, Mervyn Gazeau, Frédéric Gattuso, Jean-Pierre Middelburg, Jack J |
author_facet |
Dawber, Caroline F Branson, O Elderfield, Henry Harper, Elizabeth M Greaves, Mervyn Gazeau, Frédéric Gattuso, Jean-Pierre Middelburg, Jack J |
author_sort |
Dawber, Caroline F |
title |
Element ratio (Sr/Ca, Ba/Ca, B/Ca, and Mg/Ca) profiles throughout the larval life stage of Mytilus edulis, 2011 ... |
title_short |
Element ratio (Sr/Ca, Ba/Ca, B/Ca, and Mg/Ca) profiles throughout the larval life stage of Mytilus edulis, 2011 ... |
title_full |
Element ratio (Sr/Ca, Ba/Ca, B/Ca, and Mg/Ca) profiles throughout the larval life stage of Mytilus edulis, 2011 ... |
title_fullStr |
Element ratio (Sr/Ca, Ba/Ca, B/Ca, and Mg/Ca) profiles throughout the larval life stage of Mytilus edulis, 2011 ... |
title_full_unstemmed |
Element ratio (Sr/Ca, Ba/Ca, B/Ca, and Mg/Ca) profiles throughout the larval life stage of Mytilus edulis, 2011 ... |
title_sort |
element ratio (sr/ca, ba/ca, b/ca, and mg/ca) profiles throughout the larval life stage of mytilus edulis, 2011 ... |
publisher |
PANGAEA |
publishDate |
2011 |
url |
https://dx.doi.org/10.1594/pangaea.769719 https://doi.pangaea.de/10.1594/PANGAEA.769719 |
genre |
Ocean acidification |
genre_facet |
Ocean acidification |
op_rights |
Data access is restricted (moratorium, sensitive data, license constraints) Licensing unknown: Please contact principal investigator/authors to gain access and request licensing terms unknown |
op_doi |
https://doi.org/10.1594/pangaea.769719 |
_version_ |
1795035963008745472 |