Abstract
Blue mussel individuals (Mytilus edulis) were cultured at four different salinities (17, 20, 29, and 34). During the course of the experiment, temperature was gradually increased from 6°C to 14°C. Mg/Ca and Sr/Ca ratios of the shell calcite portions produced during the 9 weeks of experimental treatment as well parts that were precipitated before the treatment phase were measured by laser ablation-multicollector-inductively coupled plasma-mass spectrometry. Mg/Ca ratios show a positive correlation with temperature for individuals cultured at salinity 29 and 34 (Mg/Ca (mmol/mol) ∼ (0.2-0.3)*T (°C)), while for individuals cultured at low salinities (17, 20) no trend was observed. Sr/Ca ratios were not affected by temperature but strongly by salinity. The data show very strong biological influence ("individual differences" and "physiological variability") on elemental ratios (79% on Mg/Ca and 41% on Sr/Ca) in M. edulis calcite. The results challenge the use of blue mussel shell data as environmental proxies. Copyright 2011 by the American Geophysical Union.
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Heinemann, A., Hiebenthal, C., Fietzke, J., Eisenhauer, A., & Wahl, M. (2011). Disentangling the biological and environmental control of M. edulis shell chemistry. Geochemistry, Geophysics, Geosystems, 12(3). https://doi.org/10.1029/2010GC003340
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