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Size effect on the mineralogy and chemistry of <Emphasis Type="Italic">Mytilus trossulus</Emphasis> shells from the southern Baltic Sea: implications for environmental monitoring
Authors:Anna Piwoni-Piórewicz  Piotr Kukliński  Stanislav Strekopytov  Emma Humphreys-Williams  Jens Najorka  Anna Iglikowska
Institution:1.Institute of Oceanology,Polish Academy of Sciences,Sopot,Poland;2.Department of Life Sciences,Natural History Museum,London,UK;3.Imaging and Analysis Centre,Natural History Museum,London,UK
Abstract:Mussels have the ability to control biomineral production and chemical composition, producing shells with a range of functions. In addition to biological control, the environment also seems to influence the process of biomineralization; thus, shells can be used as archives of ambient water parameters during the calcium carbonate deposition. Past and present environmental conditions are recorded in the shells in the form of various proxies including Mg/Ca or Sr/Ca ratios. For such proxies to be accurate and robust, the influence of biological effects including the size of studied organism must be examined and eliminated or minimized, so that the environmental signal can be efficiently extracted. This study considers mineralogy and elemental composition of shells representing four size classes of Mytilus trossulus from the Baltic Sea. Obtained results suggest that mineralogy and chemical composition change throughout the shell development due to most likely a combination of environmental and biological factors. The content of aragonite increases with increasing shell size, while the bulk concentrations of Na, Cd, Cu, U, V, Zn and Pb were found to decrease with increasing height of the shells. Therefore, using mussels for environmental monitoring requires analysis of individuals in the same size range.
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