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Compositional variations at ultra-structure length scales in coral skeleton
Authors:Anders Meibom  Jean-Pierre Cuif  Smail Mostefaoui  Karin L Meibom
Institution:a Muséum National d’Histoire Naturelle, Laboratoire d’Etude de la Matiere Extraterrestre, USM 0205 (LEME), Case Postale 52, 57 rue Cuvier, 75005 Paris, France
b UMR 8148 IDES, bat. 504, Université Paris XI-Orsay, 91495 Orsay Cedex, France
c Department of Geological and Environmental Sciences, Stanford University, Stanford, CA 94305, USA
d INSERM U570, Faculté de Médecine Necker-Enfants Malades, 156, rue de Vaugirard, 75730 Paris Cedex 15, France
Abstract:Distributions of Mg and Sr in the skeletons of a deep-sea coral (Caryophyllia ambrosia) and a shallow-water, reef-building coral (Pavona clavus) have been obtained with a spatial resolution of 150 nm, using the NanoSIMS ion microprobe at the Muséum National d’Histoire Naturelle in Paris. These trace element analyses focus on the two primary ultra-structural components in the skeleton: centers of calcification (COC) and fibrous aragonite. In fibrous aragonite, the trace element variations are typically on the order of 10% or more, on length scales on the order of 1-10 μm. Sr/Ca and Mg/Ca variations are not correlated. However, Mg/Ca variations in Pavona are strongly correlated with the layered organization of the skeleton.These data allow for a direct comparison of trace element variations in zooxanthellate and non-zooxanthellate corals. In both corals, all trace elements show variations far beyond what can be attributed to variations in the marine environment. Furthermore, the observed trace element variations in the fibrous (bulk) part of the skeletons are not related to the activity of zooxanthellae, but result from other biological activity in the coral organism. To a large degree, this biological forcing is independent of the ambient marine environment, which is essentially constant on the growth timescales considered here.Finally, we discuss the possible detection of a new high-Mg calcium carbonate phase, which appears to be present in both deep-sea and reef-building corals and is neither aragonite nor calcite.
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