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梅氏珊瑚科(刺胞动物门,珊瑚虫纲)文石骨骼的可溶性有机基质。

Soluble organic matrices of aragonitic skeletons of Merulinidae (Cnidaria, Anthozoa).

作者信息

Dauphin Yannicke, Cuif Jean-Pierre, Williams C Terry

机构信息

UMR 8148-IDES, Université Paris XI, Orsay, France.

出版信息

Comp Biochem Physiol B Biochem Mol Biol. 2008 May;150(1):10-22. doi: 10.1016/j.cbpb.2008.01.002. Epub 2008 Jan 19.

Abstract

Our interpretation of the overall taxonomy and evolution of the Scleractinia, the most important reef builders in tropical areas, has long depended exclusively on morphology of the calcareous skeletons. The reported series of physical and biochemical characterizations of skeletons and the mineralizing matrices extracted from the skeletons allow, for the first time, the level of biochemical diversity among corallites of the same family to be estimated. Similarities and differences observed in the micro- and nanostructures of the skeletons reflect those of the soluble organic matrices. Sulphur is mainly associated with sulphated acidic sugars. The role of sulphated sugars on the biomineralization processes is still underestimated. The resulting data suggest that environmental conditions may act on the mineralization process through the detailed compositions of the mineralizing matrices.

摘要

我们对造礁珊瑚(热带地区最重要的珊瑚礁建造者)的总体分类和进化的解读,长期以来完全依赖于钙质骨骼的形态学。已报道的一系列关于骨骼以及从骨骼中提取的矿化基质的物理和生化特征,首次使得估计同一家族珊瑚个体之间的生化多样性水平成为可能。在骨骼的微观和纳米结构中观察到的异同反映了可溶性有机基质的异同。硫主要与硫酸化酸性糖相关。硫酸化糖在生物矿化过程中的作用仍被低估。所得数据表明,环境条件可能通过矿化基质的详细组成对矿化过程产生影响。

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