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Biochemical Change at the Setting-up of the Crossed-Lamellar Layer in Nerita undata Shell (Mollusca Gastropoda)

机译:尼雷塔无数据壳(软体动物腹足纲)中越过层状层的生化变化

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Nerita undata is a marine gastropod, the shell of which consists of an external layer composed of very fine, long and undulating calcite prisms, and of an internal aragonite crossed-lamellar layer. As for any Ca-carbonate shell, both layers are composite materials, resulting from the sub-micrometric association of organic macromolecules with the mineral phase. But at the transition between the two layers, in situ synchrotron-based mapping using µ-XANES spectroscopy performed at the S K-edge and SR-FTIR spectroscopy reveals that biochemical compositions change correlatively with the mineral phase, such as displayed by the distribution of sulfur-containing organic compounds (S-polysaccharides or S-amino acids) and organic molecular groups (amide I and II bands). These results highlight the complex change of secretory activity operated by the mineralizing tissue (the mollusk mantle) between these two parts of the shell, which is suspected to minutely control the setting-up of the crossed-lamellar microstructural pattern over the calcite prisms—A not so straightforward feature.
机译:内里达无数据是一种海洋腹足纲动物,其外壳由一个非常细,长且起伏的方解石棱柱组成的外层和一个内部文石交叉层状层组成。对于任何碳酸钙壳,这两层都是复合材料,是由于有机大分子与矿相的亚微米级结合而产生的。但是在两层之间的过渡处,在S K边缘和SR-FTIR光谱中使用µ-XANES光谱进行的基于同步加速器的原位测绘表明,生化成分与矿物相相关地变化,例如通过含硫的有机化合物(S-多糖或S-氨基酸)和有机分子基团(酰胺I和II谱带)。这些结果凸显了壳的这两部分之间的矿化组织(软体动物地幔)所引起的分泌活性的复杂变化,这被怀疑可以精细地控制方解石棱柱上的交叉层状微结构模式的建立。没有那么简单的功能。

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