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Evidence of a Biological Control over Origin, Growth and End of the Calcite Prisms in the Shells of Pinctada margaritifera (Pelecypod, Pterioidea)

机译:对玛格丽塔壳(Pelecypod,Pterioidea)壳中方解石棱镜的起源,生长和结束进行生物控制的证据。

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Consistently classified among the references for calcite simple prisms, the microstructural units that form the outer layer of the Pinctada margaritifera have been investigated through a series of morphological, crystallographical and biochemical characterizations. It is often said that the polygonal transverse shape of the prisms result from the competition for space between adjacent crystals. In contrast to this classical scheme the Pinctada prisms appear to be composed of four successive developmental stages from the concentrically growing disks on the internal side of the periostracum to the morphological, structural and compositional changes in both envelopes and mineral components at the end of the prisms. These latest structural and compositional changes predate nacre deposition, so that the end of prism growth is not caused by occurrence of nacre, but by metabolic changes in the secretory epithelium. This sequence makes obvious the permanent biological control exerted by the outer cell layer of the mantle in both organic envelopes and mineralizing organic phases.
机译:在方解石简单棱柱的参考文献中,始终将其分类,通过一系列的形态学,晶体学和生化特性研究了形成玛格丽塔Pinctada margaritifera外层的微结构单元。人们常说,棱柱的多边形横向形状是由相邻晶体之间的空间竞争引起的。与这种经典方案相反,Pinctada棱镜似乎由四个连续的发育阶段组成,从骨膜内侧的同心圆盘到棱镜末端的包膜和矿物成分的形态,结构和成分变化。这些最新的结构和组成变化早于珍珠质沉积,因此棱镜生长的结束不是由珍珠质的发生引起的,而是由分泌上皮的代谢变化引起的。该序列使幔的外细胞层在有机被膜和矿化有机相中发挥了永久的生物学控制作用。

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