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蜕皮过程中 Porcellio scaber(等足目,甲壳纲)背板外骨骼中无定形和结晶碳酸钙的分布。

Amorphous and crystalline calcium carbonate distribution in the tergite cuticle of moulting Porcellio scaber (Isopoda, Crustacea).

机构信息

Institute of Inorganic Chemistry and Center for Nanointegration, University of Duisburg-Essen, Universitaetsstrasse 5-7, 45117 Essen, Germany.

出版信息

J Struct Biol. 2011 Jul;175(1):10-20. doi: 10.1016/j.jsb.2011.03.019. Epub 2011 Mar 30.

Abstract

The main mineral components of the isopod cuticle consists of crystalline magnesium calcite and amorphous calcium carbonate. During moulting isopods moult first the posterior and then the anterior half of the body. In terrestrial species calcium carbonate is subject to resorption, storage and recycling in order to retain significant fractions of the mineral during the moulting cycle. We used synchrotron X-ray powder diffraction, elemental analysis and Raman spectroscopy to quantify the ACC/calcite ratio, the mineral phase distribution and the composition within the anterior and posterior tergite cuticle during eight different stages of the moulting cycle of Porcellio scaber. The results show that most of the amorphous calcium carbonate (ACC) is resorbed from the cuticle, whereas calcite remains in the old cuticle and is shed during moulting. During premoult resorption of ACC from the posterior cuticle is accompanied by an increase within the anterior tergites, and mineralization of the new posterior cuticle by resorption of mineral from the anterior cuticle. This suggests that one reason for using ACC in cuticle mineralization is to facilitate resorption and recycling of cuticular calcium carbonate. Furthermore we show that ACC precedes the formation of calcite in distal layers of the tergite cuticle.

摘要

等足目动物外骨骼的主要矿物成分由结晶的镁方解石和无定形碳酸钙组成。在蜕皮过程中,等足目动物首先蜕皮后半部分,然后蜕皮前半部分。在陆生物种中,碳酸钙会被吸收、储存和再循环,以便在蜕皮周期中保留相当一部分的矿物质。我们使用同步加速器 X 射线粉末衍射、元素分析和拉曼光谱来定量测定 Porcellio scaber 蜕皮周期的八个不同阶段的前、后背板外骨骼中的 ACC/方解石比值、矿物相分布和组成。结果表明,大部分无定形碳酸钙(ACC)从外骨骼中被吸收,而方解石留在旧的外骨骼中并在蜕皮时脱落。在后半部分蜕皮时,ACC 的吸收伴随着前半部分背板中 ACC 的增加,而新的后半部分外骨骼的矿化则是通过从前半部分外骨骼中吸收矿物质来实现的。这表明,在外骨骼矿化中使用 ACC 的一个原因是为了促进碳酸钙的吸收和再循环。此外,我们还表明,ACC 先于方解石在前背板外骨骼的远端层中形成。

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