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Microtexture of larval shell of oyster, Crassostrea nippona: A FIB-TEM study

机译:牡蛎(Crassostrea nippona)牡蛎幼体壳的微观结构:FIB-TEM研究

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The initial formation and subsequent development of larval shells in marine bivalve, Crassostrea nippona were investigated using the FIB-TEM technique. Fourteen hours after fertilization (the trochophore stage), larvae form an incipient shell of 100-150 nm thick with a columnar contrast. Selected-area electron diffraction analysis showed a single-crystal aragonite pattern with the c-axis perpendicular to the shell surface. Plan-view TEM analysis suggested that the shell contains high density of {110} twins, which are the origin of the columnar contrast in the cross-sectional images. 72 h after fertilization (the veliger stage), the shell grows up to 1.2-1.4 mu m thick accompanying an additional granular layer between the preexisting layer and embryo to form a distinctive two-layer structure. The granular layer is also composed of aragonite crystals sharing their c-axes perpendicular to the shell surface, but the crystals are arranged with a flexible rotation around the c-axes and not restricted solely to the {110} twin relation. No evidence to suggest the existence of amorphous calcium carbonate (ACC) was found through the observation. The well-regulated crystallographic properties found in the present sample imply initial shell formation probably via a direct deposition of crystalline aragonite.
机译:使用FIB-TEM技术研究了海洋双壳类Crassostrea nippona中幼虫壳的最初形成和随后的发育。受精后十四小时(次营养体阶段),幼虫形成初生壳,厚度为100-150 nm,具有柱状对比度。选定区域的电子衍射分析显示了c轴垂直于壳表面的单晶文石图案。平面观察TEM分析表明,壳中含有高密度的{110}孪晶,这是横截面图像中柱状对比度的起源。受精后72小时(飞虱阶段),壳长到1.2-1.4μm厚,在既有层和胚之间有一个附加的颗粒层,形成独特的两层结构。粒状层还由文石晶体组成,文石晶体共享垂直于壳表面的c轴,但晶体绕c轴旋转灵活排列,而不仅限于{110}孪晶关系。通过观察未发现暗示无定形碳酸钙(ACC)存在的证据。在本样品中发现的良好调节的晶体学性质暗示着可能通过直接晶状文石的直接沉积形成了初始的壳。

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