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Microstructure and formation of the calcareous operculum in Pyrgopolon ctenactis and Spirobranchus giganteus (Annelida, Serpulidae)

机译:Pyrgopolon ctenactis和Spirobranchus giganteus(Annelida,Serpulidae)的钙质盖的微观结构和形成

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The calcareous operculum of Pyrgopolon ctenactis is composed of spherulitic prismatic structures. The opercular cup consists of regular spherulitic prismatic crystals; the talon has two layers, an inner with an irregular spherulitic prismatic structure (150 mu m thick) and an outer with a regular spherulitic prismatic structure (110 mu m thick). The outer regular structure has thick (1 mu m) organic interprismatic sheets unique in biomineralization of this group, but similar to that of Bivalvia. We infer that control over biomineralization is stronger during the formation of the outer regular layer, with its thick organic interprismatic sheets, than during the formation of the inner irregular spherulitic prismatic structure, without such sheets. In Spirobranchus giganteus, opercular formation differs from that of P. ctenactis. S. giganteus has numerous pores in its opercular plate, and calcification starts with the formation of an outer irregularly oriented prismatic structure followed by an oriented prismatic structure without interprismatic sheets.
机译:球果狼的钙质小盖由球状棱柱状结构组成。手术杯由规则的球状棱柱形晶体组成。该爪子具有两层,内部具有不规则球状棱柱形结构(150微米厚)和外部,具有规则球状棱柱形结构(110微米厚)。外部规则结构具有厚的(1微米)有机棱晶薄片,在该组生物矿化中是独特的,但与双壳纲相似。我们推断,在形成外部规则层及其厚的有机棱镜层的过程中,对生物矿化的控制要比在没有规则薄片的内部不规则球状棱柱形结构的形成过程中强。在Spirobranchus giganteus中,囊膜的形成不同于P. ctenactis。巨型链球菌在其孔板中有许多孔,钙化开始于外部不规则取向的棱柱结构的形成,然后是没有棱晶片的取向棱柱结构。

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