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钙质海绵骨针的晶体取向和同心层

Crystallographic orientation and concentric layers in spicules of calcareous sponges.

作者信息

Rossi André Linhares, Ribeiro Bárbara, Lemos Moara, Werckmann Jacques, Borojevic Radovan, Fromont Jane, Klautau Michelle, Farina Marcos

机构信息

Centro Brasileiro de Pesquisas Físicas, Xavier Sigaud, 150, 22290-180 Rio de Janeiro, Brazil.

Universidade Federal do Rio de Janeiro, Centro de Ciências da Saúde, Instituto de Biologia, Laboratório de Biologia de Porifera, 21941-590 Rio de Janeiro, Brazil.

出版信息

J Struct Biol. 2016 Nov;196(2):164-172. doi: 10.1016/j.jsb.2016.04.009. Epub 2016 Apr 19.

Abstract

In this work, the crystallography of calcareous sponges (Porifera) spicules and the organization pattern of the concentric layers present in their inner structure were investigated in 10 species of the subclass Calcaronea and three species of the subclass Calcinea. Polished spicules had specific concentric patterns that varied depending on the plane in which the spicules were sectioned. A 3D model of the concentric layers was created to interpret these patterns and the biomineralization process of the triactine spicules. The morphology of the spicules was compared with the crystallographic orientation of the calcite crystals by analyzing the Kikuchi diffraction patterns using a scanning electron microscope. Triactine spicules from the subclass Calcinea had actines (rays) elongated in the 〈210〉 direction, which is perpendicular to the c-axis. The scale spicules of the hypercalcified species Murrayona phanolepis presented the c-axis perpendicular to the plane of the scale, which is in accordance with the crystallography of all other Calcinea. The triactine spicules of the calcaronean species had approximately the same crystallographic orientation with the unpaired actine elongated in the ∼[211] direction. Only one Calcaronea species, whose triactine was regular, had a different orientation. Three different crystallographic orientations were found in diactines. Spicules with different morphologies, dimensions and positions in the sponge body had similar crystallographic directions suggesting that the crystallographic orientation of spicules in calcareous sponges is conserved through evolution.

摘要

在这项研究中,我们对钙质海绵纲(多孔动物门)骨针的晶体学以及其内部结构中同心层的组织模式进行了研究,涉及钙质海绵亚纲的10个物种和石灰海绵亚纲的3个物种。经过抛光的骨针具有特定的同心图案,这些图案会因骨针切片所在的平面不同而有所变化。我们创建了同心层的三维模型,以解释这些图案以及三射骨针的生物矿化过程。通过使用扫描电子显微镜分析菊池衍射图案,将骨针的形态与方解石晶体的晶体学取向进行了比较。石灰海绵亚纲的三射骨针的射线沿〈210〉方向拉长,该方向垂直于c轴。高度钙化的物种默氏亮骨海绵的鳞片骨针的c轴垂直于鳞片平面,这与所有其他石灰海绵亚纲的晶体学情况一致。钙质海绵亚纲物种的三射骨针具有大致相同的晶体学取向,未配对的射线沿∼[211]方向拉长。只有一种钙质海绵亚纲物种,其三射骨针形状规则,具有不同的取向。在双射骨针中发现了三种不同的晶体学取向。在海绵体内具有不同形态、尺寸和位置的骨针具有相似的晶体学方向,这表明钙质海绵骨针的晶体学取向在进化过程中是保守的。

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