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首页> 外文期刊>Scientific reports. >Biological strategy for the fabrication of highly ordered aragonite helices: the microstructure of the cavolinioidean gastropods
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Biological strategy for the fabrication of highly ordered aragonite helices: the microstructure of the cavolinioidean gastropods

机译:高度有序的金属石螺旋制作的生物学策略:枢菌素胃肠杆菌的微观结构

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The Cavolinioidea are planktonic gastropods which construct their shells with the so-called aragonitic helical fibrous microstructure, consisting of a highly ordered arrangement of helically coiled interlocking continuous crystalline aragonite fibres. Our study reveals that, despite the high and continuous degree of interlocking between fibres, every fibre has a differentiated organic-rich thin external band, which is never invaded by neighbouring fibres. In this way, fibres avoid extinction. These intra-fibre organic-rich bands appear on the growth surface of the shell as minuscule elevations, which have to be secreted differentially by the outer mantle cells. We propose that, as the shell thickens during mineralization, fibre secretion proceeds by a mechanism of contact recognition and displacement of the tips along circular trajectories by the cells of the outer mantle surface. Given the sizes of the tips, this mechanism has to operate at the subcellular level. Accordingly, the fabrication of the helical microstructure is under strict biological control. This mechanism of fibre-by-fibre fabrication by the mantle cells is unlike that any other shell microstructure.
机译:Cavolinioidea是用所谓的螺旋状纤维微观结构构建它们的壳体的浮游胃,其构建其壳,由螺旋盘绕的连锁连续结晶纤维的高度有序布置组成。我们的研究表明,尽管纤维之间的互锁程度高和连续,但每根纤维具有差异化的有机薄的薄外部频带,从未通过相邻纤维侵入。通过这种方式,纤维避免灭绝。这些富含纤维的有机物的富阵带出现在壳体的生长表面上,作为小型凸起,其必须由外部罩细胞差别分泌。我们提出,随着矿化期间壳体增厚,光纤分泌通过外部地幔表面的细胞沿着圆形轨迹的接触识别和倾向的机制进行。鉴于提示的大小,这种机制必须在亚细胞水平下运行。因此,螺旋微观结构的制造是严格的生物控制。通过地幔细胞的纤维纤维制造机制与任何其他壳体微观结构不同。

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