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Patterns of Expression in the Matrix Proteins Responsible for Nucleation and Growth of Aragonite Crystals in Flat Pearls of Pinctada fucata

机译:Pinctada fucata扁平珍珠中负责文石晶体形成和生长的基质蛋白中的表达模式

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摘要

The initial growth of the nacreous layer is crucial for comprehending the formation of nacreous aragonite. A flat pearl method in the presence of the inner-shell film was conducted to evaluate the role of matrix proteins in the initial stages of nacre biomineralization in vivo. We examined the crystals deposited on a substrate and the expression patterns of the matrix proteins in the mantle facing the substrate. In this study, the aragonite crystals nucleated on the surface at 5 days in the inner-shell film system. In the film-free system, the calcite crystals nucleated at 5 days, a new organic film covered the calcite, and the aragonite nucleated at 10 days. This meant that the nacre lamellae appeared in the inner-shell film system 5 days earlier than that in the film-free system, timing that was consistent with the maximum level of matrix proteins during the first 20 days. In addition, matrix proteins (Nacrein, MSI60, N19, N16 and Pif80) had similar expression patterns in controlling the sequential morphologies of the nacre growth in the inner-film system, while these proteins in the film-free system also had similar patterns of expression. These results suggest that matrix proteins regulate aragonite nucleation and growth with the inner-shell film in vivo.
机译:珍珠质层的初始生长对于理解珍珠质文石的形成至关重要。进行了有壳膜存在的扁平珍珠法,以评估基质蛋白在体内珍珠质生物矿化初期的作用。我们检查了沉积在基底上的晶体以及面对基底的地幔中基质蛋白的表达模式。在这项研究中,文石晶体在内壳膜系统中在第5天时在表面成核。在无膜系统中,方解石晶体在5天时成核,新的有机膜覆盖了方解石,文石在10天时成核。这意味着珍珠层在内壳膜系统中出现的时间比无膜系统早了5天,时间与前20天基质蛋白的最高水平一致。此外,基质蛋白(Nacrein,MSI60,N19,N16和Pif80)在控制内膜系统中珍珠层生长的顺序形态方面具有相似的表达模式,而在无膜系统中这些蛋白也具有相似的表达模式。表达。这些结果表明,基质蛋白在体内调节文石的成核和内壳膜的生长。

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