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采用原位杂交技术研究三角帆蚌(Pinctada fucata)外套膜上皮细胞中珍珠层微结构及壳基质蛋白基因 MSI31 和 MSI60 的表达。

Pearl microstructure and expression of shell matrix protein genes MSI31 and MSI60 in the pearl sac epithelium of Pinctada fucata by in situ hybridization.

机构信息

Mie University, Graduate School of Bioresources, Tsu, Mie, Japan.

出版信息

PLoS One. 2013;8(1):e52372. doi: 10.1371/journal.pone.0052372. Epub 2013 Jan 14.

Abstract

Expression patterns of the shell matrix protein genes MSI31 and MSI60 in the pearl sac epithelium were examined by in situ hybridization 38 days after implantation, and related to pearl quality. A pearl sac that produced a nacreous pearl showed very weak expression of MSI31 and strong expression of MSI60. A pearl sac, which yielded a prismatic pearl, strongly expressed MSI31 and very weakly expressed MSI60. In a complex pearl, whose surface consisted of a mosaic of both nacreous and prismatic layers, the expression pattern of MSI31 and MSI60 similarly corresponded to the underlying surface structures of the pearl. A nacreous pearl whose pearl sac showed strong MSI31 expression had an entirely nacreous surface composed of a laminar structure with unusual tablet growth at the corresponding site. MSI31 and MSI60 are the major components of the shell matrix proteins of the nacreous and prismatic layers. Clearly, high expression of MSI31 does not always result in prismatic secretion. These observations cannot be explained solely on the basis of the expression patterns of MSI31 and MSI60. We propose that, in addition to the MSI genes that form the prismatic and nacreous layers, upstream from these genes there are regulatory master genes that determine whether a nacreous layer (aragonite) or a prismatic layer (calcite) is formed.

摘要

通过原位杂交技术,在植入后 38 天检查了珍珠囊上皮细胞中壳基质蛋白基因 MSI31 和 MSI60 的表达模式,并与珍珠质量相关。产生珍珠层珍珠的珍珠囊表现出 MSI31 表达非常弱而 MSI60 表达很强。产生棱柱珍珠的珍珠囊强烈表达 MSI31 而 MSI60 表达非常弱。在表面由珍珠层和棱柱层镶嵌而成的复合珍珠中,MSI31 和 MSI60 的表达模式与珍珠的底层结构相似。MSI31 表达强烈的珍珠层珍珠具有由层状结构组成的完全珍珠层表面,在相应部位具有异常的平板生长。MSI31 和 MSI60 是珍珠层和棱柱层壳基质蛋白的主要成分。显然,MSI31 的高表达并不总是导致棱柱分泌。这些观察结果不能仅根据 MSI31 和 MSI60 的表达模式来解释。我们提出,除了形成棱柱层和珍珠层的 MSI 基因之外,在这些基因的上游还有决定形成珍珠层(文石)还是棱柱层(方解石)的调节主基因。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5be8/3544836/3d64f2853567/pone.0052372.g001.jpg

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