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视网膜视杆细胞的形态发生;电子显微镜研究

Morphogenesis of the retinal rods; an electron microscope study.

作者信息

DE ROBERTIS E

出版信息

J Biophys Biochem Cytol. 1956 Jul 25;2(4 Suppl):209-18. doi: 10.1083/jcb.2.4.209.

Abstract

The morphogenesis of the retinal rods has been studied with the electron microscope in white mice from birth up to the 16th day of age. Observations have been mainly concentrated on specimens of the 8th and 12th days and on the differentiation of the inner and outer segments of the retinal rods. In the morphogenesis of the outer segment three main stages have been considered. The first stage consists in the development of a primitive cilium projecting from a bulge of protoplasm which constitutes the primordium of the inner segment. A basal body, nine pairs of peripheral filaments, a surface membrane, and a matrix filled with a fine vesicular material have been recognized as components of the primitive cilium. The vesicles are called "morphogenetic material" because it is believed that they represent the macromolecular primordium of the rod sacs of the future outer segment. The second stage corresponds to the great enlargment of the apical region of the primitive cilium due to the rapid building up of the lamellar material of the rod sacs. The primitive rod sacs appear to be connected with the ciliary filaments. The basal portion of the primitive cilium remains undifferentiated and constitutes the connecting cilium of the adult rod (1). The third stage consists in the remodelling and reorientation of the rod sacs into their permanent transverse disposition. This process starts in the middle portion of the outer segments and proceeds towards both extremities which can be considered as zones of growth of the outer segment. The inner segment is at the beginning a bulge of protoplasm containing unoriented mitochondria, a basal body, a small Golgi zone, and numerous dense particles. Then this region becomes elongated and the different components assume the stratified disposition found in the adult (1). The demonstration that the entire outer segment of the rod cell is the result of the differentiation of a primitive cilium is discussed in view of the conflicting interpretations found in the literature. The possible macromolecular mechanisms that may be involved in the submicroscopic morphogenesis of the rod sacs are discussed and the possible role of the morphogenetic material is considered. The results described in this paper confirm and extend the interpretation of the submicroscopic morphology of the adult rod cell as presented in a previous paper (1).

摘要

利用电子显微镜对出生至16日龄的小白鼠视网膜视杆细胞的形态发生进行了研究。观察主要集中在第8天和第12天的标本以及视网膜视杆细胞内、外节的分化。在外节的形态发生过程中,主要考虑了三个阶段。第一阶段是由构成内节原基的原生质凸起处长出一根原始纤毛。已确认原始纤毛的组成部分包括一个基体、九对外周细丝、一层表面膜以及充满细小囊泡物质的基质。这些囊泡被称为“形态发生物质”,因为据信它们代表了未来外节视杆囊泡的大分子原基。第二阶段对应于原始纤毛顶端区域的大幅增大,这是由于视杆囊泡的板层物质迅速积累所致。原始视杆囊泡似乎与纤毛细丝相连。原始纤毛的基部保持未分化状态,构成成年视杆细胞的连接纤毛(1)。第三阶段是视杆囊泡重塑并重新定向为其永久的横向排列。这个过程始于外节的中部,并向两端进行,两端可被视为外节的生长区域。内节最初是一个原生质凸起,含有未定向的线粒体、一个基体、一个小高尔基体区域以及许多致密颗粒。然后这个区域变长,不同的成分呈现出成年视杆细胞中发现的分层排列(1)。鉴于文献中存在相互矛盾的解释,本文讨论了视杆细胞整个外节是原始纤毛分化结果的论证。讨论了可能参与视杆囊泡亚显微形态发生的大分子机制,并考虑了形态发生物质的可能作用。本文所述结果证实并扩展了前一篇论文(1)中对成年视杆细胞亚显微形态的解释。

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