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减数分裂前期小鼠卵母细胞中核仁组织者的超微结构与活性

Ultrastructure and activity of the nucleolar organizer in the mouse oocyte during meiotic prophase.

作者信息

Mirre C, Stahl A

出版信息

J Cell Sci. 1978 Jun;31:79-100. doi: 10.1242/jcs.31.1.79.

Abstract

The mouse oocyte is the site of nucleolar synthesis during pachytene. The chromosomes containing a nucleolar organizer are attached to the nuclear envelope by their paracentromeric heterochromatin, either alone or by taking part in the formation of a chromocentre. The nucleolus appears at the junction of the paracentromeric heterochromatin with the euchromatic portion of the bivalent. In this zone, 5.0-nm-diameter fibres, thinner than those of the rest of the chromosome (10.0 nm), extend from the lateral element of the synaptonemal complex up to the nucleolar fibrillar centre in which they penetrate. At the onset of its synthesis, the nucleolus only contains the fibrillar centre and an electron-dense fibrillar component in continuity with the latter. Growth of the nucleolus often takes place in the form of a strand whose proximal end, in contact with the fibrillar centre, is formed by preribosomal fibrils and whose distal end is at first fibrillo-granular then granular. Following brief incorporation of tritiated uridine, nucleolar labelling is active in oogonia. No ribosomal RNA-synthetic activity is revealed during leptotene and zygotene. Incorporation resumes at mid-pachytene, with labelling located over the electron-dense fibrillar component adjacent to the fibrillar centre. These observations suggest that the rDNA is located in both the fibrillar centre and its associated electron-dense fibrillar component and that the rDNA transcription occurs in the latter.

摘要

小鼠卵母细胞是粗线期核仁合成的场所。含有核仁组织区的染色体通过其着丝粒旁异染色质附着于核膜,要么单独附着,要么参与染色中心的形成。核仁出现在着丝粒旁异染色质与二价体常染色质部分的交界处。在这个区域,直径5.0纳米的纤维比染色体其他部分的纤维(10.0纳米)更细,从联会复合体的侧生元件延伸至核仁纤维中心并穿入其中。在其合成开始时,核仁仅包含纤维中心和与之连续的电子致密纤维成分。核仁的生长通常以一条链的形式进行,其近端与纤维中心接触,由前核糖体纤维构成,远端起初是纤维颗粒状,然后是颗粒状。在短暂掺入氚标记尿苷后,核仁标记在卵原细胞中活跃。细线期和偶线期未显示核糖体RNA合成活性。在粗线期中期恢复掺入,标记位于与纤维中心相邻的电子致密纤维成分上。这些观察结果表明,核糖体DNA位于纤维中心及其相关的电子致密纤维成分中,并且核糖体DNA转录发生在后者中。

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