首页> 外文期刊>Folia histochemica et cytobiologica >Ultrastructural and autoradiographic studies of the role of nucleolar vacuoles in soybean root meristem.
【24h】

Ultrastructural and autoradiographic studies of the role of nucleolar vacuoles in soybean root meristem.

机译:超微结构和放射自显影研究核仁液泡在大豆根分生组织中的作用。

获取原文
获取原文并翻译 | 示例
           

摘要

Ultrastructural and autoradiographic studies of nucleoli in soybean root meristematic cells in seedlings: (1) grown for 3 days at 25 degrees C (control), (2) grown for three days at 25 degrees C and for 4 days at 10 degrees C, and (3) grown as in (2) and recovered for 1 day at 25 degrees C were carried out. Control nucleoli had dense structure and a few small nucleolar vacuoles. Chilled plant nucleoli had less dense structure and no vacuoles. Nucleoli of plants recovered at 25 degrees C had big nucleolar vacuoles. In autoradiograms of squashed preparations, the labeling of nucleoli and cytoplasm after 20-min incubation in 3H-uridine was 5- and 6-fold stronger, respectively, in control than in chilled roots. Following recovery, the labeling of nucleoli and cytoplasm was much stronger than after chilling or even than in control roots. After 80-min postincubation in non-radioactive medium, average labeling of particular areas of cells was the highest in recovered plants which indicated intensification of rRNA synthesis, maturation and transport into cytoplasm resulting from the resumption of optimal conditions which was correlated with the appearance of big nucleolar vacuoles. In autoradiograms of semi-thin sections from roots of seedlings chilled for 4 days then recovered and incubated for 20 min in 3H-uridine, practically only extravacuolar parts of nucleoli were labeled. After 80-min postincubation, the labeling of nucleolar vacuoles was observed. Thus, during postincubation the labeled molecules were translocated from the nucleolar periphery into nucleolar vacuoles in cells where intensive transport of these molecules to the cytoplasm takes place. On the basis of these results, a hypothesis has been put forward that nucleolar vacuoles may be involved in the intensification of pre-ribosome transport outside nucleolus.
机译:幼苗的大豆根分生组织细胞核仁的超微结构和放射自显影研究:(1)在25摄氏度下生长3天(对照),(2)在25摄氏度下生长3天,在10摄氏度下生长4天,以及(3)如(2)中所述生长并在25℃下恢复1天。对照核仁具有致密的结构和一些小的核仁液泡。冷冻的植物核仁具有较少的致密结构并且没有液泡。在25℃回收的植物的核仁具有大的核仁液泡。在压片的放射自显影照片中,在3H-尿苷中孵育20分钟后,对照中的核仁和细胞质标记分别比在冷根中强5倍和6倍。恢复后,核仁和细胞质的标记比冷后甚至对照根部的标记要强得多。在非放射性培养基中孵育80分钟后,回收的植物中特定细胞区域的平均标记最高,这表明恢复最佳条件导致rRNA合成,成熟和转运到细胞质中,这与p53的出现有关大的核仁液泡。在从幼苗的根部取出的半薄切片的放射自显影照片中,将其冷冻4天,然后回收并在3H-尿苷中孵育20分钟,实际上仅标记了核仁的真空部分。温育80分钟后,观察到核仁液泡的标记。因此,在温育后,标记的分子从核仁外围转移到细胞中的核仁液泡中,这些分子发生向细胞质的强烈转运。基于这些结果,提出了一种假设,即核仁液泡可能参与了核糖体前核糖体转运到核仁之外。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号