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首页> 外文期刊>Planta >Cell cycle-dependent changes in Golgi stacks, vacuoles, clathrin-coated vesicles and multivesicular bodies in meristematic cells of Arabidopsis thaliana: A quantitative and spatial analysis
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Cell cycle-dependent changes in Golgi stacks, vacuoles, clathrin-coated vesicles and multivesicular bodies in meristematic cells of Arabidopsis thaliana: A quantitative and spatial analysis

机译:拟南芥分生细胞中高尔基体堆积,液泡,网格蛋白包被的囊泡和多囊泡体中细胞周期依赖性变化:定量和空间分析

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Cytokinesis in plants involves both the formation of a new wall and the partitioning of organelles between the daughter cells. To characterize the cellular changes that accompany the latter process, we have quantitatively analyzed the cell cycle-dependent changes in cell architecture of shoot apical meristem cells of Arabidopsis thaliana. For this analysis, the cells were preserved by high-pressure freezing and freeze-substitution techniques, and their Golgi stacks, multivesicular bodies, vacuoles and clathrin-coated vesicles (CCVs) characterized by means of serial thin section reconstructions, stereology and electron tomography techniques. Interphase cells possess ∼35 Golgi stacks, and this number doubles during G2 immediately prior to mitosis. At the onset of cytokinesis, the stacks concentrate around the periphery of the growing cell plate, but do not orient towards the cell plate. Interphase cells contain ∼18 multivesicular bodies, most of which are located close to a Golgi stack. During late cytokinesis, the appearance of a second group of cell plate-associated multivesicular bodies coincides with the onset of CCV formation at the cell plate. During this period a 4× increase in CCVs is paralleled by a doubling in number and a 4× increase in multivesicular bodies volume. The vacuole system also undergoes major changes in organization, size, and volume, with the most notable change seen during early telophase cytokinesis. In particular, the vacuoles form sausage-like tubular compartments with a 50% reduced surface area and an 80% reduced volume compared to prometaphase cells. We postulate that this transient reduction in vacuole volume during early telophase provides a means for increasing the volume of the cytosol to accommodate the forming phragmoplast microtubule array and associated cell plate-forming structures.
机译:植物的细胞分裂涉及新壁的形成和子细胞之间细胞器的分配。为了表征伴随后一个过程的细胞变化,我们定量分析了拟南芥茎尖分生组织细胞的细胞周期依赖性变化。为了进行此分析,通过高压冷冻和冷冻替代技术保存了细胞,并通过连续的薄层重建,立体学和电子断层扫描技术表征了它们的高尔基堆积,多囊小体,液泡和网格蛋白包被的囊泡(CCV)。 。间期细胞拥有约35个高尔基体堆积,在有丝分裂之前的G2期间,这个数目增加了一倍。在胞质分裂开始时,堆叠物集中在生长中的细胞板的周围,但不朝向细胞板。间期细胞含有约18个多囊泡小体,大多数位于高尔基体堆附近。在晚期胞质分裂期间,第二组与细胞板相关的多囊泡体的出现与在细胞板上CCV形成的发生相吻合。在此期间,CCV的增加是4倍,而多囊泡的体积则增加了4倍。液泡系统还发生组织,大小和体积的重大变化,最显着的变化是在早期末期细胞分裂期间。特别地,与前中期细胞相比,这些液泡形成香肠状的管状隔室,其表面积减少了50%,体积减少了80%。我们假定在早期末期空泡体积的这种瞬时减少提供了一种增加胞质溶胶体积的方法,以适应形成的芦苇微管阵列和相关的细胞板形成结构。

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