Jackson W T, Doyle B G
J Cell Biol. 1982 Sep;94(3):637-43. doi: 10.1083/jcb.94.3.637.
Membranes in cell-wall-free dividing endosperm cells of Haemanthus were examined after postfixation with osmium tetroxide-potassium ferrocyanide. We found that preservation and staining of membranes in metaphase cells was highly variable. Even adjacent cells often showed different degrees of preservation of membrane. However, this method does reveal a much more extensive membrane system in the mitotic spindle of Haemanthus than has been revealed previously using glutaraldehyde-osmium fixation. At prometaphase a system of membranes becomes associated with the kinetochore bundles. By metaphase, membranes constitute a prominent feature of kinetochore bundles, terminating near the kinetichores. Minipoles, identified by converging microtubules and associated membranes, are distributed in a zone extending laterally across the polar regions of the cell. The microtubules appear to terminate at the minipoles, whereas the membrane system becomes oriented generally perpendicular to the spindle axis and interfaces distally with a region of amorphous electron-dense material, helical polyribosomes, and cell organelles. The role of this extensive membrane system, if any, in chromosome movement is unknown. However, its distribution is coincident with the distribution of calcium-rich membranes and kinetochore fibers at metaphase in these cells (Wolniak, S. M., P. K. Hepler, and W. T. Jackson, 1981, Eur. J. Cell Biol., 25:171-174). Thus, these membranes may function in creating calcium domains that, in turn, may play a regulatory role in chromosome movement.
用四氧化锇 - 亚铁氰化钾后固定处理后,对海红豆无细胞壁分裂胚乳细胞中的膜进行了检查。我们发现中期细胞中膜的保存和染色情况差异很大。即使相邻细胞,膜的保存程度也常常不同。然而,与之前使用戊二醛 - 锇固定方法相比,这种方法确实揭示出海红豆有丝分裂纺锤体中存在更广泛的膜系统。在有丝分裂前期,一个膜系统与动粒束相关联。到中期时,膜成为动粒束的一个显著特征,在动粒附近终止。通过汇聚的微管和相关膜确定的微极,分布在横向穿过细胞极区的一个区域。微管似乎在微极处终止,而膜系统通常与纺锤体轴垂直排列,并且在远端与无定形电子致密物质、螺旋状多核糖体和细胞器区域相接触。这个广泛的膜系统(如果有作用的话)在染色体移动中的作用尚不清楚。然而,它的分布与这些细胞中期富含钙的膜和动粒纤维的分布一致(Wolniak, S. M., P. K. Hepler, and W. T. Jackson, 1981, Eur. J. Cell Biol., 25:171 - 174)。因此,这些膜可能在形成钙结构域中发挥作用,而钙结构域反过来可能在染色体移动中起调节作用。