Department of Experimental Botany, University of Nijmegen, Toernooiveld, NL-6525 ED, Nijmegen, The Netherlands.
Planta. 1990 Aug;182(1):1-8. doi: 10.1007/BF00239976.
The deposition of nascent cellulose microfibrils (CMFs) was studied in the walls of cortical cells in explants of Nicotiana tabacum L. flower stalks. In freshly cut explants the CMFs were deposited in two distinct and alternating orientations - all given with respect to the longitudinal axis of the cell -, at 75° and 115°, in a left-handed (S-helix) and right-handed (Z-helix) form, respectively. The CMFs deposited in these orientations did not form uninterrupted layers, but sheets in which both orientations were present. After explantation, the synthesis of CMFs and their deposition in bundles continued. New orientations occurred within 6 h. After 6 h a new sheet was deposited, with orientations of 15° (S-helix) and 165° (Z-helix). The changes could be seen as sudden bends in individual CMFs or in small bundles of CMFs. In the next stage, more CMFs were deposited with these new orientations and the bundles became larger. New orientations arose by a shift towards more longitudinal directions, starting from either the S-helix or the Z-helix form. It was only after an almost longitudinal orientation was reached that the CMFs were deposited in two opposing directions again and a new sheet was formed. Neither colchicine nor cremart influenced the changes in CMF deposition. It is concluded that microtubules do not control CMF deposition in cortical cells of tobacco explants; control of CMF deposition and microtubule orientation occurs by factors related to cell polarity.
初生纤维素微纤丝(CMFs)在烟草花梗外植体皮层细胞壁中的沉积。在刚切下的外植体中,CMFs 以两种明显且交替的取向沉积——均相对于细胞的长轴给出,分别为 75°和 115°,呈左手(S 螺旋)和右手(Z 螺旋)形式。以这些取向沉积的 CMFs 没有形成连续的层,而是形成了两种取向都存在的片层。外植体化后,CMFs 的合成和束状沉积仍在继续。新的取向在 6 小时内发生。6 小时后,沉积了一个新的片层,取向为 15°(S 螺旋)和 165°(Z 螺旋)。这些变化可以被视为单个 CMF 或小束 CMF 的突然弯曲。在下一个阶段,更多的 CMFs 以这些新的取向沉积,束变得更大。新的取向通过从 S 螺旋或 Z 螺旋形式向更纵向的方向转变而产生。只有当几乎达到纵向取向时,CMFs 才会再次以相反的两个方向沉积,并形成一个新的片层。秋水仙素和 cremart 都不会影响 CMF 沉积的变化。因此得出结论,微管并不控制烟草外植体皮层细胞中 CMF 的沉积;CMF 沉积和微管取向的控制是通过与细胞极性相关的因素实现的。