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Disorganization of Cortical Microtubules Stimulates Tangential Expansion and Reduces the Uniformity of Cellulose Microfibril Alignment among Cells in the Root of Arabidopsis1

机译:皮质微管的混乱刺激切向扩展,并降低拟南芥1根细胞之间的纤维素微纤维排列的均匀性。

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摘要

To test the role of cortical microtubules in aligning cellulose microfibrils and controlling anisotropic expansion, we exposed Arabidopsis thaliana roots to moderate levels of the microtubule inhibitor, oryzalin. After 2 d of treatment, roots grow at approximately steady state. At that time, the spatial profiles of relative expansion rate in length and diameter were quantified, and roots were cryofixed, freeze-substituted, embedded in plastic, and sectioned. The angular distribution of microtubules as a function of distance from the tip was quantified from antitubulin immunofluorescence images. In alternate sections, the overall amount of alignment among microfibrils and their mean orientation as a function of position was quantified with polarized-light microscopy. The spatial profiles of relative expansion show that the drug affects relative elongation and tangential expansion rates independently. The microtubule distributions averaged to transverse in the growth zone for all treatments, but on oryzalin the distributions became broad, indicating poorly organized arrays. At a subcellular scale, cellulose microfibrils in oryzalin-treated roots were as well aligned as in controls; however, the mean alignment direction, while consistently transverse in the controls, was increasingly variable with oryzalin concentration, meaning that microfibril orientation in one location tended to differ from that of a neighboring location. This conclusion was confirmed by direct observations of microfibrils with field-emission scanning electron microscopy. Taken together, these results suggest that cortical microtubules ensure microfibrils are aligned consistently across the organ, thereby endowing the organ with a uniform mechanical structure.
机译:为了测试皮质微管在对准纤维素微纤维和控制各向异性膨胀中的作用,我们将拟南芥的根暴露于中等水平的微管抑制剂米扎林。处理2天后,根大约以稳定状态生长。那时,量化了长度和直径上相对膨胀率的空间分布,然后将根冷冻固定,冷冻取代,包埋在塑料中并切片。从抗微管蛋白免疫荧光图像中量化了微管的角分布与距尖端的距离的关系。在替代部分中,微纤维之间的总对准量及其作为位置的函数的平均取向用偏振光显微镜定量。相对膨胀的空间分布表明,药物独立地影响相对伸长率和切向膨胀率。在所有处理中,微管分布平均在生长区中呈横向,但在米杂素上分布变宽,表明排列不良。在亚细胞规模上,用米黄素处理过的根中的纤维素微纤维与对照中一样好;然而,平均排列方向虽然在对照中始终是横向的,但随着米杂素浓度的增加而越来越多地变化,这意味着一个位置的微原纤维取向倾向于与相邻位置的微纤维取向不同。通过场发射扫描电子显微镜对微纤维的直接观察证实了这一结论。综上所述,这些结果表明皮质微管确保微纤维在整个器官中一致地排列,从而使器官具有均匀的机械结构。

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