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Nodal Endoplasmic Reticulum a Specialized Form of Endoplasmic Reticulum Found in Gravity-Sensing Root Tip Columella Cells

机译:节点内质网内质的一种特殊形式 重力感应根尖小肠中发现的网状组织 细胞

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摘要

The endoplasmic reticulum (ER) of columella root cap cells has been postulated to play a role in gravity sensing. We have re-examined the ultrastructure of columella cells in tobacco (Nicotiana tabacum) root tips preserved by high-pressure freezing/freeze-substitution techniques to gain more precise information about the organization of the ER in such cells. The most notable findings are: the identification of a specialized form of ER, termed “nodal ER,” which is found exclusively in columella cells; the demonstration that the bulk of the ER is organized in the form of a tubular network that is confined to a peripheral layer under the plasma membrane; and the discovery that this ER-rich peripheral region excludes Golgi stacks, vacuoles, and amyloplasts but not mitochondria. Nodal ER domains consist of an approximately 100-nm-diameter central rod composed of oblong subunits to which usually seven sheets of rough ER are attached along their margins. These domains form patches at the interface between the peripheral ER network and the ER-free central region of the cells, and they occupy defined positions within central and flanking columella cells. Over one-half of the nodal ER domains are located along the outer tangential walls of the flanking cells. Cytochalasin D and latrunculin A cause an increase in size and a decrease in numbers of nodal ER domains. We postulate that the nodal ER membranes locally modulate the gravisensing signals produced by the sedimenting amyloplasts, and that the confinement of all ER membranes to the cell periphery serves to enhance the sedimentability of the amyloplasts in the central region of columella cells.
机译:假定小肠根冠细胞的内质网(ER)在重力感应中起作用。我们已经重新检查了通过高压冷冻/冷冻替代技术保存的烟草(Nicotiana tabacum)根尖中小肠细胞的超微结构,以获得有关此类细胞中ER组织的更精确信息。最值得注意的发现是:鉴定了专门形式的内质网,称为“淋巴内质网”,仅在小肠细胞中发现。证明大部分ER以管状网络的形式组织,并局限于质膜下方的外围层;并且发现这个富含ER的外围区域排除了高尔基体堆积,液泡和淀粉质体,但不包括线粒体。节点ER域由直径约100 nm的中心棒组成,该中心棒由长方形亚基组成,通常沿其边缘附着七张粗糙ER。这些域在外围ER网络与单元的无ER中心区域之间的接口处形成补丁,并且它们占据了中心内定义的位置 和侧翼小肠细胞。超过一半的节点ER域是 位于侧面细胞的外切向壁上。 细胞松弛素D和latrunculin A会导致大小增加, 节点ER域的数量减少。我们假设节点ER 膜局部调节由 沉积的淀粉体,以及所有ER膜的封闭 到细胞边缘的作用是增强细胞的沉降性 小肠细胞中央区域的淀粉状体。

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