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Structural aspects of bulge formation during root hair initiation

机译:根发发起期间凸起形成的结构方面

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Using light and electron microscopy, the early stages of root hair initiation were investigated under control conditions and in a situation where F-actin polymerization was effectively inhibited by latrunculin B. Trichoblasts in their early stage of bulge formation possessed large vacuole traversed by cytoplasmic strands and enclosed within a narrow peripheral layer of cytoplasm. The nucleus was settled at the inner periclinal cell wall, typically opposite the site of bulge formation. Within the bulging area, dense cytoplasm and numerous ER elements, and other organelles were accumulated, together with pleiomorphic membrane-bound structures, the identity and nature of which will require further studies. These unusual structures, which were associated with the outer cell wall, contained material similar to that of the cell wall. Similar cell wall-like bodies were observed also in the cytoplasm and sometimes within vacuoles. The possible role of these novel organelles of plant cells in cell wall thinning/degradation or in the turgor pressure maintenance are discussed. Latrunculin B treatment allowed bulge formation but prevented the switch from the slow and diffuse expansion of bulge into the rapid tip-growth characteristic of the emerging root hair. Moreover, the cytoplasm of the bulging domain became extensively vacuolated and lacked abundant ER elements and other organelles including the membrane-bound structures. These results indicate important roles of F-actin in the switch from diffuse to highly polarized tip growth.
机译:使用光学和电子显微镜,根毛开始的早期阶段控制的条件下和在F-肌动蛋白的聚合是通过在其的隆起形成早期阶段有效地抑制latrunculin B. Trichoblasts的情况进行了研究具有大液泡通过胞质丝遍历封闭在细胞质的窄周层内。核在内膜细胞壁上沉淀,通常与凸起地层的位点相对。在凸出区域内,致密细胞质和许多ER元素,以及其他细胞器累积,与泻晶膜结合结构一起,其特性和性质将需要进一步研究。与外部电池壁相关联的这些不寻常的结构包含与细胞壁类似的材料。在细胞质中也观察到类似的细胞壁状体,有时在真空中观察。讨论了这些新颖的植物细胞在细胞壁稀疏/降解或粪鲁压力维护中的植物细胞的可能作用。 Latrunculin B处理允许凸起形成,但防止了从凸起的慢速和漫射膨胀的切换到新出现的根毛的快速尖端生长特性。此外,凸出结构域的细胞质变得广泛真空,并且缺乏具有膜结合结构的丰富元素和其他细胞器。这些结果表明F-Actin在从扩散到高偏振尖端生长的开关中的重要作用。

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