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Cell wall extensibility during branch formation in the xanthophycean alga Vaucheria terrestris

机译:黄藻藻类Vaucheria terrestris中分支形成过程中的细胞壁可扩展性

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摘要

In the tip-growing filamentous cell of the xanthophycean alga Vaucheria terrestris sensu G?tz, a new growing tip develops in the non-growing, cylindrical region of the cell that was exposed by local illumination. The present study examined changes in the strength and extensibility of the cell wall of the new growing tip and in the matrix components of the inner surface of the cell wall. The internal pressure required to rupture the cell walls decreased remarkably during the early to middle stages of growing tip development, but the cell wall hardly extended before rupture. In contrast, during the middle and late stages of development, cell walls were extended by internal pressure. Atomic force microscopy revealed that protease-resistant, fine granular matrix components were present only at the apical portion of a normal growing tip, and were absent in the non-growing cylindrical region. In the early and middle stages of new growing tip development, these matrix components appeared in the cell walls in patches. These results suggest that first cell wall strength decreases and then cell wall extensibility increases in the development of new growing tips, and that protease-resistant, fine granular matrix components may be involved in rendering a cell wall extensible.
机译:在黄腐藻藻Vaucheria terrestris sensu G?tz的尖端生长的丝状细胞中,在未生长的圆柱形区域中出现了新的生长尖端,该区域被局部照明暴露。本研究检查了新生长尖端细胞壁的强度和可扩展性以及细胞壁内表面的基质成分的变化。在尖端生长的早期到中期,使细胞壁破裂所需的内部压力显着降低,但在破裂前细胞壁几乎不延伸。相反,在发育的中后期,细胞壁会因内部压力而延长。原子力显微镜显示,耐蛋白酶的细颗粒状基质成分仅存在于正常生长尖端的顶端,而在非生长圆柱形区域则不存在。在新的尖端发展的早期和中期,这些基质成分以斑块的形式出现在细胞壁中。这些结果表明,在新的生长尖端的发展中,细胞壁强度首先降低,然后细胞壁可扩展性增加,并且耐蛋白酶的细颗粒基质成分可能参与了细胞壁的可扩展性发展。

著录项

  • 来源
    《Planta》 |2007年第4期|971-979|共9页
  • 作者单位

    Graduate School of Kuroshio Science Kochi University 2-5-1 Akebono-cho Kochi 780-8520 Japan;

    Department of Natural Environmental Science Faculty of Science Kochi University 2-5-1 Akebono-cho Kochi 780-8520 Japan;

    Graduate School of Kuroshio Science Kochi University 2-5-1 Akebono-cho Kochi 780-8520 Japan;

    Graduate School of Kuroshio Science Kochi University 2-5-1 Akebono-cho Kochi 780-8520 Japan;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Atomic force microscopy; Cell wall; Cellulose microfibril; Extensibility; Strength; Morphogenesis;

    机译:原子力显微镜;细胞壁;纤维素微纤维;可扩展性;强度;形态发生;

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