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Movement and regeneration of epicuticular waxes through plant cuticles

机译:表皮蜡通过植物表皮的运动和再生

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摘要

Regeneration of plant epicuticular waxes was studied in 24 plant species by high-resolution scanning electron microscopy. According to their regeneration behaviour, four groups could be distinguished: (i) regeneration occurs at all stages of development; (ii) regeneration occurs only during leaf expansion; (iii) regeneration occurs only in fully developed leaves; (iv) plants were not able to regenerate wax. Wax was removed from the leaves with water-based glue and a liquid polymer, i.e. water-based polyurethane dispersion. In young leaves these coverings could not be removed without damaging the leaves. After a few days, waxes appeared on the surface of these polymer films, which still adhered to the leaves. It is concluded that waxes move through the cuticle in a process similar to steam distillation. This hypothesis could be further substantiated in refined in vitro experiments. Wax isolated from Eucalyptus globulus was applied to a filter paper, subsequently covered with a liquid polymer and fixed onto a diffusion chamber filled with water. The diffusion chamber was put into a desiccator. After 8–10 days at room temperature, crystals similar in dimensions and shape to in situ crystals appeared on the surface of the polyurethane film. This indicates that waxes in molecular dimensions move together with the water vapor that permeates through the polymer membrane. Based on these results, we propose a new and simple hypothesis for the mechanism of wax movement: the molecules that finally form the epicuticular wax crystals are moved in the cuticular water current.
机译:通过高分辨率扫描电子显微镜研究了24种植物表皮蜡的再生。根据它们的再生行为,可以将其分为四类:(i)再生发生在发育的各个阶段; (ii)仅在叶片膨胀期间发生再生; (iii)再生仅发生在完全发育的叶片中; (iv)植物无法再生蜡。用水基胶和液体聚合物即水基聚氨酯分散体从叶上除去蜡。在幼叶中,如果不损坏叶片就不能除去这些覆盖物。几天后,在这些聚合物薄膜的表面上出现了蜡,这些蜡仍然粘附在叶片上。结论是蜡以类似于蒸汽蒸馏的过程在角质层中移动。这个假设可以在完善的体外实验中得到进一步证实。将从桉树球中分离出的蜡涂到滤纸上,随后用液态聚合物覆盖并固定在充满水的扩散室中。将扩散室放入干燥器中。在室温下8-10天后,在尺寸和形状上与原位晶体相似的晶体出现在聚氨酯膜的表面。这表明蜡在分子尺寸上与渗透通过聚合物膜的水蒸气一起移动。基于这些结果,我们提出了蜡运动机理的一个新的简单假设:最终形成表皮蜡晶体的分子在表皮水流中移动。

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  • 来源
    《Planta》 |2001年第3期|427-434|共8页
  • 作者单位

    Botanisches Institut und Botanischer Garten der Universität Meckenheimer Allee 170 53115 Bonn Germany;

    Botanisches Institut und Botanischer Garten der Universität Meckenheimer Allee 170 53115 Bonn Germany;

    Botanisches Institut und Botanischer Garten der Universität Meckenheimer Allee 170 53115 Bonn Germany;

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

    Cuticle (plant) Epicuticular wax Regeneration (cuticle) Self-assembly;

    机译:表皮(植物)表皮蜡再生(表皮)自组装;

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