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Mechanical analysis of the strains generated by water tension in plant stems. Part I: stress transmission from the water to the cell walls

机译:对植物茎中水张力产生的菌株进行力学分析。第一部分:应力从水到细胞壁的传递

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摘要

Plant tissues shrink and swell in response to changes in water pressure. These strains can be easily measured, e.g., at the surface of tree stems, to obtain indirect information about plant water status and other physiological parameters. We developed a mechanical model to clarify how water pressure is transmitted to cell walls and causes shrinkage of plant tissues, particularly in the case of thick-walled cells such as wood fibers. Our analysis shows that the stress inside the fiber cell walls is lower than the water tension. The difference is accounted for by a stress transmission factor that depends on two main effects. The first effect is the dilution of the stress through the cell wall, because water acts at the lumen border and is transmitted to the outer border of the cell, which has a larger circumference. The second effect is the partial conversion of radial stress into tangential stress. Both effects are quantified as functions of parameters of the cell wall structure and its mechanical properties.
机译:植物组织响应水压的变化而收缩和膨胀。可以容易地在例如树的茎表面处测量这些菌株,以获得关于植物水分状况和其他生理参数的间接信息。我们开发了一个机械模型来阐明水压如何传递到细胞壁并引起植物组织收缩,特别是在木质纤维等厚壁细胞的情况下。我们的分析表明,纤维细胞壁内的应力低于水张力。差异是由应力传递因子引起的,应力传递因子取决于两个主要影响。第一个作用是稀释通过细胞壁的应力,因为水在管腔边界处起作用并传输到具有较大周长的细胞外部边界。第二个效果是将径向应力部分转换为切向应力。两种效应都被量化为细胞壁结构及其机械性能参数的函数。

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  • 来源
    《Tree Physiology》 |2007年第11期|1505-1516|共12页
  • 作者单位

    INRA-UMR Ecofog Campus Agronomique BP 316 97379 Kourou Cedex French Guiana France;

    Corresponding author t_almeras{at}hotmail.com;

    LMGC Université Montpellier 2 Montpellier France;

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  • 正文语种 eng
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