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Tensile and compressive stresses in tracheids are induced by swelling based on geometrical constraints of the wood cell

机译:基于木材细胞的几何约束,溶胀会引起气管中的拉应力和压应力

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摘要

Plants are able to pre-stress their tissues in order to actuate their organs. Here, we demonstrate with two tissue types of the secondary xylem of conifers (normal wood and compression wood of spruce (Picea abies)) that either tensile or compressive stresses can develop in the longitudinal direction during the swelling of the cell wall. This dramatic difference appears to be due mostly to differences in cell geometry and cellulose fibril orientation. A mechanical model was developed to demonstrate swelling experiments with the help of sodium iodide experiments. The reversal of longitudinal extension can be predicted, based on the orientation of the (nearly inextensible) cellulose fibrils and the shape of the cell.
机译:植物能够对它们的组织进行预应力以激活它们的器官。在这里,我们用两种组织类型的针叶树次生木质部(普通木材和云杉压缩木材(Picea abies))证明,在细胞壁膨胀期间,纵向或纵向都可能产生拉应力或压应力。这种显着差异似乎主要归因于细胞几何结构和纤维素原纤维取向的差异。建立了机械模型以借助碘化钠实验证明溶胀实验。基于(几乎不可伸长的)纤维素原纤维的取向和细胞的形状,可以预测纵向延伸的逆转。

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