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How does bark contribution to postural control change during tree ontogeny? A study of six Amazonian tree species

机译:树皮发育过程中树皮对姿势控制的贡献如何变化?六种亚马逊树种的研究

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摘要

Recent works revealed that bark is able to produce mechanical stress to control the orientation of young tilted stems. Here we report how the potential performance of this function changes with stem size in six Amazonian species with contrasted bark anatomy. The potential performance of the mechanism depends both on the magnitude of bark stress and the relative thickness of the bark. We measured bark longitudinal residual strain and density, and the allometric relationship between bark thickness and stem radius over a gradient of tree sizes. Constant tensile stress was found in species that rely on bark for the control of stem orientation in young stages. Other species had increasing compressive stress, associated with increasing density attributed to the development of sclereids. Compressive stress was also associated with low relative bark thickness. The relative thickness of bark decreased with size in all species, suggesting that a reorientation mechanism based on bark progressively performs less well as the tree grows. However, greater relative thickness was observed in species with more tensile stress, thereby evidencing that this reduction in performance is mitigated in species that rely on bark for reorientation.
机译:最近的研究表明,树皮能够产生机械应力来控制年轻的倾斜茎的方向。在这里,我们报告了在具有对比性树皮解剖的六个亚马逊物种中,该功能的潜在性能如何随茎大小的变化而变化。该机制的潜在性能取决于树皮应力的大小和树皮的相对厚度。我们测量了树皮的纵向残余应变和密度,以及在树的大小梯度上树皮厚度与茎半径之间的异形关系。在年轻阶段依靠树皮控制茎方向的物种中发现了恒定的拉伸应力。其他物种的压应力增加,这归因于菌核的发展,密度增加。压应力还与较低的相对树皮厚度有关。在所有树种中,树皮的相对厚度均随大小而减小,这表明基于树皮的重新定向机制随着树的生长而逐渐表现不佳。但是,在具有更大拉应力的物种中观察到了更大的相对厚度,从而证明在依赖树皮进行重新定向的物种中,这种性能下降得到了缓解。

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