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The rheology of a growing leaf: stress-induced changes in the mechanical properties of leaves

机译:叶片生长的流变学:应力引起的叶片机械性能变化

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摘要

We study in situ the mechanics and growth of a leaf. Young Nicotiana tabacum leaves respond to applied mechanical stress by altering both their mechanical properties and the characteristics of their growth. We observed two opposite behaviours, each with its own typical magnitude and timescale. On timescales of the order of minutes, the leaf deforms in response to applied tensile stress. During this phase we found a high correlation between the applied stress field and the local strain field throughout the leaf surface. For times over 12 hours the mechanical properties of the leaf become anisotropic, making it more resilient to deformation and restoring a nearly isotropic growth field despite the highly anisotropic load. These observations suggest that remodelling of the tissue allows the leaf to respond to mechanical perturbations by changing its properties. We discuss the relevance of the observed behaviour to the growth regulation that leads to proper leaf shape during growth.
机译:我们就地研究叶片的力学和生长。烟草幼叶通过改变其机械特性和生长特性来响应施加的机械应力。我们观察到两种相反的行为,每种行为都有其自身的典型大小和时间范围。在几分钟的时间尺度上,叶片会因施加的拉应力而变形。在此阶段,我们发现整个叶片表面的应力场与局部应变场之间存在高度相关性。经过12个小时以上的时间,叶片的机械性能变得各向异性,尽管具有较高的各向异性载荷,但叶片对变形的抵抗力更强,恢复了几乎各向同性的生长场。这些观察结果表明,组织的重塑允许叶片通过改变其特性来响应机械扰动。我们讨论了观察到的行为与生长调节的相关性,该生长调节导致了生长过程中叶片的正确形状。

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