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Quantifying the motor power of trees

机译:量化树木的电动机力量

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摘要

Trees have a motor system to enable upright growth in the field of gravity. This motor function is taken on by reaction wood, a special kind of wood that typically develops in leaning axes and generates mechanical force during its formation, curving up the stem and counteracting the effect of gravity or other mechanical disturbances. Quantifying the mechanical stress induced in wood during maturation is essential to many areas of research ranging from tree architecture to functional genomics. Here, we present a new method for quantifying wood maturation stress. It consists of tilting a tree, tying it to a stake, letting it grow in tilted position, and recording the change in stem curvature that occurs when the stem is released from the stake. A mechanical model is developed to make explicit the link between the change in curvature, maturation strain and morphological traits of the stem section. A parametric study is conducted to analyse how different parameters influence the change in curvature. This method is applied to the estimation of maturation strain in two different datasets. Results show that the method is able to detect genotypic variations in motor power expression. As predicted by the model, we observe that the change in stem curvature is correlated to stem diameter and diameter growth. In contrast, wood maturation strain is independent from these dimensional effects, and is suitable as an intrinsic parameter characterising the magnitude of the plant's gravitropic reaction.
机译:树木具有电动机系统,可以在重力领域实现直立的生长。该电机功能由反应木材采用,一种特殊的木材,通常在倾斜轴上开发并在其形成过程中产生机械力,弯曲杆并抵消重力或其他机械扰动的效果。在成熟期间量化在木材中诱导的机械应力对于从树架构到功能基因组学的许多研究领域至关重要。在这里,我们提出了一种用于量化木材成熟应力的新方法。它包括倾斜树,将其与股份中捆绑在一起,让它在倾斜位置生长,并在杆从股权释放时记录发生的茎曲率的变化。开发了一种机械模型以使曲率变化,茎截面的变化与茎段形态特征之间的联系。进行参数研究以分析不同的参数如何影响曲率变化。该方法应用于两个不同数据集中成熟应变的估计。结果表明,该方法能够检测电动机电力表达式的基因型变化。如模型所预测的,我们观察到茎曲率的变化与茎直径和直径生长相关。相比之下,木材成熟菌株与这些尺寸效应无关,并且适合作为表征植物重力反应的大小的内在参数。

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