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Wind loads and competition for light sculpt trees into self-similar structures

机译:风荷载与轻雕刻树竞争成自相似结构

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摘要

Trees are self-similar structures: their branch lengths and diameters vary allometrically within the tree architecture, with longer and thicker branches near the ground. These tree allometries are often attributed to optimisation of hydraulic sap transport and safety against elastic buckling. Here, we show that these allometries also emerge from a model that includes competition for light, wind biomechanics and no hydraulics. We have developed MECHATREE, a numerical model of trees growing and evolving on a virtual island. With this model, we identify the fittest growth strategy when trees compete for light and allocate their photosynthates to grow seeds, create new branches or reinforce existing ones in response to wind-induced loads. Strikingly, we find that selected trees species are self-similar and follow allometric scalings similar to those observed on dicots and conifers. This result suggests that resistance to wind and competition for light play an essential role in determining tree allometries.
机译:树木是自相似的结构:其树枝的长度和直径在树木结构中呈等距变化,靠近地面的树枝越来越长。这些树的异形通常归因于水力树液运输的优化和抗弹性屈曲的安全性。在这里,我们证明了这些同构几何也来自一个模型,该模型包括对光,风力生物力学和无水力的竞争。我们开发了MECHATREE,这是在虚拟岛屿上生长和进化的树木的数值模型。借助该模型,我们可以确定树木争夺光的最合适的生长策略,并分配其光合产物来生长种子,创建新树枝或加固现有树枝以应对风荷载。令人惊讶的是,我们发现选定的树种是自相似的,并且遵循与双子叶植物和针叶树上观察到的异度缩放比例相似。该结果表明,抗风和抗光竞争在确定树木的异型性方面起着至关重要的作用。

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