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Tree roots as self-similar branching structures: axis differentiation and segment tapering in coarse roots of three boreal forest tree species

机译:树根为自相似的分支结构:三种北方林木树种的粗根中的轴分化和节锥化

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We applied a fractal root model to the 3D architecture of the coarse root systems of Betula pendula Roth, Picea abies (L.) H. Karst., and Pinus sylvestris L. in mixed boreal forests. Our dataset consisted of 60 root systems excavated in five different mixed forest stands. We analyzed the variability of the model parameters with respect to species, site type, and different root axes. According to our results, the cross-sectional area of root segments (i.e. second power of diameter) was a suitable variable for analyzing the values of parameters of the fractal model. The parameter values varied with generation and order of root segments; the roots thus did not follow the simple fractal branching. The variation of parameters along the root axes showed the existence of a zone of rapid tapering in all tree species. The model was, with parameter values analyzed from the data, moderately capable of accounting for the main coarse root characteristics. It was important for model predictions to take into account the tapering of root segments. We conclude that, in boreal forests, tree root systems are the output of the axis-specific morphogenetic branching rules and functional adaptation to spatial heterogeneity in the soil.
机译:我们将分形根模型应用于混合北方森林中的桦木,白云杉(L.)H. Karst。和樟子松的粗根系统的3D体系结构。我们的数据集由在五个不同的混交林林中挖掘的60个根系组成。我们分析了有关物种,站点类型和不同根轴的模型参数的变异性。根据我们的结果,根段的横截面面积(即直径的二次方)是分析分形模型参数值的合适变量。参数值随根段的生成和顺序而变化。因此,根不遵循简单的分形分支。沿根轴的参数变化表明在所有树种中都存在一个快速变细的区域。该模型具有从数据中分析出的参数值,能够适当地解释主要的粗根特征。对于模型预测,重要的是要考虑到根段的逐渐变细。我们得出的结论是,在北方森林中,树根系统是特定于轴的形态发生分支规则的输出,是土壤中空间异质性的功能适应。

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