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Quantifying the Variability of Internode Allometry within and between Trees for Pinus tabulaeformis Carr. Using a Multilevel Nonlinear Mixed-Effect Model

机译:量化油松树在树内和树之间的节间异位变异性。使用多级非线性混合效应模型

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摘要

Allometric models of internodes are an important component of Functional-Structural Plant Models (FSPMs), which represent the shape of internodes in tree architecture and help our understanding of resource allocation in organisms. Constant allometry is always assumed in these models. In this paper, multilevel nonlinear mixed-effect models were used to characterize the variability of internode allometry, describing the relationship between the last internode length and biomass of Pinus tabulaeformis Carr. trees within the GreenLab framework. We demonstrated that there is significant variability in allometric relationships at the tree and different-order branch levels, and the variability decreases among levels from trees to first-order branches and, subsequently, to second-order branches. The variability was partially explained by the random effects of site characteristics, stand age, density, and topological position of the internode. Tree- and branch-level-specific allometric models are recommended because they produce unbiased and accurate internode length estimates. The model and method developed in this study are useful for understanding and describing the structure and functioning of trees.
机译:节点间的异位模型是功能结构植物模型(FSPM)的重要组成部分,代表树木结构中节点间的形状,有助于我们了解生物体中的资源分配。在这些模型中始终假定恒定的异形体。本文采用多级非线性混合效应模型表征节点间异速生长的变异性,描述了油松最后节点间长度与生物量之间的关系。 GreenLab框架中的树。我们证明了在树和不同阶分支级别的异位关系中存在显着的可变性,并且可变性在从树到一阶分支以及随后到二阶分支的各个级别之间减小。变异性的部分原因是站点特征,林分年龄,密度和节间拓扑位置的随机影响。推荐使用特定于树和分支级别的异速测量模型,因为它们会产生无偏且准确的节点间长度估计。在这项研究中开发的模型和方法对于理解和描述树木的结构和功能很有用。

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