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Effects of inter-specific variability on biomass allocation: A hierarchical Bayesian approach

机译:种间变异性对生物量分配的影响:分级贝叶斯方法

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The partitioning of total biomass among plant organs (stem, leaf, root, and shoot, respectively) has been a central topic in functional ecology. Many studies referring to inter-specific biomass allocation mainly concentrate on the completely pooled data treating all species involved equivalently. Less work has incorporated species differences into such allocation patterns. In the present paper, we explored the potential effects of species variability on biomass allocation patterns in a hierarchical Bayesian framework, which assigned individual species separate allometric values, drawn from 'global' parameters on the community level. Results demonstrated that the inclusion of species identity could significantly decrease the allocation slopes compared to those from the corresponding non-hierarchical models on pooled data, and much less residual variation was left for hierarchical models. Our work exhibits the importance of species variability on biomass partition and the potential impact of sample size on allometric estimates, and indicates that the inclusion of certain complexity such as species difference is a necessary step to better understand the scaling theories in ecology.
机译:植物器官(分别为茎,叶,根和芽)中总生物量的分配一直是功能生态学的中心课题。关于种间生物量分配的许多研究主要集中在完全合并的数据上,这些数据平等地处理了所有物种。较少的工作将物种差异纳入这种分配模式。在本文中,我们探索了在贝叶斯框架下的物种变异性对生物量分配模式的潜在影响,该框架根据社区水平的“全局”参数为各个物种分配了单独的异速生长值。结果表明,与来自集合数据的相应非分层模型相比,包含物种同一性可以显着降低分配斜率,而对于分层模型,剩余变异少得多。我们的工作展示了物种变异性对生物量分配的重要性以及样本量对异速生长估计的潜在影响,并表明包括某些复杂性(例如物种差异)是更好地了解生态学规模理论的必要步骤。

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