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Height-diameter Relationships in Longleaf Pine and Four Swamp Tree Species

机译:长叶松树和四种沼泽树种的高度-直径关系

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The scaling relationship between height and diameter is important for understanding the dynamic patterns of tree growth and estimating the accrual of tree biomass. Metabolic ecology predicts that tree growth follows a universal scaling invariant relative to the height-diameter relationship (i.e., no variation based on taxonomy or resource availability). Comparing field data for different tree species across a range of site conditions should be an informative test of that prediction. Our results indicate that the scaling exponents of height and diameter for longleaf pine (Pinus palustris Mill.) vary at the four locations across its natural range. As for swamp trees, the scaling exponents for red maple (Acer rubrum L.) and river birch (Betula nigra L.) were consistent with that predicted by metabolic ecology; however, those for water tupelo (Nyssa aquatica L.) and bald cypress (Taxodium distichum (L.) Rich) were not. Our study confirms that high plasticity and variation in allometric scaling of the tree height and diameter relationship may very well be the rule, rather than the exception.
机译:高度和直径之间的比例关系对于理解树木生长的动态模式和估计树木生物量的累积非常重要。代谢生态学预测树木的生长遵循相对于高度-直径关系的普遍缩放不变(即,没有基于分类或资源可用性的变化)。比较各种地点条件下不同树种的田间数据应该是对该预测的有益测试。我们的结果表明,长叶松树(Pinus palustris Mill。)的高度和直径的缩放指数在其自然范围的四个位置上都不同。至于沼泽树木,红枫(Acer rubrum L.)和桦木(Betula nigra L.)的缩放指数与代谢生态学预测的一致。但是,水图珀洛(Nyssa aquatica L.)和秃柏(Taxodium distichum(L.)Rich)却没有。我们的研究证实,树的高度和直径关系的高度可塑性和异度缩放比例的变化很可能是规则,而不是例外。

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