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Does spatial distribution of tree size account for spatial variation in soil respiration in a tropical forest?

机译:树大小的空间分布是否解释了热带森林中土壤呼吸的空间变化?

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We explored the relationship between soil processes, estimated through soil respiration (Rsoil), and the spatial variation in forest structure, assessed through the distribution of tree size, in order to understand the determinism of spatial variations in Rsoil in a tropical forest. The influence of tree size was examined using an index (Ic) calculated for each tree as a function of (1) the trunk cross section area and (2) the distance from the measurement point. We investigated the relationships between Ic and litterfall, root mass and Rsoil, respectively. Strong significant relationships were found between Ic and both litterfall and root mass. Rsoil showed a large range of variations over the 1-ha experimental plot, from 1.5 to 12.6 gC m-2 d-1. The best relationship between Ic and Rsoil only explained 17% of the spatial variation in Rsoil. These results support the assumption that local spatial patterns in litter production and root mass depend on tree distribution in tropical forests. Our study also emphasizes the modest contribution of tree size distribution-which is mainly influenced by the presence of the biggest trees (among the large range size of the inventoried trees greater than 10 cm diameter at 1.30 m above ground level or at 0.5 m above the buttresses)-in explaining spatial variations in Rsoil.
机译:我们探索了通过土壤呼吸( R 土壤 )估算的土壤过程与通过分布评估的森林结构空间变化之间的关系。树大小,以了解热带森林中 R 土壤 中空间变化的确定性。使用为每棵树计算的索引( I c )作为(1)树干横截面的函数来检查树大小的影响面积和(2)距测量点的距离。我们调查了 I c 与凋落物,根质量和 R 土壤之间的关系< / sub> 。在 I c 与凋落物和根系质量之间发现强烈的显着关系。 R 土壤 在1-ha实验区中显示出很大的变化范围,从1.5至12.6 g C m -2 d -1 。 I c 与 R 土壤 的最佳关系>仅解释了 R 土壤 中17%的空间变化。这些结果支持这样的假设,即凋落物产量和根质量的局部空间模式取决于热带森林中的树木分布。我们的研究还强调了树木大小分布的适度贡献-这主要受最大树木的存在影响(在高于地面1.30 m或高于地面0.5 m处直径大于10 cm的清单树木的大范围尺寸中)支撑)-解释 R 土壤 中的空间变化。

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