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Evaluating Ecohydrological Theories of Woody Root Distribution in the Kalahari

机译:卡拉哈里木本根分布的生态水文理论评价

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摘要

The contribution of savannas to global carbon storage is poorly understood, in part due to lack of knowledge of the amount of belowground biomass. In these ecosystems, the coexistence of woody and herbaceous life forms is often explained on the basis of belowground interactions among roots. However, the distribution of root biomass in savannas has seldom been investigated, and the dependence of root biomass on rainfall regime remains unclear, particularly for woody plants. Here we investigate patterns of belowground woody biomass along a rainfall gradient in the Kalahari of southern Africa, a region with consistent sandy soils. We test the hypotheses that (1) the root depth increases with mean annual precipitation (root optimality and plant hydrotropism hypothesis), and (2) the root-to-shoot ratio increases with decreasing mean annual rainfall (functional equilibrium hypothesis). Both hypotheses have been previously assessed for herbaceous vegetation using global root data sets. Our data do not support these hypotheses for the case of woody plants in savannas. We find that in the Kalahari, the root profiles of woody plants do not become deeper with increasing mean annual precipitation, whereas the root-to-shoot ratios decrease along a gradient of increasing aridity.
机译:稀树草原对全球碳储量的贡献知之甚少,部分原因是缺乏对地下生物量的了解。在这些生态系统中,经常根据根系之间的地下相互作用来解释木质和草本生命形式的共存。然而,很少研究稀树草原中根生物量的分布,并且根生物量对降雨状况的依赖性仍然不清楚,特别是对于木本植物。在这里,我们调查了非洲南部喀拉哈里沙漠(土壤一致的地区)沿降雨梯度的地下木质生物量模式。我们检验了以下假设:(1)根深随年平均降水量增加(根系最优性和植物亲水性假设),(2)根茎比随年均降水量减少而增加(功能平衡假设)。先前已经使用全局根数据集对这两种假设进行了草本植物评估。我们的数据不支持稀树草原中木本植物的这些假设。我们发现在卡拉哈里(Kalahari),木本植物的根部轮廓不会随着年均降水量的增加而变得更深,而根与茎比则随着干旱的增加而降低。

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