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首页> 外文期刊>Scientific reports. >Nutrient-cycling mechanisms other than the direct absorption from soil may control forest structure and dynamics in poor Amazonian soils
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Nutrient-cycling mechanisms other than the direct absorption from soil may control forest structure and dynamics in poor Amazonian soils

机译:除了土壤中直接吸收以外的营养循环机制可能控制贫困亚马逊土壤中的森林结构和动态

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34 000 trees from several permanent plots in French Guiana to investigate if soil characteristics could predict the structure (tree diameter, density and aboveground biomass), and dynamics (growth, mortality, aboveground wood productivity) of nutrient-poor tropical forests. Most variables did not covary with site-level changes in soil nutrient content, indicating that nutrient-cycling mechanisms other than the direct absorption from soil (e.g. the nutrient uptake from litter, the resorption, or the storage of nutrients in the biomass), may strongly control forest structure and dynamics. Ecosystem-level adaptations to low soil nutrient availability and long-term low levels of disturbance may help to account for the lower productivity and higher accumulation of biomass in nutrient-poor forests compared to nutrient-richer forests.
机译:来自法国圭亚那几棵永久性地块的34 000棵树调查土壤特性可以预测结构(树径,密度和地上生物量),以及营养贫乏热带森林的动态(生长,死亡率,地上木制生产率)。大多数变量与土壤养分含量的现场水平变化没有Covary,表明除了土壤中直接吸收以外的营养 - 循环机制(例如来自垃圾中的营养物,吸收或生物质中营养物质的储存),可能强烈控制森林结构和动态。与营养丰富的森林相比,生态系统水平适应低土壤养分可用性和长期低水平的干扰可能有助于考虑营养不良森林中的生物质的生产率降低和较高积累。

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