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Relationships among net primary productivity, nutrients and climate in tropical rain forest: A pan-tropical analysis

机译:热带雨林净初级生产力,养分与气候之间的关系:泛热带分析

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Tropical rain forests play a dominant role in global biosphere-atmosphere CO_2 exchange. Although climate and nutrient availability regulate net primary production (NPP) and decomposition in all terrestrial ecosystems, the nature and extent of such controls in tropical forests remain poorly resolved. We conducted a meta-analysis of carbon-nutrient-climate relationships in 113 sites across the tropical forest biome. Our analyses showed that mean annual temperature was the strongest predictor of aboveground NPP (ANPP) across all tropical forests, but this relationship was driven by distinct temperature differences between upland and lowland forests. Within lowland forests (<1000m), a regression tree analysis revealed that foliar and soil-based measurements of phosphorus (P) were the only variables that explained a significant proportion of the variation in ANPP, although the relationships were weak. However, foliar P, foliar nitrogen (N), litter decomposition rate (k), soil N and soil respiration were all directly related with total surface (0-10cm) soil P concentrations. Our analysis provides some evidence that P availability regulates NPP and other ecosystem processes in lowland tropical forests, but more importantly, underscores the need for a series of large-scale nutrient manipulations - especially in lowland forests - to elucidate the most important nutrient interactions and controls.
机译:热带雨林在全球生物圈-大气CO_2交换中起主导作用。尽管气候和养分的可利用性调节着所有陆地生态系统的净初级生产(NPP)和分解,但在热带森林中这种控制的性质和程度仍然难以解决。我们对热带森林生物群落中113个地点的碳-营养-气候关系进行了荟萃分析。我们的分析表明,年平均温度是所有热带森林中地上NPP(ANPP)的最强预测因子,但这种关系是由高地和低地森林之间明显的温度差异驱动的。在低地森林(<1000m)中,回归树分析表明,叶面和土壤中的磷(P)测量值是唯一解释了ANPP变化很大比例的变量,尽管这种关系很弱。然而,叶面磷,叶面氮(N),凋落物分解速率(k),土壤氮和土壤呼吸均与土壤总磷(0-10cm)浓度直接相关。我们的分析提供了一些证据,表明磷的可利用性调节着低地热带森林中的NPP和其他生态系统过程,但更重要的是,强调了一系列大规模养分操纵的需求-尤其是在低地森林中-阐明了最重要的养分相互作用和控制。

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