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Parallel functional and stoichiometric trait shifts in South American and African forest communities with elevation

机译:南美和非洲森林群落功能和化学计量特性的平行变化

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pstrongAbstract./strong The Amazon and Congo basins are the two largest continuous blocks of tropical forest with a central role for global biogeochemical cycles and ecology. However, both biomes differ in structure and species richness and composition. Understanding future directions of the response of both biomes to environmental change is paramount. We used one elevational gradient on both continents to investigate functional and stoichiometric trait shifts of tropical forest in South America and Africa. We measured community-weighted functional canopy traits and canopy and topsoil i?′/isup15/supN signatures. We found that the functional forest composition response along both transects was parallel, with a shift towards more nitrogen-conservative species at higher elevations. Moreover, canopy and topsoil i?′/isup15/supN signals decreased with increasing altitude, suggesting a more conservative N cycle at higher elevations. This cross-continental study provides empirical indications that both South American and African tropical forest show a parallel response with altitude, driven by nitrogen availability along the elevational gradients, which in turn induces a shift in the functional forest composition. More standardized research, and more research on other elevational gradients is needed to confirm our observations./p.
机译:> >摘要。亚马逊盆地和刚果盆地是热带森林的两个最大的连续块体,在全球生物地球化学循环和生态学中发挥着核心作用。但是,两个生物群落的结构和物种丰富度与组成均不同。了解两个生物群落对环境变化的响应的未来方向至关重要。我们在两个大陆上使用一个海拔梯度来调查南美和非洲热带森林的功能和化学计量特征变化。我们测量了社区加权的功能性树冠特征以及冠层和表层土壤?′ 15 N签名。我们发现,沿两个样带的功能性森林组成响应是平行的,并且在更高海拔向更保氮的物种转移。此外,冠层和表层土壤?′ 15 N信号随着海拔的升高而降低,表明在更高的海拔高度,N循环更加保守。这项跨大陆的研究提供了经验证据,表明南美和非洲热带森林都显示出与海拔高度平行的响应,这是由海拔高度梯度上的氮可利用性驱动的,而氮的有效利用又反过来引起功能性森林组成的变化。需要更多的标准化研究,以及更多有关其他海拔梯度的研究来证实我们的观察结果。

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