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对比西非和亚马逊热带森林干旱梯度的碳循环。

Contrasting carbon cycle along tropical forest aridity gradients in West Africa and Amazonia.

机构信息

Environmental Change Institute, School of Geography and the Environment, University of Oxford, Oxford, United Kingdom.

Leverhulme Centre for Nature Recovery, University of Oxford, Oxford, United Kingdom.

出版信息

Nat Commun. 2024 Apr 11;15(1):3158. doi: 10.1038/s41467-024-47202-x.

Abstract

Tropical forests cover large areas of equatorial Africa and play a substantial role in the global carbon cycle. However, there has been a lack of biometric measurements to understand the forests' gross and net primary productivity (GPP, NPP) and their allocation. Here we present a detailed field assessment of the carbon budget of multiple forest sites in Africa, by monitoring 14 one-hectare plots along an aridity gradient in Ghana, West Africa. When compared with an equivalent aridity gradient in Amazonia, the studied West African forests generally had higher productivity and lower carbon use efficiency (CUE). The West African aridity gradient consistently shows the highest NPP, CUE, GPP, and autotrophic respiration at a medium-aridity site, Bobiri. Notably, NPP and GPP of the site are the highest yet reported anywhere for intact forests. Widely used data products substantially underestimate productivity when compared to biometric measurements in Amazonia and Africa. Our analysis suggests that the high productivity of the African forests is linked to their large GPP allocation to canopy and semi-deciduous characteristics.

摘要

热带森林覆盖了赤道非洲的大片地区,在全球碳循环中发挥着重要作用。然而,缺乏生物计量学测量来了解森林的总初级生产力 (GPP)、净初级生产力 (NPP) 和它们的分配。在这里,我们通过监测加纳西部沿干旱梯度的 14 个一公顷样地,对非洲多个森林地点的碳预算进行了详细的实地评估。与亚马逊地区的等效干旱梯度相比,研究中的西非森林通常具有更高的生产力和更低的碳利用效率 (CUE)。在中干旱的 Bobiri 站点,西非干旱梯度始终显示出最高的 NPP、CUE、GPP 和自养呼吸。值得注意的是,该地点的 NPP 和 GPP 是迄今为止在完整森林中报告的最高值。与亚马逊和非洲的生物计量测量相比,广泛使用的数据产品大大低估了生产力。我们的分析表明,非洲森林的高生产力与其将大量 GPP 分配给冠层和半落叶特征有关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c1b2/11009382/7b07f2205286/41467_2024_47202_Fig1_HTML.jpg

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