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Variations in Amazon forest productivity correlated with foliar nutrients and modelled rates of photosynthetic carbon supply

机译:亚马逊森林生产力的变化与叶面养分和光合碳供应模型速率相关

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摘要

The rate of above-ground woody biomass production, WP, in some western Amazon forests exceeds those in the east by a factor of 2 or more. Underlying causes may include climate, soil nutrient limitations and species composition. In this modelling paper, we explore the implications of allowing key nutrients such as N and P to constrain the photosynthesis of Amazon forests, and also we examine the relationship between modelled rates of photosynthesis and the observed gradients in WP. We use a model with current understanding of the underpinning biochemical processes as affected by nutrient availability to assess: (i) the degree to which observed spatial variations in foliar [N] and [P] across Amazonia affect stand-level photosynthesis; and (ii) how these variations in forest photosynthetic carbon acquisition relate to the observed geographical patterns of stem growth across the Amazon Basin. We find nutrient availability to exert a strong effect on photosynthetic carbon gain across the Basin and to be a likely important contributor to the observed gradient in WP. Phosphorus emerges as more important than nitrogen in accounting for the observed variations in productivity. Implications of these findings are discussed in the context of future tropical forests under a changing climate.
机译:在亚马逊西部一些森林中,地上木质生物量的生产速度WP比东部高出2倍以上。根本原因可能包括气候,土壤养分限制和物种组成。在此建模论文中,我们探讨了允许诸如N和P等关键营养素约束亚马逊森林的光合作用的含义,并且我们还研究了光合作用的建模速率与观测到的WP梯度之间的关系。我们使用一个模型,该模型当前对受养分利用率影响的基础生化过程的了解,可以评估:(i)整个亚马逊地区叶片[N]和[P]的空间变化对林分水平光合作用的影响程度; (ii)森林光合作用碳获取的这些变化如何与整个亚马逊河流域观测到的茎生长的地理格局有关。我们发现养分的可利用性对整个盆地的光合碳吸收有很大影响,并且可能是观测到的WP梯度的重要贡献者。考虑到生产率的变化,磷比氮的重要性更高。在气候变化的情况下,在未来热带森林的背景下讨论了这些发现的含义。

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