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Variable tree rooting strategies are key for modelling the distribution, productivity and evapotranspiration of tropical evergreen forests

机译:可变树生根策略是建模分布,生产力和热带常绿森林的分布,生产力和蒸发的关键

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摘要

A variety of modelling studies have suggested tree rooting depth as a key variable to explain evapotranspiration rates, productivity and the geographical distribution of evergreen forests in tropical South America. However, none of those studies have acknowledged resource investment, timing and physical constraints of tree rooting depth within a competitive environment, undermining the ecological realism of their results. Here, we present an approach of implementing variable rooting strategies and dynamic root growth into the LPJmL4.0 (Lund-Potsdam-Jena managed Land) dynamic global vegetation model (DGVM) and apply it to tropical and sub-tropical South America under contemporary climate conditions. We show how competing rooting strategies which underlie the trade-off between above- and below-ground carbon investment lead to more realistic simulation of intra-annual productivity and evapotranspiration and consequently of forest cover and spatial biomass distribution. We find that climate and soil depth determine a spatially heterogeneous pattern of mean rooting depth and below-ground biomass across the study region. Our findings support the hypothesis that the ability of evergreen trees to adjust their rooting systems to seasonally dry climates is crucial to explaining the current dominance, productivity and evapotranspiration of evergreen forests in tropical South America.
机译:各种建模研究提出了树根深度作为一个关键变量,以解释热带南美洲常绿森林的蒸发率,生产力和常绿林的地理分布。然而,这些研究都不是在竞争环境中承认树生根深度的资源投资,时序和身体限制,破坏了结果的生态现实主义。在这里,我们提出了一种实现变量生根策略和动态根增长的方法,进入LPJML4.0(Lund-Potsdam-jena管理土地)动态全球植被模型(DGVM),并在当代气候下将其应用于热带和潜水南美洲条件。我们展示了竞争对手的竞争对手的竞争对手如何在和地下碳投资之间进行权衡导致年度生产力和蒸散和血液覆盖和空间生物量分布的更现实的模拟。我们发现气候和土壤深度在整个研究区确定了平均生根深度和地下生物量的空间异质模式。我们的调查结果支持常绿树木将生根系统调整为季节性干气的假设至关重要,这对于解释热带南美洲常绿森林的当前优势,生产力和蒸发性至关重要。

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