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The impact of alternative trait-scaling hypotheses for the maximum photosynthetic carboxylation rate (Vcmax) on global gross primary production

机译:最大光合羧化率(Vcmax)的替代性状尺度假设对全球初级总生产的影响

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摘要

The maximum photosynthetic carboxylation rate (Vcmax) is an influential plant trait that has multiple scaling hypotheses, which is a source of uncertainty in predictive understanding of global gross primary production (GPP).udFour trait-scaling hypotheses (plant functional type, nutrient limitation, environmental filtering, and plant plasticity) with nine specific implementations were used to predict global Vcmax distributions and their impact on global GPP in the Sheffield Dynamic Global Vegetation Model (SDGVM).udGlobal GPP varied from 108.1 to 128.2 PgC yr−1, 65% of the range of a recent model intercomparison of global GPP. The variation in GPP propagated through to a 27% coefficient of variation in net biome productivity (NBP). All hypotheses produced global GPP that was highly correlated (r = 0.85–0.91) with three proxies of global GPP.udPlant functional type-based nutrient limitation, underpinned by a core SDGVM hypothesis that plant nitrogen (N) status is inversely related to increasing costs of N acquisition with increasing soil carbon, adequately reproduced global GPP distributions. Further improvement could be achieved with accurate representation of water sensitivity and agriculture in SDGVM. Mismatch between environmental filtering (the most data-driven hypothesis) and GPP suggested that greater effort is needed understand Vcmax variation in the field, particularly in northern latitudes.
机译:最大光合羧化率(Vcmax)是一种有影响力的植物性状,具有多个尺度假设,这是对全球初级总产值(GPP)的预测理解的不确定性来源。 ud四个特征尺度假设(植物功能类型,养分限制) ,环境过滤和植物可塑性)以及9种具体实现方式用于预测谢菲尔德动态全球植被模型(SDGVM)中的全球Vcmax分布及其对全球GPP的影响。 ud全球GPP在108.1至128.2 PgC yr-1、65之间变化全球GPP近期模型比对范围的%。 GPP中的变化传播到净生物群落生产力(NBP)的27%变异系数。所有假设都产生了与全球GPP的三个代理高度相关的全球GPP(r = 0.85-0.91)。 ud基于SDGVM核心假设的植物功能型营养素限制与植物氮(N)状态与增加呈负相关随着土壤碳含量的增加而获得氮的成本,充分再现了全球GPP分布。通过在SDGVM中准确表示水敏感性和农业,可以实现进一步的改进。环境过滤(最受数据驱动的假设)与GPP之间的不匹配表明,需要更多的精力来了解野外的Vcmax变化,特别是在北纬地区。

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