Abstract
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). Four 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). Global 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. Plant 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.
Original language | English |
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Pages (from-to) | 1370-1386 |
Number of pages | 17 |
Journal | New Phytologist |
Volume | 215 |
Issue number | 4 |
DOIs | |
State | Published - Sep 2017 |
Funding
Funders | Funder number |
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Natural Environment Research Council | nceo020004 |
Keywords
- Dynamic Global Vegetation Model (DGVM)
- assumption-centred modelling
- co-ordination hypothesis
- gross primary production (GPP)
- modelling photosynthesis
- plant functional traits
- terrestrial carbon cycle
- trait-based modelling
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Global maximum carboxylation rate trait scaling in the Sheffield Dynamic Global Vegetation Model 1901-2012
Walker, A. (Creator), MacBean, N. (Creator), Quaife, T. (Creator), van Bodegom, P. M. (Creator), Viovy, N. (Creator), Yang, X. (Creator) & Xu, C. (Creator), Environmental System Science Data Infrastructure for a Virtual Ecosystem; Next-Generation Ecosystem Experiments (NGEE) Tropics, Jan 1 2019
DOI: 10.15486/ngt/1569265
Dataset