A General Biogeochemical Model Describing the Responses of the C and N Cycles in Terrestrial Ecosystems to Changes in CO(2), Climate, and N Deposition
Overview
Authors
Affiliations
A model that simulates carbon (C) and nitrogen (N) cycles in terrestrial ecosystems is developed. The model is based on the principle that the responses of terrestrial ecosystems to changes in CO(2), climate, and N deposition will encompass enzymatic responses, shifts in tissue stoichiometry, changes in biomass allocation among plant tissues, altered rates of soil organic matter turnover and N mineralization, and ultimately a redistribution of C and N between vegetation and soils. The model is a highly aggregated, process-based, biogeochemical model designed to examine changes in the fluxes and allocation of C and N among foliage, fine roots, stems, and soils in response to changes in atmospheric CO(2) concentration, temperature, soil water, irradiance, and inorganic nitrogen inputs. We use the model to explore how changes in CO(2) concentration, temperature, and N inputs affect carbon storage in two ecosystems: arctic tundra and temperate hardwood forest. The qualitative responses of the two ecosystems were similar. Quantitative differences are attributed to the initial distribution of C and N between vegetation and soils, to the amounts of woody tissue in the two ecosystems, and to their relative degree of N limitation. We conclude with a critical analysis of the model's strengths and weaknesses, and discuss possible future directions.
Liu M, Li Y, Sun L, Du Z, Li W, Zhang L Front Plant Sci. 2023; 13:1122140.
PMID: 36743555 PMC: 9895794. DOI: 10.3389/fpls.2022.1122140.
Bal G, Banerjee K Environ Monit Assess. 2020; 191(Suppl 3):795.
PMID: 31989332 DOI: 10.1007/s10661-019-7690-y.
Prager C, Naeem S, Boelman N, Eitel J, Greaves H, Heskel M Ecol Evol. 2017; 7(7):2449-2460.
PMID: 28405308 PMC: 5383475. DOI: 10.1002/ece3.2863.
Soil warming and trace gas fluxes: experimental design and preliminary flux results.
Peterjohn W, Melillo J, Bowles F, Steudler P Oecologia. 2017; 93(1):18-24.
PMID: 28313768 DOI: 10.1007/BF00321185.
Nitrate deposition in northern hardwood forests and the nitrogen metabolism of Acer saccharum marsh.
Rothstein D, Zak D, Pregitzer K Oecologia. 2017; 108(2):338-344.
PMID: 28307847 DOI: 10.1007/BF00334659.