4.7 Article

Socioeconomic and environmental effects of soybean production in metacoupled systems

Journal

SCIENTIFIC REPORTS
Volume 11, Issue 1, Pages -

Publisher

NATURE PORTFOLIO
DOI: 10.1038/s41598-021-98256-6

Keywords

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Funding

  1. Center for Environmental Studies and Research of the State University of Campinas, Brazil
  2. Center for Global Change and Earth Observations at Michigan State University, USA
  3. Center for Systems Integration and Sustainability at Michigan State University, USA
  4. AgBioResearch at Michigan State University, USA
  5. National Science Foundation [1531086, 1924111]
  6. FAPESP [14/50628-9, 15/25892-7, 18/08200-2]
  7. Fundacao de Amparo a Pesquisa do Estado de Sao Paulo (FAPESP) [15/25892-7, 18/08200-2] Funding Source: FAPESP
  8. Direct For Biological Sciences
  9. Division Of Environmental Biology [1924111] Funding Source: National Science Foundation

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Human-environment interactions across borders are now more influential than ever, posing unprecedented sustainability challenges. The metacoupling framework provides a useful tool to evaluate these interactions at diverse temporal and spatial scales.
Human-environment interactions within and across borders are now more influential than ever, posing unprecedented sustainability challenges. The framework of metacoupling (interactions within and across adjacent and distant coupled human-environment systems) provides a useful tool to evaluate them at diverse temporal and spatial scales. While most metacoupling studies have so far addressed the impacts of distant interactions (telecouplings), few have addressed the complementary and interdependent effects of the interactions within coupled systems (intracouplings) and between adjacent systems (pericouplings). Using the production and trade of a major commodity (soybean) as a demonstration, this paper empirically evaluates the complex effects on deforestation and economic growth across a globally important soybean producing region (Mato Grosso in Brazil). Although this region is influenced by a strong telecoupling process (i.e., soybean trade with national and international markets), intracouplings pose significant effects on deforestation and economic growth within focal municipalities. Furthermore, it generates pericoupling effects (e.g., deforestation) on adjacent municipalities, which precede economic benefits on adjacent systems, and may occur during and after the soybean production takes place. These results show that while economic benefits of the production of agricultural commodities for global markets tend to be localized, their environmental costs tend to be spatially widespread. As deforestation also occurred in adjacent areas beyond focal areas with economic development, this study has significant implications for sustainability in an increasingly metacoupled world.

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