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Multi-site interactions: Understanding the offsite impacts of land use change on the use and supply of ecosystem services

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  • Sonter, Laura J.
  • Johnson, Justin A.
  • Nicholson, Charles C.
  • Richardson, Leif L.
  • Watson, Keri B.
  • Ricketts, Taylor H.

Abstract

Managing the impacts of land use change on ecosystem services is essential to secure human wellbeing; but is a task often complicated by landscape-scale spatial dynamics. In this study, we focus on one type of spatial dynamic: multi-site interactions (MSI), which we define to occur when a change in the supply or use of an ecosystem service at one site affects that service at a second site. In search of empirical evidence of MSI, we reviewed 150 papers on one ecosystem service—nature-based recreation. We found many studies assessed impacts of land use change on this ecosystem service, but only 2% of studies quantified changes in its supply or use across multiple sites. Given this limited evidence in the literature, we propose a novel framework to describe the pathways through which MSI emerge and their likely consequences for ecosystem services across multiple sites. We illustrate the utility of this framework for understanding impacts on three other services: crop pollination, fuel wood production and flood mitigation. Obtaining empirical evidence of MSI is an important next step in ecosystem service science, which will help identify when interactions among sites emerge and how they can be best managed.

Suggested Citation

  • Sonter, Laura J. & Johnson, Justin A. & Nicholson, Charles C. & Richardson, Leif L. & Watson, Keri B. & Ricketts, Taylor H., 2017. "Multi-site interactions: Understanding the offsite impacts of land use change on the use and supply of ecosystem services," Ecosystem Services, Elsevier, vol. 23(C), pages 158-164.
  • Handle: RePEc:eee:ecoser:v:23:y:2017:i:c:p:158-164
    DOI: 10.1016/j.ecoser.2016.12.012
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    2. Jahanifar, Komeil & Amirnejad, Hamid & Mojaverian, Seyed Mojtaba & Azadi, Hossein, 2020. "Land use change drivers in the Hyrcanian Vegetation Area: Dynamic simultaneous equations system with panel data approach," Land Use Policy, Elsevier, vol. 99(C).
    3. Rozas-Vásquez, Daniel & Fürst, Christine & Geneletti, Davide & Almendra, Osvaldo, 2018. "Integration of ecosystem services in strategic environmental assessment across spatial planning scales," Land Use Policy, Elsevier, vol. 71(C), pages 303-310.

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