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Linking Land Cover Data and Crop Yields for Mapping and Assessment of Pollination Services in Europe

Author

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  • Grazia Zulian

    (Institute for Environment and Sustainability, Joint Research Centre of the European Commission, Via E. Fermi 2749, 20127 Ispra, Italy)

  • Joachim Maes

    (Institute for Environment and Sustainability, Joint Research Centre of the European Commission, Via E. Fermi 2749, 20127 Ispra, Italy)

  • Maria Luisa Paracchini

    (Institute for Environment and Sustainability, Joint Research Centre of the European Commission, Via E. Fermi 2749, 20127 Ispra, Italy)

Abstract

Pollination is a key ecosystem service as many crops but in particular, fruits and vegetables are partially dependent on pollinating insects to produce food for human consumption. Here we assessed how pollination services are delivered at the European scale. We used this assessment to estimate the relative contribution of wild pollinators to crop production. We developed an index of relative pollination potential, which is defined as the relative potential or relative capacity of ecosystems to support crop pollination. The model for relative pollination potential is based on the assumption that different habitats, but in particular forest edges, grasslands rich in flowers and riparian areas, offer suitable sites for wild pollinator insects. Using data of the foraging range of wild bees with short flight distances, we linked relative pollination potential to regional statistics of crop production. At aggregated EU level, the absence of insect pollination would result in a reduction of between 25% and 32% of the total production of crops which are partially dependent on insect pollination, depending on the data source used for the assessment. This production deficit decreases to 2.5% if only the relative pollination potential of a single guild of pollinators is considered. A strength of our approach is the spatially-explicit link between land cover based relative pollination potential and crop yield which enables a general assessment of the benefits that are derived from pollination services in Europe while providing insight where pollination gaps in the landscape occur.

Suggested Citation

  • Grazia Zulian & Joachim Maes & Maria Luisa Paracchini, 2013. "Linking Land Cover Data and Crop Yields for Mapping and Assessment of Pollination Services in Europe," Land, MDPI, vol. 2(3), pages 1-21, September.
  • Handle: RePEc:gam:jlands:v:2:y:2013:i:3:p:472-492:d:28730
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    References listed on IDEAS

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    1. Gallai, Nicola & Salles, Jean-Michel & Settele, Josef & Vaissière, Bernard E., 2009. "Economic valuation of the vulnerability of world agriculture confronted with pollinator decline," Ecological Economics, Elsevier, vol. 68(3), pages 810-821, January.
    2. Maes, Joachim & Egoh, Benis & Willemen, Louise & Liquete, Camino & Vihervaara, Petteri & Schägner, Jan Philipp & Grizzetti, Bruna & Drakou, Evangelia G. & Notte, Alessandra La & Zulian, Grazia & Boura, 2012. "Mapping ecosystem services for policy support and decision making in the European Union," Ecosystem Services, Elsevier, vol. 1(1), pages 31-39.
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    Cited by:

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    2. Qinhua Ke & Shuang Chen & Dandan Zhao & Minting Li & Chuanzhun Sun, 2022. "Effects of Land-Use Change on the Pollination Services for Litchi and Longan Orchards: A Case Study of Huizhou, China," Land, MDPI, vol. 11(7), pages 1-15, July.
    3. Orsi, Francesco & Ciolli, Marco & Primmer, Eeva & Varumo, Liisa & Geneletti, Davide, 2020. "Mapping hotspots and bundles of forest ecosystem services across the European Union," Land Use Policy, Elsevier, vol. 99(C).
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    6. Perennes, Marie & Diekötter, Tim & Groß, Jens & Burkhard, Benjamin, 2021. "A hierarchical framework for mapping pollination ecosystem service potential at the local scale," Ecological Modelling, Elsevier, vol. 444(C).
    7. Chian Jones Ritten & Christopher Bastian & Jason F. Shogren & Thadchaigeni Panchalingam & Mariah D. Ehmke & Gregory Parkhurst, 2017. "Understanding Pollinator Habitat Conservation under Current Policy Using Economic Experiments," Land, MDPI, vol. 6(3), pages 1-13, August.
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    10. Barbara Langlois & Vincent Martinet, 2023. "Defining cost-effective ways to improve ecosystem services provision in agroecosystems," Review of Agricultural, Food and Environmental Studies, Springer, vol. 104(2), pages 123-165, June.
    11. Semeraro, Teodoro & Pomes, Alessandro & Del Giudice, Cecilia & Negro, Danilo & Aretano, Roberta, 2018. "Planning ground based utility scale solar energy as green infrastructure to enhance ecosystem services," Energy Policy, Elsevier, vol. 117(C), pages 218-227.
    12. Giulia Capotorti & Simone Valeri & Arianna Giannini & Valerio Minorenti & Mariagrazia Piarulli & Paolo Audisio, 2023. "On the Role of Natural and Induced Landscape Heterogeneity for the Support of Pollinators: A Green Infrastructure Perspective Applied in a Peri-Urban System," Land, MDPI, vol. 12(2), pages 1-29, January.
    13. Pashanejad, Ehsan & Thierry, Hugo & Robinson, Brian E. & Parrott, Lael, 2023. "The application of semantic modelling to map pollination service provisioning at large landscape scales," Ecological Modelling, Elsevier, vol. 484(C).
    14. Dardonville, Manon & Legrand, Baptiste & Clivot, Hugues & Bernardin, Claire & Bockstaller, Christian & Therond, Olivier, 2022. "Assessment of ecosystem services and natural capital dynamics in agroecosystems," Ecosystem Services, Elsevier, vol. 54(C).
    15. Caroline Wentling & Felipe S. Campos & João David & Pedro Cabral, 2021. "Pollination Potential in Portugal: Leveraging an Ecosystem Service for Sustainable Agricultural Productivity," Land, MDPI, vol. 10(4), pages 1-14, April.
    16. Zulian, Grazia & Stange, Erik & Woods, Helen & Carvalho, Laurence & Dick, Jan & Andrews, Christopher & Baró, Francesc & Vizcaino, Pilar & Barton, David N. & Nowel, Megan & Rusch, Graciela M. & Autunes, 2018. "Practical application of spatial ecosystem service models to aid decision support," Ecosystem Services, Elsevier, vol. 29(PC), pages 465-480.

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