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Market Dependency as Prohibitive of Agroecology and Food Sovereignty—A Case Study of the Agrarian Transition in the Scottish Highlands

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  • Elise Wach

    (Centre for Agroecology, Water and Resilience, Coventry University, Coventry CV8 3LG, UK
    Institute of Development Studies, Brighton BN1 9RE, UK)

Abstract

While there have been calls amongst the more ‘political’ or ‘radical’ agroecology and food sovereignty advocates for a break from capitalist food systems, conceptualisations of capitalism, and thus counter-capitalism, vary widely. The movements have largely presented small-scale producers and peasants as alternatives to industrial food systems, and have focused on reducing input dependency as a path towards autonomy of producers and the realisation of agroecological food systems. An alternative to this approach is presented here through applying Ellen M. Wood’s conceptualisation of capitalism as characterised by ‘market dependency’ to the case of the agrarian transition in the Scottish Highlands. This article demonstrates the specific ways in which market dependency, including for agricultural outputs, not just inputs, leads to a divergence from agroecological food systems. It argues that identifying ‘market dependency’ as a defining characteristic of capitalism could strengthen and refine the focus of agroecology and food sovereignty movements.

Suggested Citation

  • Elise Wach, 2021. "Market Dependency as Prohibitive of Agroecology and Food Sovereignty—A Case Study of the Agrarian Transition in the Scottish Highlands," Sustainability, MDPI, vol. 13(4), pages 1-23, February.
  • Handle: RePEc:gam:jsusta:v:13:y:2021:i:4:p:1927-:d:497467
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    References listed on IDEAS

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    1. Harvey, Mark & Pilgrim, Sarah, 2011. "The new competition for land: Food, energy, and climate change," Food Policy, Elsevier, vol. 36(S1), pages 40-51.
    2. Raynolds, Laura T., 2004. "The Globalization of Organic Agro-Food Networks," World Development, Elsevier, vol. 32(5), pages 725-743, May.
    3. David Pimentel, 2006. "Soil Erosion: A Food and Environmental Threat," Environment, Development and Sustainability: A Multidisciplinary Approach to the Theory and Practice of Sustainable Development, Springer, vol. 8(1), pages 119-137, February.
    4. de Ponti, Tomek & Rijk, Bert & van Ittersum, Martin K., 2012. "The crop yield gap between organic and conventional agriculture," Agricultural Systems, Elsevier, vol. 108(C), pages 1-9.
    5. Saturnino M. Borras & Jennifer C. Franco & Sofía Monsalve Suárez, 2015. "Land and food sovereignty," Third World Quarterly, Taylor & Francis Journals, vol. 36(3), pages 600-617, March.
    6. Robert A. Dodgshon, 1993. "Strategies of farming in the western highlands and islands of Scotland prior to crofting and the clearances," Economic History Review, Economic History Society, vol. 46(4), pages 679-701, November.
    7. Gerbens-Leenes, P. W. & Nonhebel, S., 2002. "Consumption patterns and their effects on land required for food," Ecological Economics, Elsevier, vol. 42(1-2), pages 185-199, August.
    8. Miroslav Trnka & Reimund P. Rötter & Margarita Ruiz-Ramos & Kurt Christian Kersebaum & Jørgen E. Olesen & Zdeněk Žalud & Mikhail A. Semenov, 2014. "Adverse weather conditions for European wheat production will become more frequent with climate change," Nature Climate Change, Nature, vol. 4(7), pages 637-643, July.
    9. Harvey, Mark & Pilgrim, Sarah, 2011. "The new competition for land: Food, energy, and climate change," Food Policy, Elsevier, vol. 36(Supplemen), pages 40-51, January.
    10. Verena Seufert & Navin Ramankutty & Jonathan A. Foley, 2012. "Comparing the yields of organic and conventional agriculture," Nature, Nature, vol. 485(7397), pages 229-232, May.
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    Cited by:

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