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Integration of Abandoned Lands in Sustainable Agriculture: The Case of Terraced Landscape Re-Cultivation in Mediterranean Island Conditions

Author

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  • Michalia Sakellariou

    (Institute of Plant Breeding & Genetic Resources, HAO-DEMETER, 57001 Thermi, Greece)

  • Basil E. Psiloglou

    (Institute for Environmental Research and Sustainable Development, National Observatory of Athens, Palaia Penteli, 15236 Athens, Greece)

  • Christos Giannakopoulos

    (Institute for Environmental Research and Sustainable Development, National Observatory of Athens, Palaia Penteli, 15236 Athens, Greece)

  • Photini V. Mylona

    (Institute of Plant Breeding & Genetic Resources, HAO-DEMETER, 57001 Thermi, Greece)

Abstract

Agriculture terraces constitute a significant element of the Mediterranean landscape, enabling crop production on steep slopes while protecting land from desertification. Despite their ecological and historical value, terrace cultivation is threatened by climate change leading to abandonment and further marginalization of arable land imposing serious environmental and community hazards. Re-cultivation of terraced landscapes could be an alternative strategy to mitigate the climate change impacts in areas of high vulnerability encouraging a sustainable agroecosystem to ensure food security, rural development and restrain land desertification. The article presents the case study of abandoned terrace re-cultivation in the Aegean Island of Andros, using a climate smart agriculture system, which involves the establishment of an extensive meteorological network to monitor the local climate and hydrometeorological forecasting. Along with terrace site mapping and soil profiling the perfomance of cereal and legume crops was assessed in a low-input agriculture system. The implementation of a land stewardship (LS) plan was indispensable to overcome mainly land fragmentation issues and to transfer know-how. It was found that climate data are key drivers for crop cultivation and production in the island rainfed farming system. The study revealed that terrace soil quality could be improved through cultivation to support food safety and stall land degradation. In line with global studies this research suggest that cultivation of marginal terraced land is timely through a climate smart agriculture system as a holistic approach to improve land quality and serve as means to combat climate change impacts. The study also discusses land management and policy approaches to address the issue of agricultural land abandonment and the benefits gained through cultivation to the local community, economy and environment protection and sustainability.

Suggested Citation

  • Michalia Sakellariou & Basil E. Psiloglou & Christos Giannakopoulos & Photini V. Mylona, 2021. "Integration of Abandoned Lands in Sustainable Agriculture: The Case of Terraced Landscape Re-Cultivation in Mediterranean Island Conditions," Land, MDPI, vol. 10(5), pages 1-16, April.
  • Handle: RePEc:gam:jlands:v:10:y:2021:i:5:p:457-:d:542619
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    References listed on IDEAS

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    Cited by:

    1. Giovanni Ottomano Palmisano & Ruggiero Sardaro & Piermichele La Sala, 2022. "Recovery and Resilience of the Inner Areas: Identifying Collective Policy Actions through PROMETHEE II," Land, MDPI, vol. 11(8), pages 1-22, July.
    2. Shakhislam Laiskhanov & Zhassulan Smanov & Kulyash Kaimuldinova & Duman Aliaskarov & Nazira Myrzaly, 2023. "Study of the Ecological and Reclamation Condition of Abandoned Saline Lands and Their Development for Sustainable Development Goals," Sustainability, MDPI, vol. 15(19), pages 1-16, September.
    3. Salvatore Praticò & Francesco Solano & Salvatore Di Fazio & Giuseppe Modica, 2022. "A Multitemporal Fragmentation-Based Approach for a Dynamics Analysis of Agricultural Terraced Systems: The Case Study of Costa Viola Landscape (Southern Italy)," Land, MDPI, vol. 11(4), pages 1-19, March.
    4. Enrico Pomatto & Paola Gullino & Silvia Novelli & Marco Devecchi & Federica Larcher, 2023. "Landscape Strategies for Terraced Landscapes in the European Alpine Region Using a Mixed-Method Analysis Tool," Land, MDPI, vol. 12(6), pages 1-21, June.

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