Regenerative Agriculture for Climate-Resilient and Sustainable Food Systems: Global Perspective with Special Focus on Pakistan
DOI:
https://doi.org/10.17501/Keywords:
regenerative agriculture, climate resilience, soil health, sustainable food systems, carbon sequestration, biodiversity conservation, agroecologyAbstract
As the planet faces unprecedented environmental and climatic pressures, regenerative agriculture offers a framework for radically rethinking how food is produced. In contrast to most industrial forms of farming that damage soils and increase greenhouse gas emissions, regenerative practices harness nature's processes to enhance soil health, promote biodiversity, and strengthen ecosystem functions that support resilient food systems. Building on practices such as cover cropping, diverse crop rotations, minimal tillage, and agroforestry, regenerative agriculture increases the capacity to sequester carbon in soils and resources. Not only does it improve water retention, but it also buffers agricultural landscapes against extreme weather events, which are essential pillars of climate resilience and sustainability. However, barriers to adoption, such as economic considerations, knowledge gaps between scientists and farmers on regenerative practices, and disconnected governance policies, need to be addressed via an integrated framework that reinforces linkages among science, efficiency, and evidence-based framing of incentives provided to growers (e.g., Marketplace providers), whilst ensuring informed policy support by decision makers towards scaling aligned, transformative outcomes across agrifood systems. This review consolidates the latest research on regenerative principles, climate mitigation and adaptation effectiveness. Its main goal is to critically assess current scientific understanding of regenerative agriculture, exploring opportunities and challenges for its adoption in developing countries such as Pakistan. Additionally, it integrates agronomic, socio-economic, and ecological perspectives, emphasizing regenerative agriculture as a key strategy for developing climate-resilient and sustainable food systems, rather than presenting it as a one-size-fits-all solution.
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Adetunji, A. T., Ncube, B., Mulidzi, R., and Lewu, F. B. (2020). Management impact and benefit of cover crops on soil quality: A review: Soil and Tillage Research, 204, https://doi.org/10.1016/j.still.2020.104717.
Afghan, S., Khan, M. E., Verma, K. K., and Nikpay, A. (2024). Crop rotation and intercropping of sugarcane in Pakistan. In Biotechnological Transformation for Sugarcane Management (pp. 167-209). Apple Academic Press. https://doi.org/10.1201/9781003536376.
Akhil, K., and Sowjanya, J. (2025). Revitalizing Soil Health through Regenerative Agriculture: History, Principles, Practices, and Challenges. International Journal of Environment and Climate Change, 15(8), 249-262. https://doi.org/10.9734/ijecc/2025/v15i84969.
Chen, L., Rejesus, R. M., Aglasan, S., Hagen, S. C., and Salas, W. (2022). The impact of cover crops on soil erosion in the US Midwest, Journal of Environmental Management, 324, https://doi.org/10.1016/j.jenvman.2022.116168.
Choudhari, P., Pasumarthi, R., Patil, M., Karanam, P., Singh, R., Sawargaonkar, G., and Jat, M. L. (2024). Compendium of regenerative agriculture: A guide to sustainable and resilient production systems. Compendium of Regenerative Agriculture: A Guide to Sustainable and Resilient Production Systems, Patancheru 502 324, Telangana, India: International Crops Research Institute for the Semi-Arid Tropics. 48 pp.
Colley, T. A., Olsen, S. I., Birkved, M., and Hauschild, M. Z. (2020). Delta Life Cycle Assessment of Regenerative Agriculture in a Sheep Farming System. Integrated Environmental Assessment and Management, 16(2), 282–290. https://doi.org/10.1002/IEAM.4238
Ghosh, S., Saha, A., Kumar, S., and Pathania, S. (2024). Regenerative agriculture for climate change mitigation and food security. In Regenerative agriculture for sustainable food systems (pp. 83-133). Singapore: Springer Nature Singapore.
Gordon, E., Davila, F., and Riedy, C. (2022). Transforming landscapes and mindscapes through regenerative agriculture. Agriculture and Human Values, 39(2), 809-826. https://doi.org/10.1007/s10460-021-10276-0
Grelet, G., Lang, S., Merfield, C., Calhoun, N., Robson-Williams, M., Horrocks, A., ... and Kerner, W. (2021). Regenerative agriculture in Aotearoa New Zealand–research pathways to build science-based evidence and national narratives. Next Foundation. https://www.landcareresearch.co.nz/publications/regenag/regenerative-agriculture-white-paper sets-out-pressing-research-priorities/
Islam, S. (2025). Agriculture, food security, and sustainability: a review. Exploration of Foods and Foodomics, 3, https://doi.org/10.37349/eff.2025.101082.
James, J., Choudhary, P., Singh, S., Archana, Sharma, N. (2024). Regenerative Agriculture: Potential, Progress, Opportunities, and Challenges. In: Kumar, S., Meena, R.S., Sheoran, P., Jhariya, M.K. (eds) Regenerative Agriculture for Sustainable Food Systems. Springer, Singapore. https://doi.org/10.1007/978-981-97-6691-8_3.
Jamil, U., and Pearce, J. M. (2025). Regenerative agrivoltaics: integrating photovoltaics and regenerative agriculture for sustainable food and energy systems. Sustainability, 17(11), https://doi.org/10.3390/su17114799.
Koudahe, K., Allen, S. C., and Djaman, K. (2022). Critical review of the impact of cover crops on soil properties. International Soil and Water Conservation Research, 10(3), 343-354. https://doi.org/10.1016/j.iswcr.2022.03.003 .
Kidane, M., Bezie, A., Kesete, N., and Tolessa, T. (2019). The impact of land-use and land-cover (LULC) dynamics on soil erosion and sediment yield in Ethiopia. Heliyon, 5(12). https://doi.org/10.1016/j.heliyon.2019.e02981.
Khan, A. T., and Banik, D. (2025). Climate-Smart Agriculture: Pathways to Resilient Farming Systems. Vigyan Varta, 6, 261-267. https://www.vigyanvarta.in/adminpanel/upload_doc/VV_0725_60.pdf .
Kumar, D., Sheoran, A., Balyan, V., Sharma, P., and Balyan, S. (2025). Regenerative Agriculture: Restoring Ecosystems¢ Resilience and Productivity: A Review. Agricultural Reviews, https://doi.org/10.18805/ag.r-2779
Kumar, S., Meena, R. S., Sheoran, P., and Jhariya, M. K. (2024). Regenerative Agriculture for Sustainable Food Systems. https://link.springer.com/book/10.1007/978-981-97-6691-8 pp 1-13.
Lal, R. (2020). Regenerative agriculture for food and climate. Journal of soil and water conservation, 75(5), 123A-124A. https://doi.org/10.2489/jswc.2020.0620A.
Masud, H., Haseeb, A., Ahmed, U., Ullah, I., Ali, S., Ur, R. S., ... and Atif, M. (2023). Analyzing the Profitability of Crop Rotation Patterns in Peshawar, Pakistan. Asian Journal of Advances in Research, 6(1), 589-599.
Moodley, V., Phophi, M. M., and Mafongoya, P. L. (2024). Regenerative agriculture: A paradigm shift for food production in South Africa. Outlook on Agriculture, 53(4), 336-350. https://doi.org/10.1177/00307270241292085.
Naz, I., Ijaz, S. S., Habteselassie, M. Y., Ansar, M., and Khan, K. S. (2022). Impact of conservation tillage on organic matter dynamics in loess dryland soil, Punjab, Pakistan. JAPS: Journal of Animal and Plant Sciences, 32(5). https://doi.org/10.36899/JAPS.2022.5.0534.
Rehberger, E., West, P. C., Spillane, C., and McKeown, P. C. (2023). What are the climate and environmental benefits of regenerative agriculture practices? an evidence review. Environmental Research Communications, 5(5), 052001. https://doi.org/10.1088/2515-7620/acd6dc
Rhodes, C. J. (2017). The imperative for regenerative agriculture. Science progress, 100(1), 80-129. https://doi.org/10.3184/003685017x14876775256165.
Saeed, M. Z., Hayat, H., Shafiq, F., and Tareen, W. U. H. (2023). Assessing the prospects and challenges of organic agriculture in the Pothwar region of Punjab, Pakistan. 1-7
Saleem, M. F., Ghaffar, A., Rahman, M. H. U., Imran, M., Iqbal, R., Soufan, W., ... and El Sabagh, A. (2022). Effect of short-term zero tillage and legume intercrops on soil quality and the agronomic and physiological aspects of cotton under an arid climate: land, 11(2), 289. https://doi.org/10.3390/land11020289.
Saleem, S., Hassan, W., Adil, M., Leghari, A. M., Khaliq, M. A., Bukhar, M. A., and Bashir, S. (2024). Sustainable Management of Saline Soils by Using Organic and Inorganic Amendments: Implications for Wheat Growth and Production. Plant and Environment, 5(01), 100-111. https://doi.org/10.54219/plantenviron.05.01.2024.453.
Shahriar, S., Corradini, M. G., Sharif, S., Moussa, M., and Dara, R. (2025). The role of generative artificial intelligence in digital agri-food. Journal of Agriculture and Food Research, 20, https://doi.org/10.1016/j.jafr.2025.101787.
Sher, A., Li, H., ullah, A., Hamid, Y., Nasir, B., and Zhang, J. (2024). Importance of regenerative agriculture: Climate, soil health, biodiversity and its socioecological impact. Discover Sustainability, 5(1), 462. https://doi.org/10.1007/s43621-024-00662-z.
Song, K., Yang, J., Xue, Y. et al. Influence of tillage practices and straw incorporation on soil aggregates, organic carbon, and crop yields in a rice-wheat rotation system. Sci Rep 6, 36602 (2016). https://doi.org/10.1038/srep36602
Torrús-Castillo, M., Macan, G. P. F., Landa, B. B., and Gómez, J. A. (2025). Assessing the Impact of Six Years of Regenerative Agriculture on a Commercial Olive Orchard in Southern Spain. https://doi.org/10.5194/egusphere-egu25-422
Vamshi, M., Jagadeesan, R., Lamani, H. D., Rout, S., VijayKumar, R., Jagadesh, M., and Sachan, K. (2024). The revolutionary impact of regenerative agriculture on ecosystem restoration and land vitality: A review. Journal of Geography, Environment and Earth Science International, 28(4), 1-14. https://doi.org/10.9734/jgeesi%2F2024%2Fv28i4760.
Villat, J., and Nicholas, K. A. (2024). Quantifying soil carbon sequestration from regenerative agricultural practices in crops and vineyards. Frontiers in Sustainable Food Systems. https://doi.org/10.3389/fsufs.2023.1234108
Wiltshire, S., and Beckage, B. (2022). Soil carbon sequestration through regenerative agriculture in the U.S. state of Vermont. PLOS Climate, 1(4), e0000021. https://doi.org/10.1371/journal.pclm.0000021
Xu, N., Bhadha, J. H., Rabbany, A., and Swanson, S. (2019). Soil Health Assessment of Two Regenerative Farming Practices on Sandy Soils. Sustainable Agriculture Research, 8(4), 61. https://doi.org/10.5539/SAR.V8N4P61
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