Open Access
| Numéro |
Cah. Agric.
Volume 34, 2025
|
|
|---|---|---|
| Numéro d'article | 32 | |
| Nombre de pages | 7 | |
| DOI | https://doi.org/10.1051/cagri/2025032 | |
| Publié en ligne | 14 octobre 2025 | |
- Caron P. 2021. Agroécologie : saisir les blocages internationaux. In: Hubert B, Couvet D, eds. La transition agroécologique. Quelles perspectives en France et ailleurs dans le monde ? Tome 1. Paris (France): Presses des Mines, pp. 131–140. https://doi.org/10.3917/mines.huber.2021.01.0131. [Google Scholar]
- Caron P. 2025. A renewed interest in controversies. Nature Food 6: 121–122. https://doi.org/10.1038/s43016-025-01120-3. [Google Scholar]
- Caron P, Ferrero de Loma-Osorio G, Ferroni M, Lehmann B, Mettenleiter TC, Sokona Y. 2022. Global food security: Pool collective intelligence. Nature 612(7941): 631. https:/doi.org/10.1038/d41586-022-04471-0. [Google Scholar]
- Ericksen PJ. 2008. What is the vulnerability of a food system to global environmental change? Ecology and Society 13(2). https://doi.org/10.5751/ES-02475-130214. [Google Scholar]
- FAO. 2024. Guidance on strengthening national science-policy interfaces for agrifood systems. Rome. https://doi.org/10.4060/cd3125en. [Google Scholar]
- Gitz V, Meybeck A. 2011. The establishment of the High Level Panel of Experts on food security and nutrition (HLPE). Shared, independent and comprehensive knowledge for international policy coherence in food security and nutrition. Nogent (France): CIRED. https://hal.science/hal-00866427v1/document. [Google Scholar]
- Hainzelin E, Caron P, Place F, Alpha A, Dury S, Echeverria R, et al. 2023. How could science-policy interfaces boost food system transformation? In: Von Braun J, Afsana K, Fresco LO, Hassan MHA, eds. Science and innovations for food systems transformation. Cham (Switzerland): Springer, pp. 877–891. https://doi.org/10.1007/978-3-031-15703-5_47. [Google Scholar]
- HLPE. 2011. Land tenure and international investments in agriculture. A report by the High Level Panel of Experts on Food Security and Nutrition of the Committee on World Food Security, Rome 2011. https://www.fao.org/fileadmin/user_upload/hlpe/hlpe_documents/HLPE-Land-tenure-and-international-investments-in-agriculture-2011.pdf. [Google Scholar]
- HLPE. 2012. Food security and climate change. A report by the High Level Panel of Experts on Food Security and Nutrition of the Committee on World Food Security. Rome: FAO. https://openknowledge.fao.org/HLPEReport3/content. [Google Scholar]
- HLPE. 2014. Food losses and waste in the context of sustainable food systems. A report by the High Level Panel of Experts on Food Security and Nutrition of the Committee on World Food Security. Rome: FAO. https://openknowledge.fao.org/HLPEReport8/content. [Google Scholar]
- HLPE. 2017a. 2nd Note on Critical and Emerging Issues for Food Security and Nutrition. A note by the High Level Panel of Experts on Food Security and Nutrition of the Committee on World Food Security. Rome: FAO. https://www.fao.org/fileadmin/user_upload/hlpe/hlpe_documents/Critical-Emerging-Issues-2016/HLPE_Note-to-CFS_Critical-and-Emerging-Issues-2nd-Edition__27-April-2017_.pdf. [Google Scholar]
- HLPE. 2017b. Nutrition and food systems. A report by the High Level Panel of Experts on Food Security and Nutrition of the Committee on World Food Security. Rome: FAO. https://openknowledge.fao.org/HLPEReport12/content. [Google Scholar]
- HLPE. 2019. Agroecological and other innovative approaches for sustainable agriculture and food systems that enhance food security and nutrition. A report by the High Level Panel of Experts on Food Security and Nutrition of the Committee on World Food Security. Rome: FAO. https://openknowledge.fao.org/HLPEReport14/content. [Google Scholar]
- HLPE. 2020. Food security and nutrition: Building a global narrative towards 2030. A report by the High Level Panel of Experts on Food Security and Nutrition of the Committee on World Food Security. Rome: FAO. https://openknowledge.fao.org/HLPEReport15/content. [Google Scholar]
- HLPE. 2025. Lutter contre le changement climatique, l’appauvrissement de la biodiversité et la dégradation des terres au moyen du droit à l’alimentation – Document d’information élaboré en vue du Forum de haut niveau du Comité de la sécurité alimentaire mondiale organisé le 12 mai 2025 à Rome (Italie). Rome: FAO. https://www.fao.org/fileadmin/templates/cfs/Docs2324/HLF-RioConventions_RightToFood/HLFRioRtF-HLPE_Note.pdf. [Google Scholar]
- Ingram JSI. 2009. Food system concepts. In: Rabbinge R, Linneman A, eds. ESF/COST forward look on European food systems in a changing world. Strasbourg (France): European Science Foundation, pp. 9–13. [Google Scholar]
- Malassis L. 1994. Nourrir les hommes. Paris (France): Flammarion, 126 p. [Google Scholar]
- Malézieux E, Verger EO, Avallone S, Alpha A, Biu Ngigi P, et al. 2024. Biofortification versus diversification to fight micronutrient deficiencies: An interdisciplinary review. Food Security 16: 261–275. https://doi.org/10.1007/s12571-023-01422-z. [CrossRef] [Google Scholar]
- McElwee P. 2025. A tale of two panels: Learning and coordinating across IPCC, IPBES, and other science-policy interfaces. Climatic Change 178: 45. https://doi.org/10.1007/s10584-025-03869-9. [Google Scholar]
- OECD. 2021. Making Better Policies for Food Systems. Paris (France): OECD Publishing, 282 p. https://doi.org/10.1787/ddfba4de-en. [Google Scholar]
- Oreskes N, Conway EM. 2010. Merchants of doubt: How a handful of scientists obscured the truth on issues from tobacco smoke to global warming. New York (USA): Bloomsbury Press, 355 p. [Google Scholar]
- Pingault N, Licona Manzur C, Meybeck A, Gitz V, Baral H, Bernoux M, et al., 2024. Land use and the Sharm el-Sheikh joint work on implementation of climate action on agriculture and food security. Document de travail sur la gestion de l’environnement et des ressources naturelles no 99. Rome: FAO et Centre de recherche forestière internationale. https://doi.org/10.4060/cd0981en. [Google Scholar]
- Singh BK, Fraser E, Arnold T, Biermayr-Jenzano P, Broerse J, Brunori G, et al. 2023a. Ensuring societal considerations are met when translating science into policy for sustainable food system transformation. Trends in Food Science and Technology 137: 104–108. https://doi.org/10.1016/j.tifs.2023.04.021. [Google Scholar]
- Singh BK, Fraser E, Arnold T, Biermayr-Jenzano P, Broerse J, Brunori G, et al. 2023b. Food systems transformation requires science-policy-society interfaces that integrate existing global networks and new knowledge hubs. Nature Food 4: 3. https://doi.org/10.1038/s43016-022-00664-y. [Google Scholar]
- Steinfeld H, Gerber P, Wassenaar T, Castel V, Rosales M., De Haan C. 2006. Livestock’s Long Shadow − Environmental Issues and Options. Rome (Italy): Food and Agriculture Organisation, 416 p. https://www.fao.org/4/a0701e/a0701e00.htm. [Google Scholar]
- Webb P, Sonnino R, Fraser E, Arnold T, Biermayr-Jenzano P, Broerse J, et al. (Eds). 2022. Everyone at the table: Transforming food systems by connecting science, policy and society. Luxembourg: Publications Office of the European Union, 70 p. https://data.europa.eu/doi/10.2777/440690. [Google Scholar]
- World Bank. 2007. World development report 2008: Agriculture for development − overview. World development indicators, World development report. Washington DC (USA). http://documents.worldbank.org/curated/en/757881468140972394. [Google Scholar]
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