C. Bé-né, P. Oosterveer, L. Lamotte, I. Brouwer, S. De-haan et al., When food systems meet sustainability-Current narratives and implications for actions, World Development, vol.113, pp.116-130, 2019.

H. Godfray, J. R. Beddington, I. R. Crute, L. Haddad, D. Lawrence et al., Food Security: The Challenge of Feeding 9 Billion People, Science, vol.327, issue.5967, pp.812-816, 2010.

J. A. Foley, N. Ramankutty, K. A. Brauman, E. S. Cassidy, J. S. Gerber et al., Solutions for a Cultivated Planet, Nature, vol.478, pp.337-342, 2011.

D. Tilman, C. Balzer, J. Hill, and B. L. Befort, Global food demand and the sustainable intensification of agriculture, Proc. Natl. Acad. Sci, vol.108, issue.50, pp.20260-20264, 2011.

N. Alexandratos and J. Bruinsma, ESA Working Paper 12-03. Food and Agriculture Organisation, 2012.

E. Stehfest, L. Bouwman, D. P. Van-vuuren, M. Den-elzen, B. Eickhout et al., Climate benefits of changing diet, Climatic Change, vol.95, issue.1-2, pp.83-102, 2009.

S. Wirsenius, C. Azar, and G. Berndes, How much land is needed for global food production under scenarios of dietary changes and livestock productivity increases in 2030?, Agricultural systems, vol.103, issue.9, pp.621-638, 2010.

P. Smith, H. Haberl, A. Popp, K. H. Erb, C. Lauk et al., How much land-based greenhouse gas mitigation can be achieved without compromising food security and environmental goals?, Global Change Biology, vol.19, issue.8, pp.2285-2302, 2013.

B. Bajzelj, K. S. Richards, J. M. Allwood, P. Smith, J. S. Dennis et al., Importance of food-demand management for climate mitigation, Nat. Clim. Chang, vol.4, pp.924-929, 2014.

P. Alexander, C. Brown, A. Arneth, J. Finnigan, D. Moran et al., Agricultural Systems, vol.153, pp.190-200, 2017.

T. Searchinger, R. Waite, C. Hanson, J. Ranganathan, P. Dumas et al., Creating a Sustainable Food Future: A Menu of Solutions to Feed Nearly 10 Billion People by 2050, WRR Synthesis Report, 2018.

B. Mcintyre, H. Herren, J. Wakhungu, and R. Watson, Agriculture at Crossroads. International Assessment of Agricultural Knowledge, Science and Technology for Development (IAASTD): Global Report, 2009.

T. Garnet and H. Godfray, Sustainable Intensification in Agriculture: Navigating a course through competing food system priorities. A report on a workshop, 2012.

V. Seufert, N. Ramankutty, and J. A. Foley, Comparing the yields of organic and conventional agriculture, Nature, vol.485, pp.229-232, 2012.

K. H. Erb, C. Lauk, T. Kastner, A. Mayer, M. C. Theurl et al., Exploring the biophysical option space for feeding the world without deforestation, Nat. Comm, vol.7, 2016.

A. Muller, C. Schader, N. El-hage-scialabba, J. Brü-ggemann, A. Isensee et al., Strategies for feeding the world more sustainably with organic agriculture, Nat. Comm, vol.8, 1290.

D. Tilman and M. Clark, Global diets link environmental sustainability and human health, Nature, vol.515, pp.518-522, 2014.

L. Aleksandrowicz, R. Green, E. Joy, P. Smith, and A. Haines, The Impacts of Dietary Change on Greenhouse Gas Emissions, Land Use, Water Use, and Health: A Systematic Review, PLoS ONE, vol.11, issue.11, 2016.

M. Springmann, H. Godfray, M. Rayner, and P. Scarborough, Analysis and Valuation of the Health and Climate Change Cobenefits of Dietary Change, Proc. Natl. Acad. Sci, vol.113, issue.15, pp.4146-4151, 2016.

M. Springmann, M. Clark, D. Mason-d'croz, K. Wiebe, B. L. Bodirsky et al., Options for keeping the food system within environmental limits, Nature, vol.562, issue.7728, p.519, 2018.

W. Willett, J. Rockstrom, B. Loken, M. Springmann, T. Lang et al., Food in the Anthropocene: the EAT-Lancet Commission on healthy diets from sustainable food systems, The Lancet, vol.393, pp.447-492, 2019.

S. R. Carpenter, P. L. Pingali, E. M. Bennett, and M. B. Zurek, Ecosystems and human well-being: Findings of the Scenarios Working Group of the Millennium Ecosystem, Assessment. Millennium Ecosystem Assessment Series, vol.2, 2005.

N. Nakicenovic, J. Alcamo, G. Davies, H. De-vries, J. Fenhann et al., Special Report on Emissions Scenarios, 2000.

B. C. O'neill, E. Kriegler, K. L. Ebi, E. Kemp-benedict, K. Riahi et al., The roads ahead: Narratives for shared socioeconomic pathways describing world futures in the 21st century, Global Environmental Change, vol.42, pp.169-180, 2017.

S. Paillard, S. Treyer, and B. Dorin, Agrimonde: Scenarios and Challenges for Feeding the World in 2050. Quae Edition, 2010.
URL : https://hal.archives-ouvertes.fr/hal-00797978

. Fao, The Future of Food and Agriculture: Alternative Pathways to 2050. Food and agriculture Organization, Rome, 2018.

L. Mouël, C. De-lattre-gasquet, and M. , Land Use and Food Security in 2050: A Narrow Road, Agrimonde-Terra. Quae Edition, 2018.

R. Miller, Futures literacy: a hybrid strategic scenario method, Futures, vol.39, issue.4, pp.341-362, 2007.

M. Godet, The art of scenarios and strategic planning: tools and pitfalls, Technol Forecast Soc Change, vol.65, issue.1, pp.3-22, 2000.

L. Bö-rjeson, M. Hö-jer, K. H. Dreborg, T. Ekvall, and G. Finnveden, Scenario types and techniques: towards a user's guide, Futures, vol.38, issue.7, pp.723-739, 2006.

H. R. Maier, J. H. Guillaume, H. Van-delden, G. A. Riddell, M. Haasnoot et al., An uncertain future, deep uncertainty, scenarios, robustness and adaptation: How do they fit together?, Environmental Modelling & Software, vol.81, pp.154-164, 2016.

J. M. Vervoort, P. K. Thornton, P. Kristjanson, W. Fö-rch, P. J. Ericksen et al., Challenges to scenarioguided adaptive action on food security under climate change, Global Environmental Change, vol.28, pp.383-394, 2014.

R. Ramirez and A. Wilkinson, Rethinking the 2× 2 scenario method: Grid or frames?, Technol Forecast Soc Change, vol.86, pp.254-264, 2014.

T. Ritchey, General morphological analysis as a basic scientific modelling method, Technol Forecast Soc Change, vol.126, pp.81-91, 2018.

F. Zwicky, Discovery, invention, research through the morphological approach. Toronto: The Macmillan Company, 1969.

T. Ritchey, Modeling alternative futures with general morphological analysis, World Future Review, vol.3, issue.1, pp.83-94, 2011.

P. Durance and M. Godet, Scenario building: Uses and abuses, Technol Forecast Soc Change, vol.77, issue.9, pp.88-92, 2010.
URL : https://hal.archives-ouvertes.fr/hal-02864615

M. Amer, T. U. Daim, and A. Jetter, A review of scenario planning, Futures, vol.46, pp.23-40, 2013.

L. Mermet, Extending the perimeter of reflexive debate on futures research: An open framework, Futures, vol.41, issue.2, pp.105-115, 2009.
URL : https://hal.archives-ouvertes.fr/hal-00783693

M. Zurek and T. Henrichs, Linking scenarios across geographical scales in international environmental assessments, Technol Forecast Soc Change, vol.74, pp.1282-1295, 2007.

E. F. Lambin, H. J. Geist, and E. Lepers, Dynamics of land-use and land-cover change in tropical regions, Annu. Rev. Environ. Resour, vol.28, pp.205-241, 2003.

, Food and Agriculture Organization of the United Nations, FAOSTAT Statistics Database, 2016.

M. Herrero, P. Havlík, H. Valin, A. Notenbaret, M. Rufino et al., Biomass use, production, feed efficiencies, and greenhouse gas emissions from global livestock systems, Proc. Natl. Acad. Sci, vol.110, issue.52, pp.888-908, 2013.

C. Monfreda, N. Ramankutty, and J. A. Foley, Farming the planet: 2. Geographic distribution of crop areas, yields, physiological types, and net primary production in the year 2000, Global biogeochemical cycles, vol.22, p.1022, 2008.

G. Gaez and . Agro, Ecological Zones database (v 3.0). IIASA/FAO 2012; IIASA

O. Mora, Scenarios of Land Use and Food Security in 2050, Land Use and Food Security in 2050: A Narrow Road. Agrimonde-Terra, pp.206-246, 2018.

K. C. Samir and W. Lutz, The human core of the shared socioeconomic pathways: Population scenarios by age, sex and level of education for all countries to 2100, Global Environmental Change, vol.42, pp.181-192, 2017.

, World Population Prospects: The 2015 Revision, Key Findings and Advance Tables. Working Paper No. ESA/P/WP 241, 2015.

K. Riahi, D. P. Van-vuuren, E. Kriegler, J. Edmonds, B. C. O'neill et al., The Shared Socioeconomic Pathways and their energy, land use, and greenhouse gas emissions implications: An overview, Global Environmental Change, vol.42, pp.153-168, 2017.

A. Popp, K. Calvin, S. Fujimori, P. Havlik, F. Humpenö-der et al., Land-use futures in the shared socio-economic pathways, Global Environmental Change, vol.42, pp.331-345, 2017.

S. K. Rose, H. Ahammad, B. Eickhout, B. Fisher, A. Kurosawa et al., Land-based mitigation in climate stabilization, Energy Economics, vol.34, issue.1, pp.365-380, 2012.

K. Wiebe, M. Zurek, S. Lord, N. Brzezina, G. Gabrielyan et al., Scenario development and foresight analysis: Exploring options to inform choices, Annual Review of Environment and Resources, vol.43, pp.545-570, 2018.

K. Kok, The potential of Fuzzy Cognitive Maps for semi-quantitative scenario development, with an example from Brazil, Global Environmental Change, vol.19, issue.1, pp.122-133, 2009.

V. R. Mallampalli, G. Mavrommati, J. Thompson, M. Duveneck, S. Meyer et al., Methods for translating narrative scenarios into quantitative assessments of land use change, Environmental Modelling & Software, vol.82, pp.7-20, 2016.

D. P. Van-vuuren, B. Bayer, L. Chuwah, C. Ganzeveld, L. Hazeleger et al., A comprehensive view on climate change: coupling of earth system and integrated assessment models, Environmental Research Letters, vol.7, issue.2, p.24012, 2012.

P. H. Verburg, P. Alexander, T. Evans, N. R. Magliocca, Z. Malek et al., Beyond land cover change: towards a new generation of land use models, Curr. Opin. Env. Sust, vol.38, pp.77-85, 2019.

B. A. Swinburn, G. Sacks, K. D. Hall, K. Mcpherson, D. T. Finegood et al., The global obesity pandemic: shaped by global drivers and local environments, The Lancet, vol.378, pp.804-814, 2011.

M. Van-dijk and G. W. Meijerink, A review of global food security scenario and assessment studies: Results, gaps and research priorities, Global Food Security, vol.3, pp.227-238, 2014.

B. M. Popkin, Nutritional Patterns and Transitions, Popul. Dev. Rev, vol.19, issue.1, pp.138-157, 1993.

C. A. Monteiro, J. C. Moubarac, G. Cannon, S. W. Ng, and B. Popkin, Ultra-processed products are becoming dominant in the global food system, Obesity Reviews, vol.14, pp.21-28, 2013.

S. S. Lim, T. Vos, A. D. Flaxman, G. Danaei, K. Shibuya et al., A comparative risk assessment of burden of disease and injury attributable to 67 risk factors and risk factor clusters in 21 regions, 1990-2010: a systematic analysis for the Global Burden of Disease Study, The Lancet, vol.380, pp.2224-2260, 2012.

, Global Panel on Agriculture and Food Systems for Nutrition. Food systems and diets: Facing the challenges of the 21st century, 2016.

A. I. Conklin, P. Monsivais, K. T. Khaw, N. J. Wareham, and N. G. Forouhi, Dietary Diversity, Diet Cost, and Incidence of Type 2 Diabetes in the United Kingdom: A Prospective Cohort Study, PLoS Med, vol.13, issue.7, p.1002085, 2016.

D. Mozaffarian, Dietary and Policy Priorities for Cardiovascular Disease, Diabetes, and Obesity-A Comprehensive Review, Circulation, vol.133, issue.2, pp.187-225, 2016.

T. Fiolet, B. Srour, L. Sellem, E. Kesse-guyot, B. Allès et al., Consumption of ultra-processed foods and cancer risk: results from NutriNet-Santé prospective cohort, BMJ, vol.360, p.322, 2018.

J. C. Moubarac, M. Batal, M. L. Louzada, E. M. Steele, and C. A. Monteiro, Consumption of ultra-processed foods predicts diet quality in Canada, Appetite, vol.108, pp.512-520, 2017.

B. M. Popkin, L. S. Adair, and S. W. Ng, Global nutrition transition and the pandemic of obesity in developing countries, Nutrition Reviews, vol.70, pp.3-21, 2012.

. Fao, The state of food and agriculture. Food systems for better nutrition. Food and Agriculture Organization, 2013.

F. Imamura, R. Micha, S. Khatibzadeh, S. Fahimi, P. Shi et al., Dietary quality among men and women in 187 countries in 1990 and 2010: a systematic assessment, The Lancet Global Health, vol.3, pp.132-142, 2015.

M. A. Mendez and B. M. Popkin, Globalization, urbanization and nutritional change in the developing world, eJADE-Electronic Journal of Agricultural and Development Economics, vol.1, pp.220-241, 2004.

F. Y. Zhai, S. F. Du, Z. H. Wang, J. G. Zhang, W. W. Du et al., Dynamics of the Chinese diet and the role of urbanicity, Obesity Reviews, vol.15, pp.16-26, 1991.

C. Hawkes, M. Chopra, and S. Friel, Globalization, trade and the nutrition transition, Globalization and Health: Pathways, Evidence and Policy. Routledge, pp.235-262, 2009.

T. Reardon, K. Chen, B. Minten, and L. Adriano, The quiet revolution in staple food value chains in Asia: enter the dragon, the elephant, and the tiger, 2012.

X. P. Shen and L. Ma, Privatization of rural industry and de facto urbanization from below in southern Jiangsu, China. Geoforum, vol.36, pp.761-777, 2005.

J. J. Cadilhon, P. Moustier, N. D. Poole, P. Tam, and A. P. Fearne, Traditional vs. modern food systems? Insights from vegetable supply chains to Ho Chi Minh City (Vietnam), Dev Policy Rev, vol.24, pp.31-49, 2006.
URL : https://hal.archives-ouvertes.fr/hal-02667988

B. Donald, M. Gertler, M. Gray, and L. Lobao, Re-regionalizing the Food System? (Introduction to Special Issue on Food Relocalization), Cambridge J Reg Econ Soc, vol.3, pp.171-175, 2010.

T. Marsden and R. Sonnino, Human health and wellbeing and the sustainability of urban-regional food systems, Curr Opin Environ Sustainability, vol.4, pp.427-430, 2012.

J. Milner and R. Green, Sustainable diets are context specific but are they realistic? The Lancet Planetary Health, vol.2, p.30318099, 2018.

L. C. Smith and L. Haddad, Reducing child undernutrition: past drivers and priorities for the post-MDG era, World Development, vol.68, pp.180-204, 2015.

M. Springmann, K. Wiebe, D. Mason-d'croz, T. B. Sulser, M. Rayner et al., Health and nutritional aspects of sustainable diet strategies and their association with environmental impacts: a global modelling analysis with country-level detail, The Lancet Planetary Health, vol.2, issue.10, pp.30206-30213, 2018.

D. P. Van-vuuren, M. Kok, B. Girod, P. L. Lucas, and B. De-vries, Scenarios in Global Environmental Assessments: Key characteristics and lessons for future use, Global Environmental Change, vol.22, issue.4, pp.884-895, 2012.

T. Fetzel, P. Havlik, M. Herrero, J. Kaplan, T. Kastner et al., Quantification of uncertainties in global grazing systems assessments, Global Biogeochemical Cycles, vol.31, pp.1089-1102, 2017.

R. Prestele, A. Arneth, A. Bondeau, N. D. Noblet-ducoudré, T. A. Pugh et al., Current challenges of implementing anthropogenic land-use and land-cover change in models contributing to climate change assessments, Earth System Dynamics, vol.8, issue.2, pp.369-386, 2017.
URL : https://hal.archives-ouvertes.fr/hal-01584227

G. K. Macdonald, E. M. Bennett, P. A. Potter, and N. Ramankutty, Agronomic phosphorus imbalances across the world's croplands, Proc. Natl. Acad. Sci, vol.108, issue.7, pp.3086-3091, 2011.

L. Lassaletta, G. Billen, B. Grizzetti, J. Garnier, A. M. Leach et al., Food and feed trade as a driver in the global nitrogen cycle: 50-year trends, Biogeochemistry, vol.118, pp.225-241, 2014.
URL : https://hal.archives-ouvertes.fr/hal-01194826

T. Nesme, G. S. Metson, and E. M. Bennett, Global phosphorus flows through agricultural trade, Global Environmental Change, vol.50, pp.133-141, 2018.
URL : https://hal.archives-ouvertes.fr/hal-02624337

J. Beddington, Food, energy, water and the climate: a perfect storm of global events? In conference presentation given to the Sustainable Development UK Annual Conference