Understanding the consequences of changes in the production frontiers for roots, tubers and bananas
Tài liệu tham khảo
Acevedo Mercado, 2015, Development and productivity in yam (Dioscorea trifida and Dioscorea esculenta) under different water conditions, Acta Agron., 64, 31
Affognon, 2015, Unpacking postharvest losses in Sub-Saharan Africa: a meta-analysis, World Dev., 66, 49, 10.1016/j.worlddev.2014.08.002
Alexandratos, N., Bruinsma, J., 2012. World agriculture towards 2030/2050: the 2012 revision (ESA Working Paper No. No. 12-03). Food and Agriculture Organization of the United Nations (FAO), Agricultural Development Economics Division.
ASTI, 2017. Agricultural Science and Technology Indicators (ASTI). 〈https://www.asti.cgiar.org〉 (accessed 21 November 2017).
Beintema, N., Stads, G.-.J., 2017. A Comprehensive Overview of Investments and Human Resource Capacity in African Agricultural Research. ASTI Synthesis Report. 〈https://www.asti.cgiar.org/sites/default/files/pdf/SSA-Synthesis-Report-2017.pdf〉 (accessed 21 November 2017).
Biswas, 2006, Integrated assessment of cropping systems in the Eastern Indo-Gangetic plain, Field Crops Res., 99, 35, 10.1016/j.fcr.2006.03.002
Brown, 2014
Bruinsma, 2003
Devaux, 2009, Collective action for market chain innovation in the Andes, Food Policy, 34, 31, 10.1016/j.foodpol.2008.10.007
Drabik, 2016, The effect of ethanol policies on the vertical price transmission in corn and food markets, Energy Econ., 55, 89, 10.1016/j.eneco.2016.02.010
European Commission, 2007. The potato sector in the European Union. Commission Staff Working Document No. 533. Brussels.
FAO, 2017. FAOSTAT Database. 〈http://www.fao.org/faostat/en/〉 (accessed 1 May 2017).
FAO, IFAD, WFP, 2013. The State of Food Insecurity in the World 2013. The multiple dimensions of food security. Rome, FAO.
Fermont, 2010, False beliefs on the socio-economic drivers of cassava cropping, Agron. Sustain. Dev., 30, 433, 10.1051/agro/2009044
Fuglie, 2004, Challenging Bennet’s law: the new economics of starchy staples in Asia, Food Policy, 29, 187, 10.1016/j.foodpol.2004.03.003
Gildemacher, 2009, Improving potato production in Kenya, Uganda and Ethiopia: a system diagnosis, Potato Res., 52, 173, 10.1007/s11540-009-9127-4
Henry, 2002, Cassava in South America and the Caribbean, 17
Howeler, R., 2014. Sustainable soil and crop management of cassava in Asia – A reference manual. CIAT Publication No. 389. Centro Internacional de Agricultura Tropical (CIAT). Cali, Colombia. Retrieved from: 〈http://ciat-library.ciat.cgiar.org/articulos_ciat/Sustainable_soil_crop_management_cassava_asia_2014.pdf〉.
Islam, 2016, Structural approaches to modeling the impact of climate change and adaptation technologies on crop yields and food security, Glob. Food Secur., 10, 63, 10.1016/j.gfs.2016.08.003
Jaggard, 2010, Possible changes to arable crop yields by 2050, Philos. Trans. R. Soc. B, 365, 2835, 10.1098/rstb.2010.0153
Jarvis, 2012, Is cassava the answer to African Climate Change Adaptation?, Trop. Plant Biol., 5, 9, 10.1007/s12042-012-9096-7
Low, 2009, Sweetpotato in Sub-Saharan Africa, 359
Low, 2017, Tackling vitamin A deficiency with biofortified sweetpotato in sub-Saharan Africa, Glob. Food Secur., 14, 23, 10.1016/j.gfs.2017.01.004
Minot, N., Smale, M., Eicher, C., Jayne, T., Kling, J., Horna, D., Myers, R., 2007. Seed Development Programs in Sub-Saharan Africa: A Review of Experiences. Report prepared for the Rockefeller Foundation. International Food Policy Research Institute (IFPRI), Washington D.C.
Mukhopadhyay, 2011, Crops that feed the world 5. Sweetpotato. Sweetpotatoes for income and food security, Food Secur., 3, 283, 10.1007/s12571-011-0134-3
Murray, 2000, Alternative trade in bananas: obstacles and opportunities for progressive social change in the global economy, Agric. Hum. Values, 17, 65, 10.1023/A:1007628709393
Nweke, 2015
Nweke, F.I., 2004. New challenges in the cassava transformation in Nigeria and Ghana. Discussion Paper No. 118. International Food Policy Research Institute (IFPRI), Washington D.C.
Palacios-Lopez, 2017, How much of the labor in african agriculture is provided by women?, Food Policy, 67, 52, 10.1016/j.foodpol.2016.09.017
Pingali, 2006, Westernization of Asian diets and the transformation of food systems: implications for research and policy, Food Policy, 32, 271
Qiu, 2010, Bioethanol development in China and the potential impacts on its agricultural economy, Appl. Energy, 87, 76, 10.1016/j.apenergy.2009.07.015
Raymundo, 2018, Climate change impact on global potato production, Eur. J. Agron., 100, 87, 10.1016/j.eja.2017.11.008
Reidsma, 2015, Climate change impact and adaptation research requires integrated assessment and farming systems analysis: a case study in the Netherlands, Environ. Res. Lett., 10, 045004, 10.1088/1748-9326/10/4/045004
Robinson, S., Mason-D′Croz, D., Islam, S., Sulser, T.B., Robertson, R., Zhu, T., Gueneau, A., Pitois, G., Rosegrant, M., 2015. The International Model for Policy Analysis of Agricultural Commodities and Trade (IMPACT). Model Description for Version 3. IFPRI Discussion Paper No. 01483. International Food Policy Research Institute (IFPRI), Washington D.C.
Rosegrant, 2014
Rosegrant, M.W., Sulser, T.B., Mason-D′Croz, D., Cenacchi, N., Nin-Pratt, A., Dunston, S., Zhu, T., Ringler, C., Wiebe, K., Robinson, S., Willenbockel, D., Xie, H., Kwon, H.-.Y., Thomas, T.S., Wimmer, F., Schaldach, R., Nelson, G.C., Willaarts, B., 2017. Quantitative Foresight Modeling to Inform the CGIAR Research Portfolio. Project Report for USAID. International Food Policy Research Institute (IFPRI), Washington D.C.
RTB, 2016. RTB CRP Full Proposal 2017–2022, Volume I. CGIAR Research Program (CRP) on Roots, Tubers & Bananas (RTB). Retrieved from 〈http://www.rtb.cgiar.org/blog/publication/rtb-proposal-2017–2022-volume-i/〉.
Rusike, 2010, Estimating impact of cassava research for development approach on productivity, uptake and food security in Malawi, Food Policy, 35, 98, 10.1016/j.foodpol.2009.10.004
Sanginga, N. Mbabu, A., 2015. Root and Tuber Crops (Cassava, Yam, Potato and Sweet Potato). Background paper for the Conference Feeding Africa 21-23 October, Dakar, Senegal. Retrieved from 〈https://www.afdb.org/en/documents/〉.
Scott, 2011, The rise of Asia as the center of global potato production and some implications for industry, Potato J., 39, 1
Scott, 2000, Global projections for root and tuber crops to the year 2020, Food Policy, 25, 561, 10.1016/S0306-9192(99)00087-1
Scott, G.J., Rosegrant, M.W., Ringler, C., 2000b. Roots and Tubers for the 21st Century. Trends, Projections, and Policy Options. Vision 2020 Food, Agriculture, and the Environment Discussion Paper No. 31. International Food Policy Research Institute (IFPRI) and the International Potato Center (CIP), Washington D.C.
Scott, 2012, The rise of Asia as the center of global potato production and some implications for industry, Potato J., 39, 1
Scott, 2012, From Mao to McDonald’s: emerging markets for potatoes and potato products in China 1961–2007, Am. J. Potato Res., 89, 216, 10.1007/s12230-012-9246-3
Thomas-Sharma, 2016, Seed degeneration in potato: the need for an integrated seed health strategy to mitigate the problem in developing countries, Plant Pathol., 65, 3, 10.1111/ppa.12439
Van Asten, 2011, Agronomic and economic benefits of coffee–banana intercropping in Uganda’s smallholder farming systems, Agric. Syst., 104, 326, 10.1016/j.agsy.2010.12.004
Van der Ploeg, 2015, Measuring food access and food deserts for policy purposes, Appl. Econ. Perspect. P., 37, 205, 10.1093/aepp/ppu035
USDA (2018). Food Composition Databases. https://ndb.nal.usda.gov/ndb/search/list (accessed 19 December 2018).
Wiebe, 2015, Climate change impacts on agriculture in 2050 under a range of plausible socioeconomic and emissions scenarios, Environ. Res. Lett., 10, 10.1088/1748-9326/10/8/085010
Wyckhuys, 2018, Biological control of an invasive pest eases pressures on global commodity markets, Environ. Res. Lett., 13, 094005, 10.1088/1748-9326/aad8f0