Please use this identifier to cite or link to this item: http://hdl.handle.net/1942/18725
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dc.contributor.authorAZADI, Hossein-
dc.contributor.authorSamiee, Atry-
dc.contributor.authorMahmoudi, Hossein-
dc.contributor.authorJouzi, Zeynab-
dc.contributor.authorRafiaani Khachak, Parisa-
dc.contributor.authorDe Maeyer, Philippe-
dc.contributor.authorWITLOX, Frank-
dc.date.accessioned2015-04-20T06:55:00Z-
dc.date.available2015-04-20T06:55:00Z-
dc.date.issued2015-
dc.identifier.citationCRITICAL REVIEWS IN BIOTECHNOLOGY, 36 (3), p. 434-446-
dc.identifier.issn0738-8551-
dc.identifier.urihttp://hdl.handle.net/1942/18725-
dc.description.abstractAlthough some important features of genetically modified (GM) crops such as insect resistance, herbicide tolerance, and drought tolerance might seem to be beneficial for small-scale farmers, the adoption of GM technology by smallholders is still slight. Identifying pros and cons of using this technology is important to understand the impacts of GM crops on these farmers. This article reviews the main opportunities and challenges of GM crops for small-scale farmers in developing countries. The most significant advantages of GM crops include being independent to farm size, environment protection, improvement of occupational health issues, and the potential of bio-fortified crops to reduce malnutrition. Challenges faced by small-scale farmers for adoption of GM crops comprise availability and accessibility of GM crop seeds, seed dissemination and price, and the lack of adequate information. In addition, R&D and production costs in using GM crops make it difficult for these farmers to adopt the use of these crops. Moreover, intellectual property right regulations may deprive resource poor farmers from the advantages of GM technology. Finally, concerns on socio-economic and environment safety issues are also addressed in this paper.-
dc.language.isoen-
dc.rights© 2015 Informa Healthcare USA-
dc.subject.otherbiotechnology; GM technology; biosafety; developing countries; resource-poor farmers; small-scale farming-
dc.titleGenetically modified crops and small-scale farmers: main opportunities and challenges-
dc.typeJournal Contribution-
dc.identifier.epage446-
dc.identifier.issue3-
dc.identifier.spage434-
dc.identifier.volume36-
local.bibliographicCitation.jcatA1-
dc.description.notesAzadi, H (reprint author), Univ Ghent, Dept Geog, B-9000 Ghent, Belgium. hossein.azadi@ugent.be-
dc.relation.referencesAcharya T, Daar AS, Singer PA. 2003. Biotechnology and the UNs millennium development goals. Nat Biotechnol 21: 1434-6. Adams D, Coward EW. 1972. Small farmer development strategies. Agricultural Development Council, New York, 6pp. Ali A, Abdulai A. 2010. The adoption of genetically modified cotton and poverty reduction in Pakistan. Journal of Agricultural Economics, 61: 175–192. Azadi H, Ho P. 2010. Genetically modified and organic crops in developing countries: A review of options for food security. Biotechnology Advances 28: 160–168. Azadi H, Schoonbeek S, Mahmoudi H, Derudder B, De Maeyer P, and Witlox F. 2011. Organic agriculture and sustainable food production system: Main potentials. Agriculture, Ecosystems & Environment, 144: 92– 94. Bazuin S, Azadi H, Witlox F. 2011. Application of GM crops in Sub-Saharan Africa: Lessons learned from Green Revolution. Biotechnology Advances 29:908–912. Bennett R, Morse S, Ismael Y. 2006. The economic impact of genetically modified cotton on South African smallholders: yield, profit and health effects. J Dev Stud 42: 662–677. Bennett R, Ismael Y. Kambhampati U, and Morse S. 2005. Economic impact of genetically modified cotton in India. Available at: http://www.agbioforum.org/v7n3/v7n3a01-morse.htm Bennett R, Ismael Y, Kambhampati U and Morse S. 2004. Economic Impact of Genetically Modified Cotton in India. AgBioForum7(3): 96-100. Bennett R, Buthelezi T J, Ismael Y and Morse S. 2003.Bt cotton, pesticides, labour and health - A case study of smallholder farmers in the Makhathini Flats, Republic of South Africa. Outlook on Agriculture, 32(2):123-128. Bhorat H, Deressa TT, Felbab-Brown V, Juma C, et al. 2014. Foresight Africa: Top Priorities for the Continent in 2014. TheBrookingsAfrica Growth Initiative. 44p.Available at:http://www.brookings.edu/~/media/Research/Files/Reports/2014/foresight%20africa%202014/Foresight%20Africa_Full%20Report.pdf Borlaug N. 2007. Feeding a hungry world. Science 318: 359. doi: 10.1126/science.1151062. Bouis H. 2007. The potential of genetically modified food crops to improve human nutrition in developing countries. J Dev Stud 43:79–96 Brookes G. 2005.The farm level impact of using Roundup Ready soybeans in Romania.Agbioforum8: 235-241. Brookes G, Barfoot P. 2006. Global Impact of Biotech Crops: Socio-Economic and Environmental Effects in the First Ten Years of Commercial Use. AgBioForum, 9(3): 139-151. Brookes G, Barfoot P. 2008. Global Impact of Biotech Crops: Environmental Effects, 1996-2008. AgBioForum 13: 76-94. BrookesG, Barfoot P. 2009. GM crops: global socio-economicand environmental impacts 1996-2007. UK:PG Economics Ltd. Byerlee D, Fischer K. 2002. Accessing modern science: Policy and institutional options for agricultural biotechnology in developing countries. World Development 30: 931-948. Charles D. 2001. Lords of the Harvest: Biotech, Big Money, and the Future of Food. Cambridge, Massachusetts: Perseus Publishing, 19 chapters, 352 pp. Chataway J, Tait J, Wield D. 2004. Understanding company R&D strategies in agro-biotechnology: trajectories and blind spots. Research Policy. 33: 6-7, 1041-1057. Chopra P, Kamma A. 2006. Engineering life through synthetic biology. In silico biology 6: 401-410. CIIR 2004. What’swrongwithGM? CIIR environmental action leaflet. Cohen JI. 2005. Poorer nations turn to publicly developed GM crops. Nat Biotechnol 23: 27-33. Cohen JI,Paarlberg R. 2004. Unlocking crop biotechnology in developing countries- a report from the field. World Development 32:1563–77. Commission on Intellectual Property Rights. 2002. Integrating Intellectual Property Rights and Development Policy. Final report, London September 2002. Available at:http://www.iprcommission.org/graphic/documents/final_report.htm Conway G. 2003. From the Green Revolution to the Biotechnology Revolution: Food for Poor People in the 21st Century. Speech at the Woodrow Wilson International Center for Scholars Director’s Forum. 12 March 2003. Available at:http://www.rockfound.org/documents/566/Conway.pdf. Accessed on: 10 Oct 2003. Conway G. 1998. The Doubly Green Revolution: Food for All in the 21st Century, Ithaca, N.Y.: Cornell University Press. Defra. 2009. GM crops - frequently asked questions. Available at: http://www.defra.gov.uk/ Devendra C. 1993. Sustainable animal production from small farm systems in South-East Asia. FAO Animal Production and Health, Rome, Paper 106. Djurfeldt, G., Holmes, H., Jirström, M. and Larsson, R. (eds) 2005. The African Food Crisis: Lessons from the Asian Green Revolution. CABI, Wallingford, UK. Edgerton MD. 2009. Increasing crop productivity to meet global needs for feed, food, and fuel. Plant Physiol 149: 7–13. Eicher CK, Maredia K, Sithole-Niang I. 2006. Crop biotechnology and the African farmer.Food Policy 31: 504–527. EU 2003. Regulation (EC) No 1830/2003 of the European Parliament and of the Council. Official Journal of the European Union 18.10.2003. FAO 2011.current status and options for crop biotechnologies in developing countries. In: Biotechnologies for Agricultural Development, Rome: FAO. FAO 2007. The state of food and agriculture. Rome, xiv. 222 p. FAO 2002. What Should be the Role and Focus of Biotechnology in the Agricultural Agendas of Developing Countries ?Vol. 8.FAO. FAO/RAFE 1978. FAO Regional Office for Asia and the Far East. Bangkok, Thailand. pp. 72–77. Fernandez-Cornejo J, McBride W. 2000. Genetically engineered crops for pest management in US agriculture. Agricultural Economics Report No AER786. Economic Research Service, United States Department of Agriculture, Washington, DC. 29 p, Available at:http://www.ers.usda.gov/publications/AER786/ Fowler C,Smale M, Gaiji S. 2001.Unequal exchange? Recent transfers of agricultural resources and their implications for developing countries. Development Policy Review, 19(2), 181–204, In: BRUSH SB. 2007. Farmers Rights and Protection of Traditional Agricultural Knowledge.World Development, 35. 9, 1499–1514. Fresco LO. 2003. Which Road Do We Take? Harnessing Genetic Resources and making Use of Life Sciences: A NewContract for Sustainable Agriculture. An address to the European Union Discussion Forum on ‘Sustainable Agriculture forDeveloping Countries: Options from life sciences and biotechnologies’, Brussels, January 30-31, 2003. Friends of the Earth. 2014. Who Benefits from GM Crops: An Industry Built on Myths. Friends of the Earth International, Amsterdam. Friends of the Earth International. 2008. Questions and Answers: Who benefits from Gm crops? Fukuda-Parr S, Amy O. 2012.GM Crops for Food Security in Africa-The Path Not Yet Taken.UNDP working paper. Gepts P. 2006. Plant genetic resources conservation and utilization: the accomplishments and future of a societal insurance policy. CropSci, 46:2278–2292. Glover D. 2009. Undying Promise: Agricultural Biotechnology’s Pro-poorNarrative, Ten Years on. STEPS Working Paper 15, Brighton: STEPS Centre. Gonzales D. 2005. Harnessing the benefits of biotechnology: the case of Bt corn in the Philippines. Strive Foundation, Laguna, Philippines. Gouse M. 2007. South Africa: Revealing the Potential and Obstacles, the Private Sector Model and Reaching the Traditional Sector, In: Fukuda-Parr S. (Ed.), The Gene Revolution: GM Crops and Unequal Development. pp. 175-195. London, UK: Earthscan. Gouse M et al. 2005. A GM subsistence crop in Africa: the case of Bt white maize in S Africa, International Journal Biotechnology, 7:1/2/3. Gouse M, Pray C, Kirsten J,Schimmelpfennig D. 2004. Impact of Bt White Maize on Small-scale Farmers in South Africa. Paper presented at the 8th InternationalConsortium on Agricultural Biotechnology Conference: Agricultural Biotechnology:International Trade and Domestic Production, Ravello, Italy, July 8–11, 2004. Gouse M, Pray C, Schimmelpfennig D, Kirsten J. 2006. Three seasons of subsistence insect-resistant maize in South Africa: Have smallholders benefited? AgBioForum, 9:15–22 Graff GD, Cullen SE, Bradford KJ, Zilberman D, Bennett AB. 2003.The public-private structure of intellectual property ownership in agricultural biotechnology. Nat Biotechnol 21:989–95. GRAIN (Genetic Resource Action International). 2004. New Studies Contradict FAO Report and Show That Genetically Engineered Bt Cotton fails to benefit farmers.Availableat:http://www.gene.ch/genet/2004/Jun/msg00072.html Herdt RW. 2006. Biotechnology in agriculture. Annu Rev Environ Resour 31:265–95. Herrera-EstrellaL. 1999. Transgenic plants for tropical regions: Some considerations about their development and their transfer to the small farmer. ProcNatlAcadSci USA96: 5978–5981. Huang J, Uang J, Mi JW, Lin H, Wang Z, Chen RJ, Hu RF, Rozelle S and Pray C. 2010. A decade of Bt cotton in Chinese fields: Assessing the direct effects and indirect externalities of Bt cotton adoption in China. 53(8): 981–991. doi: 10.1007/s11427-010-4036-y. Huang J, Hu R, Rozelle S, Pray C. 2005. Insect-resistant GM rice in farmers’ fields: assessing productivity and health effects in China. Science 308:688–90. Huang J, Rozell S, Pray C, Wang Q. 2002. Plant biotechnology in China. Science, 295: 674–677. ISAAA 2009. GM crops: global socio-economic and environmental impacts 1996–2007. Available at: http://www.pgeconomics.co.uk/pdf/2009globalimpactstudy.pdf. Ismael Y, Bennett R, Morse S. 2002. Benefits from Bt Cotton Use by Smallholder Farmers in South Africa. AgBioForum 5: 1-5. Jacobsen SE., Sorensen M., Pedersen SM and Weiner J. 2013. Feeding the world: genetically modified crops versus agricultural biodiversity. Agronomy for Sustainable Development, 33: 4, 651-662. James C. 2013. Global Status of Commercialized Biotech/GM Crops: 2013. ISAAA Brief No. 46. ISAAA: Ithaca, NY. James C. 2011. Global Status of Commercialized Biotech/GM Crops: 2011. ISAAA Brief No. 43. ISAAA: Ithaca, NY. Juma C. 2011. Preventing hunger: biotechnology is key. Nature 479: 471–472. doi: 10.1038/479471a. Jensen RT, Miller NH. 2010. A Revealed Preference Approach to Measuring Hunger and Undernutrition. NBER Working Paper No.16555 (National Bureau of Economic Research, Cambridge, MA). Kalaitzonakes N, Alston JM, Bradford KJ. 2007. Compliance costs for regulatory approval of new biotech crops. Nat Biotechnol 25:509–11. Kathage J, Qaim M. 2012. Economic impacts and impact dynamics of Bt (Bacillus thuringiensis) cotton in India. Proc. Natl. Academy of Sciences USA, 109: 11652–11656. Krishna VV, Qaim M. 2012. Bt cotton and sustainability of pesticide reductions in India. Agricultural Systems, 107: 47–55. Kvakkestad V. 2009.Institutions and the R&D of GM-crops. Ecologic Economics 68: 2688–2695. Larigauderie A, Mooney HA. 2010. The international year of biodiversity: an opportunity to strengthen the science–policy interface for biodiversity and ecosystem services. Editorial overview. Curr Opin Environ Sustain, 2:1–2. Lemaux PG. 2009. Genetically EngineeredPlants and Foods: A Scientist’sAnalysis of the Issues (Part II). Annu Rev Plant Biol60:511-559. Morris ML, Hoisington D. 2000. Bringing the benefits of biotechnology to the poor: the role of the CGIAR centers,In: Qaim M, Krattiger AF, von Braun J. (eds.) Agricultural Biotechnology in Developing countries: Towards Optimizing the Benefits for the Poor. Boston, MA: Kluwer Academic Publishers, pp. 327-56. Morse S,Mannion AM. 2009. Can genetically modified cotton contribute to sustainable development in Africa? Progress in Development Studies 9(3): 225-247. Morse S, Bennett RM and Ismael Y. 2005a. Genetically modified insect resistance in cotton: some farm level economic impacts in India. Crop Protect,24:433–440. Morse S, Bennett, RM and Ismael Y. 2005b. Bt-cotton boosts the gross margin of small-scale cotton producers in South Africa. Int J Biotechnol, 7:72–83. Morse S, Bennett R, Ismael Y. 2004. Why Bt cotton pays for small-scale producers in South Africa. Nat Biotechnol 22: 379–80. Naluwairo R. 2011. Investing in orphan crops to improve food and livelihood security of Uganda’s rural poor: Policy Gaps, Opportunities and Recommendations. ACODE Policy Research Series, No. 43, Kampala. Naranjo SE, Ellsworth PC. 2009. Fifty years of the integrated control concept: moving the model and implementation forward in Arizona. Pest Management Science, 65: 1267–1286. Naylor, RL, Falcon, WP, Goodman RM, Jahn MM, Sengooba T, Tefera H and Nelson RJ. 2004. Biotechnology in the developing world: a case for increased investments in orphan crops. Food Policy 29:15-44. Nielsen CP. 2001. Genetically modified foods, trade, and developing countries. TMD Discussion paper, No. 77. International Food Policy Research Institute, Washington, D.C., U.S.A. Available at:http://ageconsearch.umn.edu/bitstream/16287/1/tm010077.pdf Nielsen L. 2011. Classifications of Countries Based on Their Level of Development: How it is Done and How it Could be Done. Catherine Pattillo. Available at:https://www.imf.org/external/pubs/ft/wp/2011/wp1131.pdf Nuffield Council on Bioethics. 2004. The use of genetically modified crops in developing countries. London: Nuffield Council on Bioethics. Nuffield Council on Bioethics.1999. Genetically modified crops: the ethical and social issues. London: Nuffield Council on Bioethics. Omanya GO, Nang’ayo F, Boadi R, Muchiri N, Micnouna HDM, Bokanga M. 2007. A Bridge for Delivering Innovations to Smallholder Farmers in Africa. Workshop Programme on Farmer first revisited: Farmer participatory research and development twenty years on. Institute of Development Studies, University of Sussex,12-14 December 2007. Paarlberg RL. 2001. The politics of precaution. Genetically modified crops in developingcountries. International Food Policy Research Institute. Paarlberg RL. 2002. The real threat to GM crops in poor countries: consumer and policy resistance to GM foods in rich countries. Food Policy, 27: 247–250. Park JR, McFarlane I, Phipps RH, Ceddia MG. 2011. The role of transgenic crops in sustainable development. Plant Biotechnology Journal 9: 2-21. Phipps RH, Park JR. 2002. Environmental benefits of genetically modified crops: global and European perspectives on their ability to reduce pesticide use. J Anim Feed Sci 11: 1-18. Pinstrup-Andersen P, Schioler E. 2001. Seeds of Contention, Baltimore: The Johns Hopkins University Press. Potrykus I. 2010. The private sector's role in public sector genetically engineered crop projects. New Biotechnology, 27(5): 466-72. Pray C, Huang J, Hu R, Rozelle S. 2002 Five years of Bt cotton in China – the benefitscontinue, The Plant J 31: 423-430. Pray C, Ma D, Huang J, Qiao F. 2001. Impact of Bt Cotton in China. WorldDevelopment 29: 813-825. Qaim M, Kouser S. 2013. Genetically Modified Crops and Food Security. PLoS ONE, 8(6): e64879. doi:10.1371/journal.pone.0064879. Qaim M. 2009.The economics of genetically modified crops.Annu Rev Resour Econ 1:665–93. Qaim M, de Janvry A. 2005. Bt Cotton and Pesticide Use in Argentina: Economic and Environmental Effects. Environ Develop Econ 10(2): 179-200. Qaim M,Zilberman D. 2003. Yield Effects of Genetically Modified Crops in Developing Countries. Science 299: 900-902. Qaim M, Matuschke I. 2005. Impacts of genetically modified crops in developing countries: a survey. Quart J In Agri 44: 207-227. Qaim M, Traxler G. 2005. Roundup Ready Soybeans in Argentina: Farm Level and Aggregate Welfare Effects. Agricultural Econ 32: 73-86. Qaim M. 1998. Transgenic Virus Resistant Potatoes in Mexico: Potential Socioeconomic Implications of North-South Biotechnology Transfer. ISAAA Briefs No.7. ISAAA: Ithaca, NY. pp. 48. Raney T. 2006.Economic impact of transgenic crops in developing countries.CurrOpinBiotechnol 17:174–178. Ricarda A, Steinbrecher. 2006. V-GURTs (Terminator Technology): Design, Reality and Inherent Risks. EcoNexus and the Federation of German Scientists. Submission to the United Nations Convention on Biological Diversity, Working Group on Article 8(j). Available at:http://www.econexus.info/sites/econexus/files/ENx-CBD-GURTs-2006_0.pdf Schoonbeek S, Azadi H, Mahmoudi H, Derudder B, De Maeyer P, Witlox F. 2013. Organic agriculture and undernourishment in developing countries: Main potentials and challenges. Critical Reviews in Food Science and Nutrition, 53: 917-928. Serageldin I. 1999. Biotechnology and food security in the 21st century. Science 285(5426):387-9. ShivaV, Jafri AH. 2003.Failure of the GMOs in India. Available at: http://www.mindfully.org/GE/2003/India-GMO-Failure-Shiva31may03.htm. Smale M, Zambrano P, Falck-Zepeda J, Gruere G. 2006. Parables: Applied economics literature about the impact of genetically engineered crop varieties in developing economies. EPT Discuss. Pap. 158. Int. Food Policy Res. Inst.,Washington, DC Sonnino A, Dhlamini Z, Santucci FM, Warren P. 2009. Socio-economi Impacts of Non-transgenic Biotechnologies in Developing Countries. Rome: Food and Agriculture Organization of the United Nations. Srinivasan CS, Thirtle C. 2003. Potential economic impacts of terminator technologies: policy implications for developing countries. Environ Develop Econ 8: 187-205. Steenwinkel WA. 1979. Ruraldevelopment and external assistance to that sector. ILACQ Symposium Arnhem, The Netherlands, pp. 77–94. Stones GD. 2007.Agricultural Deskilling and the Spread of Genetically Modified Cotton in Warangal. Current Anthropology 48:67-103. Subramanian A,Qaim M. 2009. Village-wide effects of agricultural biotechnology: the case of Bt Cotton in India. World Development 37: 256-267. Swennen R. 2002. Sustainable agriculture in the Third World: defining a role for transgenic crops and research, Proceedings of the Seminar ‘Sustainable Agriculture in the Third World: Defining a Role for Transgenic Crops and Research’, 26–27 March 2001, Brussels,109–123. Tait J. 2009. Risk Governance of Genetically Modified Crops in Europe: Decision nodes and incubation periods in generating a risk governance deficit.International Risk Governance Council. Thirtle C, Beyers L, IsmaeelY,Piesse J. 2003. Can GM-technologies help the poor? The impact of Bt cotton in the Makhathini flats of KwaZulu-Natal. World Development 31: 717-32. Thompson J. 2003. Genetically modified food crops for improving agricultural practice and their effects on human health. Trends in Food Science & Technology 14: 210–228. Traxler G, Godoy-Avila, S, Falck-Zepeda, J and Espinoza-Arellan, J. 2001. TransgenicCotton in Mexico:Economic and Environmental Impacts, Auburn: Auburn University. Traxler G, Godoy-Avila, S. 2004. Transgenic cotton in Mexico, Agbioforum, 7(1-2), 57-62, Available at:www.agbioforum.org Tripp R. 2001. Can biotechnology reach the poor? The adequacy of information andseed delivery. Food Policy 26: 249-264. UNDP 2013. The Millennium Development Goals. Available at: http://www.undp.org/content/undp/en/home/mdgoverview.html UNEP 2007.Opportunities and risks of genetically modified crops in Africa. Union of the German Academies of Science and Humanities. 2006. Are there hazards for the consumer when eating food from genetically modified plants? Report, Inter-Academy Panel Initiative on Genetically Modified Organisms. Uphoff N. 2007. Agroecological alternatives: Capitalising on existing genetic potentials. Journal of Development Studies, 43(1) 218-236. Virgin I, Bhagavan M, Komen J, Kullaya A, Louwaars N, Morris EJ,Okori P,Persley G. 2007. Agricultural Biotechnology and Small-scale Farmers in Eastern and Southern Africa. Stockholm Environment Institute. Wang G, Wu Y, Gao W, Fok M and Liang W. 2008a. Impact of cotton on farmer livelihood system in China, ISSCRI conference ‘Rationales and evolutions of cotton policies’, Montpelier, France. Wang S, Just DR, Pinstrup-Andersen P. 2008b. Bt Cotton and Secondary Pests’, International Journal of Biotechnology,10(2-3): 113-21. Wapenham WA. 1979. The big problem of the small farmer. ILACO Symposium, Arnhem, The Netherlands, pp. 29–51. WHO 2002. 20 Questions on Genetically Modified (GM) Foods.Geneva: WHO. WHO 2005. Modern food biotechnology, human health and development: an evidence-based study.Geneva: WHO. Wu F. 2006. Bt corn’s reduction of mycotoxins: regulatory decisions and public opinion. See Just et al. 2006 9:179–200. Wu F,Butz WF. 2004. The Future of Genetically Modified Crops, Lessons from the Green Revolution. Rand Publishing. Yang P, Iles M, Yan S, Jolliffe F. 2005a. Farmers’ Knowledge, Perceptions and Practices in Transgenic Bt Cotton in Small Producer Systems in Northern China. Crop Protection,24(3): 229-39. Yang P, Li K, Shi S, Xia J, Guo R, Li S and Wang, L. 2005b. Impacts of Transgenic Bt Cotton and Integrated Pest Management Education on Smallholder Cotton Farmers’, International Journal of Pest Management,51(4): 231-44. Zarrilli S. 2005. International trade in GMOs and GM products: National and multilateral legal framework. Policy Issues in International Trade and Commodities.Study Series No. 29. UNCTAD.  -
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dc.identifier.doi10.3109/07388551.2014.990413-
dc.identifier.isi000373819200005-
item.fulltextWith Fulltext-
item.accessRightsRestricted Access-
item.fullcitationAZADI, Hossein; Samiee, Atry; Mahmoudi, Hossein; Jouzi, Zeynab; Rafiaani Khachak, Parisa; De Maeyer, Philippe & WITLOX, Frank (2015) Genetically modified crops and small-scale farmers: main opportunities and challenges. In: CRITICAL REVIEWS IN BIOTECHNOLOGY, 36 (3), p. 434-446.-
item.validationecoom 2017-
item.contributorAZADI, Hossein-
item.contributorSamiee, Atry-
item.contributorMahmoudi, Hossein-
item.contributorJouzi, Zeynab-
item.contributorRafiaani Khachak, Parisa-
item.contributorDe Maeyer, Philippe-
item.contributorWITLOX, Frank-
crisitem.journal.issn0738-8551-
crisitem.journal.eissn1549-7801-
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