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The Adoption of genetically modified papaya in Hawaii and its implications for developing countries

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  • C. Gonsalves
  • D. R. Lee
  • D. Gonsalves

Abstract

As agricultural biotechnology becomes increasingly commercialised, numerous constraints limit adoption by developing-country producers. These include technology access, impacts on farmers' yields and profits, privatisation of research and intellectual property, biosafety regulatory frameworks, and trade-related market restrictions. This essay analyses development of the genetically modified papaya and its commercialisation in Hawaii as a response to a virulent plant disease, papaya ringspot virus. Results of a survey of Hawaiian papaya growers suggest that the unprecedentedly rapid adoption of GM papaya is due to this technology's having addressed many of these key constraints facing growers. The implications for developing-country adoption of GM varieties are explored.

Suggested Citation

  • C. Gonsalves & D. R. Lee & D. Gonsalves, 2007. "The Adoption of genetically modified papaya in Hawaii and its implications for developing countries," Journal of Development Studies, Taylor & Francis Journals, vol. 43(1), pages 177-191.
  • Handle: RePEc:taf:jdevst:v:43:y:2007:i:1:p:177-191
    DOI: 10.1080/00220380601055650
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    References listed on IDEAS

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    1. Donna Roberts, 1999. "Analyzing technical trade barriers in agricultural markets: Challenges and priorities," Agribusiness, John Wiley & Sons, Ltd., vol. 15(3), pages 335-354.
    2. Lohr, Luanne, 2001. "Factors Affecting International Demand And Trade In Organic Food Products," Faculty Series 16674, University of Georgia, Department of Agricultural and Applied Economics.
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    2. Lincoln Addison & Matthew Schnurr, 2016. "Growing burdens? Disease-resistant genetically modified bananas and the potential gendered implications for labor in Uganda," Agriculture and Human Values, Springer;The Agriculture, Food, & Human Values Society (AFHVS), vol. 33(4), pages 967-978, December.
    3. Paudel, Krishna P. & Timilsina, Govinda R., 2010. "Would There Be Surplus Grains for Biofuels? An Assessment of Agro-economic Factors and Biofuel Production Potential at the Global Level," Staff Papers 113125, Louisiana State University, Department of Agricultural Economics and Agribusiness.
    4. Clement A. Tisdell, 2014. "Sustainable agriculture," Chapters, in: Giles Atkinson & Simon Dietz & Eric Neumayer & Matthew Agarwala (ed.), Handbook of Sustainable Development, chapter 32, pages 517-531, Edward Elgar Publishing.
    5. Hall, Clare & Toma, Luiza & Moran, Dominic, 2009. "Investigation of the factors influencing adoption of GM crops at country level," 2009 Conference, August 16-22, 2009, Beijing, China 50366, International Association of Agricultural Economists.
    6. Clare Gupta, 2018. "Contested fields: an analysis of anti-GMO politics on Hawai’i Island," Agriculture and Human Values, Springer;The Agriculture, Food, & Human Values Society (AFHVS), vol. 35(1), pages 181-192, March.
    7. Klara Fischer & Elisabeth Ekener-Petersen & Lotta Rydhmer & Karin Edvardsson Björnberg, 2015. "Social Impacts of GM Crops in Agriculture: A Systematic Literature Review," Sustainability, MDPI, vol. 7(7), pages 1-23, July.
    8. Bialek, Sylwia, 2016. "Introducing Cattle Producer to the Hardin s World- Can Monopolies in Seed Markets Be Welfare Enhancing?," VfS Annual Conference 2016 (Augsburg): Demographic Change 145786, Verein für Socialpolitik / German Economic Association.
    9. Tisdell, Clement A., 2012. "Sustainable Agriculture: An Update," Economics, Ecology and Environment Working Papers 140549, University of Queensland, School of Economics.

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