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Yield Performance of Corn under Heat Stress: A Comparison of Hybrid and Open-Pollinated Seeds during a Period of Technological Transformation, 1933-1955

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  • Keith Meyers
  • Paul Rhode

Abstract

Starting in the 1930s, commercial hybrid corn seeds rapidly replaced the once predominant open-pollinated varieties planted by farmers. By the mid-1950s almost all corn grown in the United States was of hybrid varieties. Observers have argued that the drought tolerant qualities of these hybrids were a major factor driving farmers’ decisions regarding hybrid adoption, but there is little statistical evidence to substantiate this assertion. Hybrid seeds exhibited other attractive qualities, such as improved performance during prime weather conditions, resistance to wind damage, and increased suitability toward mechanized harvesting. Using historical evidence from Zvi Griliches’s archival records, we reconstruct data on hybrid corn adoption and yields at a more disaggregated geographic level than previously available. We match these data with historical weather records to measure the extent to which hybrid seeds mediated the adverse effects of extreme heat. Our findings suggest that hybrid corns grown in Iowa from 1928 to 1942 did exhibit heat tolerance relative to open-pollinated varieties. This result is unique to Iowa as this reduced temperature sensitivity does not appear when comparing hybrid and open-pollinated grown in other states.

Suggested Citation

  • Keith Meyers & Paul Rhode, 2020. "Yield Performance of Corn under Heat Stress: A Comparison of Hybrid and Open-Pollinated Seeds during a Period of Technological Transformation, 1933-1955," NBER Working Papers 27291, National Bureau of Economic Research, Inc.
  • Handle: RePEc:nbr:nberwo:27291
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    References listed on IDEAS

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    1. Richard Sutch, 2011. "The Impact of the 1936 Corn Belt Drought on American Farmers' Adoption of Hybrid Corn," NBER Chapters, in: The Economics of Climate Change: Adaptations Past and Present, pages 195-223, National Bureau of Economic Research, Inc.
    2. Richard Hornbeck, 2012. "The Enduring Impact of the American Dust Bowl: Short- and Long-Run Adjustments to Environmental Catastrophe," American Economic Review, American Economic Association, vol. 102(4), pages 1477-1507, June.
    3. A. A. Dowell & O. B. Jesness, 1939. "Economic Aspects of Hybrid Corn," American Journal of Agricultural Economics, Agricultural and Applied Economics Association, vol. 21(2), pages 479-488.
    4. Griliches, Zvi, 1980. "Hybrid Corn Revisited: A Reply," Econometrica, Econometric Society, vol. 48(6), pages 1463-1465, September.
    5. Richard C. Sutch, 2008. "Henry Agard Wallace, the Iowa Corn Yield Tests, and the Adoption of Hybrid Corn," NBER Working Papers 14141, National Bureau of Economic Research, Inc.
    6. Zvi Griliches, 1958. "Research Costs and Social Returns: Hybrid Corn and Related Innovations," Journal of Political Economy, University of Chicago Press, vol. 66(5), pages 419-419.
    7. Duncan Sheppard Gilchrist & Emily Glassberg Sands, 2016. "Something to Talk About: Social Spillovers in Movie Consumption," Journal of Political Economy, University of Chicago Press, vol. 124(5), pages 1339-1382.
    8. Richard C. Sutch, 2008. "Henry Agard Wallace, The Iowa Corn Yield Tests, And The Adoption Of Hybrid Corn," Working Papers 200807, University of California at Riverside, Department of Economics, revised Jun 2008.
    9. Bernhard Schauberger & Sotirios Archontoulis & Almut Arneth & Juraj Balkovic & Philippe Ciais & Delphine Deryng & Joshua Elliott & Christian Folberth & Nikolay Khabarov & Christoph Müller & Thomas A. , 2017. "Consistent negative response of US crops to high temperatures in observations and crop models," Nature Communications, Nature, vol. 8(1), pages 1-9, April.
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    More about this item

    JEL classification:

    • N12 - Economic History - - Macroeconomics and Monetary Economics; Industrial Structure; Growth; Fluctuations - - - U.S.; Canada: 1913-
    • O3 - Economic Development, Innovation, Technological Change, and Growth - - Innovation; Research and Development; Technological Change; Intellectual Property Rights
    • Q16 - Agricultural and Natural Resource Economics; Environmental and Ecological Economics - - Agriculture - - - R&D; Agricultural Technology; Biofuels; Agricultural Extension Services
    • Q55 - Agricultural and Natural Resource Economics; Environmental and Ecological Economics - - Environmental Economics - - - Environmental Economics: Technological Innovation

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