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Carrots and Sticks: Incentives and Regulations for Herbicide Resistance Management and Changing Behavior

Published online by Cambridge University Press:  20 January 2017

Michael Barrett*
Affiliation:
Department of Plant and Soil Sciences, University of Kentucky, Lexington, KY 40546
Michael Barrett*
Affiliation:
Department of Plant and Soil Sciences, University of Kentucky, Lexington, KY 40546
John Soteres
Affiliation:
Monsanto Company, St. Louis, MO 63167
David Shaw
Affiliation:
Mississippi State University, Starkville, MS 39762
*
Corresponding author's E-mail: [email protected]
Corresponding author's E-mail: [email protected]
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Although the problem of herbicide resistance is not new, the widespread evolution of glyphosate resistance in weed species such as Palmer amaranth (Amaranthus palmeri S. Wats.), common waterhemp (Amaranthus rudis Sauer), and kochia [Kochia scoparia (L.) Schrad.] raised awareness throughout the agricultural community of herbicide resistance as a problem. Glyphosate-resistant weeds resulted in the loss of a simple, single herbicide option to control a wide spectrum of weeds that gave efficacious and economical weed management in corn (Zea mays L.), soybean [Glycine max (L.) Merr.], and cotton (Gossypium hirsutum L.) crops engineered for tolerance to this herbicide and planted over widespread areas of the South and Midwest of the United States. Beyond these crops, glyphosate is used for vegetation management in other cropping systems and in noncrop areas across the United States, and resistance to this herbicide threatens its continued utility in all of these situations. This, combined with the development of multiple herbicide-resistant weeds and the lack of commercialization of herbicides with new mechanisms of action over the past years (Duke 2012), caused the weed science community to realize that stewardship of existing herbicide resources, extending their useful life as long as possible, is imperative. Further, while additional herbicide tolerance traits are being incorporated into crops, weed management in these crops will still be based upon using existing, old, herbicide chemistries.

Type
Research Article
Creative Commons
Creative Common License - CCCreative Common License - BY
This is an Open Access article, distributed under the terms of the Creative Commons Attribution license (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted re-use, distribution, and reproduction in any medium, provided the original work is properly cited.
Copyright
Copyright © 2016 by the Weed Science Society of America

Footnotes

Associate Editor for this paper: Sarah Ward, Colorado State University.

References

Literature Cited

Alexander, C (2007) Insect resistance management plans: the farmers’ perspective. AgBioForum 10: 3343Google Scholar
Anonymous (2014) Good Farming Practice Determinations Standards Handbook. http://www.rma.usda.gov/handbooks/14000/2015/14060.pdf. Accessed April 18, 2016Google Scholar
Arbuckle, JG Jr (2013) Farmer attitudes toward proactive targeting of agricultural conservation programs. Soc Nat Resour 26: 625641Google Scholar
Australian Pesticides and Veterinary Medicines Authority (2016) “Mode of Action” Indicator. http://apvma.gov.au/node/934#Mode_of_action_indicator. Accessed April 18, 2018Google Scholar
Barber, LT, Smith, KL, Scott, RC, Norsworthy, JK, Vanglider, AM (2015) Zero tolerance: a community-based program for glyphosate-resistant Palmer amaranth management. FSA2177-PD-3-2015N. Fayetteville, AR: University of Arkansas Cooperative Extension Service. 7 pGoogle Scholar
Beckie, HJ, Gulden, RH, Shaikh, N, Johnson, EN, Willenborg, CJ, Brenzil, CA, Ford, G (2015) Glyphosate-resistant kochia (Kochia scoparia L. Schrad.) in Sasketchewan and Manitoba. Can J Plant Sci 95: 15Google Scholar
Beckie, HJ, Reboud, X (2009) Selecting for weed resistance: herbicide rotation and mixture. Weed Technol 23: 363370Google Scholar
Borger, CPD, Walsh, M, Scott, JK, Powles, SB (2007) Tumbleweeds in the Western Australian cropping system: seed dispersal characteristics of Salsola australis. Weed Res 47: 406414Google Scholar
Brent, KJ, Hollomon, DW (2007) Fungicide Resistance in Crop Pathogens: How Can it be Managed? 2nd edn.Brussels, Belgium: Fungicide Resistance Action Committee. 56 pGoogle Scholar
Brewer, MJ, Goodell, PB (2012) Approaches and incentives to implement integrated pest management that addresses regional and environment issues. Annu Rev Entomol 57: 4159Google Scholar
Chism, B, Jones, A, Becker, J, Yourman, L, Myers, C, Mallampalli, N (2016) The U.S. EPA's perspective on herbicide resistance management. In Proceedings of the Weed Science Society of America 2016 Annual Meeting. http://wssaabstracts.com/public/38/proceedings.html. Accessed April 19, 2016 [Abstract]Google Scholar
Dauer, JT, Mortensen, DA, Humston, R (2006) Controlled experiments to predict horseweed (Conyza canadensis) dispersal distance. Weed Sci 54: 484489Google Scholar
Claasen, R (2014) 2014 Farm Act Continues Most Previous Trends in Conservation. http://www.ers.usda.gov/amber-waves/2014-may/2014-farm-act-continues-most-previous-trends-in-conservation.aspx#.VxaTeHAmUiH. Accessed April 18, 2016Google Scholar
Diggle, AJ, Neve, P (2001) The population dynamics and genetics of herbicide resistance—a modeling approach. Pages 61100in Powles, Sb, Shaner, DL, eds. Herbicide Reistance and World Grains. Boca Raton, FL: CRC PressGoogle Scholar
Dow AgroSciences (2016) Enlist DuoTM Herbicide with Colex-D Technology label. http://www.cdms.net/ldat/ldAEA001.pdf. Accessed April 18, 2016Google Scholar
Duke, SO (2012) Why have no new herbicide modes of action appeared in recent years? Pest Manag Sci 68: 505512Google Scholar
[EPA] U.S. Environmental Protection Agency (1998) Pesticide Registration Notice (PR) 98–10: Notifications, Non-Notifications and Minor Formulation Amendments. https://www.epa.gov/sites/production/files/2014-04/documents/pr98-10.pdf. Accessed April 18, 2016Google Scholar
[EPA] U.S. Environmental Protection Agency (2001) Pesticide Registration (PR) Notice 2001-5: Guidance for Pesticide Registrants on Pesticide Resistance Management Labeling. https://www.epa.gov/sites/production/files/2014-04/documents/pr2001-5.pdf. Accessed April 18, 2016Google Scholar
[EPA] U.S. Environmental Protection Agency (2014) Final Registration of Enlist DuoTM Herbicide. https://www.epa.gov/sites/production/files/2014-10/documents/final_registration_-_enlist_duo.pdf. Accessed April 18, 2016Google Scholar
[EPA] U.S. Environmental Protection Agency (2016a) Bt Field Corn (and Popcorn) IRM Program. https://www3.epa.gov/pesticides/biopesticides/pips/bt_corn_refuge_2006.htm#program. Accessed April 18, 2016Google Scholar
[EPA] U.S. Environmental Protection Agency (2016b) Proposed Registration of Dicamba on Dicamba-Tolerant Cotton and Soybean. https://www.regulations.gov/#!documentDetail;D=EPA-HQ-OPP-2016-0187-0016. Accessed April 18, 2016 Ervin DE (2013) Voluntary resource conservation and environmental management in agriculture and forestry. Pages 127132in Shogren, J, ed. Encyclopedia of Energy, Natural Resource, and Environmental Economics. London: Elsevier ScienceGoogle Scholar
Ervin, DE, Jussaume, R (2014) Integrating social science into managing herbicide-resistant weeds and associated environmental impacts. Weed Sci 62: 403414Google Scholar
Goldberger, J, Merrill, J, Hurley, T (2005) Bt corn farmer compliance with insect resistance management requirements in Minnesota and Wisconsin. AgBioForum 8: 151160Google Scholar
Health Canada (2013) Regulatory Directive DIR2013–04, Pesticide Resistance Management Labelling Based on Target Site/Mode of Action. http://www.hc-sc.gc.ca/cps-spc/pubs/pest/_pol-guide/dir2013-04/index-eng.php. Accessed April 18, 2016Google Scholar
Heap, I (2016) International Survey of Herbicide Resistant Weeds. http://weedscience.org/. Accessed April 19, 2016Google Scholar
Housenger, J (2014) EPA's Perspective on Resistance Herbicide Resistance Summit II. http://wssa.net/wp-content/uploads/Composite%20Summit%20II%20Presentations%20Final.pdf. Accessed April 18, 2016Google Scholar
Livingston, M, Fernandez-Cornejo, J, Unger, J, Osteen, C, Schimmelpfennig, D, Park, T, Lambert, D (2015) The economics of glyphosate resistance management in corn and soybean production. ERR-184. Washington, D.C.: U.S. Department of Agriculture, Economic Research Service. 45 pGoogle Scholar
Matten, SR (1997) Pesticide Resistance Activities of the U.S. Environmental Protection Agency. Resistant Pest Management Newsletter 9: 35. http://whalonlab.msu.edu/wp-content/uploads/2012/06/9_l.pdf. Accessed April 18, 2016Google Scholar
Matten, SR (2003) U.S. EPA's voluntary labeling guidelines for pesticide resistance management based on rotation of mode of action. Pestic Outlook 14: 111113Google Scholar
Matten, SR, Head, GP, Quemada, HD (2008) How government regulation can help or hinder the integration of Bt crops within IPM programs. Pages 2739in Romeis, J, Shelton, AM, Kennedy, GG, eds. Integration of Insect-Resistant Genetically Modified Crop with IPM Programs. New York, NY: SpringerGoogle Scholar
Mitchell, PD (2011) Economic assessment of the benefits of chloro-s-triazine herbicides to US corn, sorghum, and sugarcane producers. University of Wisconsin Agricultural and Applied Economics Staff Paper 564. Madison, WI: University of Wisconsin. 48 pGoogle Scholar
Monsanto (2015) Roundup Ready Plus® Challenge to Demonstrate Effectiveness and Value of Residual Herbicide Programs in Soybeans. http://news.monsanto.com/press-release/products/roundup-ready-plus-challenge-demonstrate-effectiveness-and-value-residual-her. Accessed April 19, 2016Google Scholar
National Cotton Council (2016) History of the Eradication Program. http://www.cotton.org/tech/pest/bollweevil/eradication2.cfm. Accessed April 18, 2016 Norsworthy JK, Smith KL, Scott RC, Gbur EE (2009) Consultant perspectives on weed management needs in Arkansas cotton. Weed Tech 21: 825831Google Scholar
Norsworthy, JK, Ward, SM, Shaw, DR, Llewellyn, RS, Nichols, RL, Webster, TM, Bradley, KW, Frisvold, G, Powles, SB, Burgos, NR, Witt, WW, Barrett, M (2012) Reducing the risks of herbicide resistance: best management practices and recommendations. Weed Sci 60 (spl): 3162Google Scholar
North American Invasive Species Network (2016) National CWMA Map. http://www.naisn.org/cwmamap/. Accessed April 16, 2016Google Scholar
Northeastern Illinois Invasive Plant Partnership (2016) What is a CWMA? http://niipp.net/what-cwma. Accessed April 18, 2016Google Scholar
Porpiglia, P, Porter, R, Thomas, W, Landes, A, Armel, G, Beffa, R, Stek, H, Kleven, T, Cotie, A, Patzoldt, W, Vail, G, Kaundun, D, Miller, B, Glasgow, L. (2014) HPPD-Inhibitor Resistance Stewardship: The Perspective of the HRAC HPPD-Inhibitor Working Group. http://hracglobal.com/pdfs/hppd%20fact%20sheet.pdf. Accessed April 18, 2016Google Scholar
Prokopy, LS, Floress, K, Klothor-Weinkauf, D, Baumgart-Getz, A (2008) Determinants of agricultural best management practice adoption: evidence form the literature. J Soil Water Conserv 63: 300311Google Scholar
Reimer, AP, Klothor-Weinkauf, D, Prokopy, LS (2012) The influence of perceptions of practices characteristics: an examination of agricultural best management practice adoption in two Indiana watersheds. J Rural Studies 28: 118128Google Scholar
Reimer, AP, Thompson, AW, Prokopy, LS (2011) The multidimensional nature of environmental attitudes among farmers in Indiana: implications for conservation adoption. Agric Hum Values 29: 2940Google Scholar
Riar, DS, Norsworthy, JK, Steckel, LE, Stephenson DO, IV, Bond, JA (2013) Consultant perspectives on weed management needs in midsouthern United States cotton: a follow-up survey. Weed Technol 27: 778787Google Scholar
Segerson, K (2013) When is reliance on voluntary approaches in agriculture likely to be effective? Appl Econ Perspect Policy 35: 565592Google Scholar
Shaner, DL, Beckie, HJ (2014) The future for weed control and technology. Pest Manag Sci 70: 13291339Google Scholar
Shaner, DL, ed (2014) Herbicide Handbook. 10th edn.Champaign, IL: Weed Science Society of America. Pp 1115Google Scholar
Sheeder, RJ, Lynne, GD (2011) Empathy-conditioned conservation: walking in the shoes of others as a conservation farmer. Land Econ 87: 433452Google Scholar
Shields, EJ, Dauer, JT, VanGessel, MJ, Neumann, G (2006) Horseweed (Conyza canadensis) seed collected in the planetary boundary layer. Weed Sci 54: 10631067Google Scholar
Sosnoskie, LM, Webster, TM, Kichler, JM, MacRae, AW, Grey, T, Culpepper, AS (2012) Pollen-mediated dispersal of glyphosate-resistance in Palmer amaranth under field conditions. Weed Sci 60: 366373Google Scholar
Soteres, J, Everman, W, Glasgow, L, Ingegneri, L, Schroeder, J, Shaw, D, Stachler, J, Tardif, F (2011) Lesson 4: Scouting After a Herbicide Application and Confirming Herbicide Resistance. http://wssa.net/herbicide-resistance/agronomic-crop-modules-download/. Accessed April 18, 2016Google Scholar
State of Delaware (2016) Noxious Weeds. http://dda.delaware.gov/plantind/noxious.shtml. Accessed April 18, 2016Google Scholar
Thompson, GD, Head, G (2001) Implications of regulating insect resistance management. Am Entomol 47: 610Google Scholar
Congress, U.S. (2010) Are “Superweeds” an Outgrowth of USDA Biotech Policy? (Part II). https://www.gpo.gov/fdsys/pkg/CHRG-111hhrg65649/html/CHRG-111hhrg65649.htm. Accessed April 18, 2016Google Scholar
[USDA] U.S. Department of Agriculture (2016a) Natural Resources Conservation Service (NRCS) Overview. http://www.usda.gov/wps/portal/usda/usdahome?contentid=NRCS_Agency_Splash.xml. Accessed April 18, 2016Google Scholar
[USDA] U.S. Department of Agriculture (2016b) About NRCS. http://www.nrcs.usda.gov/wps/portal/nrcs/main/national/about/. Accessed April 18, 2016Google Scholar
[USDA] U.S. Department of Agriculture (2016c) 2015 CSP Enhancement Activity Job Sheets. http://www.nrcs.usda.gov/wps/portal/nrcs/detailfull/national/programs/financial/csp/?cid=stelprdb1265825. Accessed April 19, 2016Google Scholar
[USDA] U.S. Department of Agriculture (2016d) 2014 Farm Bill-Conservation Stewardship Program—NRCS. http://www.nrcs.usda.gov/wps/portal/nrcs/detail/national/programs/financial/csp/. Accessed April 19, 2016Google Scholar
[USDA] U.S. Department of Agriculture (2016e) Environmental Quality Incentives Program. http://www.nrcs.usda.gov/wps/portal/nrcs/main/ky/programs/financial/eqip/. Accessed April 18, 2016Google Scholar
[USDA] U.S. Department of Agriculture (2016f) FY 2015 EQIP Conservation Activity Plan (CAP). http://www.nrcs.usda.gov/wps/portal/nrcs/detail/national/programs/financial/eqip/?cid+stelprdb1262227. Accessed April 19, 2016Google Scholar
[USDA] U.S. Department of Agriculture (2016g) Conservation Innovation Grants. http://www.nrcs.usda.gov/wps/portal/nrcs/main/national/programs/financial/cig/. Accessed April 18, 2016Google Scholar
[USDA] U.S. Department of Agriculture (2016h) Frequently Asked Question Biotech Yield Endorsement. http://www.rma.usda.gov/help/faq/bye.html. Accessed April 18, 2016Google Scholar
Volkmann, K (2010) Monsanto offers millions in rebates to farmers. St. Louis Business Journal. October 19.Google Scholar
Weirich, JW, Shaw, DR, Owen, MD, Dixon, PM, Weller, SC, Young, BG, Wilson, RG, Jordan, DL (2011) Benchmark study on glyphosate-resistant cropping systems in the United States. Part 5: Effects of glyphosate-based weed management programs on farm-level profitability. Pest Manag Sci 67: 781784Google Scholar
[WSSA] Weed Science Society of America (2014) Herbicide Resistance Summit II (10 September 2014, Washington, DC). http://wssa.net/wssa/weed/resistance-summit-ii/. Accessed April 19, 2016Google Scholar