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Effect of Delayed Dicamba plus Glufosinate Application on Palmer Amaranth (Amaranthus palmeri) Control and XtendFlex™ Cotton Yield

Published online by Cambridge University Press:  06 September 2017

Rachel A. Vann*
Affiliation:
Graduate Research Assistant, William Neal Reynolds Professor Emeritus, Undergraduate Assistant, Undergraduate Assistant, and Research Specialist, Crop and Soil Sciences Department, Box 7620, North Carolina State University, Raleigh, NC 27695-7620
Alan C. York
Affiliation:
Graduate Research Assistant, William Neal Reynolds Professor Emeritus, Undergraduate Assistant, Undergraduate Assistant, and Research Specialist, Crop and Soil Sciences Department, Box 7620, North Carolina State University, Raleigh, NC 27695-7620
Charles W. Cahoon Jr.
Affiliation:
Assistant Professor, Eastern Shore Agricultural Research and Extension Center, Virginia Tech, Painter, VA 23240
Trace B. Buck
Affiliation:
Graduate Research Assistant, William Neal Reynolds Professor Emeritus, Undergraduate Assistant, Undergraduate Assistant, and Research Specialist, Crop and Soil Sciences Department, Box 7620, North Carolina State University, Raleigh, NC 27695-7620
Matthew C. Askew
Affiliation:
Graduate Research Assistant, William Neal Reynolds Professor Emeritus, Undergraduate Assistant, Undergraduate Assistant, and Research Specialist, Crop and Soil Sciences Department, Box 7620, North Carolina State University, Raleigh, NC 27695-7620
Richard W. Seagroves
Affiliation:
Graduate Research Assistant, William Neal Reynolds Professor Emeritus, Undergraduate Assistant, Undergraduate Assistant, and Research Specialist, Crop and Soil Sciences Department, Box 7620, North Carolina State University, Raleigh, NC 27695-7620
*
*Corresponding author’s E-mail: [email protected]

Abstract

Glufosinate controls glyphosate-resistant Palmer amaranth, but growers struggle to make timely applications. XtendFlexTM cotton, resistant to dicamba, glufosinate, and glyphosate, may provide growers an option to control larger weeds. Palmer amaranth control and cotton growth, yield, and fiber quality were evaluated in a rescue situation created by delaying the first POST herbicide application. Treatments consisted of two POST applications of dicamba plus glufosinate, separated by 14 d, with the first application timely (0-d delay) or delayed 7, 14, 21, or 28 d. All treatments included a layby application of diuron plus MSMA. Palmer amaranth, 14 d after first POST, was controlled 99, 96, 89, 75, and 73% with 0-, 7-, 14-, 21-, or 28-d delays, respectively. Control increased following the second application, and the weed was controlled at least 94% following layby. Cotton yield decreased linearly as first POST application was delayed, with yield reductions ranging from 8 to 42% with 7- to 28-d delays. Delays in first POST application delayed cotton maturity but did not affect fiber quality.

Type
Weed Management-Major Crops
Copyright
© Weed Science Society of America, 2017 

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Footnotes

Associate Editor for this paper: Daniel Stephenson, Louisana State University Agricultural Center.

References

Literature Cited

Barnett, KA, Culpepper, AS, York, AC, Steckel, LE (2013) Palmer amaranth (Amaranthus palmeri) control by glufosinate plus fluometuron applied postemergence to WideStike® cotton. Weed Technol 27:291297 Google Scholar
Burke, IC, Troxler, SC, Askew, SD, Wilcut, JW, Smith, WD (2005) Weed management systems in glyphosate-resistant cotton. Weed Technol 19:422429 Google Scholar
Cahoon, CW, York, AC, Jordan, DL, Everman, WJ, Seagroves, RW, Culpepper, AS, Eure, PM (2015) Palmer amaranth (Amaranthus palmeri) management in dicamba-resistant cotton. Weed Technol 29:758770 CrossRefGoogle Scholar
Coetzer, E, Al-Khalib, K, Peterson, DE (2002) Glufosinate efficacy on Amaranthus species in glufosinate-resistant soybeans (Glycine max). Weed Technol 16:326331 Google Scholar
Culpepper, AS, Webster, TM, Sosnoskie, LM, York, AC (2010) Glyphosate-resistant Palmer amaranth in the United States. Pages 195212 in Nandula VK, ed. Glyphosate Resistance in Crops and Weeds: History, Development, and Management. Hoboken, NJ: John Wiley & Sons Google Scholar
Culpepper, AS, York, AC (1998) Weed management in glyphosate-tolerant cotton. J Cotton Sci 2:174185 Google Scholar
Culpepper, AS, York, AC (1999) Weed management and net returns with transgenic, herbicide-resistant, and nontransgenic cotton (Gossypium hirsutum). Weed Technol 13:411420 Google Scholar
Culpepper, AS, York, AC, Roberts, R, Whitaker, JR (2009) Weed control and crop response to glufosinate applied to ‘PHY 485 WRF’ cotton. Weed Technol 23:356362 Google Scholar
Culpepper, S (2016). Weed management in cotton. Pages 90–144 in 2016 Georgia Cotton Production Guide. Athens, GA: University of Georgia College of Agricultural and Environmental Sciences Cooperative Extension Publ. CSS-16-01. http://www.ugacotton.com/vault/file/2016-UGA-Cotton-Production-Guide.pdf. Accessed March 6, 2017Google Scholar
Frans, RE, Talbert, R, Marx, D, Crowley, H (1986) Experimental design and techniques for measuring and analyzing plant responses to weed control practices. Pages 2946 in Camper ND, ed. Research Methods in Weed Science. Champaign, IL: Southern Weed Science Society Google Scholar
Gardner, AP, York, AC, Jordan, DL, Monks, DW (2006) Management of annual grasses and Amaranthus spp. in glufosinate-resistant cotton. J Cotton Sci 10:328338 Google Scholar
Heap, I (2017) The International Survey of Herbicide Resistant Weeds. http://www.weedscience.org. Accessed March 6, 2017Google Scholar
[ISAAA] International Service for the Acquisition of Agri-Biotech Applications (2015) Event Name: MON88913 x MON15985. http://www.isaaa.org/gmapprovaldatabase/event/default.asp?EventID=62. Accessed March 6, 2017Google Scholar
MacRae, AW, Webster, TM, Sosnoskie, LM, Culpepper, AS, Kichler, JM (2013) Cotton yield loss potential in response to length of Palmer amaranth (Amaranthus palmeri) interference. J Cotton Sci 17:227232 Google Scholar
Mehlich, A (1984) Photometric determination of humic matter in soils, a proposed method. Commun Soil Sci Plant Anal 15:14171422 Google Scholar
Merchant, RM, Culpepper, AS, Eure, PM, Richburg, JS, Braxton, LB (2014) Salvage Palmer amaranth programs can be effective in cotton resistant to glyphosate, 2,4-D, and glufosinate. Weed Technol 28:316322 Google Scholar
Merchant, RM, Sosnoskie, LM, Culpepper, AS, Steckel, LE, York, AC, Braxton, LB, Ford, JC (2013) Weed response to 2,4-D, 2,4D-B, and dicamba applied alone or with glufosinate. J Cotton Sci 17:212218 Google Scholar
Morgan, GD, Baumann, PA, Chandler, JM (2001) Competitive impact of Palmer amaranth (Amaranthus palmeri) on cotton (Gossypium hirsutum) development and yield. Weed Technol 15:408412 CrossRefGoogle Scholar
Moore, KJ, Dixon, PM (2015) Analysis of combined experiments revisited. Agron J 107:763771 CrossRefGoogle 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(spec. issue):3162 Google Scholar
Poirier, AH, York, AC, Jordan, DL, Chandi, A, Everman, WJ, Whitaker, JR (2014) Distribution of glyphosate- and thifensulfuron-resistant Palmer amaranth (Amaranthus palmeri) in North Carolina. Int J Agron 10.1155/2014/747810 Google Scholar
Ritchie, GL, Whitaker, JR, Collins, GD (2011) Effect of sample size on cotton plant mapping analysis and results. J Cotton Sci 15:224232 Google Scholar
Rowland, MW, Murray, DS, Verhalen, LM (1999) Full-season Palmer amaranth (Amaranthus palmeri) interference with cotton (Gossypium hirsutum). Weed Sci 47:305309 CrossRefGoogle Scholar
Smith, DT, Baker, RV, Steele, GL (2000) Palmer amaranth (Amaranthus palmeri) impacts on yield, harvesting, and ginning in dryland cotton (Gossypium hirsutum). Weed Technol 14:122126 Google Scholar
Sosnoskie, LM, Culpepper, AS (2014) Glyphosate-resistant Palmer amaranth (Amaranthus palmeri) increases herbicide use, tillage, and hand-weeding in Georgia cotton. Weed Sci 62:393402 Google Scholar
Sosnoskie, LM, Kichler, JM, Wallace, RD, Culpepper, AS (2011) Multiple resistance in Palmer amaranth to glyphosate and pyrithiobac confirmed in Georgia. Weed Sci 59:321325 Google Scholar
Steckel, LE (2007) The dioecious Amaranthus spp.: here to stay. Weed Technol 21:567570 Google Scholar
Stroup, WW, Littell, RC (2002) Impact of variance component estimates on fixed effect inference in unbalanced mixed models. Pages 32–48 in Proceedings of the 14th Annual Conference on Applied Statistics in Agriculture. Manhattan, KS: Kansas State University Department of StatisticsGoogle Scholar
Ward, SM, Webster, TM, Steckel, LE (2013) Palmer amaranth (Amaranthus palmeri). Weed Technol 27:1227 CrossRefGoogle Scholar
Webster, TM (2013) Weed survey - southern states: broadleaf crops subsection. Pages 275–287 in Proceedings of the 66th Annual Meeting of the Southern Weed Science Society. Houston, TX: Southern Weed Science SocietyGoogle Scholar
Whitaker, JR, York, AC, Jordan, DL, Culpepper, AS (2011) Weed management with glyphosate- and glufosinate-based systems in PHY 485 WRF cotton. Weed Technol 25:183191 Google Scholar
York, AC (2016) Weed management in cotton. Pages 84–129 in 2016 Cotton Information. Raleigh, NC: North Carolina Cooperative Extension Service Publ. AG-417. https://content.ces.ncsu.edu/cotton-information/weed-management-in-cotton. Accessed March 6, 2017Google Scholar
York, AC, Culpepper, AS, Sosnoskie, LM, Bollman, S (2012) Palmer amaranth management in dicamba/glufosinate tolerant cotton. Page 98 in Proceedings of the 2012 Southern Weed Science Society 65th Annual Meeting. Charleston, SC: Southern Weed Science SocietyGoogle Scholar