Hostname: page-component-78c5997874-xbtfd Total loading time: 0 Render date: 2024-11-14T11:12:47.615Z Has data issue: false hasContentIssue false

Use of Imazosulfuron in Herbicide Programs for Drill-Seeded Rice (Oryza sativa) in the Mid-South United States

Published online by Cambridge University Press:  20 January 2017

Dilpreet S. Riar*
Affiliation:
Department of Crop, Soil, and Environmental Sciences, University of Arkansas, 1366 West Altheimer Drive, Fayetteville, AR 72704
Jason K. Norsworthy
Affiliation:
Department of Crop, Soil, and Environmental Sciences, University of Arkansas, 1366 West Altheimer Drive, Fayetteville, AR 72704
*
Corresponding author's E-mail: [email protected]

Abstract

Research was conducted in 2009 and 2010 to evaluate influence of imazosulfuron rate and application timing on weed control in drill-seeded rice at Stuttgart, AR, and to evaluate imazosulfuron-containing herbicide programs in drill-seeded rice at Keiser and Stuttgart, AR. Weed species evaluated included barnyardgrass, broadleaf signalgrass, hemp sesbania, and yellow nutsedge. Imazosulfuron applied at 224 and 336 g ai ha−1 during PRE, early POST (EPOST), or preflood (PREFLD) growth periods provided similar control of all weeds. Imazosulfuron applied EPOST or PREFLD controlled hemp sesbania and yellow nutsedge ≥ 93% both years at 5 and 7 wk after planting (WAP), except in 2009 when hemp sesbania control was ≤ 79% at 7 WAP. In 2010, because of inadequate rainfall, hemp sesbania and yellow nutsedge control with PRE-applied imazosulfuron was ≤29% at 5 and 7 WAP. Imazosulfuron plus clomazone PRE followed by (fb) quinclorac plus propanil EPOST and imazosulfuron plus quinclorac EPOST fb thiobencarb plus propanil PREFLD programs controlled hemp sesbania and barnyardgrass (in at least two site-years), and yellow nutsedge and broadleaf signalgrass (in at least one site-year) greater than or equal to clomazone plus quinclorac PRE fb propanil plus halosulfuron PRELD (standard program). No rice injury was observed with any herbicide program. Rice yield with all imazosulfuron-containing herbicide programs (6,630 to 8,130 kg ha−1) was similar to the standard herbicide program (7,240 kg ha−1). Imazosulfuron in mixture with clomazone, propanil, or quinclorac can be incorporated into herbicide programs of mid-South rice production for the control of broadleaf weeds and sedges.

En 2009 y 2010 se realizó una investigación para evaluar la influencia de la dosis y el momento de aplicación de imazosulfuron en el control de malezas en el cultivo de arroz sembrado en líneas en Stuttgart, AR, y también para evaluar los programas que utilizan este mismo herbicida en arroz sembrado de la misma manera en Keiser y Stuttgart, AR. Las especies de maleza evaluadas incluyeron Echinochloa crus-galli, Urochloa platyphylla, Sesbania herbacea y Cyperus esculentus. Imazosulfuron aplicado a 224 y 336 g ia ha−1 durante PRE, POST-temprana (EPOST), o antes de la inundación (PREFLD) proporcionó control similar de todas las malezas. Imazosulfuron aplicado EPOST o PREFLD controló S. herbacea C. esculentus ≥93% en ambos años a las 5 y 7 semanas después de la siembra (WAP), excepto en 2009 cuando el control de S. herbacea fue ≤79% a las 7 WAP. En 2010, debido a la escasez de lluvias, el control de S. herbacea y C. esculentus con imazosulfuron aplicado PRE fue ≤29% a las 5 y 7 WAP. Los programas en que se aplicó imazosulfuron más clomazone en PRE seguido de (fb) quinclorac más propanil en EPOST e imazosulfuron más quinclorac en EPOST fb thiobencarb más propanil en PREFLD, controlaron S. herbacea y E. crus-galli (en al menos dos años/sitio), y C. esculentus y U. platyphylla (en al menos un año/sitio) mejor o igual al clomazone más quinclorac PRE fb propanil más halosulfuron PREFLD (programa estándar). No se observó daño en el arroz con ninguno de los programas de herbicidas. El rendimiento del arroz en todos los programas de herbicidas con imazosulfuron (6630 a 8130 kg ha−1) fue similar al programa de herbicidas estándar (7240 kg ha−1). Imazosulfuron mezclado con clomazone, propanil, o quinclorac puede ser incorporado a los programas de herbicidas para la producción de arroz en la región Sur-Media para el control de malezas de hoja ancha y cyperáceas.

Type
Weed Management—Major Crops
Copyright
Copyright © Weed Science Society of America 

Access options

Get access to the full version of this content by using one of the access options below. (Log in options will check for institutional or personal access. Content may require purchase if you do not have access.)

References

Literature Cited

Ahmadi, M. S., Haderlie, L. C., and Wicks, G. A. 1980. Effect of growth stage and water stress on barnyardgrass (Echinochloa crus-galli) control and on glyphosate absorption and translocation. Weed Sci. 28:277282.Google Scholar
Avila, L. A., Senseman, S. A., McCauley, G. N., Chandler, J. M., and O'-Barr, J. H. 2005. Effect of flood timing on red rice (Oryza spp.) control with imazethapyr applied at different dry-seeded rice growth stages. Weed Technol. 19:476480.Google Scholar
Baron, J. 2006. The IR-4 Project: 2006 IR-4 New Products/Transitional Solution List. http://www.aftresearch.org/sai/public/pdf/NewProductsAugust2006.pdf. Accessed: April 5, 2011.Google Scholar
[CDMS] Crop Data Management Systems, Inc. 2011. Command® 3ME. http://www.cdms.net/LDat/ld3U6001.pdf. Accessed: April 15, 2011.Google Scholar
Crawford, S. H. and Jordan, D. L. 1995. Comparison of single and multiple applications of propanil and residual herbicides in dry-seeded rice (Oryza sativa). Weed Technol. 9:153157.Google Scholar
Felix, J. and Boydston, R. A. 2010. Evaluation of imazosulfuron for yellow nutsedge (Cyperus esculentus) and broadleaf weed control in potato. Weed Technol. 24:471477.Google Scholar
Godara, R. K. 2010. Texasweed [Caperonia palustris (L.) St. Hil.] interference and management in drill-seeded rice. Ph.D Dissertation. Baton Rouge, LA Louisiana State University. Pp. 105108.Google Scholar
Henry, G. M. and Sladek, B. S. 2008. Control of yellow and purple nutsedge in bermudagrass turf with V-10142. Proc. South. Weed Sci. Soc. 61:125.Google Scholar
Jordan, D. L. 1997. Efficacy of reduced rates of quinclorac applied with propanil or propanil plus molinate in dry-seeded rice (Oryza sativa). Weed Sci. 45:824828.Google Scholar
Jordan, D. L., Miller, D. K., and Crawford, S. H. 1998. Barnyardgrass (Echinochloa crus-galli) control in dry-seeded rice (Oryza sativa) with soil applied and postemergence herbicide programs. Weed Technol. 12:6973.Google Scholar
Kirksey, K. B., Hayes, R. M., Charger, W. A., Mullions, C. A., and Mueller, T. C. 1996. Clomazone dissipation in two Tennessee soils. Weed Sci. 44:959963.Google Scholar
Kwon, S. L., Smith, R. J. Jr., and Talbert, R. E. 1991. Interference duration of red rice (Oryza sativa) in rice (O. sativa). Weed Sci. 39:363368.Google Scholar
Masson, J. A., Webster, E. P., and Williams, B. J. 2001. Flood depth, application timing, and imazethapyr activity in imidazolinone-tolerant rice (Oryza sativa). Weed Technol. 15:315319.Google Scholar
McGregor, J. T. Jr., Smith, R. J. Jr., and Talbert, R. E. 1988. Interspecific and intraspecific interference of broadleaf signalgrass (Brachiaria platyphylla) in rice (Oryza sativa). Weed Sci. 36:589593.Google Scholar
Mills, J. A. and Witt, W. W. 1989. Efficacy, phytotoxicity, and persistence of imazaquin, imazethapyr, and clomazone in no-till double-crop soybeans (Glycine max). Weed Sci. 37:353359.Google Scholar
Morrica, P., Barbato, F., Dello-Iacovo, R., Seccia, S., and Ungaro, F. 2001a. Kinetics and mechanism of imazosulfuron hydrolysis. J. Agric. Food Chem. 49:38163820.Google Scholar
Morrica, P., Barbato, F., Giordano, A., Seccia, S., and Ungaro, F. 2000. Adsorption and desorption of imazosulfuron by soil. J. Agric. Food Chem. 48:61326137.Google Scholar
Morrica, P., Giordano, A., Seccia, S., Ungaro, F., and Ventriglia, M. 2001b. Degradation of imazosulfuron in soil. Pest Manag. Sci. 57:360365.Google Scholar
Norsworthy, J. K., Burgos, N. R., Scott, R. C., and Smith, K. L. 2007. Consultant perspectives on weed management needs in Arkansas rice. Weed Technol. 21:832839.Google Scholar
Norsworthy, J. K., Bangarwa, S. K., Scott, R. C., Still, J., and Griffith, G. M. 2010. Use of propanil and quinclorac tank mixtures for broadleaf weed control on rice (Oryza sativa) levees. Crop Protect. 29:255259.Google Scholar
Norsworthy, J. K., Rana, S. S., Mattice, J., Johnson, D. B., Wilson, J., and Scott, R. C. 2011. Use of imazosulfuron in Arkansas rice. Pages 160166 in Norman, R. J., and Moldenhauer, K. A. K., eds. B. R. Wells Rice Research Studies 2010. Arkansas Agricultural Experiment Station Research Series 591.Google Scholar
Payne, S. A. and Oliver, L. R. 2000. Weed control programs in drilled glyphosate-resistant soybean. Weed Technol. 14:413422.Google Scholar
Slaton, N. and Cartwright, R. 2010. Rice stand establishment. Pages 2128 in Slaton, N. A., ed. Rice Production Handbook. Little Rock, AR Arkansas Cooperative Extension Service, University of Arkansas, Pub. MP-192.Google Scholar
Smith, R. J. Jr. 1968. Weed competition in rice. Weed Sci. 16:252255.Google Scholar
Smith, R. J. Jr. 1974. Competition of barnyardgrass with rice cultivars. Weed Sci. 22:423426.Google Scholar
Smith, R. J. Jr. 1981. Control of red rice (Oryza sativa) in water-seeded rice (O. sativa). Weed Sci. 39:663666.Google Scholar
Smith, R. J. Jr. 1988. Weed thresholds in southern U.S. rice (Oryza sativa). Weed Technol. 2:232241.Google Scholar
Smith, R. J. Jr. and Fox, W. T. 1973. Soil water and growth of rice and weeds. Weed Sci. 21:6163.Google Scholar
Smith, R. J. Jr. and Hill, J. E. 1990. Weed control technology in U.S. rice. Pages 314327 in Grayson, B. T., Green, M. B., and Coping, L. D., eds. Pest Management in Rice. London Elsevier.Google Scholar
Tacker, P., Vories, E., Wilson, C. Jr., and Slaton, N. 2010. Water management. Pages 7586 in Slaton, N. A., ed. Rice Production Handbook. Little Rock, AR Arkansas Cooperative Extension Service, University of Arkansas, Pub. MP-192.Google Scholar
Usui, K. 2001. Metabolism and selectivity of rice herbicides in plants. Weed Biol. Manag. 1:137146.Google Scholar
Zhang, W., Webster, E. P., Pellerin, K. J., and Blouin, D. C. 2006. Weed control programs in drill-seeded imidazolinone-resistant rice (Oryza sativa). Weed Technol. 20:956960.Google Scholar