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Research Articles

Interference of feral radish (Raphanus sativus) resistant to AHAS-inhibiting herbicides with oilseed rape, wheat, and sunflower

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Pages 111-120 | Received 09 Jan 2020, Accepted 18 Jul 2021, Published online: 06 Aug 2021

References

  • [AAPRESID] Argentine No-Till Farmers Association. 2019. Mapa de malezas. http://www.aapresid.org.ar/rem/mapas-rem/
  • Aguirrezábal LAN, Orioli G, Hernández L, Pereyra V, Miravé J. 1996. Girasol. Aspectos fisiológicos que determinan el rendimiento. Buenos Aires, Argentina: Unidad Integrada Balcarce.
  • Bajwa AA. 2014. Sustainable weed management in conservation agriculture. Crop Prot. 65:105–113.
  • Bianchi M, Fleck N, Agostinetto D, Rizzardi M. 2011. Interferência de Raphanus sativus na produtividade de cultivares de soja. Planta Daninha. 29(4):783–792.
  • Blackshaw RE, Lemerle D, Mailer R, Young KR. 2002. Influence of wild radish on yield and quality of canola. Weed Sci. 50(3):344–349.2.0.CO;2]
  • Chauhan BS, Gill GS, Preston C. 2006. Tillage system effects on weed ecology, herbicide activity and persistence: a review. Aust J Exp Agric. 46(12):1557–1570.
  • Cheam AH. 1986. Seed production and seed dormancy in wild radish (Raphanus raphanistrum L.) and some possibilities for improving control. Weed Res. 26(6):405–413.
  • Cousens R. 1985. A simple model relating yield loss to weed density. Ann Appl Biol. 107(2):239–252.
  • Daxenbichler ME, Spencer GF, Carlson DG, Rose GB, Brinker AM, Powell RG. 1991. Glucosinolate composition of seeds from 297 species of wild plants. Phytochemistry. 30(8):2623–2638.
  • Eslami SV, Gill GS, Bellotti B, McDonald G. 2006. Wild radish (Raphanus raphanistrum) interference in wheat. Weed Sci. 54(4):749–756.
  • Guillen-Portal FR, Stougaard RN, Xue Q, Eskridge KM. 2006. Compensatory mechanisms associated with the effect of spring wheat seed size on wild oat competition. Crop Sci. 46(2):935–945.
  • Harker KN, O’Donovan JT, Clayton GW, Mayko J. 2008. Field-scale time of weed removal in canola. Weed Technol. 22(4):747–479.
  • Heap I. 2021. The International Survey of Herbicide Resistant Weeds. Online. [accessed 2021 June]. http://www.weedscience.org.
  • Holman JD, Bussan AJ, Maxwell BD, Miller PR, Mickelso JA. 2004. Spring wheat, canola, and sunflower response to Persian darnel (Lolium persicum) interference. Weed Technol. 18(3):509–520.
  • Kraehmer H, van Almsick A, Beffa R, Dietrich H, Eckes P, Hacker E, Hain R, Strek HJ, Stuebler H, Willms L. 2014. Herbicides as weed control agents: state of the art: II. Recent achievements. Plant Physiol. 166(3):1132–1148.
  • Lamego FP, Ruchel Q, Kaspary TE, Gallon M, Basso CJ, Santi AL. 2013. Habilidade competitiva de cultivares de trigo com plantas daninhas. Planta Daninha. 31(3):521–531.
  • Lu H, Yu Q, Han H, Owen MJ, Powles SB. 2019. A novel psbA mutation (Phe274-Val) confers resistance to PSII herbicides in wild radish (Raphanus raphanistrum). Pest Manag Sci. 75(1):144–151.
  • Malik MS, Norsworthy JK, Riley MB, Bridges W. 2010. Temperature and light requirements for wild radish (Raphanus raphanistrum) germination over a 12-month period following maturation. Weed Sci. 58(2):136–140.
  • Manalil S, Chauhan BS. 2019. Interference of turnipweed (Rapistrum rugosum) and Mexican pricklepoppy (Argemone mexicana) in wheat. Weed Sci. 67(6):666–672.
  • Mandal S, Yadav S, Singh R, Begum G, Suneja P, Singh M. 2002. Correlation studies on oil content and fatty acid profile of some Cruciferous species. Genet Resour Crop Evol. 49(6):551–556.
  • Naderi R, Ghadiri H. 2011. Competition of wild mustard (Sinapis arvense L.) densities with rapeseed (Brassica napus L.) under different levels of nitrogen fertilizer. J Agric Sci Technol. 13:45–51.
  • 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(SP1):31–62.
  • Oerke EC. 2006. Crop losses to pests. J Agric Sci. 144(1):31–43.
  • Page ER, Cerrudo D, Westra P, Loux M, Smith K, Foresman C, Wright H, Swanton CJ. 2012. Why early season weed control is important in maize. Weed Sci. 60(3):423–430.
  • Pandolfo CE. 2016. Caracterización agroecológica de poblaciones ferales brasicáceas con resistencia a herbicidas [doctoral thesis]. Bahía Blanca, Argentina: Dpto. de Agronomía, Universidad Nacional del Sur. p. 83–147.
  • Pandolfo CE, Presotto A, Poverene M, Cantamutto M. 2013. Limited occurrence of resistant radish (Raphanus sativus) to AHAS-inhibiting herbicides in Argentina. Planta Daninha. 31(3):657–666.
  • Pandolfo CE. 2016. Caracterización agroecológica de poblaciones ferales brasicáceas con resistencia a herbicidas [PhD thesis]. Bahía Blanca, Argentina: Universidad Nacional del Sur. p. 83–118.
  • Pandolfo CE, Presotto A, Moreno F, Dossou I, Migasso JP, Sakima E, Cantamutto M. 2016. Broad resistance to acetohydroxyacid-synthase-inhibiting herbicides in feral radish (Raphanus sativus L.) populations from Argentina. Pest Manag Sci. 72(2):354–361.
  • Presotto A, Hernández F, Díaz M, Fernández-Moroni I, Pandolfo CE, Basualdo J, Cuppari S, Cantamutto M, Poverene M. 2017. Crop-wild sunflower hybridization can mediate weediness throughout growth-stress tolerance trade-offs. Agric Ecosyst Environ. 249:12–21.
  • [ReTAA] Relevamiento de Tecnología Agrícola Aplicada de la Bolsa de Cereales. 2020. [accessed 2020 June]. http://www.bolsadecereales.com/imagenes/retaa/2020-02/199-juanbriheters2020190220.pdf.
  • Rondanini DP, Menendez YC, Gomez NV, Miralles DJ, Botto JF. 2017. Vegetative plasticity and floral branching compensate low plant density in modern spring rapeseed. Field Crops Res. 210:104–113.
  • Scursoni JA, Gigón R, Martín AN, Vigna M, Leguizamón ES, Istilart C, López R. 2014. Changes in weed ­communities of spring wheat crops of Buenos Aires province of Argentina. Weed Sci. 62(1):51–62.
  • Scursoni JA, Duarte VA, Oreja FH, Kruk BC, de la Fuente EB. 2019. Weed management practices in Argentina crops. Weed Technol. 33(03):459–463.
  • [SMN] National Metereological Service. 2021. Características: estadísticas de largo plazo. Online. [accessed 2021 June]. https://www.smn.gob.ar.
  • Snow AA, Campbell LG. 2005. Can feral radishes become weeds?. In: Gressel J, editor. Crop ferality and volunteerism. Boca Raton (FL): CRC Press; p. 193–208.
  • Swanton CJ, Nkoa R, Blackshaw RE. 2015. Experimental methods for crop–weed competition studies. Weed Sci. 63(SP1):2–11.
  • Theisen G. 2008. Aspectos botânicos e relato da resistência de nabo silvestre aos herbicidas inibidores de ALS. Pelotas, Brazil: Embrapa Clima Temperado; p. 1–24
  • Varanasi A, Prasad PVV, Jugulam M. 2016. Impact of climate change factors on weeds and herbicide efficacy. Adv Agron. 135:107–146.
  • Vercellino RB, Pandolfo CE, Breccia G, Cantamutto M, Presotto A. 2018. AHAS Trp574Leu substitution in Raphanus sativus L.: screening, enzyme activity and fitness cost. Pest Manag Sci. 74(7):1600–1607.
  • Vercellino RB, Pandolfo CE, Cerrota A, Cantamutto M, Presotto A. 2019. The role of light and the pericarp on seed dormancy and germination in feral Raphanus ­sativus (Brassicaceae). Weed Res. 59(5):396–406.
  • Vercellino RB, Hernandez F, Pandolfo CE, Cantamutto M, Presotto A. 2021. Ecological fitness cost associated with the AHAS Trp574Leu mutation in feral Raphanus sativus. Weed Res. 61(3):210–220.
  • Walsh M, Newman P, Powles S. 2013. Targeting weed seeds in-crop: a new weed control paradigm for global agriculture. Weed Technol. 27(3):431–436.
  • Walsh MJ, Powles SB, Beard BR, Parkin BT, Porter SA. 2004. Multiple-herbicide resistance across four modes of action in wild radish (Raphanus raphanistrum). Weed Sci. 52(1):8–13.
  • Warwick SI, Francis A. 2005. The biology of Canadian weeds. 132. Raphanus raphanistrum. L. Can J Plant Sci. 85(3):709–733.

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