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5 November 2019 Rapid Necrosis: A Novel Plant Resistance Mechanism to 2,4-D
Andrew R. S. de Queiroz, Carla A. Delatorre, Felipe R. Lucio, Caio V. S. Rossi, Luiz H. S. Zobiole, Aldo Merotto
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Abstract

Plants of Sumatran fleabane [Conyza sumatrensis (Retz.) E. Walker] were identified in a field with an unusual rapid leaf-injury herbicide symptoms after application of 2,4-D in mixture with glyphosate. The objectives of this study were to confirm the occurrence of resistance to 2,4-D herbicide and to characterize the occurrence of rapid necrosis as the mechanism associated with the herbicide resistance in C. sumatrensis. The studies performed were an initial screening, effect of 2,4-D alone and associated with glyphosate, cross- and multiple-resistance evaluation, effect of commercial formulation and analytical product, and rate of H2O2 evolution. The Marpr9-rn accession was identified with rapid necrosis symptoms and survival to 804 g ae ha–1 of 2,4-D. The resistance factor to the herbicide 2,4-D was 18.6 at 49 d after spraying. The analytical product 2,4-D and the commercial formulation resulted in similar symptoms of rapid necrosis. This symptom did not occur for the six other auxinic herbicides (dicamba, florpyrauxifen-benzyl, fluroxypyr, halauxifen-methyl, picloram, and triclopyr), indicating absence of cross-resistance. Multiple resistance to the herbicides paraquat, saflufenacil, and ammonium glufosinate was not identified in the Marpr9-rn population. However, survival following treatment with the herbicides glyphosate and chlorimuron-ethyl occurred. The evolution of H2O2 began at 15 min after application and was less pronounced in low light. These results indicate the first case of resistance to 2,4-D and occurrence of rapid necrosis in C. sumatrensis.

© Weed Science Society of America, 2019.
Andrew R. S. de Queiroz, Carla A. Delatorre, Felipe R. Lucio, Caio V. S. Rossi, Luiz H. S. Zobiole, and Aldo Merotto "Rapid Necrosis: A Novel Plant Resistance Mechanism to 2,4-D," Weed Science 68(1), 6-18, (5 November 2019). https://doi.org/10.1017/wsc.2019.65
Received: 6 March 2019; Accepted: 24 October 2019; Published: 5 November 2019
KEYWORDS
Auxin
Herbicide resistance
hypersensitive response
rapid response
reactive oxygen species
Sumatran fleabane
tall fleabane
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