First report of injuries associated with triclopyr herbicide drift in grapevines
DOI:
https://doi.org/10.5433/1679-0359.2021v42n6SUPL2p4163Keywords:
Viticulture, Table grapes, Herbicide, Application technology, Vitis vinifera L.Abstract
In the southern region of Brazil, close proximity of vineyards to soybean areas is common, and glyphosate is used frequently to allow for the control of weeds. However, the continuous use of this chemical has accelerated the process of selection for resistant species such as horseweed (Conyza sp.), thus leading to the search for alternative herbicides such as triclopyr to control this weed. To the best of our knowledge, this is the first report detailing injuries associated with triclopyr drift in grapevines in Brazil, in the Northern region of Parana state, that can result in crop losses that were previously uncharacterized. In this report, the primary symptoms associated with the drift of triclopyr in grapevines are described. Additionally, the major implications of this process regarding vine development along the next crop seasons are explored, and the primary measures to prevent these injuries are discussed.Downloads
References
Cobb, A. H., & Reade, J. P. H. (2010). Herbicides and plant physiology (7nd ed.). Hoboken: Wiley Publishers.
Felsot, A.S., Unsworth, J. B., Linders, J. B., Roberts, G., Rautman, D., Harris, C., & Carazo, E. (2011). Agrochemical spray drift; assessment and mitigation a review. (2010). Journal of Environmental Science Health, Part B, 46(1), 1-23. doi: 10.1080/03601234.2010.515161
Genta, W., Tessmann, D. J., Roberto, S. R., Vida, J. B., Colombo, L. A., Scapin, C. R., Clovis, L. R. (2010). Manejo de míldio no cultivo protegido de videira de mesa ‘BRS Clara’. Pesquisa Agropecuária Brasileira, 45(12), 1388-1395. doi: 10.1590/S0100-204X2010001200008
Hansen, H., & Grossmann, K. (2000). Auxin-induced ethylene triggers abscisic acid biosynthesis and growth inhibition. Plant Physiology, 124(3), 1437-1448. doi: 10.1104/pp.124.3.1437
Heap, I. (2020). The international herbicide-resistant weed database. Corvalis: WeedScience. Retrieved from http://www.weedscience.org/Home.aspx
Instituto Brasileiro de Geografia e Estatística (2019). Tabela 1618: área plantada, área colhida e produção, por ano da safra e produto das lavouras. Rio de Janeiro: IBGE. Recuperado de https://sidra.ibge.gov.br/ tabela/1618
Kishino, A. Y., Marur, C. J., & Roberto, S. R. (2019a). Características da planta. Variedades-copa e Porta-enxertos. In A. Y. Kishino, S. L. C. de Carvalho, & S. R. Roberto (Eds.), Viticultura tropical: o sistema de produção de uvas de mesa do Paraná (pp. 201-249). Londrina: IAPAR.
Kishino, A. Y., Roberto, S. R., & Genta, W. (2019b). Implantação do pomar. In A. Y. Kishino, S. L. C. de Carvalho, S. R. Roberto, Viticultura tropical: o sistema de produção de uvas de mesa do Paraná (pp. 251-301). Londrina: IAPAR.
Nascimento, E. R., & Yamashita, O. M. (2009). Desenvolvimento inicial de olerícolas cultivadas em solos contaminados com resíduos de 2,4-D + picloram. Semina: Ciências Agrárias, 30(1), 47-54. doi: 10.543 3/1679-0359
Oliveira, G. M. P., Gandolfo, M. A., Oliveira, R. B., Oliveira, S. M. P., & Martins, V. A. (2019). Potential drift and injury of herbicides sprayed in a wind tunnel. Engenharia Agrícola, 39(1), 75-82. doi: 10.1590 /1809-4430-eng.agric.v39n1p75-82/2019
Oliveira, R. S., Jr., Constantin, J., Brandão, J. U. T., Fº., Callegari, O., Pagliari, P. H., Cavalieri, S. D.,... Roso, A. C. (2007). Efeito de subdoses de 2,4-D na produtividade de uva Itália e suscetibilidade da cultura em função de seu estádio de desenvolvimento. Engenharia Agrícola, 27(Spe), 35-40. doi: 10.15 90/S0100-69162007000200006
Ross, J. J., O’Neill, D. P., Wolbang, C. M., Symons, G. M., & Reid, J. B. (2002). Auxin-gibberellin interactions and their role in plant growth. Journal of Plant Growth Regulation, 20(4), 346-353. doi: 10. 1007/s003440010034
Shaner, D. L. (2014). Herbicide handbook (10nd ed.). Champaign, IL: Weed Science Society of America.
Sistema de Agrotóxicos Fitossanitário (2021). Consulta de ingrediente ativo. Brasília: MAPA. Retrieved from http://agrofit.agricultura.gov.br/agrofit_cons/principal_agrofit_cons
Tahmasebi, B. K., Alebrahim, M. T., Roldán-Gómez, R. A., Silveira, H. M., Carvalho, L. B., Alcántara-de La Cruz, R., & Prado, R. (2018). Effectiveness of alternative herbicides on three Conyza species from Europe with and without glyphosate resistance. Crop Protection, 112, 350-355. doi: 10.1016/j.cropro. 2018.06.021
Downloads
Published
How to Cite
Issue
Section
License
Semina: Ciências Agrárias adopts the CC-BY-NC license for its publications, the copyright being held by the author, in cases of republication we recommend that authors indicate first publication in this journal.
This license allows you to copy and redistribute the material in any medium or format, remix, transform and develop the material, as long as it is not for commercial purposes. And due credit must be given to the creator.
The opinions expressed by the authors of the articles are their sole responsibility.
The magazine reserves the right to make normative, orthographic and grammatical changes to the originals in order to maintain the cultured standard of the language and the credibility of the vehicle. However, it will respect the writing style of the authors. Changes, corrections or suggestions of a conceptual nature will be sent to the authors when necessary.