<b>Mutation of Trp-574-Leu ALS gene confers resistance of radish biotypes to iodosulfuron and imazethapyr herbicides
Acetolactate synthase inhibitors are the main group of herbicides used in winter crops in Southern Brazil where their intensive use has selected for herbicide-resistant biotypes of radish. The resistance affects the efficacy of herbicides, and identifying the resistance mechanism involved is importa...
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2017-05-01
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doaj-cdcf7097bfad434baf2fcc95b993b0a52020-11-24T21:19:23ZengEduem (Editora da Universidade Estadual de Maringá)Acta Scientiarum: Agronomy1679-92751807-86212017-05-0139329930610.4025/actasciagron.v39i3.3252115185<b>Mutation of Trp-574-Leu ALS gene confers resistance of radish biotypes to iodosulfuron and imazethapyr herbicidesJoanei Cechin0Leandro Vargas1Dirceu Agostinetto2Fabiane Pinto Lamego3Franciele Mariani4Taísa Dal Magro5Universidade Federal de PelotasEmpresa Brasileira de Pesquisa AgropecuáriaUniversidade Federal de PelotasEmpresa Brasileira de Pesquisa AgropecuáriaInstituto Federal de Educação, Ciência e TecnologiaUniversidade de Caxias do SulAcetolactate synthase inhibitors are the main group of herbicides used in winter crops in Southern Brazil where their intensive use has selected for herbicide-resistant biotypes of radish. The resistance affects the efficacy of herbicides, and identifying the resistance mechanism involved is important for defining management strategies. The aim of this study was to elucidate the resistance mechanism of radish biotypes by quantifying the enzyme activity, ALS gene sequencing and evaluating the response of biotypes to iodosulfuron and imazethapyr herbicide application after treatment with a cytochrome P450 monooxygenase inhibitor. The susceptible (B1) and resistant (B4 and B13) biotypes were from wheat fields in the Northwest of Rio Grande do Sul State. The results demonstrated that the enzyme affinity for the substrate (KM) was not affected in biotypes B4 and B13 but that the Vmax of the resistant biotypes was higher than that of biotype B1. The resistant biotypes showed no differential metabolic response to iodosulfuron and imazethapyr herbicides when inhibited by malathion and piperonyl butoxide. However, gene sequencing of ALS showed a mutation at position 574, with an amino acid substitution of tryptophan for leucine (Trp-574-Leu) in resistant biotypes.http://periodicos.uem.br/ojs/index.php/ActaSciAgron/article/view/32521Raphanus sativusmechanism of resistenceALS enzyme activitygene mutationmetabolism |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Joanei Cechin Leandro Vargas Dirceu Agostinetto Fabiane Pinto Lamego Franciele Mariani Taísa Dal Magro |
spellingShingle |
Joanei Cechin Leandro Vargas Dirceu Agostinetto Fabiane Pinto Lamego Franciele Mariani Taísa Dal Magro <b>Mutation of Trp-574-Leu ALS gene confers resistance of radish biotypes to iodosulfuron and imazethapyr herbicides Acta Scientiarum: Agronomy Raphanus sativus mechanism of resistence ALS enzyme activity gene mutation metabolism |
author_facet |
Joanei Cechin Leandro Vargas Dirceu Agostinetto Fabiane Pinto Lamego Franciele Mariani Taísa Dal Magro |
author_sort |
Joanei Cechin |
title |
<b>Mutation of Trp-574-Leu ALS gene confers resistance of radish biotypes to iodosulfuron and imazethapyr herbicides |
title_short |
<b>Mutation of Trp-574-Leu ALS gene confers resistance of radish biotypes to iodosulfuron and imazethapyr herbicides |
title_full |
<b>Mutation of Trp-574-Leu ALS gene confers resistance of radish biotypes to iodosulfuron and imazethapyr herbicides |
title_fullStr |
<b>Mutation of Trp-574-Leu ALS gene confers resistance of radish biotypes to iodosulfuron and imazethapyr herbicides |
title_full_unstemmed |
<b>Mutation of Trp-574-Leu ALS gene confers resistance of radish biotypes to iodosulfuron and imazethapyr herbicides |
title_sort |
<b>mutation of trp-574-leu als gene confers resistance of radish biotypes to iodosulfuron and imazethapyr herbicides |
publisher |
Eduem (Editora da Universidade Estadual de Maringá) |
series |
Acta Scientiarum: Agronomy |
issn |
1679-9275 1807-8621 |
publishDate |
2017-05-01 |
description |
Acetolactate synthase inhibitors are the main group of herbicides used in winter crops in Southern Brazil where their intensive use has selected for herbicide-resistant biotypes of radish. The resistance affects the efficacy of herbicides, and identifying the resistance mechanism involved is important for defining management strategies. The aim of this study was to elucidate the resistance mechanism of radish biotypes by quantifying the enzyme activity, ALS gene sequencing and evaluating the response of biotypes to iodosulfuron and imazethapyr herbicide application after treatment with a cytochrome P450 monooxygenase inhibitor. The susceptible (B1) and resistant (B4 and B13) biotypes were from wheat fields in the Northwest of Rio Grande do Sul State. The results demonstrated that the enzyme affinity for the substrate (KM) was not affected in biotypes B4 and B13 but that the Vmax of the resistant biotypes was higher than that of biotype B1. The resistant biotypes showed no differential metabolic response to iodosulfuron and imazethapyr herbicides when inhibited by malathion and piperonyl butoxide. However, gene sequencing of ALS showed a mutation at position 574, with an amino acid substitution of tryptophan for leucine (Trp-574-Leu) in resistant biotypes. |
topic |
Raphanus sativus mechanism of resistence ALS enzyme activity gene mutation metabolism |
url |
http://periodicos.uem.br/ojs/index.php/ActaSciAgron/article/view/32521 |
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