Asp376Glu Mutation and Enhanced Metabolism Controlling the Resistance to ALS-Inhibiting Herbicides in Ixophorus unisetus (J. Presl) Schltdl from the Bajio, Mexico

Author:

Domínguez-Valenzuela José Alfredo1ORCID,Vázquez-García José G.2ORCID,Castro Patricia3ORCID,Palma-Bautista Candelario1ORCID,Cruz-Hipólito Hugo E.4,Rey Maria-Dolores2ORCID,De Prado Rafael2ORCID,Portugal João56ORCID

Affiliation:

1. Department of Agricultural Parasitology, Chapingo Autonomous University, Texcoco 56230, Mexico

2. Agroforestry and Plant Biochemistry, Proteomics and Systems Biology, Department of Biochemistry and Molecular Biology, University of Cordoba, 14014 Cordoba, Spain

3. Department of Genetics, University of Cordoba, 14071 Cordoba, Spain

4. FMC Agrochemical of Mexico, Zapopan 45010, Mexico

5. Biosciences Department, Polytechnic Institute of Beja, 7800-000 Beja, Portugal

6. VALORIZA-Research Centre for Endogenous Resource Valorization, Polytechnic Institute of Portalegre, 7300-110 Portalegre, Portugal

Abstract

A study was carried out to determine the ALS (acetolactate synthase)-inhibitor herbicide resistance in the Mexican grass Ixophorus unisetus, a troublesome weed in corn crops in Mexico. First, the resistance was confirmed in field screening assays. Eight populations that survived nicosulfuron treatment at a field rate of 40 g ai ha−1 were labeled as putative-resistant. Dose–response trials demonstrated a high resistance in the eight populations (GR50 from 140.33 to 245.46 g ai ha−1). The synergism of malathion plus nicosulfuron demonstrated that the non-target-site resistance (NTSR) mechanism based on cytochrome P450 (Cyt-P450) was involved in five populations of I. unisetus. Molecular studies revealed that a single-nucleotide change occurs in the amino acid at position 376 (from GAT to GAG), which codifies from Asp-376 to Glu-376. This is the first time that Asp-376-Glu has been reported in this species. Assays in vitro and in vivo demonstrated I. unisetus cross-resistance to flucarbazone, penoxsulam, bispyribac-Na, and imazamox. No multiple resistance was found in two resistant populations exposed to different herbicides. Our results indicate that the lack of good control over Mexican grass in corn with ALS inhibitors is due to target-site mutation and NTSR mechanisms (Cyt-P450-mediated metabolism). A strategy should be established in Mexican fields to continue controlling this weed, including mechanical control practices and a good combination of the available pre- and post-emergence herbicides.

Funder

Asociación de Agroquímicos y Medio Ambiente

research group GR-164 “Agroforestry, Plant Biochemistry and Molecular Biology”, the University of Cordoba

Publisher

MDPI AG

Subject

Agronomy and Crop Science

Reference34 articles.

1. Vibrans, H. (2023, January 29). Malezas de México: Ixophorus unisetus (J. Presl) Schltdl. Available online: http://www.conabio.gob.mx/malezasdemexico/poaceae/ixophorus-unisetus/fichas/ficha.htm.

2. Sánchez, J.G., Zita-Padilla, G.A., and Mendoza-Cruz, M. (2012). Catálogo de las Gramíneas Malezas Nativas e Introducidas de México, CONACOFI.

3. Efecto del volumen y el pH del agua en el control de Ixophorus unisetus (J. Presl.) Schltdl. con glifosato;Esqueda;Rev. Mex. De Cienc. Agrícolas,2015

4. Control preemergente y postemergente de malezas en frijol de humedad residual en Veracruz, Mexico;Cano;Agron. Mesoam.,1996

5. Efecto de rastrojos de malezas y herbicidas pre-emergentes en el control de malezas en frijol;Herrera;Agron. Mesoam.,2000

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