4.5 Article

Control failure and insecticides resistance in populations of Rhyzopertha dominica (Coleoptera: Bostrichidae) from Colombia

Journal

JOURNAL OF STORED PRODUCTS RESEARCH
Volume 92, Issue -, Pages -

Publisher

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.jspr.2021.101802

Keywords

Stored products; Rhyzopertha dominica; Pyrethroids; Resistance mechanism

Categories

Funding

  1. Universidad del Tolima (Oficina de Investigaciones y Desarrollo Cientifico)
  2. Coordination for the Improvement of Higher Education Personnel (Coordenacao de Aperfeicoamento de Pessoal de Nivel Superior-Capes, Brazil) [001]
  3. Fitogranos Comercializadora Agroindustrial Limitada

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The study found resistance of Rhyzopertha dominica to bifenthrin and cypermethrin in Colombia, while it remained susceptible to pirimiphos-methyl and organophosphates. This highlights the urgent need for nationwide monitoring of insecticide resistance in stored pests for better management strategies.
The lesser grain borer Rhyzopertha dominica is a serious pest that causes significant economic damages in stored grains. The presence of this pest is mainly controlled using a small number of insecticides increasing risks of compromising the control efficacy due to the selection of resistant populations. Here, the control failure and potential resistance to pyrethroid and organophosphate insecticides frequently used for the control of R. dominica in Colombia were assessed. Concentration-mortality bioassays with synergized and unsynergized insecticides were used to assess potential metabolic-based pyrethroids resistance mechanisms. Based on the field recommended doses, the results revealed that while the pirimiphos-methyl is still efficient against R. dominica, both type I (i.e., bifenthrin) and type II (i.e., deltamethrin) pyrethroids presented control failure and their insecticidal activity was compromised. Although no differences in susceptibilities between the populations were found for the bifenthrin insecticide, the LC(50)s of Ibague (1.83 mu l/gr of grains) and El Espinal (1.67 mu l/gr of grains) populations were higher than the recommended rate. Furthermore, significant differences in susceptibility to deltamethrin resulted in resistance ratios RR50 > 32-fold and RR95 > 188-fold between the least (El Espinal) and the most (Ibague) susceptible populations. Moreover, when synergized, the toxicity of deltamethrin was enhanced but resistance ratios kept at high levels (RR50 > 11-fold and RR95 > 40-fold) indicating possible existence of simultaneous metabolic and altered action-site mechanisms of resistance to pyrethroids in Colombian populations. Our results highlight the urgent need for nationwide monitoring of insecticides control failure and resistance in stored pests for better management schemes. (C) 2021 Elsevier Ltd. All rights reserved.

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