Exploring novel pyrethroid resistance mechanisms through RNA-seq in from Colombia.

Curr Res Insect Sci

Grupo Biología y Control de Enfermedades Infecciosas, Universidad de Antioquia, Medellín 050010, Colombia.

Published: December 2024

AI Article Synopsis

  • Pyrethroids are widely used insecticides, but resistance in Colombian triatomine populations is poorly understood.
  • This study investigates resistance mechanisms to pyrethroids through genetic mutations, metabolic activity changes, and RNA-seq analyses.
  • Results show resistance in field populations to certain insecticides, highlighting potential gene regulation linked to detoxification, important for developing management strategies.

Article Abstract

Pyrethroids are the most widely used insecticides for controlling insect vectors carrying medically and economically significant pathogens. In Colombia, studies on triatomine insecticide resistance are limited. Due to the increasing challenge of insecticide resistance, this work focuses on determining resistance to different pyrethroid insecticides in populations of from Colombia. To define the possible causes of resistance, three potential molecular mechanisms were explored: 1) mutations in the coding region of the voltage-gated sodium channel gene (), the insecticide target site; 2) modulation of enzymatic activity associated with metabolic resistance; and 3) changes in the mRNA profiles using RNA-seq. The results showed that the field population of was resistant to lambda-cyhalothrin and deltamethrin insecticides. Insects surviving sublethal doses of insecticides did not exhibit the classical mutations in the gene. Transcriptomic profile analyses of revealed differentially regulated genes in field and laboratory populations under selective pressure with lambda-cyhalothrin. Gene enrichment analysis showed the positive regulation of transcripts related to detoxifying enzymes and mitochondrial proteins, which could play a significant role in insecticide resistance. This comprehensive investigation is crucial for providing insights into resistance mechanisms and generating strategies to manage these critical vector species.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11696854PMC
http://dx.doi.org/10.1016/j.cris.2024.100103DOI Listing

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Exploring novel pyrethroid resistance mechanisms through RNA-seq in from Colombia.

Curr Res Insect Sci

December 2024

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Article Synopsis
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  • This study investigates resistance mechanisms to pyrethroids through genetic mutations, metabolic activity changes, and RNA-seq analyses.
  • Results show resistance in field populations to certain insecticides, highlighting potential gene regulation linked to detoxification, important for developing management strategies.
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