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Whole genome sequence analysis of population structure and insecticide resistance markers in Anopheles melas from the Bijagós Archipelago, Guinea-Bissau. | LitMetric

AI Article Synopsis

  • Anopheles melas, a lesser-known malaria-carrying mosquito, was studied for its population genetics in the Bijagós Archipelago, with the first whole-genome sequencing of this species in the area.
  • A total of 30 individual mosquitoes were sequenced, revealing no insecticide resistance mutations commonly found in other malaria mosquitoes, but some structural variations in relevant genes.
  • The findings also indicated two distinct genetic groups among the An. melas populations based on mitochondrial DNA, highlighting the need for further research to clarify their role in malaria transmission.

Article Abstract

Background: Anopheles melas is an understudied malaria vector with a potential role in malaria transmission on the Bijagós Archipelago of Guinea-Bissau. This study presents the first whole-genome sequencing and population genetic analysis for this species from the Bijagós. To our knowledge, this also represents the largest population genetic analysis using WGS data from non-pooled An. melas mosquitoes.

Methods: WGS was conducted for 30 individual An. melas collected during the peak malaria transmission season in 2019 from six different islands on the Bijagós Archipelago. Bioinformatics tools were used to investigate the population structure and prevalence of insecticide resistance markers in this mosquito population.

Results: Insecticide resistance mutations associated with pyrethroid resistance in Anopheles gambiae s.s. from the Bijagós were absent in the An. melas population, and no signatures of selective sweeps were identified in insecticide resistance-associated genes. Analysis of structural variants identified a large duplication encompassing the cytochrome-P450 gene cyp9k1. Phylogenetic analysis using publicly available mitochondrial genomes indicated that An. melas from the Bijagós split into two phylogenetic groups because of differentiation on the mitochondrial genome attributed to the cytochrome C oxidase subunits COX I and COX II and the NADH dehydrogenase subunits 1, 4, 4L and 5.

Conclusions: This study identified an absence of insecticide-resistant SNPs common to An. gambiae in the An. melas population, but did identify structural variation over insecticide resistance-associated genes. Furthermore, this study presents novel insights into the population structure of this malaria vector using WGS analysis. Additional studies are required to further understand the role of this vector in malaria transmission.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11412053PMC
http://dx.doi.org/10.1186/s13071-024-06476-2DOI Listing

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