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April 15, 2026Nature Microbiology0 citationsOpen Access

Impact of intensive control on malaria population genomics under elimination settings in Southeast Asia

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XLXue LiGAGrace A. AryaATAung Myint Thu

Key Points

  • To investigate how intensive malaria control impacts the genomic characteristics of Plasmodium falciparum populations during elimination efforts.
  • Analyzed 2,270 genome-sequenced Plasmodium falciparum infections over 58 months from 283 malaria posts.
  • Monitored changes in parasite effective population size and allele frequencies.
  • Assessed localized transmission patterns and genetic relatedness of parasites.
  • Parasite effective population size decreased significantly during the study period.
  • Minimal changes observed in artemisinin resistance allele frequency until 2020.
  • Mass drug administration created founder effects in the parasite population, evidencing control efficacy.

Abstract

The malaria elimination programme in Kayin State (Myanmar) uses malaria posts for rapid detection and treatment, together with mass drug administration in high-transmission villages, which has reduced transmission by 97%. Here we examine the impact of control on parasite genomic parameters to inform future control efforts. Using 2,270 genome-sequenced Plasmodium falciparum infections from 283 malaria posts, sampled over 58 months (2015–2020), we find that parasite effective population size decreased over the study period, but there was minimal change in artemisinin resistance allele frequency until 2020, when just one predominant genotype (carrying kelch13-R561H) remained. We observed sustained localized transmission of unique parasite genotypes revealing transmission chains and positive correlations in parasite relatedness for ≤20 km. Mass drug administration resulted in parasite founder effects, providing genomic evidence for the efficacy of this control tool. These results reveal changes in population structure driven by control and rapid shifts in allele frequency in a parasite population close to elimination. Intensive control using village malaria posts and mass drug administration reduces parasite effective population size and increases genetic drift, driving founder effects and rapid shifts in resistance allele frequency.

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Cite This Study

Li et al. (2026) studied this question.

synapsesocial.com/papers/69df2bece4eeef8a2a6b0de0https://doi.org/10.1038/s41564-026-02327-1
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