<p>Mosquito-borne diseases pose significant public health challenges, necessitating innovative and sustainable control measures. This study evaluates the larvicidal potential of six extremophile Bacillus species against <i>Aedes aegypti</i> larvae, focusing on dose–response relationships, resistance trends, and genetic diversity. Regression analysis revealed a significant positive correlation between concentration and larval mortality across species, with <i>B. sonorensis</i> and <i>B. paramycoides</i> demonstrating superior potency at lower concentrations (LC₅₀: 19.72&#xa0;ppm and 23.41&#xa0;ppm, respectively). Probit analysis confirmed that <i>B. sonorensis</i> is the most effective larvicide, achieving high mortality rates with minimal concentrations. In contrast, <i>B. licheniformis</i> and <i>B. stercoris</i> exhibited limited efficacy, requiring significantly higher doses to achieve comparable results. Resistance analysis highlighted an inverse relationship between toxicity index and resistance ratio, with <i>B. sonorensis</i> maintaining high efficacy even in resistant mosquito populations (Resistance Ratio: 1). Furthermore, phylogenetic analysis based on 16S rRNA gene sequences revealed distinct evolutionary relationships among species, with <i>B. rugosus</i> and <i>B. tequilensis</i> clustering closely, suggesting functional similarities. The genetic divergence of <i>B. licheniformis</i> aligns with its lower larvicidal performance. Overall, this study underscores the potential of <i>B. sonorensis</i> and <i>B. paramycoides</i> as robust candidates for mosquito control programs, particularly in resistance-prone environments. The findings provide valuable insights into optimizing microbial larvicides by tailoring species-specific application strategies and leveraging genetic diversity within the <i>Bacillus</i> genus.</p>

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Evaluating bioassay efficacy of extremophile bacillus species for environmentally safe control of Aedes aegypti larvae

  • Alaa A. Alnahari,
  • Abdulaziz M. Kusa,
  • Ahmad K. AL-Ghamdi,
  • Basim Algashgari,
  • Shatha I. Alqurashi,
  • Jazem A. Mahyoub,
  • Mohammed N. Baeshen

摘要

Mosquito-borne diseases pose significant public health challenges, necessitating innovative and sustainable control measures. This study evaluates the larvicidal potential of six extremophile Bacillus species against Aedes aegypti larvae, focusing on dose–response relationships, resistance trends, and genetic diversity. Regression analysis revealed a significant positive correlation between concentration and larval mortality across species, with B. sonorensis and B. paramycoides demonstrating superior potency at lower concentrations (LC₅₀: 19.72 ppm and 23.41 ppm, respectively). Probit analysis confirmed that B. sonorensis is the most effective larvicide, achieving high mortality rates with minimal concentrations. In contrast, B. licheniformis and B. stercoris exhibited limited efficacy, requiring significantly higher doses to achieve comparable results. Resistance analysis highlighted an inverse relationship between toxicity index and resistance ratio, with B. sonorensis maintaining high efficacy even in resistant mosquito populations (Resistance Ratio: 1). Furthermore, phylogenetic analysis based on 16S rRNA gene sequences revealed distinct evolutionary relationships among species, with B. rugosus and B. tequilensis clustering closely, suggesting functional similarities. The genetic divergence of B. licheniformis aligns with its lower larvicidal performance. Overall, this study underscores the potential of B. sonorensis and B. paramycoides as robust candidates for mosquito control programs, particularly in resistance-prone environments. The findings provide valuable insights into optimizing microbial larvicides by tailoring species-specific application strategies and leveraging genetic diversity within the Bacillus genus.