Scientific Reports· 2026Q1
Insecticidal activity of Metarhizium anisopliae-mediated nanoparticles and fungal metabolites against the red palm weevil, Rhynchophorus ferrugineus
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- Q1SCImago
- 2026year
Short summary
Silver nanoparticles (AgNPs) derived from Metarhizium anisopliae showed the highest larvicidal activity (LC₅₀ = 568.0 ppm) against the red palm weevil, outperforming fungal extracts and the insecticide abamectin.
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Key points
- Silver nanoparticles (AgNPs) demonstrated the highest larvicidal activity (LC₅₀ = 568.0 ppm) against the red palm weevil.
- AgNPs significantly inhibited key digestive enzymes, amylase and protease, disrupting nutrient metabolism.
- Gene expression analysis showed AgNPs modulated inflammatory (IL6, TNF) and detoxification (CYP450) genes.
- Fungal metabolites, particularly oleic acid, showed potential insecticidal action via molecular docking with insect protein targets.
AI-generated from the title and abstract; the full text is not read.
Abstract
Abstract This study evaluated the insecticidal activity of green-synthesized metallic nanoparticles (Ag, CuO, and ZnO) and the ethanolic extract of Metarhizium anisopliae against the red palm weevil ( Rhynchophorus ferrugineus ). Physicochemical characterization confirmed the successful synthesis and stability of the nanoparticles. Among the tested materials, AgNPs exhibited the greatest larvicidal activity (LC₅₀ = 568.0 ppm), outperforming both the fungal extract and the reference insecticide abamectin under the experimental conditions. GC–MS analysis of the M. anisopliae extract identified several bioactive metabolites, including 1,2,4-benzenetriol, oleic acid, and naphthalene derivatives. Enzymatic assays demonstrated that AgNPs markedly inhibited digestive enzymes, particularly amylase and protease, indicating disruption of nutrient metabolism. Gene expression analysis revealed treatment- and time-dependent modulation of inflammatory (IL6 and TNF) and detoxification (CYP450) genes. Molecular docking further suggested that fatty acid derivatives, particularly oleic acid, exhibited favorable binding affinities toward multiple insect protein targets, supporting their potential contribution to the observed insecticidal activity. Overall, these findings provide mechanistic insights into the insecticidal effects of green-synthesized metallic nanoparticles and M. anisopliae metabolites and support their potential as promising candidates for red palm weevil management. However, further field-based studies are required to validate their practical efficacy under natural conditions.
The authors' abstract, as published at the source. Scientific Reports, 2026 · DOI ↗
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