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March 26, 2026Insect Science0 citations

sfr‐miR‐10465‐5p and sfr‐miR‐10476‐5p modulate chlorantraniliprole susceptibility through CYP450 gene regulation in Spodoptera frugiperda

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RMRashmi Manohar MahalleJSJun Won ShinDMDavid Mota‑Sanchez

Key Points

  • This research aims to explore how the micrornas sfr-miR-10465-5p and sfr-miR-10476-5p affect susceptibility to chlorantraniliprole in Spodoptera frugiperda by regulating CYP450 genes.
  • Functional validation using mimic/inhibitor microinjection to test miRNA effects.
  • Identification of CYP450 gene targets through target prediction and validation.
  • Dual-luciferase reporter assays to confirm direct binding of miRNAs to target genes.
  • RNA interference (RNAi) to knock down CYP450 genes and assess impact on mortality after chlorantraniliprole treatment.
  • Tissue-specific expression profiling to analyze miRNA and target gene expression in the fat body.
  • Overexpression of sfr-miR-10465-5p and sfr-miR-10476-5p significantly increased larval mortality post chlorantraniliprole treatment.
  • Inhibition of these miRNAs reduced susceptibility to chlorantraniliprole.
  • Identification of CYP4S9, CYP340AX1, and CYP367A1v2 as target genes regulated by the miRNAs.
  • Direct binding of the miRNAs to their target genes was confirmed.
  • Knockdown of CYP450 genes led to increased mortality in response to chlorantraniliprole.

Abstract

MicroRNAs (miRNAs) are emerging as crucial regulators of insecticide responses in insect pests through modulation of detoxification-related genes. In our previous study, sfr-miR-10465-5p and sfr-miR-10476-5p were identified as differentially expressed in response to chlorantraniliprole exposure in Spodoptera frugiperda. However, their specific roles in modulating chlorantraniliprole susceptibility via cytochrome P450 (CYP450) regulation remained largely unexplored. Functional validation through mimic/inhibitor microinjection demonstrated that overexpression of these miRNAs significantly increased larval mortality following chlorantraniliprole treatment, while inhibition reduced susceptibility, confirming their regulatory impact. Furthermore, target prediction and subsequent validation identified CYP4S9 (LOC118273960), CYP340AX1 (LOC118270458), and CYP367A1v2 (LOC118281718) as putative targets of these two miRNAs. Dual-luciferase reporter assays confirmed direct binding of sfr-miR-10465-5p to CYP4S9 (LOC118273960), and sfr-miR-10476-5p to CYP340AX1 (LOC118270458) and CYP367A1v2 (LOC118281718) through their coding sequence (CDS) regions, confirming post-transcriptional regulation. RNAi-mediated knockdown of these CYP450 genes significantly enhanced chlorantraniliprole-induced mortality, further supporting their functional role in detoxification. Tissue-specific expression profiling revealed predominant expression of both miRNAs and their targets in the fat body, a major site of insecticide metabolism. Together, these findings highlight the regulatory function of sfr-miR-10465-5p and sfr-miR-10476-5p in chlorantraniliprole susceptibility via CYP450 gene modulation, offering novel insights into miRNA-mediated chlorantraniliprole susceptibility mechanisms in S. frugiperda.

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Cite This Study

Mahalle et al. (2026) studied this question.

synapsesocial.com/papers/69c4cdb6fdc3bde44891a60ahttps://doi.org/10.1111/1744-7917.70267
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