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Environmental Toxicology and Chemistry· 2026Q1

Impact of Insecticide Exposure Duration on Heptageniid Mayflies

D. Riley Rackliffe, Jason T. Hoverman

Short summary

Short (<24 hr) pulses of the neonicotinoid clothianidin (0.7–8.9 µg/L) did not cause lethal or sublethal effects in mayflies (Stenacron interpunctatum) within 10 days post-exposure.

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Key points

  • Short (<24 hr) clothianidin exposures (0.7–8.9 µg/L) showed no lethal or sublethal effects in mayflies within 10 days post-exposure.
  • Continuous exposure to 8.9 µg/L clothianidin caused toxic effects within 72 hours.
  • Lower clothianidin concentrations required longer exposure durations to elicit toxic effects.
  • Single, short insecticide pulses are unlikely to cause acute toxicity in mayfly populations.

AI-generated from the title and abstract; the full text is not read.

Abstract

Abstract Neonicotinoids like clothianidin are commonly applied in agricultural areas where they leach into aquatic systems and expose sensitive aquatic insects. While mayflies are known to be highly sensitive to clothianidin, the connection between laboratory toxicity assays and exposure dynamics in natural systems is poorly explored. We conducted low dose clothianidin exposures on the mayfly Stenacron interpunctatum to better understand how the temporal dynamics of insecticide pulses into stream systems might impact aquatic insects. We found that short duration (<24 hr) exposures to clothianidin (0.7–8.9 µg/L) failed to produce noticeable lethal or sublethal effects within 10 days after the exposure ended. With continuous exposure, we found that toxic effects began within 72 hr of exposure to our highest concentration (8.9 µg/L) while lower concentrations required longer exposures to have toxic effects. These results indicate that, given the low concentrations of neonicotinoids commonly observed in agricultural surface waters, a single typical pulse duration is unlikely to have acutely toxic effects on mayfly populations. However, repeated pulses could have additive effects resulting in greater impacts.

The authors' abstract, as published at the source. Environmental Toxicology and Chemistry, 2026 · DOI ↗

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Field: Insect Science

Insect ScienceAgricultural and Biological Sciences