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May 28, 2026Scientific Reports0 citationsOpen Access

Reduced predator avoidance follows ocular and lateral line pathology in minnow species after diesel exposure

MBMatthew BolerjackPSPaula A. SchafferPCPete Cadmus

Key Points

  • To investigate the impact of diesel exposure on predator avoidance in minnow species and related sensory impairments.
  • Exposed Plains Minnow, Fathead Minnow, and Flathead Chub to sublethal diesel concentrations for 24 hours.
  • Assessed predator avoidance behavior and sensory organ (lateral line and eyes) pathology.
  • Conducted a series of predation events to evaluate the vulnerability of exposed fish.
  • Diesel-exposed prey comprised 77% of predated fish across all events.
  • Fathead Minnow showed significantly decreased lateral line neuromast counts.
  • Severe ophthalmic pathology was observed in diesel-exposed fish, correlating with decreased predator avoidance.

Abstract

Abstract Petroleum chemicals reach freshwater habitats and can elicit acute toxic effects on ecosystem members. 1 Until recently standardized acute toxicology experiments and water quality standards (also referred to as Maximum Allowable Concentrations in some jurisdictions) focused on mortality of aquatic organisms after 96 h of toxicant exposure 2,3 , but in nature sublethal effects can manifest into mortality and in lotic environments (streams and rivers) exposure times can be far shorter (< 24 h). Here we show that Plains Minnow ( Hybognathus placitus ), Fathead Minnow ( Pimephales promelas ), and Flathead Chub ( Platygobio gracilis ) (Family Leuciscidae) exposed to sublethal concentrations of diesel fuel for 24 h experienced sublethal injuries which render them susceptible to death by predation. Diesel-exposed prey represented 77% of predated fish across all predation events. Decreased predator avoidance likely arose from sensory impairment. Diesel-exposed Fathead Minnow had significantly decreased lateral line neuromast counts and severe ophthalmic pathology. Standardized toxicity experiments would have missed these key effects. Sublethal petroleum exposures have global implications for the conservation of fish species and derivations of water quality standards intended to protect fish from petrochemical pollution need to include sublethal endpoints with the potential to manifest into population loss.

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Cite This Study

Bolerjack et al. (2026) studied this question.

synapsesocial.com/papers/6a17dcdf3fad632b0f9d983fhttps://doi.org/10.1038/s41598-026-53051-z
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