4.7 Article

Fathead minnow (Pimephales promelas) reproduction is impaired when exposed to a naphthenic acid extract

Journal

AQUATIC TOXICOLOGY
Volume 116, Issue -, Pages 34-42

Publisher

ELSEVIER
DOI: 10.1016/j.aquatox.2012.03.002

Keywords

Fathead minnow; Reproduction; Oil sands; Naphthenic acids; Fish; Endocrine disruption

Funding

  1. Shell Canada Energy
  2. Canadian Water Network
  3. NSERC
  4. Canadian Natural Resources Ltd.
  5. Imperial Oil Ltd.
  6. Suncor Energy Inc.
  7. Syncrude Canada Ltd.
  8. Total EP Canada

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Previous studies have demonstrated that oil sands process-affected water (OSPW) impairs the reproduction of fish and that naphthenic acids (NAs), a natural constituent of oil sands, are suspected of being responsible. This study evaluates the potential impact of NAs on the reproduction of adult fathead minnows (Pimephales promelas) under laboratory conditions. Fathead minnows exposed to a 10 mg/l naphthenic acid extract (NAE) for 21 days spawned fewer eggs and males had reduced expression of secondary sexual characteristics. Male fathead minnows exposed to a 5 mg/l NAE had lower plasma levels of 11-ketotestosterone whereas those exposed to a 10 mg/l NAE had lower concentrations of both testosterone and 11-ketotestosterone. Since OSPW also contains high concentrations of salts, this study also investigated whether they modify the toxicity of NAEs. Spawning was significantly reduced in fathead minnows exposed to a 10 mg/l NAE alone and in combination with NaHCO3 (700 mg/l), typical of concentrations in OSPW. Interestingly, the addition of NaHCO3 reduced the inhibitory effects of the NAE on the numbers of reproductive tubercles and plasma testosterone levels. Further studies showed that NaHCO3 acted by reducing the uptake of the NAE to the fish. NaHCO3 but not NaCl or Na2SO4 reduced the acute toxic effects of the NAE on fathead minnow embryo and larvae mortality. Collectively, these studies show that the NAs in OSPW have the potential to negatively affect reproduction in fathead minnows and that HCO3- reduces the acute and chronic toxicity of NAs. (C) 2012 Elsevier B.V. All rights reserved.

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