Toxic effects of PCB126 and TCDD on shortnose sturgeon and Atlantic sturgeon.

R Christopher Chambers, Dawn D Davis, Ehren A Habeck, Nirmal K Roy, Isaac Wirgin
Author Information
  1. R Christopher Chambers: Howard Marine Sciences Laboratory, Northeast Fisheries Science Center, NOAA Fisheries Service, Highlands, New Jersey, USA.

Abstract

Exposure to chemical contaminants is often invoked to explain recruitment failures to populations of sturgeon worldwide, but there is little empirical evidence to support the idea that young sturgeon are sensitive at environmentally relevant concentrations. The authors used shortnose sturgeon (Acipenser brevirostum) and Atlantic sturgeon (Acipenser oxyrinchus) as models to investigate the sensitivities of sturgeon to early-life-stage toxicities from embryonic exposures to graded doses of polychlorinated biphenyl 126 (PCB126) and 2,3,7,8-tetrachlorodibenzo-p-dioxin (TCDD). Survival to hatching of shortnose sturgeon decreased with increasing dose, although the duration of the embryonic period was not significantly altered by exposure in either species. Morphometric features of larvae of both species were affected by dose, including shortening of the body, reduction in head size, reduction in quantity of yolk reserves, and reduction in eye size. Eye development in both species was delayed with increasing dose for both chemicals. The persistence of larvae in a food-free environment decreased inversely with dose in both species, with sharp declines occurring at PCB126 and TCDD doses of ≥1 ppb and ≥0.1 ppb, respectively. Dose-responsive early-life-stage toxicities reported here are among the more sensitive found in fish and occurred at burdens similar to those found in situ in a sympatric bottom-dwelling bony fish in the Hudson River Estuary. The present study is among the first demonstrating the sensitivity of any sturgeon to the hallmark early-life-stage toxicities induced by aryl hydrocarbon receptor agonists.

References

  1. Toxicol Sci. 1999 Jan;47(1):40-51 [PMID: 10048152]
  2. Toxicol Sci. 2003 Nov;76(1):138-50 [PMID: 12883077]
  3. Environ Sci Technol. 2004 Dec 1;38(23):6300-6 [PMID: 15597885]
  4. Environ Health Perspect. 2005 Dec;113(12):1675-82 [PMID: 16330346]
  5. Toxicol Sci. 2006 Nov;94(1):175-82 [PMID: 16936225]
  6. Proc Natl Acad Sci U S A. 1997 Dec 9;94(25):13743-8 [PMID: 9391097]
  7. Aquat Toxicol. 2011 Jul;104(1-2):23-31 [PMID: 21543048]
  8. Mol Ecol. 2002 Oct;11(10):1885-98 [PMID: 12296933]
  9. J Environ Sci Health C Environ Carcinog Ecotoxicol Rev. 2009 Oct;27(4):276-85 [PMID: 19953399]
  10. J Steroid Biochem Mol Biol. 2011 Oct;127(1-2):96-101 [PMID: 21168493]
  11. Environ Sci Technol. 2004 Feb 15;38(4):976-83 [PMID: 14998007]
  12. Aquat Toxicol. 2010 Aug 15;99(2):232-40 [PMID: 20605646]
  13. Mar Environ Res. 2011 May;71(4):257-65 [PMID: 21349578]
  14. Toxicol Sci. 2005 Apr;84(2):368-77 [PMID: 15635151]
  15. J Toxicol Environ Health A. 2007 Sep;70(18):1542-55 [PMID: 17710614]

Grants

  1. P30 ES000260/NIEHS NIH HHS
  2. P42 ES010344/NIEHS NIH HHS
  3. ES00260/NIEHS NIH HHS
  4. ES10344/NIEHS NIH HHS

MeSH Term

Animals
Environmental Monitoring
Fishes
Larva
Polychlorinated Biphenyls
Polychlorinated Dibenzodioxins
Rivers
Toxicity Tests
Water Pollutants, Chemical

Chemicals

Polychlorinated Dibenzodioxins
Water Pollutants, Chemical
Polychlorinated Biphenyls
3,4,5,3',4'-pentachlorobiphenyl

Word Cloud

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