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Agriculture Alters Gonadal Form and Function in the Toad Bufo marinus

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dc.contributor.author McCoy, Krista A.
dc.contributor.author Bortnick, Lauriel J.
dc.contributor.author Campbell, Chelsey M.
dc.contributor.author Hamlin, Heather J.
dc.contributor.author Guillette, Louis J., Jr.
dc.contributor.author St. Mary, Colette M.
dc.date.accessioned 2011-02-16T18:25:12Z
dc.date.available 2011-02-16T18:25:12Z
dc.date.issued 2008
dc.identifier 0091-6765
dc.identifier.citation McCoy, Krista A., Bortnick, Lauriel J., Campbell, Chelsey M., Hamlin, Heather J., Guillette, Louis J., Jr., and St. Mary, Colette M. 2008. "<a href="https://repository.si.edu/handle/10088/12046">Agriculture Alters Gonadal Form and Function in the Toad Bufo marinus</a>." <em>Environmental health perspectives</em>, 116, (11) 1526–1532. <a href="https://doi.org/10.1289/ehp.11536">https://doi.org/10.1289/ehp.11536</a>.
dc.identifier.issn 0091-6765
dc.identifier.uri http://hdl.handle.net/10088/12046
dc.description.abstract BACKGROUND: Many agricultural contaminants disrupt endocrine systems of wildlife. However, evidence of endocrine disruption in wild amphibians living in agricultural areas has been controversial. Typically, studies on the effects of pollutants on wildlife attempt to compare polluted with, P unpolluted sites. OBJECTIVES: We took a novel approach to address this question by explicitly quantifying the relationship between gonadal abnormalities and habitats characterized by differing degrees of agricultural activity. METHODS: We quantified the occurrence of gonadal abnormalities and measures of gonadal function in at least 20 giant toads (Bufo marinus) from each of five sites that occur along a gradient of increasing agricultural land use from 0 to 97%. RESULTS: The number of abnormalities and frequency of intersex gonads increased with agriculture in a dose-dependent fashion. These gonadal abnormalities were associated with altered gonadal function. Testosterone, but not 17 beta-estradiol, concentrations were altered and secondary, sexual traits were either feminized (increased skin mottling) or demasculinized (reduced forearm width and nuptial pad number) in intersex toads. Based on the end points we examined, female morphology and physiology did not differ across sites. However, males front agricultural areas had hormone concentrations and secondary sexual traits that were intermediate between intersex toads and non-agricultural male toads. Skin coloration at the most agricultural site was not sexually, dimorphic; males had female coloration. CONCLUSIONS: Steroid hormone concentrations and secondary sexual traits correlate with reproductive activity and success, so affected toads likely have reduced reproductive success. These reproductive abnormalities could certainly contribute to amphibian population declines occurring in areas exposed to agricultural contaminants.
dc.format.extent 1526–1532
dc.publisher US DEPT HEALTH HUMAN SCIENCES PUBLIC HEALTH SCIENCE
dc.relation.ispartof Environmental health perspectives 116 (11)
dc.title Agriculture Alters Gonadal Form and Function in the Toad Bufo marinus
dc.type article
sro.identifier.refworksID 59070
sro.identifier.itemID 76724
sro.description.unit STRI
sro.identifier.doi 10.1289/ehp.11536
sro.identifier.url https://repository.si.edu/handle/10088/12046
sro.publicationPlace RES TRIANGLE PK; NATL INST HEALTH, NATL INST ENVIRONMENTAL HEALTH SCIENCES, PO BOX 12233, RES TRIANGLE PK, NC 27709-2233 USA


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