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Hermaphroditic, Demasculinized Frogs After Exposure to the Herbicide Atrazine at Low Ecologically Relevant Doses

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Specialty Science
Date 2002 Apr 18
PMID 11960004
Citations 152
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Abstract

Atrazine is the most commonly used herbicide in the U.S. and probably the world. It can be present at several parts per million in agricultural runoff and can reach 40 parts per billion (ppb) in precipitation. We examined the effects of atrazine on sexual development in African clawed frogs (Xenopus laevis). Larvae were exposed to atrazine (0.01-200 ppb) by immersion throughout larval development, and we examined gonadal histology and laryngeal size at metamorphosis. Atrazine (> or =0.1 ppb) induced hermaphroditism and demasculinized the larynges of exposed males (> or =1.0 ppb). In addition, we examined plasma testosterone levels in sexually mature males. Male X. laevis suffered a 10-fold decrease in testosterone levels when exposed to 25 ppb atrazine. We hypothesize that atrazine induces aromatase and promotes the conversion of testosterone to estrogen. This disruption in steroidogenesis likely explains the demasculinization of the male larynx and the production of hermaphrodites. The effective levels reported in the current study are realistic exposures that suggest that other amphibian species exposed to atrazine in the wild could be at risk of impaired sexual development. This widespread compound and other environmental endocrine disruptors may be a factor in global amphibian declines.

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References
1.
Sonnenschein C, Soto A . An updated review of environmental estrogen and androgen mimics and antagonists. J Steroid Biochem Mol Biol. 1998; 65(1-6):143-50. DOI: 10.1016/s0960-0760(98)00027-2. View

2.
Cooper R, Stoker T, Tyrey L, Goldman J, McElroy W . Atrazine disrupts the hypothalamic control of pituitary-ovarian function. Toxicol Sci. 2000; 53(2):297-307. DOI: 10.1093/toxsci/53.2.297. View

3.
Kniewald J, Osredecki V, Gojmerac T, Zechner V, Kniewald Z . Effect of s-triazine compounds on testosterone metabolism in the rat prostate. J Appl Toxicol. 1995; 15(3):215-8. DOI: 10.1002/jat.2550150312. View

4.
Hayes T . Histological examination of the effects of corticosterone in larvae of the western toad, Bufo boreas (Anura: Bufonidae), and the Oriental fire-bellied toad, Bombina orientalis (Anura: Discoglossidae). J Morphol. 1995; 226(3):297-307. DOI: 10.1002/jmor.1052260306. View

5.
Cooper R, Goldman J, Stoker T . Neuroendocrine and reproductive effects of contemporary-use pesticides. Toxicol Ind Health. 1999; 15(1-2):26-36. DOI: 10.1177/074823379901500104. View