Impaired gonadal and somatic development corroborate vulnerability differences to the synthetic estrogen ethinylestradiol among deeply diverged anuran lineages

Aquat Toxicol. 2016 Aug:177:503-14. doi: 10.1016/j.aquatox.2016.07.001. Epub 2016 Jul 5.

Abstract

Amphibians are undergoing a global decline. One poorly investigated reason could be the pollution of aquatic habitats by endocrine disrupting compounds (EDCs). We tested the susceptibility to the synthetically stabilized estrogen 17α-ethinylestradiol (EE2) in three deeply diverged anuran species, differing in sex determination systems, types of gonadogenesis and larval ecologies. To understand whether data from the amphibian model Xenopus laevis (Pipidae) are analogous and applicable to only distantly related non-model amphibians, tadpoles of X. laevis, Hyla arborea (Hylidae) and Bufo viridis (Bufonidae) were simultaneously exposed to 50, 500 and 5000ng/L EE2 from hatching until completion of metamorphosis, using a flow-through-system under identical experimental conditions. Comparing molecularly established genetic with histologically assessed phenotypic sex in all species, we have recently shown that EE2 provoked numerous genetic-male-to-phenotypic-female sex reversals and mixed sex individuals, confirming overall its expected feminizing effect. In the present study, we focus on the influence of EE2 on gonadal and somatic development. Anatomy and histology revealed several species-specific effects. In both non-model species, H. arborea and B. viridis, high numbers of anatomically impaired gonads were observed. In H. arborea, exposed to 5000ng/L EE2, numerous underdeveloped gonads were detected. Whereas EE2 did not alter snout-to-vent length and body weight of X. laevis metamorphs, H. arborea showed a treatment-dependent decrease, while B. viridis exhibited an increase in body weight and snout-to-vent length. Apart from a concentration-dependent occurrence of yellowish skin color in several H. arborea, no organ-specific effects were detected. Since EE2 ubiquitously occurs in many aquatic ecosystems and affects sexual and somatic development, among EDCs, it may indeed contribute to amphibian decline. The inter-species variation in developmental EE2-effects corroborates species-specific vulnerability differences towards EDCs between deeply diverged amphibian groups.

Keywords: Bufo viridis; Endocrine disruption; Gonadal impairments; Hyla arborea; Size and weight alterations; Xenopus laevis.

MeSH terms

  • Animals
  • Anura / growth & development*
  • Body Size / drug effects
  • Body Weight / drug effects
  • Bufonidae / growth & development
  • Endocrine Disruptors / toxicity
  • Ethinyl Estradiol / chemical synthesis
  • Ethinyl Estradiol / toxicity*
  • Female
  • Gonads / drug effects*
  • Larva / drug effects
  • Larva / metabolism
  • Male
  • Metamorphosis, Biological / drug effects*
  • Water Pollutants, Chemical / toxicity*
  • Xenopus laevis / growth & development

Substances

  • Endocrine Disruptors
  • Water Pollutants, Chemical
  • Ethinyl Estradiol