Additive genetic variation for tolerance to estrogen pollution in natural populations of <scp>A</scp>lpine whitefish (<i><scp>C</scp>oregonus</i> sp., <scp>S</scp>almonidae)
Аддитивная генетическая изменчивость толерантности к загрязнению эстрогенами в природных популяциях альпийского сига (Coregonus sp., Salmonidae)
2014-10-03
SCID: 54.1/n44c3kh8
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17α-ethinylestradiol (EE2)Alpine whitefishadditive genetic variationembryo mortalityestrogen pollution tolerance
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Abstract (AI)
The evolutionary potential of natural populations to adapt to anthropogenic threats critically depends on whether there exists additive genetic variation for tolerance to the threat. A major problem for water-dwelling organisms is chemical pollution, and among the most common pollutants is 17α-ethinylestradiol (EE2), the synthetic estrogen that is used in oral contraceptives and that can affect fish at various developmental stages, including embryogenesis. We tested whether there is variation in the tolerance to EE2 within Alpine whitefish. We sampled spawners from two species of different lakes, bred them in vitro in a full-factorial design each, and studied growth and mortality of embryos. Exposure to EE2 turned out to be toxic in all concentrations we tested (≥1 ng/L). It reduced embryo viability and slowed down embryogenesis. We found significant additive genetic variation in EE2-induced mortality in both species, that is, genotypes differed in their tolerance to estrogen pollution. We also found maternal effects on embryo development to be influenced by EE2, that is, some maternal sib groups were more susceptible to EE2 than others. In conclusion, the toxic effects of EE2 were strong, but both species demonstrated the kind of additive genetic variation that is necessary for an evolutionary response to this type of pollution.
Key Findings
1
17α-ethinylestradiol (EE2) was toxic to Alpine whitefish embryos at all tested concentrations of ≥1 ng/L.
2
Both Alpine whitefish species showed significant additive genetic variation in EE2-induced mortality, indicating differences in inherited tolerance among genotypes.
3
Despite strong EE2 toxicity, both species possess genetic variation necessary for potential evolutionary adaptation to estrogen pollution.
4
EE2 exposure reduced embryo viability and slowed embryonic development.
5
Maternal effects influenced embryo development under EE2 exposure, with some maternal sib groups being more susceptible than others.
Research Object
embryos of natural Alpine whitefish populations (Coregonus sp.) exposed to 17α-ethinylestradiol (EE2)
Research Subject
additive genetic variation and maternal effects underlying embryo tolerance to EE2-induced toxicity, including mortality, viability, and embryogenesis rate
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2014-10-03
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