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Differential effects of testosterone metabolites oestradiol and dihydrotestosterone on oxidative stress and carotenoid-dependent colour expression in a bird

机译:睾丸激素代谢物雌二醇和二氢睾丸激素对鸟类氧化应激和类胡萝卜素依赖性颜色表达的差异作用

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摘要

Despite extensive research, the potential costs that keep secondary sexual traits honest and evolutionary stable remain somewhat elusive. Many carotenoid-based signals are regulated by testosterone (T), which has been suggested to impose a cost to the signaller by suppression of the immune system or an increase in oxidative stress. Results are, however, inconsistent, which may be due to the fact that T can be metabolised to both 5α-dihydrotestosterone (DHT, a potent androgen) and oestradiol (E2, a potent oestrogen). To evaluate for the first time the independent effect of these testosterone metabolites on oxidative status, circulating carotenoids and a carotenoid-dependent sexual signal, we administered DHT and E2 to captive non-breeding adult kestrels Falco tinnunculus of both sexes. E2 increased oxidative damage and downregulated the antioxidant barrier without affecting colouration or circulating carotenoids. In contrast, DHT did not affect oxidative status, but increased skin redness, again without affecting circulating carotenoids. No sex-specific effects were found. These results suggest that the pro-oxidant activity of T could be induced indirectly by its metabolite, E2, whereas the other metabolite, DHT, stimulates signal expression. Finally, the study shows that changes in oxidative damage or antioxidant status of plasma were not correlated with either skin redness or circulating carotenoids.
机译:尽管进行了广泛的研究,保持次要性格特征诚实和进化稳定的潜在成本仍然难以捉摸。许多基于类胡萝卜素的信号受睾丸激素(T)的调节,已建议通过抑制免疫系统或增加氧化应激来增加信号转导的成本。但是,结果不一致,这可能是由于T可以同时代谢为5α-二氢睾丸激素(DHT,一种有效的雄激素)和雌二醇(E2,一种有效的雌激素)。为了首次评估这些睾丸酮代谢物对氧化状态,循环类胡萝卜素和类胡萝卜素依赖性性信号的独立作用,我们将DHT和E2分别施用于了两性的非繁殖成年茶est Falco tinnunculus。 E2增加了氧化损伤并下调了抗氧化屏障,而不会影响色素或循环类胡萝卜素。相反,DHT不会影响氧化状态,但会增加皮肤发红,但又不会影响循环类胡萝卜素。未发现性别特异性效应。这些结果表明,T的代谢物E2可以间接诱导T的促氧化活性,而另一种代谢物DHT可以刺激信号表达。最后,研究表明血浆氧化损伤或抗氧化状态的变化与皮肤发红或循环类胡萝卜素无关。

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