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首页> 外文期刊>General and comparative endocrinology >Exogenous application of estradiol to eggs unexpectedly induces male development in two turtle species with temperature-dependent sex determination
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Exogenous application of estradiol to eggs unexpectedly induces male development in two turtle species with temperature-dependent sex determination

机译:雌二醇对鸡蛋的外源性应用意外地诱导两只龟类的男性发育,具有温度依赖性的性别测定

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Steroid hormones affect sex determination in a variety of vertebrates. The feminizing effects of exposure to estradiol and the masculinizing effects of aromatase inhibition during development are well established in a broad range of vertebrate taxa, but paradoxical findings are occasionally reported. Four independent experiments were conducted on two turtle species with temperature-dependent sex determination (Chrysemys picta and Chelydra serpentine) to quantify the effects of egg incubation temperature, estradiol, and an aromatase inhibitor on offspring sex ratios. As expected, the warmer incubation temperatures induced female development and the cooler temperatures produced primarily males. However, application of an aromatase inhibitor had no effect on offspring sex ratios, and exogenous applications of estradiol to eggs produced male offspring across all incubation temperatures. These unexpected results were remarkably consistent across all four experiments and both study species. Elevated concentrations of estradiol could interact with androgen receptors or inhibit aromatase expression, which might result in relatively high testosterone concentrations that lead to testis development. These findings add to a short list of studies that report paradoxical effects of steroid hormones, which addresses the need for a more comprehensive understanding of the role of sex steroids in sexual development. (C) 2014 Elsevier Inc. All rights reserved.
机译:类固醇激素影响各种脊椎动物的性别测定。在广泛的脊椎动物分类群中,在开发过程中暴露于雌二醇和阳性血管抑制的女性化作用,偶尔报告了矛盾的结果。在两只龟类物种上进行了四个独立实验,具有温度依赖性性别测定(Chrysemys Picta和Chelydra Serpentine),以量化蛋孵育温度,雌二醇和芳香酶抑制剂对后代性别比的影响。如预期的那样,温暖的孵育温度诱导女性发育,并且较冷的温度主要产生雄性。然而,芳族酶抑制剂的应用对后代性别比率没有影响,雌二醇与卵的外源性应用在所有孵育温度上产生雄性后代。这些意外结果遍布所有四个实验和两项研究所的一致性。升高的雌二醇浓度可以与雄激素受体相互作用或抑制芳香酶表达,这可能导致相对高的睾酮浓度导致睾丸发育。这些调查结果增加了报告类固醇激素的矛盾作用的简短研究清单,这解决了对性甾类在性发展中的作用方面的需要。 (c)2014年elsevier Inc.保留所有权利。

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