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外源性雌二醇会改变海龟性腺的生长以及性腺温度性别决定的时间。

Exogenous estradiol alters gonadal growth and timing of temperature sex determination in gonads of sea turtle.

作者信息

Díaz-Hernández Verónica, Marmolejo-Valencia Alejandro, Merchant-Larios Horacio

机构信息

Departamento de Embriología, Facultad de Medicina. Universidad Nacional Autónoma de México, Mexico City, Mexico.

Departamento de Biología Celular y Fisiología, Instituto de Investigaciones Biomédicas. Universidad Nacional Autónoma de México, Mexico City, Mexico.

出版信息

Dev Biol. 2015 Dec 1;408(1):79-89. doi: 10.1016/j.ydbio.2015.05.022. Epub 2015 Oct 23.

Abstract

Temperature sex determining species offer a model for investigating how environmental cues become integrated to the regulation of patterning genes and growth, among bipotential gonads. Manipulation of steroid hormones has revealed the important role of aromatase in the regulation of the estrogen levels involved in temperature-dependent sex determination. Estradiol treatment counteracts the effect of male-promoting temperature, but the resulting ovarian developmental pattern differs from that manifested with the female-promoting temperature. Hypoplastic gonads have been reported among estradiol-treated turtles; however the estradiol effect on gonadal size has not been examined. Here we focused on the sea turtle Lepidochelys olivacea, which develops hypoplastic gonads with estradiol treatment. We studied the effect of estradiol on cell proliferation and on candidate genes involved in ovarian pattern. We found this effect is organ specific, causing a dramatic reduction in gonadal cell proliferation during the temperature-sensitive period. Although the incipient gonads resembled tiny ovaries, remodeling of the medullary cords and down-regulation of testicular factor Sox9 were considerably delayed. Contrastingly, with ovarian promoting temperature as a cue, exogenous estradiol induced the up-regulation of the ovary factor FoxL2, prior to the expression of aromatase. The strong expression of estrogen receptor alpha at the time of treatment suggests that it mediates estradiol effects. Overall results indicate that estradiol levels required for gonadal growth and to establish the female genetic network are delicately regulated by temperature.

摘要

温度决定性别的物种为研究环境线索如何在双潜能性腺中整合到模式基因和生长的调控提供了一个模型。对类固醇激素的操纵揭示了芳香化酶在调节温度依赖性性别决定中涉及的雌激素水平方面的重要作用。雌二醇处理可抵消促进雄性温度的影响,但由此产生的卵巢发育模式与促进雌性温度下表现出的模式不同。在接受雌二醇处理的海龟中已报道有性腺发育不全的情况;然而,尚未研究雌二醇对性腺大小的影响。在这里,我们重点研究了丽龟,其在接受雌二醇处理后会出现性腺发育不全。我们研究了雌二醇对细胞增殖以及参与卵巢模式的候选基因的影响。我们发现这种影响具有器官特异性,在温度敏感期导致性腺细胞增殖显著减少。尽管初始性腺类似于微小的卵巢,但髓索的重塑和睾丸因子Sox9的下调被大大延迟。相反,以促进卵巢的温度为线索,外源性雌二醇在芳香化酶表达之前诱导卵巢因子FoxL2的上调。处理时雌激素受体α的强烈表达表明它介导了雌二醇的作用。总体结果表明,性腺生长和建立雌性遗传网络所需的雌二醇水平受到温度的精细调节。

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