Antiandrogen blocks estrogen-induced masculinization of the song system in female zebra finches.

W. Grisham, Janet Lee, Mary Ellen McCormick, Kay Yang-Stayner, A. Arnold
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引用次数: 33

Abstract

Song behavior and the neural song system that serves it are sexually dimorphic in zebra finches. In this species, males sing and females normally do not. The sex differences in the song system include sex differences in the proportion of neurons that express androgen receptors, which is higher in specific brain regions of males. Estradiol (E2) administered in early development profoundly masculinizes the song system of females, including the proportion of neurons expressing androgen receptors. We examined whether or not the expression of these androgen receptors was causally related to the E2-induced masculinization of this system by co-administering Flutamide, which blocks androgen action at the receptor, along with E2 at hatching. E2 alone had its usual masculinizing effect on the female song system, measured in adulthood: increasing the size of song nuclei, the size of neurons in HVC, RA, and 1MAN, and the number of neurons in HVC. E2's masculinizing action, however, was significantly diminished on all measures by co-administering Flutamide. Indeed, females receiving both E2 and Flutamide were never significantly more masculine than controls on any measure. Flutamide alone had no effect. Our results strongly suggest that the activation of androgen receptors is necessary for the E2-induced masculinization of the song system in females.
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抗雄激素阻断雌性斑胸草雀鸣叫系统中雌激素诱导的雄性化。
鸣叫行为和为鸣叫服务的神经鸣叫系统在斑马雀中是两性二态的。在这个物种中,雄性会唱歌,而雌性通常不会。鸣叫系统的性别差异包括表达雄激素受体的神经元比例的性别差异,雄性大脑特定区域的雄激素受体比例更高。在发育早期给予雌二醇(E2)会使雌性鸣叫系统深刻地雄性化,包括表达雄激素受体的神经元的比例。我们研究了这些雄激素受体的表达是否与E2诱导的该系统的男性化有因果关系,方法是在孵化时共同给药氟他胺,阻断雄激素在受体上的作用,以及E2。E2单独对雌性鸣叫系统有其通常的雄性化作用,在成年期测量:增加鸣叫核的大小,HVC、RA和1MAN神经元的大小,以及HVC神经元的数量。然而,联合使用氟他胺,E2的男性化作用在所有测量中都明显减弱。事实上,同时服用E2和氟他胺的女性在任何方面都没有明显比对照组更男性化。氟他胺单独使用无效果。我们的研究结果强烈表明雄激素受体的激活对于e2诱导的雌性鸣叫系统的雄性化是必要的。
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