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首页> 外文期刊>Developmental neurobiology >Intracranial administration of the G‐protein coupled estrogen receptor 1 antagonist, G‐15, selectively affects dimorphic characteristics of the song system in zebra finches ( Taeniopygia guttata Taeniopygia guttata )
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Intracranial administration of the G‐protein coupled estrogen receptor 1 antagonist, G‐15, selectively affects dimorphic characteristics of the song system in zebra finches ( Taeniopygia guttata Taeniopygia guttata )

机译:G蛋白偶联雌激素受体1拮抗剂G-15的颅内给药选择性地影响斑马雀的歌曲系统的二态特征(Taeniopygia Guttata Taeniopygia Guttata)

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ABSTRACT In zebra finches ( Taeniopygia guttata) , estradiol contributes to sexual differentiation of the song system but the receptor(s) underlying its action are not exactly known. Whereas mRNA and/or protein for nuclear estrogen receptors ERα and ERβ are minimally expressed, G‐protein coupled estrogen receptor 1 (GPER1) has a much greater distribution within neural song regions and the syrinx. At present, however, it is unclear if this receptor contributes to dimorphic development of the song system. To test this, the specific GPER1 antagonist, G‐15, was intracranially administered to zebra finches for 25 days beginning on the day of hatching. In males, G‐15 significantly decreased nuclear volumes of HVC and Area X. It also decreased the muscle fiber sizes of ventralis and dorsalis in the syrinx. In females, G‐15 had no effect on measures within the brain, but did increase fiber sizes of both muscle groups. In sum, these data suggest that GPER1 can have selective and opposing influences on dimorphisms within the song system, but since not all features were affected additional factors are likely involved. ? 2018 Wiley Periodicals, Inc. Develop Neurobiol, 2018
机译:摘要在斑马雀(Taeniopygia Guttata)中,雌二醇有助于歌曲系统的性分化,但其行为的受体并不恰恰是所知的。虽然核雌激素受体的mRNA和/或蛋白质是最小表达的,但是G-蛋白偶联雌激素受体1(GPER1)在神经歌曲区域和Syrinx内具有更大的分布。然而,目前,如果该受体有助于歌曲系统的二态发育,则目前尚不清楚。为了测试这一点,特定的GPER1拮抗剂G-15在孵化当天开始于斑马雀之前施用于斑马雀。在雄性中,G-15显着降低了HVC和面积X的核体积。它还减少了Syrinx中腹膜和背部的肌纤维尺寸。在女性中,G-15对大脑内的措施没有影响,但是已经增加了两种肌肉群的纤维尺寸。总之,这些数据表明,GPER1可以对歌曲系统内的二态性具有选择性和相反的影响,但由于并非所有功能都受到影响,因此可能涉及其他因素。还2018 Wiley期刊,Inc。开发Neurobiol,2018

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