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芳香酶抑制作用会影响睾酮诱导的雌性金丝雀鸣叫及神经鸣叫系统的雄性化。

Aromatase inhibition affects testosterone-induced masculinization of song and the neural song system in female canaries.

作者信息

Fusani Leonida, Metzdorf Reinhold, Hutchison John B, Gahr Manfred

机构信息

Research Centre for Ornithology of the Max-Planck-Society, 82346 Andechs, Germany.

出版信息

J Neurobiol. 2003 Feb 5;54(2):370-9. doi: 10.1002/neu.10141.

Abstract

Songbirds have a specialized steroid-sensitive network of brain nuclei, the song system, for controlling song. Most nuclei of the song system express androgen receptors, and the sensory-motor integration nucleus High Vocal Center (HVC) alone also expresses estrogen receptors. Apart from expressing estrogen receptors in the vocal control system, songbirds are unique among birds because they have high concentrations of the estrogen-synthesizing enzyme aromatase in the neostriatum surrounding HVC. However, the role of estrogen in controlling the development of the song structure has been scarcely investigated. In this work, we show that blocking the production of estrogen during testosterone-induced song motor development in adult female canaries alters the song pattern compared to control females treated with testosterone only. These effects were correlated with inhibition of the expression of estrogen-sensitive genes, such as brain-derived nerve growth factor, in HVC. The expression of the ATP-synthase gene, an indicator of cell activity, in HVC, and the size of HVC, were not affected by the treatment. Our results provide the first example of estrogen-sensitive mechanisms controlling the structural features of adult birdsong.

摘要

鸣禽有一个专门用于控制鸣叫的对类固醇敏感的脑核网络,即鸣叫系统。鸣叫系统的大多数核都表达雄激素受体,而且仅感觉运动整合核高级发声中枢(HVC)也表达雌激素受体。除了在发声控制系统中表达雌激素受体外,鸣禽在鸟类中独一无二,因为它们在HVC周围的新纹状体中有高浓度的雌激素合成酶芳香化酶。然而,雌激素在控制鸣叫结构发育中的作用几乎未被研究。在这项研究中,我们发现,在成年雌性金丝雀睾酮诱导的鸣叫运动发育过程中阻断雌激素的产生,与仅用睾酮处理的对照雌性相比,会改变鸣叫模式。这些效应与HVC中雌激素敏感基因(如脑源性神经生长因子)表达的抑制相关。HVC中作为细胞活性指标的ATP合酶基因的表达以及HVC的大小不受该处理的影响。我们的结果提供了雌激素敏感机制控制成年鸟鸣结构特征的首个实例。

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