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首页> 外文期刊>Development Growth and Differentiation >Cell death and the song control system: a model for how sex steroid hormones regulate naturally-occurring neurodegeneration. [Review]
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Cell death and the song control system: a model for how sex steroid hormones regulate naturally-occurring neurodegeneration. [Review]

机译:细胞死亡和歌曲控制系统:性类固醇激素如何调节自然发生的神经变性的模型。 [评论]

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摘要

The production, learning, and perception of song in songbirds are regulated by a series of discrete brain nuclei known as the song control system. In most songbird species, the song control system is sexually dimorphic, and these dimorphisms become more robust after birds have hatched. In seasonally breeding songbirds, the song control system grows and regresses depending upon breeding context. The development and seasonal plasticity of the song control system are dependent upon neurodegenerative processes, which can be ameliorated, at least in part, by circulating sex steroid hormones. I will describe two areas of song control system research that have provided important information about how hormonal control of cell death contributes to the shaping of behaviorally-relevant brain circuits. First, sexual dimorphism in the zebra finch song control system is robust and emerges partially due to substantial regression of female song control system nuclei during development. Second, in seasonally-breeding songbirds, the song control system regresses as birds transition from breeding to non-breeding conditions. In a controlled laboratory setting where hormones can be acutely withdrawn, these brain areas regress in only a matter of hours to days. Taken together, these results demonstrate that the study of cell death in the song control system provides an excellent opportunity for understanding how changes in circulating levels of sex steroids affect the degeneration of hormone-sensitive brain circuits
机译:鸣禽中歌曲的产生,学习和感知受一系列离散的脑核(称为歌曲控制系统)调节。在大多数鸣禽物种中,歌曲控制系统具有两性性,在鸟类孵化后,这些双态性变得更加强大。在季节性繁殖的鸣禽中,歌曲控制系统会根据繁殖环境而增长和消退。歌曲控制系统的发展和季节性可塑性取决于神经变性过程,神经变性过程至少可以通过循环性类固醇激素得到改善。我将描述歌曲控制系统研究的两个领域,这些领域已经提供了有关激素对细胞死亡的控制如何促进与行为相关的大脑回路的形成的重要信息。首先,斑马雀科歌曲控制系统中的性二态性很强,部分归因于雌性歌曲控制系统核在发育过程中的显着退化。其次,在季节性繁殖的鸣禽中,随着鸟类从繁殖状态过渡到非繁殖状态,歌曲控制系统也会退化。在可以急性撤除激素的受控实验室环境中,这些大脑区域仅需数小时至数天即可退化。综上所述,这些结果表明,对歌曲控制系统中细胞死亡的研究为了解性类固醇的循环水平变化如何影响激素敏感性脑回路变性提供了极好的机会。

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