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从沉默到歌唱:睾酮引发雌性金丝雀HVC区域广泛的转录变化。

From silence to song: Testosterone triggers extensive transcriptional changes in the female canary HVC.

作者信息

Ko Meng-Ching, Frankl-Vilches Carolina, Bakker Antje, Sohnius-Wilhelmi Nina, Alcami Pepe, Gahr Manfred

机构信息

Department of Behavioural Neurobiology, Max Planck Institute for Biological Intelligence, Seewiesen, Germany.

Division of Neurobiology, Faculty of Biology, Ludwig-Maximilians-University Munich, Planegg, Germany.

出版信息

J Neuroendocrinol. 2025 Jun;37(6):e13476. doi: 10.1111/jne.13476. Epub 2024 Dec 8.

Abstract

Seasonal song production in canaries is influenced by gonadal hormones, but the molecular mechanisms underlying testosterone-induced song development in adult female canaries, which rarely sing naturally, remain poorly understood. We explored testosterone-induced song development in adult female canaries by comparing gene regulatory networks in the song-controlling brain area HVC at multiple time points (1 h to 14 days) post-treatment with those of placebo-treated controls. Females began vocalizing within 4 days of testosterone treatment, with song complexity and HVC volume increasing progressively over 2 weeks. Rapid transcriptional changes involving 2739 genes preceded song initiation. Over 2 weeks, 9913 genes-approximately 64% of the canary's protein-coding genome-were differentially expressed, with 98% being transiently regulated. These genes are linked to various biological functions, with early changes at the cellular level and later changes affecting the nervous system level after prolonged hormone exposure. Our findings suggest that testosterone-induced song development is accompanied by extensive and dynamic transcriptional changes in the HVC, implicating widespread neuronal involvement. These changes underpin the gradual emergence of singing behavior, providing insights into the neural basis of seasonal behavioral patterns.

摘要

金丝雀的季节性鸣叫受性腺激素影响,但对于成年雌性金丝雀(很少自然鸣叫)中睾酮诱导鸣叫发育的分子机制,人们仍知之甚少。我们通过比较经睾酮处理的成年雌性金丝雀在多个时间点(处理后1小时至14天)与经安慰剂处理的对照组在控制鸣叫的脑区HVC中的基因调控网络,来探究睾酮诱导的鸣叫发育。雌性金丝雀在接受睾酮处理后的4天内开始发声,鸣叫复杂性和HVC体积在2周内逐渐增加。在鸣叫开始之前,涉及2739个基因的快速转录变化就已发生。在2周时间内,9913个基因(约占金丝雀蛋白质编码基因组的64%)发生了差异表达,其中98%受到瞬时调控。这些基因与多种生物学功能相关,早期变化发生在细胞水平,长期激素暴露后后期变化影响神经系统水平。我们的研究结果表明,睾酮诱导的鸣叫发育伴随着HVC中广泛而动态的转录变化,这意味着广泛的神经元参与其中。这些变化是鸣叫行为逐渐出现的基础,为季节性行为模式的神经基础提供了见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/da34/12145947/7133eb0b7b36/JNE-37-e13476-g003.jpg

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