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Singing activity‐driven Arc expression associated with vocal acoustic plasticity in juvenile songbird

机译:歌唱活动驱动的弧形表达与幼鸟的声音声学可塑性相关

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摘要

Learned vocalization, including birdsong and human speech, is acquired through self‐motivated vocal practice during the sensitive period of vocal learning. The zebra finch (Taeniopygia guttata) develops a song characterized by vocal variability and crystallizes a defined song pattern as adulthood. However, it remains unknown how vocal variability is regulated with diurnal singing during the sensorimotor learning period. Here, we investigated the expression of activity‐dependent neuroplasticity‐related gene Arc during the early plastic song phase to examine its potential association with vocal plasticity. We first confirmed that multiple acoustic features of syllables in the plastic song were dramatically and simultaneously modulated during the first 3 hr of singing in a day and the altered features were maintained until sleep. In a concurrent manner, Arc was intensely induced during morning singing and a subsequent attenuation during afternoon singing in the robust nucleus of the arcopallium (RA) and the interfacial nucleus of the nidopallium (NIf). The singing‐driven Arc expression was not altered by circadian rhythm, but rather reduced during the day as juveniles produced more songs. Song stabilization accelerated by testosterone administration in juveniles was accompanied with attenuation of Arc induction in RA and NIf. In contrast, although early‐deafened birds produced highly unstable song even at adulthood, singing‐driven Arc expression was not different between intact and early‐deafened adults. These results suggest a potential functional link between Arc expression in RA and NIf and vocal plasticity during the sensorimotor phase of song learning. Nonetheless, Arc expression did not reflect the quality of bird's own song or auditory feedback.
机译:在声乐学习的敏感时期,通过自我激励的声乐练习可以获得学习的声乐,包括鸟鸣和人的语音。斑胸草雀(Taeniopygia guttata)会开发出具有声乐变异性的歌曲,并使明确的歌曲模式如成年期般结晶。然而,尚不清楚在感觉运动学习期间如何通过昼夜歌唱调节声音的变异性。在这里,我们研究了与活动依赖的神经可塑性相关的基因Arc在早期塑歌阶段的表达,以检查其与人声可塑性的潜在关系。我们首先确认,在一天的唱歌的前3个小时中,塑料歌曲中音节的多个声学特征得到了显着且同时的调制,并且改变的特征一直保持到睡眠。同时,Arcopallium(RA)的健壮核和Nidopallium(NIf)的交界核在早唱歌时强烈诱导产生电弧,随后在午后唱歌时强烈诱发电弧。歌唱驱动的Arc表情并没有因为昼夜节律而改变,而是在白天减少,因为少年们产生了更多的歌曲。在青少年中,通过睾丸激素的施用促进了歌曲的稳定,并伴随着RA和NIf中电弧诱导的减弱。相比之下,尽管早聋的鸟类甚至在成年期仍会产生高度不稳定的歌曲,但完整的和早聋的成虫在歌唱驱动的Arc表达上并没有什么不同。这些结果表明在歌曲学习的感觉运动阶段,RA和NIf中的Arc表达与声音可塑性之间存在潜在的功能联系。但是,Arc表达式不能反映鸟类自己的歌曲或听觉反馈的质量。

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