Neuroscience Department, Wellesley College, Wellesley, MA, 02481, USA.
Sci Rep. 2024 Mar 9;14(1):5781. doi: 10.1038/s41598-024-55987-6.
Juvenile male zebra finches (Taeniopygia guttata) must be exposed to an adult tutor during a sensitive period to develop normal adult song. The pre-motor nucleus HVC (acronym used as a proper name), plays a critical role in song learning and production (cf. Broca's area in humans). In the human brain, left-side hemispheric dominance in some language regions is positively correlated with proficiency in linguistic skills. However, it is unclear whether this pattern depends upon language learning, develops with normal maturation of the brain, or is the result of pre-existing functional asymmetries. In juvenile zebra finches, even though both left and right HVC contribute to song production, baseline molecular activity in HVC is left-dominant. To test if HVC exhibits hemispheric dominance prior to song learning, we raised juvenile males in isolation from adult song and measured neuronal activity in the left and right HVC upon first exposure to an auditory stimulus. Activity in the HVC was measured using the immediate early gene (IEG) zenk (acronym for zif-268, egr-1, NGFI-a, and krox-24) as a marker for neuronal activity. We found that neuronal activity in the HVC of juvenile male zebra finches is not lateralized when raised in the absence of adult song, while normally-reared juvenile birds are left-dominant. These findings show that there is no pre-existing asymmetry in the HVC prior to song exposure, suggesting that lateralization of the song system depends on learning through early exposure to adult song and subsequent song-imitation practice.
幼年雄性斑马雀(Taeniopygia guttata)在敏感时期必须接触成年导师才能发展出正常的成年歌曲。前运动核 HVC(首字母缩写词用作专有名词)在歌曲学习和产生中起着关键作用(参见人类的布洛卡区)。在人类大脑中,一些语言区域的左侧半球优势与语言技能的熟练程度呈正相关。然而,尚不清楚这种模式是否取决于语言学习、大脑的正常成熟发展,还是预先存在的功能不对称的结果。在幼年的斑马雀中,尽管左右 HVC 都有助于歌曲的产生,但 HVC 的基础分子活动是左侧优势。为了测试 HVC 在学习歌曲之前是否表现出半球优势,我们将幼年雄性斑马雀与成年歌曲隔离饲养,并在首次接触听觉刺激时测量左右 HVC 中的神经元活动。HVC 的活动通过即时早期基因(IEG)zenk(代表 zif-268、egr-1、NGFI-a 和 krox-24)作为神经元活动的标志物进行测量。我们发现,在没有成年歌曲的情况下饲养的幼年雄性斑马雀的 HVC 中的神经元活动没有偏向性,而正常饲养的幼年鸟类则是左侧优势。这些发现表明,在暴露于歌曲之前,HVC 中没有预先存在的不对称性,这表明歌曲系统的偏侧化取决于通过早期接触成年歌曲和随后的歌曲模仿练习进行学习。