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斑胸草雀尾内侧新纹状体中鸣叫反应的发育:基因组和电生理活动的作用

Development of song responses in the zebra finch caudomedial neostriatum: role of genomic and electrophysiological activities.

作者信息

Stripling R, Kruse A A, Clayton D F

机构信息

Beckman Institute, University of Illinois, Urbana, IL 61801, USA.

出版信息

J Neurobiol. 2001 Sep 5;48(3):163-80. doi: 10.1002/neu.1049.

DOI:10.1002/neu.1049
PMID:11466705
Abstract

Zebra finches first form demonstrable memories of specific songs between 25 and 35 days of age--several days after fledging from the nest. What accounts for the late onset of specific song memory formation? Here we investigated physiological development of the caudomedial neostriatum (NCM), part of the avian analogue of auditory cortex and a probable component of the system involved in song perception. Two types of physiological responses were characterized: electrophysiological (single-unit spike rate) and genomic (induction of the immediate early gene zenk, also known as zif-268, egr-1, ngfi-a, krox-24). We found that by day 20, zebra finches already have robust electrophysiological responses in NCM to song stimulation. Spike activity was greater in response to conspecific songs compared to heterospecific songs, white noise, or tones, and approximately 10% of the units showed selective responses to forward versus reversed songs. In contrast, at this age the zenk gene is expressed at a constitutively high level and undergoes no further induction in response to song presentation. At day 30, electrophysiological responses remained similar, but the zenk gene began to shift from a constitutive to an inducible pattern of expression. These results are consistent with a general role for NCM in the representation of song auditory patterns, and with a role for zenk gene expression in governing the efficiency of specific song memory storage at different ages.

摘要

斑胸草雀在25至35日龄之间(即离巢几天后)开始形成对特定歌曲的可证实记忆。特定歌曲记忆形成为何开始得这么晚呢?在此,我们研究了尾内侧新纹状体(NCM)的生理发育,NCM是鸟类听觉皮层类似物的一部分,可能是参与歌曲感知系统的一个组成部分。我们对两种类型的生理反应进行了特征描述:电生理反应(单神经元放电率)和基因组反应(即刻早期基因zenk的诱导,zenk也被称为zif - 268、egr - 1、ngfi - a、krox - 24)。我们发现,到20日龄时,斑胸草雀的NCM对歌曲刺激已经有强烈的电生理反应。与异种歌曲、白噪声或纯音相比,对同种歌曲的放电活动更强,并且约10%的神经元对正向与反向歌曲表现出选择性反应。相比之下,在这个年龄,zenk基因以持续高水平表达,对歌曲呈现不再有进一步诱导。在30日龄时,电生理反应保持相似,但zenk基因开始从持续表达模式转变为可诱导表达模式。这些结果与NCM在歌曲听觉模式表征中的一般作用一致,也与zenk基因表达在不同年龄调控特定歌曲记忆存储效率中的作用一致。

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