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雄冠蓝鸦(Poecile atricapillus)的听觉区域中的 Zenk 表达随繁殖状态而变化。

Zenk expression in auditory regions changes with breeding condition in male Black-capped chickadees (Poecile atricapillus).

机构信息

Department of Psychology, Dalhousie University, 1355 Oxford St, Halifax, NS, Canada B3H 4R2.

出版信息

Behav Brain Res. 2011 Dec 1;225(2):464-72. doi: 10.1016/j.bbr.2011.08.004. Epub 2011 Aug 11.

Abstract

Black-capped chickadees (Poecile atricapillus) produce different vocalizations at different times of year: the fee-bee song is produced by males primarily in spring, whereas the chick-a-dee call is produced year-round but most frequently in the fall and winter. We wanted to determine if neural response to playback in auditory regions of the songbird brain varied with season in parallel to production. We captured adult male black-capped chickadees from the wild in either breeding condition or non-breeding condition and within 24-48 h of bringing them into the laboratory setting, played them recordings of either conspecific vocalizations (fee-bee songs or chick-a-dee calls), heterospecific vocalizations (Song Sparrow, Melospiza melodia, song), or silence. We then measured ZENK protein immunoreactivity (Zenk-ir) in caudomedial nidopallium (NCM) and caudomedial mesopallium (CMM), two regions important for perception of conspecific vocalizations. We found that, overall, non-breeding birds had greater Zenk-ir than breeding birds. In addition, we found that birds in non-breeding condition had significantly greater Zenk-ir to heterospecific song than birds in breeding condition, but this difference was not seen in birds that heard conspecific songs or calls. Finally, in NCMd chickadees had greater response to playback of conspecific vocalizations (when combining song and call groups) than playback of heterospecific vocalizations but only while in breeding condition. Our results qualify the claim that Zenk-ir is biased toward conspecific vocalizations, and indicate that specificity of neural response varies with season. Variation could be a result of increased production and perceptual demand in spring, or hormonal changes in breeding birds, possibly because chickadees display vocal plasticity in chick-a-dee calls in the fall, requiring a degree of neural plasticity across seasons.

摘要

黑头山雀(Poecile atricapillus)在一年中的不同时间会发出不同的叫声:fee-bee 歌曲主要由雄性在春季发出,而 chick-a-dee 叫声则全年都有,但在秋季和冬季最常听到。我们想确定鸟类大脑听觉区域对播放声音的神经反应是否会随着季节的变化而与产生声音的变化同步。我们从野外捕获处于繁殖状态或非繁殖状态的成年雄性黑头山雀,并在将它们带入实验室环境后的 24-48 小时内,播放同种鸟类的叫声(fee-bee 歌曲或 chick-a-dee 叫声)、异种鸟类的叫声(歌雀,Melospiza melodia,歌曲)或沉默的录音。然后,我们测量了尾侧中脑顶(NCM)和尾侧中脑腹(CMM)中的 ZENK 蛋白免疫反应(Zenk-ir),这两个区域对于同种鸟类叫声的感知很重要。我们发现,总的来说,非繁殖鸟类的 Zenk-ir 比繁殖鸟类高。此外,我们发现,非繁殖状态的鸟类对异种鸟类歌曲的 Zenk-ir 显著大于繁殖状态的鸟类,但在听到同种鸟类歌曲或叫声的鸟类中没有发现这种差异。最后,在 NCMd 中,山雀对同种鸟类叫声(当将歌曲和叫声组合在一起时)的反应大于对异种鸟类叫声的反应,但仅在繁殖状态下才如此。我们的研究结果证明了 Zenk-ir 偏向同种鸟类叫声的说法,并表明神经反应的特异性随季节而变化。这种变化可能是由于春季繁殖鸟类的叫声产生和感知需求增加,或者是繁殖鸟类的激素变化,因为山雀在秋季的 chick-a-dee 叫声中表现出声音可塑性,需要在整个季节中具有一定程度的神经可塑性。

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