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首页> 外文期刊>Behavioural processes >The neural response of female zebra finches (Taeniopygia guttata) to conspecific, heterospecific, and isolate song depends on early-life song exposure
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The neural response of female zebra finches (Taeniopygia guttata) to conspecific, heterospecific, and isolate song depends on early-life song exposure

机译:女性斑马雀(Taeniopygia Guttata)对熟,异常特异性和孤立歌曲的神经反应取决于早期歌曲暴露

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摘要

The auditory forebrain regions caudo-medial nidopallium (NCM) and caudo-medial mesopallium (CMM) of songbirds exhibit differential expression of the immediate-early gene ZENK in response to playback of different song stimuli, and dependent on early-life auditory experience. Similarly, song preferences depend both on auditory experience and unlearned biases for particular song features. We explored the contributions of early-life auditory experience and the type of song stimuli on the Zenk response in the auditory forebrain of female zebra finches. Females were raised in three different early tutoring conditions: conspecific tutors that sang isolate song, heterospecific tutors, or conspecific tutors that sang wild-type song. At maturity, these females were exposed to one of five different playback conditions: wild-type song, isolate song, tutor song, heterospecific song, or white noise. Subsequently, the number of cells immunoreactive for ZENK in CMM and NCM was measured. We predicted that birds exposed to conspecific song early in life, and during the song playback in adulthood, would have the highest neural response. Instead, we found that the Zenk response varied across playback conditions with the highest response to conspecific wild-type and conspecific isolate song. In addition, we found a main effect of tutoring, with the lowest overall Zenk response in females tutored by males singing isolate song. Most importantly, there was a significant interaction in that females tutored by wild-type conspecific or heterospecific songs showed a similar increased response to zebra finch songs (wild-type or isolate), but females tutored by isolate song showed no differential response to conspecific song and only showed elevated Zenk response to the particular songs they were tutored with. Combined, our results indicate that unlearned response biases to conspecific song elements depend on previous auditory experience. That is, early experience appears to modulate the expression of innate biases.
机译:听觉前脑区域尾部内赤钙(NCM)和尾内甲壳质(CMM)的鸣禽响应不同歌曲刺激的播放,依赖于早期检测经验,表现出立即早期基因ZENK的差异表达。同样,歌曲偏好依赖于对特定歌曲特征的听觉体验和未经读数的偏见。我们探讨了早期检测经验的贡献以及雌性斑马雀耳染素的ZENK反应中的歌曲刺激类型。女性在三个不同的早期辅导条件下提出:唱宋,异常专题辅导员或唱片野歌型歌曲的歌曲,异常专题辅导器的宗旨。在成熟时,这些女性接触到五种不同的播放条件之一:野生型歌曲,隔离歌曲,导师歌曲,异质型歌曲或白噪声。随后,测量CMM和NCM中ZENK免疫反应的细胞数。我们预测,鸟类在生命中早期暴露在一起,以及在成年期的歌曲中,将具有最高的神经反应。相反,我们发现ZENK响应在播放条件上变化,响应了对Cantpecidific野型和Consp特异性的孤立歌曲的最高响应。此外,我们发现了辅导的主要效果,在雄性唱歌孤立歌曲辅导的女性中的最低整体Zenk反应。最重要的是,通过野生型的面积或异质型歌曲辅导的女性存在显着的互动表现出对斑马雀歌曲(野生型或孤立)的相似增加的反应,但是被隔离歌曲辅导的女性对Conspecific歌曲没有差异反应。并且只向他们所助长的特定歌曲显示ZENK响应。合并,我们的结果表明,对此思想歌曲元素的未解答响应偏差取决于先前的听觉体验。也就是说,早期经验似乎调节了先天偏见的表达。

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