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成年斑胸草雀单侧耳蜗切除后大细胞核对钙结合蛋白表达模式的改变

Alteration of CaBP expression pattern in the nucleus magnocellularis following unilateral cochlear ablation in adult zebra finches.

作者信息

Li Jie, Zhou Xin, Huang Li, Fu Xin, Liu Jin, Zhang Xinwen, Sun Yingyu, Zuo Mingxue

机构信息

Beijing Key Laboratory of Gene Resource and Molecular Development, Laboratory of Neuroscience and Brain Development, College of Life Sciences, Beijing Normal University, Beijing, China.

出版信息

PLoS One. 2013 Nov 14;8(11):e79297. doi: 10.1371/journal.pone.0079297. eCollection 2013.

Abstract

Songbirds have the rare ability of auditory-vocal learning and maintenance. Up to now, the organization and function of the nucleus magnocellularis (NM), the first relay of the avian ascending auditory pathway is largely based on studies in non-vocal learning species, such as chickens and owls. To investigate whether NM exhibits different histochemical properties associated with auditory processing in songbirds, we examined the expression patterns of three calcium-binding proteins (CaBPs), including calretinin (CR), parvalbumin (PV) and calbindin-D28k (CB), and their relations to auditory inputs in NM in adult zebra finches. We found enriched and co-localized immunostaining of CR, PV and CB in the majority of NM neurons, without neuronal population preference. Furthermore, they were sensitive to adult deafferentation with differential plasticity patterns. After unilateral cochlear removal, CR staining in the ipsilateral NM decreased appreciably at 3 days after surgery, and continued to decline thereafter. PV staining showed down-regulation first at 3 days, but subsequently recovered slightly. CB staining did not significantly decrease until 7 days after surgery. Our findings suggest that the three CaBPs might play distinct roles in association with auditory processing in zebra finches. These results are in contrast to the findings in the NM of chickens where CR is the predominant CaBP and deafferentation had no apparent effect on its expression. Further extended studies in other avian species are required to establish whether the difference in CaBP patterns in NM is functionally related to the different auditory-vocal behaviors.

摘要

鸣禽具有听觉-发声学习与维持的罕见能力。到目前为止,鸟类上行听觉通路的第一级中继——巨细胞核(NM)的组织和功能,很大程度上是基于对鸡和猫头鹰等非发声学习物种的研究。为了研究NM在鸣禽中是否表现出与听觉处理相关的不同组织化学特性,我们检测了三种钙结合蛋白(CaBPs),包括钙视网膜蛋白(CR)、小白蛋白(PV)和钙结合蛋白-D28k(CB)在成年斑胸草雀NM中的表达模式,以及它们与NM中听觉输入的关系。我们发现,在大多数NM神经元中,CR、PV和CB的免疫染色丰富且共定位,没有神经元群体偏好。此外,它们对成年去传入神经支配具有不同的可塑性模式敏感。单侧耳蜗切除后,同侧NM中的CR染色在术后3天明显下降,此后继续下降。PV染色在3天时首先下调,但随后略有恢复。CB染色直到术后7天才显著下降。我们的研究结果表明,这三种CaBPs可能在斑胸草雀的听觉处理中发挥不同的作用。这些结果与鸡的NM中的发现形成对比,在鸡的NM中CR是主要的CaBP,去传入神经支配对其表达没有明显影响。需要在其他鸟类物种中进行进一步的扩展研究,以确定NM中CaBP模式的差异是否在功能上与不同的听觉-发声行为相关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e962/3828381/b3bf8af9c6d2/pone.0079297.g001.jpg

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