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鸣禽的周围神经毡和发声可塑性:解释封闭式学习和开放式学习差异的一种假设机制。

Perineuronal nets and vocal plasticity in songbirds: A proposed mechanism to explain the difference between closed-ended and open-ended learning.

机构信息

GIGA Neuroscience, University of Liege, Liege, 4000, Belgium.

Department of Psychological and Brain Sciences, Johns Hopkins University, Baltimore, Maryland, 21218.

出版信息

Dev Neurobiol. 2017 Sep;77(8):975-994. doi: 10.1002/dneu.22485. Epub 2017 Feb 22.

Abstract

Perineuronal nets (PNN) are aggregations of chondroitin sulfate proteoglycans surrounding the soma and proximal processes of neurons, mostly GABAergic interneurons expressing parvalbumin. They limit the plasticity of their afferent synaptic connections. In zebra finches PNN develop in an experience-dependent manner in the song control nuclei HVC and RA (nucleus robustus arcopallialis) when young birds crystallize their song. Because songbird species that are open-ended learners tend to recapitulate each year the different phases of song learning until their song crystallizes at the beginning of the breeding season, we tested whether seasonal changes in PNN expression would be found in the song control nuclei of a seasonally breeding species such as the European starling. Only minimal changes in PNN densities and total number of cells surrounded by PNN were detected. However, comparison of the density of PNN and of PNN surrounding parvalbumin-positive cells revealed that these structures are far less numerous in starlings that show extensive adult vocal plasticity, including learning of new songs throughout the year, than in the closed-ended learner zebra finches. Canaries that also display some vocal plasticity across season but were never formally shown to learn new songs in adulthood were intermediate in this respect. Together these data suggest that establishment of PNN around parvalbumin-positive neurons in song control nuclei has diverged during evolution to control the different learning capacities observed in songbird species. This differential expression of PNN in different songbird species could represent a key cellular mechanism mediating species variation between closed-ended and open-ended learning strategies. © 2017 Wiley Periodicals, Inc. Develop Neurobiol 77: 975-994, 2017.

摘要

周围神经毡(PNN)是聚集在神经元的体和近端突起周围的软骨素硫酸盐蛋白聚糖,主要是表达钙结合蛋白的 GABA 能中间神经元。它们限制了传入突触连接的可塑性。在幼鸟形成其歌曲时,斑马雀的 HVC 和 RA(核粗壮弓状核)中的 song 控制核以依赖经验的方式发展 PNN。因为具有开放性学习能力的鸣禽物种倾向于每年重新经历不同阶段的歌曲学习,直到它们的歌曲在繁殖季节开始时结晶,所以我们测试了季节性繁殖物种如欧洲椋鸟的 song 控制核中是否会发现 PNN 表达的季节性变化。只检测到 PNN 密度和被 PNN 包围的细胞总数的最小变化。然而,比较 PNN 的密度和被 PNN 包围的钙结合蛋白阳性细胞的密度表明,在表现出广泛的成年发声可塑性的椋鸟中,这些结构远不如在封闭学习能力的斑马雀中多,包括全年学习新歌曲。在这方面表现出一些跨季节发声可塑性但从未被正式证明在成年时学习新歌的金丝雀处于中间位置。这些数据表明,在 song 控制核中围绕钙结合蛋白阳性神经元建立 PNN 已经在进化中分化,以控制在鸣禽物种中观察到的不同学习能力。不同鸣禽物种中 PNN 的这种差异表达可能代表了介导封闭学习和开放性学习策略之间物种变异的关键细胞机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c928/5513760/33f101571423/nihms849318f1.jpg

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