Laboratory of Behavioral Neuroendocrinology, GIGA Neurosciences, University of Liege, Belgium.
Behavioural Ecology and Ecophysiology Research Group, University of Antwerp, Belgium.
Behav Brain Res. 2020 Feb 17;380:112437. doi: 10.1016/j.bbr.2019.112437. Epub 2019 Dec 16.
Songbirds learn their song during a sensitive period of development associated with enhanced neural plasticity. In addition, in open-ended learners such as canaries, a sensitive period for sensorimotor vocal learning reopens each year in the fall and leads to song modifications between successive breeding seasons. The variability observed in song production across seasons in adult canaries correlates with seasonal fluctuations of testosterone concentrations and with morphological changes in nuclei of the song control system (SCS). The sensitive periods for song learning during ontogeny and then again in adulthood could be controlled by the development of perineuronal nets (PNN) around parvalbumin-expressing interneurones (PV) which limits learning-induced neuroplasticity. However, this relationship has never been investigated in the context of adult vocal learning in adult songbirds. Here we explored PNN and PV expression in the SCS of adult male Fife Fancy canaries in relation to the seasonal variations of their singing behaviour. We found a clear pattern of seasonal variation in testosterone concentrations and song production. Furthermore, PNN expression was significantly higher in two specific song control nuclei, the robust nucleus of the arcopallium (RA) and the Area X of the basal ganglia, during the breeding season and during the later stages of sensorimotor song development compared to birds in an earlier stage of sensorimotor development during the fall. These data provide the first evidence that changes in PNN expression could represent a mechanism regulating the closing-reopening of sensitive periods for vocal learning across seasons in adult songbirds.
鸣禽在与神经可塑性增强相关的发育敏感期学习鸣叫。此外,在开放式学习者(如金丝雀)中,每年秋季都会重新开启感觉运动发声学习的敏感期,并在连续繁殖季节之间导致鸣叫的改变。成年金丝雀在不同季节鸣叫产生的可变性与睾酮浓度的季节性波动以及鸣叫控制系统(SCS)核的形态变化相关。在个体发生期间和成年后再次学习鸣叫的敏感期可能受到围绕表达钙结合蛋白 Parvalbumin 的中间神经元(PV)的周围神经网(PNN)的发育的控制,这限制了学习诱导的神经可塑性。然而,这种关系从未在成年鸣禽的成年期发声学习的背景下进行过研究。在这里,我们探讨了成年雄性费尔法克斯花式金丝雀的 SCS 中的 PNN 和 PV 表达与它们歌唱行为的季节性变化之间的关系。我们发现睾酮浓度和歌唱行为存在明显的季节性变化模式。此外,与秋季处于感觉运动发育早期阶段的鸟类相比,在繁殖季节和感觉运动歌唱发育的后期阶段,两个特定的歌唱控制核(ARC 中的坚固核和基底神经节的 X 区)中的 PNN 表达明显更高。这些数据首次提供了证据,表明 PNN 表达的变化可能代表一种调节成年鸣禽季节性声音学习敏感期关闭-重新开放的机制。