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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >The role of neurotrophins in the seasonal-like growth of the avian song control system.
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The role of neurotrophins in the seasonal-like growth of the avian song control system.

机译:神经营养蛋白在禽类歌曲控制系统的季节性生长中的作用。

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摘要

The avian song control system undergoes pronounced seasonal plasticity in response to photoperiod and hormonal cues. The action of testosterone (T) and its metabolites in the song nucleus HVC is both necessary and sufficient to promote breeding season-like growth of its efferent nuclei RA (robust nucleus of the arcopallium) and Area X, suggesting that HVC may release a trophic factor such as brain-derived neurotrophic factor (BDNF) into RA and X. BDNF is involved in many forms of adult neural plasticity in other systems and is present in the avian song system. We used a combination of in situ hybridization and intracerebral infusions to test whether BDNF plays a role in the seasonal-like growth of the song system in adult male white-crowned sparrows. BDNF mRNA levels increased in HVC in response to breeding conditions, and BDNF infusion into RA was sufficient to promote breeding-like changes in somatic area and neuronal density. Expression of the mRNA for the Trk B receptor of BDNF, however, did not vary with seasonal conditions in either HVC or RA. Local blockade of BDNF activity in RA via infusion of Trk-Fc fusion proteins inhibited the response to breeding conditions. Our results indicate that BDNF is sufficient to promote the seasonal plasticity in somatic area and cell density in RA, although NT-3 may also contribute to this process, and suggest that HVC may be a presynaptic source of increased levels of BDNF in RA of breeding-condition birds.
机译:禽歌控制系统会根据光周期和荷尔蒙提示而经历明显的季节性可塑性。睾丸激素(T)及其代谢产物在歌状核HVC中的作用对于促进其传出核RA(弓op的健壮核)和X区域的繁殖季节生长都是必要且充分的,这表明HVC可能释放营养诸如脑源性神经营养因子(BDNF)进入RA和X。BDNF参与其他系统中许多形式的成人神经可塑性,并存在于禽歌系统中。我们结合使用原位杂交和脑内输注来测试BDNF是否在成年雄性白冠麻雀的歌曲系统的季节性样增长中起作用。响应于繁殖条件,HVC中的BDNF mRNA水平增加,向RA中注入BDNF足以促进体细胞面积和神经元密度的繁殖样变化。 BDNF Trk B受体mRNA的表达在HVC或RA中均不随季节变化。通过输注Trk-Fc融合蛋白可局部阻断RA中的BDNF活性,从而抑制了对繁殖条件的反应。我们的结果表明,BDNT足以促进RA体细胞区域的季节性可塑性和细胞密度,尽管NT-3可能也参与了这一过程,并且表明HVC可能是育种RA中BDNF水平升高的突触前来源。条件鸟。

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