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首页> 外文期刊>Journal of neurobiology >Developmental patterns of NMDAR expression within the song system do not recur during adult vocal plasticity in zebra finches.
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Developmental patterns of NMDAR expression within the song system do not recur during adult vocal plasticity in zebra finches.

机译:在成年斑马雀科的人声可塑性期间,歌曲系统中NMDAR表达的发育模式不会再出现。

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摘要

All songbirds learn to sing during postnatal development but then display species differences in the capacity to learn song in adulthood. While the mechanisms that regulate avian vocal plasticity are not well characterized, one contributing factor may be the composition of N-methyl-D-aspartate receptors (NMDAR). Previous studies of an anterior forebrain pathway implicated in vocal plasticity revealed significant regulation of NMDAR subunit expression during the developmental sensitive period for song learning. Much less is known about the developmental regulation of NMDAR subunit expression in regions that participate more directly in motor aspects of song behavior. We show here that an increase in NR2A subunit mRNA and a decrease in NR2B subunit mRNA within the vocal motor pathway accompany song learning in zebra finches; however, manipulations that can alter the timing of song learning did not alter the course of these developmental changes. We also tested whether adult deafening, a treatment that provokes vocal change in songbirds that normally sing a stable song throughout adulthood, would render NMDAR subunit expression more similar to that observed developmentally. We report that NR2A and NR2B mRNA levels did not change within the anterior forebrain or vocal motor pathways after adult deafening, even after substantial changes in song structure. These results indicate that vocal plasticity does not require "juvenile patterns" of NMDAR gene expression in the avian song system.
机译:所有的鸣禽都会在出生后学习唱歌,但是在成年后学习歌曲的能力就会表现出种种差异。虽然尚不能很好地调节调节禽声带可塑性的机制,但一个促成因素可能是N-甲基-D-天冬氨酸受体(NMDAR)的组成。先前涉及人声可塑性的前脑通路的研究表明,在歌曲学习的发育敏感期内,NMDAR亚基表达受到明显调节。关于NMDAR亚基表达在更直接参与歌曲行为的运动方面的区域中发育调控的知之甚少。我们在这里显示,在声运动通路内,NR2A亚基mRNA的增加和NR2B亚基mRNA的下降伴随着斑马雀的歌唱学习。但是,可以改变歌曲学习时间的操作并没有改变这些发展变化的过程。我们还测试了成年耳聋是否会引起NMDAR亚基的表达与发育中观察到的相似,这种治疗会引起通常在成年后会唱稳定歌曲的鸣禽的声音变化。我们报告说,成年耳聋后,即使在歌曲结构发生重大变化后,NR2A和NR2B mRNA的水平在前脑或声音运动通路内也没有变化。这些结果表明,声音可塑性不需要禽歌系统中NMDAR基因表达的“幼稚模式”。

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