首页> 美国卫生研究院文献>The Journal of Neuroscience >Continuous Postnatal Neurogenesis Contributes to Formation of the Olfactory Bulb Neural Circuits and Flexible Olfactory Associative Learning
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Continuous Postnatal Neurogenesis Contributes to Formation of the Olfactory Bulb Neural Circuits and Flexible Olfactory Associative Learning

机译:持续的产后神经发生有助于嗅球神经回路的形成和灵活的嗅觉联想学习。

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摘要

The olfactory bulb (OB) is one of the two major loci in the mammalian brain where newborn neurons are constantly integrated into the neural circuit during postnatal life. Newborn neurons are generated from neural stem cells in the subventricular zone (SVZ) of the lateral ventricle and migrate to the OB through the rostral migratory stream. The majority of these newborn neurons differentiate into inhibitory interneurons, such as granule cells and periglomerular cells. It has been reported that prolonged supply of newborn neurons leads to continuous addition/turnover of the interneuronal populations and contributes to functional integrity of the OB circuit. However, it is not still clear how and to what extent postnatal-born neurons contribute to OB neural circuit formation, and the functional role of postnatal neurogenesis in odor-related behaviors remains elusive. To address this question, here by using genetic strategies, we first determined the unique integration mode of newly born interneurons during postnatal development of the mouse OB. We then manipulated these interneuron populations and found that continuous postnatal neurogenesis in the SVZ-OB plays pivotal roles in flexible olfactory associative learning and memory.
机译:嗅球(OB)是哺乳动物大脑中两个主要的基因座之一,在出生后的生命中,新生神经元不断整合到神经回路中。新生神经元是由侧脑室下室区(SVZ)中的神经干细胞产生的,并通过鼻端迁徙流向OB迁移。这些新生神经元大多数会分化成抑制性中间神经元,例如颗粒细胞和肾小球周围细胞。据报道,新生儿神经元的长期供应导致神经元间群体的持续增加/转变,并有助于OB回路的功能完整性。但是,尚不清楚产后神经元如何以及在多大程度上促进OB神经回路的形成,而产后神经发生在与气味有关的行为中的功能作用仍然难以捉摸。为了解决这个问题,在这里我们使用遗传策略,首先确定了小鼠OB出生后新生的中间神经元的独特整合模式。然后,我们操纵了这些中间神经元种群,发现SVZ-OB中持续的产后神经发生在灵活的嗅觉联想学习和记忆中起着关键作用。

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