首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >PNAS Plus: Retrograde monosynaptic tracing reveals the temporal evolution of inputs onto new neurons in the adult dentate gyrus and olfactory bulb
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PNAS Plus: Retrograde monosynaptic tracing reveals the temporal evolution of inputs onto new neurons in the adult dentate gyrus and olfactory bulb

机译:PNAS Plus:逆行单突触追踪揭示了成人齿状回和嗅球中新神经元输入的时间演变

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摘要

Identifying the connectome of adult-generated neurons is essential for understanding how the preexisting circuitry is refined by neurogenesis. Changes in the pattern of connectivity are likely to control the differentiation process of newly generated neurons and exert an important influence on their unique capacity to contribute to information processing. Using a monosynaptic rabies virus-based tracing technique, we studied the evolving presynaptic connectivity of adult-generated neurons in the dentate gyrus (DG) of the hippocampus and olfactory bulb (OB) during the first weeks of their life. In both neurogenic zones, adult-generated neurons first receive local connections from multiple types of GABAergic interneurons before long-range projections become established, such as those originating from cortical areas. Interestingly, despite fundamental similarities in the overall pattern of evolution of presynaptic connectivity, there were notable differences with regard to the development of cortical projections: although DG granule neuron input originating from the entorhinal cortex could be traced starting only from 3 to 5 wk on, newly generated neurons in the OB received input from the anterior olfactory nucleus and piriform cortex already by the second week. This early glutamatergic input onto newly generated interneurons in the OB was matched in time by the equally early innervations of DG granule neurons by glutamatergic mossy cells. The development of connectivity revealed by our study may suggest common principles for incorporating newly generated neurons into a preexisting circuit.
机译:识别成年生成的神经元的连接体对于理解神经发生如何完善现有电路至关重要。连接模式的变化可能会控制新生成的神经元的分化过程,并对它们有助于信息处理的独特能力产生重要影响。使用基于单突触狂犬病病毒的跟踪技术,我们研究了成年后海马齿状回(DG)和嗅球(OB)中成人生成的神经元的突触前连通性。在这两个神经源性区域中,成年生成的神经元首先从多种类型的GABA能神经元接受局部连接,然后建立远距离投影,例如那些源自皮层区域的投影。有趣的是,尽管突触前连接性进化的总体模式基本相似,但皮质投射的发展仍存在显着差异:尽管源自内嗅皮层的DG颗粒神经元输入只能追溯到3至5周,到第二周,OB中新产生的神经元已经从前嗅核和梨状皮质吸收了输入。到OB中新生成的中间神经元的早期谷氨酸能输入在时间上与谷氨酸能苔藓细胞对DG颗粒神经元的同样早期神经支配相匹配。我们的研究揭示的连通性发展可能暗示了将新生成的神经元合并到现有电路中的通用原则。

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