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Single-Cell RNA-Seq of Mouse Olfactory Bulb Reveals Cellular Heterogeneity and Activity-Dependent Molecular Census of Adult-Born Neurons

机译:小鼠嗅灯泡的单细胞RNA-SEQ显示了成人神经元的细胞异质性和活性依赖性分子普查

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摘要

Summary: Cellular heterogeneity within the mammalian brain poses a challenge toward understanding its complex functions. Within the olfactory bulb, odor information is processed by subtypes of inhibitory interneurons whose heterogeneity and functionality are influenced by ongoing adult neurogenesis. To investigate this cellular heterogeneity and better understand adult-born neuron development, we utilized single-cell RNA sequencing and computational modeling to reveal diverse and transcriptionally distinct neuronal and nonneuronal cell types. We also analyzed molecular changes during adult-born interneuron maturation and uncovered developmental programs within their gene expression profiles. Finally, we identified that distinct neuronal subtypes are differentially affected by sensory experience. Together, these data provide a transcriptome-based foundation for investigating subtype-specific neuronal function in the olfactory bulb (OB), charting the molecular profiles that arise during the maturation and integration of adult-born neurons and how they dynamically change in an activity-dependent manner. : Using single-cell sequencing, Tepe et al. describe cellular heterogeneity in the mouse olfactory bulb, uncover markers for each cell type, and reveal differentially regulated genes in adult-born neurons. These findings provide a framework for studying cell-type-specific functions and circuit integration in the mammalian brain. Keywords: single-cell RNA-seq, adult neurogenesis, olfactory bulb, circuit integration, olfaction, lineage, development, interneuron, transcriptome
机译:摘要:哺乳动物大脑内细胞的异质性带来了对理解其复杂功能的挑战。在嗅球,气味信息是通过抑制性,其异质性和功能性的持续成年神经发生的影响的亚型处理。为了研究这种细胞的异质性和更好地了解成人出生的神经元的发展,我们利用单细胞RNA测序和计算模型,揭​​示不同的转录和不同的神经元和非神经元细胞类型。我们也分析了在他们的基因表达图谱内的成人出生的中间神经元的成熟和破获发展计划的分子变化。最后,我们确定了不同的神经元亚型的差异影响的感官体验。总之,这些数据在嗅球(OB)调查亚型特异性的神经元功能,图表成人出生的神经元的成熟和整合过程中产生的分子配置文件提供一个基于转录组的基础,他们是如何在动态的活动 - 改变依赖性。 :使用单细胞测序,山丘等。描述了在小鼠嗅球细胞异质性,对于每种细胞类型揭开标记,并差分揭示在成人出生的神经元调节的基因。这些发现提供了用于研究的哺乳动物脑细胞类型特定的功能和电路集成的框架。关键词:单细胞转录组测序,成人神经,嗅球,电路集成,嗅觉,血统,开发,中间神经元,转录组

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