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成年和发育中嗅觉受体神经元的单细胞转录组图谱。

Single-cell transcriptomes of developing and adult olfactory receptor neurons in .

机构信息

Department of Biology, Howard Hughes Medical Institute, Stanford University, Stanford, United States.

Department of Computer Science, Stanford University, Stanford, United States.

出版信息

Elife. 2021 Feb 8;10:e63856. doi: 10.7554/eLife.63856.

Abstract

Recognition of environmental cues is essential for the survival of all organisms. Transcriptional changes occur to enable the generation and function of the neural circuits underlying sensory perception. To gain insight into these changes, we generated single-cell transcriptomes of olfactory- (ORNs), thermo-, and hygro-sensory neurons at an early developmental and adult stage using single-cell and single-nucleus RNA sequencing. We discovered that ORNs maintain expression of the same olfactory receptors across development. Using receptor expression and computational approaches, we matched transcriptomic clusters corresponding to anatomically and physiologically defined neuron types across multiple developmental stages. We found that cell-type-specific transcriptomes partly reflected axon trajectory choices in development and sensory modality in adults. We uncovered stage-specific genes that could regulate the wiring and sensory responses of distinct ORN types. Collectively, our data reveal transcriptomic features of sensory neuron biology and provide a resource for future studies of their development and physiology.

摘要

识别环境线索对于所有生物的生存都是至关重要的。转录变化的发生使能够产生和功能的基础上的感觉感知神经回路。为了深入了解这些变化,我们使用单细胞和单核 RNA 测序,在早期发育和成年阶段生成了嗅觉(ORNs)、热敏和湿敏神经元的单细胞转录组。我们发现 ORNs 在整个发育过程中保持相同的嗅觉受体表达。使用受体表达和计算方法,我们匹配了对应于多个发育阶段解剖学和生理学定义的神经元类型的转录组簇。我们发现,细胞类型特异性转录组部分反映了发育过程中的轴突轨迹选择和成年后的感觉模态。我们发现了阶段特异性基因,这些基因可能调节不同 ORN 类型的连接和感觉反应。总的来说,我们的数据揭示了感觉神经元生物学的转录组特征,并为未来研究它们的发育和生理学提供了资源。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b6d1/7870146/07ffcdd91672/elife-63856-fig1.jpg

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