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在小鼠上丘中将视觉功能映射到分子细胞类型上。

Mapping visual functions onto molecular cell types in the mouse superior colliculus.

机构信息

Department of Biology, University of Virginia, Charlottesville, VA 22904, USA.

Department of Psychology, University of Virginia, Charlottesville, VA 22904, USA.

出版信息

Neuron. 2023 Jun 21;111(12):1876-1886.e5. doi: 10.1016/j.neuron.2023.03.036. Epub 2023 Apr 21.

Abstract

The superficial superior colliculus (sSC) carries out diverse roles in visual processing and behaviors, but how these functions are delegated among collicular neurons remains unclear. Here, using single-cell transcriptomics, we identified 28 neuron subtypes and subtype-enriched marker genes from tens of thousands of adult mouse sSC neurons. We then asked whether the sSC's molecular subtypes are tuned to different visual stimuli. Specifically, we imaged calcium dynamics in single sSC neurons in vivo during visual stimulation and then mapped marker gene transcripts onto the same neurons ex vivo. Our results identify a molecular subtype of inhibitory neuron accounting for ∼50% of the sSC's direction-selective cells, suggesting a genetic logic for the functional organization of the sSC. In addition, our studies provide a comprehensive molecular atlas of sSC neuron subtypes and a multimodal mapping method that will facilitate investigation of their respective functions, connectivity, and development.

摘要

表面上丘(sSC)在视觉处理和行为中发挥着多种作用,但这些功能如何在丘神经元之间分配尚不清楚。在这里,我们使用单细胞转录组学,从数万只成年小鼠 sSC 神经元中鉴定出 28 种神经元亚型和亚型丰富的标记基因。然后,我们询问 sSC 的分子亚型是否针对不同的视觉刺激进行了调整。具体来说,我们在视觉刺激期间对体内单个 sSC 神经元的钙动力学进行成像,然后将标记基因转录本映射到体外的相同神经元上。我们的结果鉴定出一种抑制性神经元的分子亚型,占 sSC 方向选择性细胞的约 50%,这表明 sSC 的功能组织具有遗传逻辑。此外,我们的研究提供了 sSC 神经元亚型的综合分子图谱和一种多模态映射方法,这将有助于研究它们各自的功能、连接和发育。

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