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初级嗅觉系统的分子与空间组织及其对社交气味的反应。

Molecular and Spatial Organization of the Primary Olfactory System and its Responses to Social Odors.

作者信息

Bintu Bogdan, Isogai Yoh, Zhuang Xiaowei, Dulac Catherine

机构信息

Department of Molecular and Cellular Biology, Howard Hughes Medical Institute, Harvard University, Cambridge, MA 02138, USA.

Center for Brain Science, Harvard University, Cambridge, MA 02138, USA.

出版信息

bioRxiv. 2025 May 2:2025.05.02.651832. doi: 10.1101/2025.05.02.651832.

Abstract

The detection of olfactory cues is essential to signal food, predators, and social encounters. To determine how the sensory detection of physiologically relevant odors is systematically mapped into the mouse primary olfactory system, we used Multiplexed Error Robust Fluorescent Hybridization (MERFISH) to construct a molecular atlas of odorant receptor (OR) expression in the main olfactory epithelium (MOE) and olfactory bulb (OB). We comprehensively quantified the expression of the mouse OR repertoire and uncovered stereotypical gradients of sensory neuron distribution in the MOE along two, central-to-peripheral and basal-to-apical, axes. Projections of sensory neurons mirror MOE gradients along the dorsal-ventral and anterior-posterior axes of the OB, respectively. Integration with sequencing data revealed candidate signaling molecules underlying this spatial organization. Co-imaging OR and activity marker expression identified distinct spatial domains of sensory responses in the MOE and OB, providing a topographical basis for olfactory responses to ethologically relevant odors.

摘要

嗅觉线索的检测对于指示食物、捕食者和社交接触至关重要。为了确定生理相关气味的感官检测如何系统地映射到小鼠初级嗅觉系统中,我们使用多重误差稳健荧光杂交(MERFISH)构建了主嗅上皮(MOE)和嗅球(OB)中气味受体(OR)表达的分子图谱。我们全面量化了小鼠OR库的表达,并发现了主嗅上皮中感觉神经元沿中央到外周和基底到顶端两个轴分布的刻板梯度。感觉神经元的投射分别沿嗅球的背腹轴和前后轴反映了主嗅上皮的梯度。与测序数据的整合揭示了这种空间组织背后的候选信号分子。共成像OR和活性标记物表达确定了主嗅上皮和嗅球中感觉反应的不同空间域,为对行为学相关气味的嗅觉反应提供了地形学基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/57e3/12248032/f0c257580b12/nihpp-2025.05.02.651832v1-f0001.jpg

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