Hills Max Henry, Ma Limei, Fang Ai, Chiremba Thelma, Malloy Seth, Scott Allison R, Perera Anoja G, Yu C Ron
Stowers Institute for Medical Research, Kansas City, United States.
Department of Cell Biology and Physiology, University of Kansas Medical Center, Kansas City, United States.
Elife. 2024 Dec 10;13:RP97356. doi: 10.7554/eLife.97356.
We have generated single cell transcriptomic atlases of vomeronasal organs (VNO) from juvenile and adult mice. Combined with spatial molecular imaging, we uncover a distinct, previously unidentified class of cells that express the vomeronasal receptors (VRs) and a population of canonical olfactory sensory neurons in the VNO. High-resolution trajectory and cluster analyses reveal the lineage relationship, spatial distribution of cell types, and a putative cascade of molecular events that specify the V1r, V2r, and OR lineages from a common stem cell population. The expression of vomeronasal and olfactory receptors follow power law distributions, but there is high variability in average expression levels between individual receptor and cell types. Substantial co-expression is found between receptors across clades, from different classes, and between olfactory and VRs, with nearly half from pairs located on the same chromosome. Interestingly, the expression of V2r, but not V1r, genes is associated with various transcription factors, suggesting distinct mechanisms of receptor choice associated with the two cell types. We identify association between transcription factors, surface axon guidance molecules, and individual VRs, thereby uncovering a molecular code that guides the specification of the vomeronasal circuitry. Our study provides a wealth of data on the development and organization of the accessory olfactory system at both cellular and molecular levels to enable a deeper understanding of vomeronasal system function.
我们已经生成了幼年和成年小鼠犁鼻器(VNO)的单细胞转录组图谱。结合空间分子成像技术,我们发现了一类独特的、先前未被识别的细胞,它们表达犁鼻器受体(VRs),以及VNO中的一群典型嗅觉感觉神经元。高分辨率轨迹和聚类分析揭示了细胞谱系关系、细胞类型的空间分布,以及从共同干细胞群体中确定V1r、V2r和OR谱系的分子事件假定级联。犁鼻器和嗅觉受体的表达遵循幂律分布,但个体受体和细胞类型之间的平均表达水平存在高度变异性。在不同进化枝、不同类别以及嗅觉受体和VRs之间的受体之间发现了大量共表达,其中近一半来自位于同一条染色体上的配对。有趣的是,V2r基因而非V1r基因的表达与各种转录因子相关,这表明与这两种细胞类型相关的受体选择机制不同。我们确定了转录因子、表面轴突导向分子和单个VRs之间的关联,从而揭示了指导犁鼻器神经回路特化的分子密码。我们的研究在细胞和分子水平上提供了关于副嗅觉系统发育和组织的大量数据,以便更深入地理解犁鼻器系统功能。