Department of Basic Neurosciences, University of Geneva, 1205 Geneva, Switzerland.
Faculty of Life Sciences, Ecole Polytechnique Fédérale, Lausanne, 1015 Lausanne, Switzerland.
Development. 2019 Sep 9;146(17):dev178103. doi: 10.1242/dev.178103.
Retinal ganglion cells (RGCs), cone photoreceptors (cones), horizontal cells and amacrine cells are the first classes of neurons produced in the retina. However, an important question is how this diversity of cell states is transcriptionally produced. Here, we profiled 6067 single retinal cells to provide a comprehensive transcriptomic atlas showing the diversity of the early developing mouse retina. RNA velocities unveiled the dynamics of cell cycle coordination of early retinogenesis and define the transcriptional sequences at work during the hierarchical production of early cell-fate specification. We show that RGC maturation follows six waves of gene expression, with older-generated RGCs transcribing increasing amounts of guidance cues for young peripheral RGC axons that express the matching receptors. Spatial transcriptionally deduced features in subpopulations of RGCs allowed us to define novel molecular markers that are spatially restricted. Finally, the isolation of such a spatially restricted population, ipsilateral RGCs, allowed us to identify their molecular identity at the time they execute axon guidance decisions. Together, these data represent a valuable resource shedding light on transcription factor sequences and guidance cue dynamics during mouse retinal development.
视网膜神经节细胞 (RGCs)、视锥细胞 (cone)、水平细胞和无长突细胞是视网膜中最早产生的神经元。然而,一个重要的问题是如何转录产生这种细胞状态的多样性。在这里,我们对 6067 个单个视网膜细胞进行了分析,提供了一个全面的转录组图谱,显示了早期发育的小鼠视网膜的多样性。RNA 速度揭示了早期视网膜发生中细胞周期协调的动态,并定义了在早期细胞命运特化的层次产生过程中起作用的转录序列。我们表明,RGC 成熟遵循六个基因表达波,较老的 RGC 转录出越来越多的导向线索,供表达匹配受体的年轻外周 RGC 轴突使用。在 RGC 亚群中的空间转录推断特征使我们能够定义新的分子标记,这些标记在空间上受到限制。最后,这种空间受限的 RGC 群体的分离使我们能够在它们执行轴突导向决策时确定其分子特征。总之,这些数据代表了一个有价值的资源,揭示了转录因子序列和小鼠视网膜发育过程中的导向线索动态。