bioRxiv · 10.1101/2023.01.03.521555
A single-cell, time-resolved profiling of Xenopus mucociliary epithelium reveals non-hierarchical model of development
Abstract
The specialized cell-types of the mucociliary epithelium (MCE) lining the respiratory tract enable continuous airway clearing, with its defects leading to chronic respiratory diseases. The molecular mechanisms driving cell-fate acquisition and temporal specialization during mucociliary epithelial development remain largely unknown. Here, we profile the developing Xenopus MCE from pluripotent to mature stages by single-cell transcriptomics, identifying novel, multipotent early epithelial progenitors that execute multi-lineage cues before specialising into late-stage ionocytes, goblet and basal cells. Combining in silico lineage inference, in situ hybridization and single-cell multiplexed RNA imaging, we capture the initial bifurcation into early epithelial and multiciliated progenitors, chart cell- type emergence and fate progression into specialized cell-types. Comparative analysis of nine airway atlases reveals an evolutionary conserved transcriptional module in ciliated cells, whereas secretory and basal types execute distinct function-specific programmes across vertebrates. We uncover a continuous non-hierarchical model of MCE development alongside a significant data resource for understanding respiratory biology.
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Lee, J., Moller, A. F., Chae, S., Bussek, A., Kim, Y., Lee, H.-S., Park, T. J., Pers, T. H., Kwon, T., Sedzinski, J., Natarajan, K. N.. 2023-01-03. A single-cell, time-resolved profiling of Xenopus mucociliary epithelium reveals non-hierarchical model of development. https://doi.org/10.1101/2023.01.03.521555
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