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Updated: Jan 21, 2026

Efficient Neural Differentiation using Single-Cell Culture of Human Embryonic Stem Cells
Published on: January 18, 2020
Stem cell differentiation trajectories in Hydra resolved at single-cell resolution
Stefan Siebert1, Jeffrey A Farrell2, Jack F Cazet3
1Department of Molecular and Cellular Biology, University of California, Davis, CA, USA. cejuliano@ucdavis.edu ssiebert@ucdavis.edu.
Abstract:
The adult Hydra polyp continually renews all of its cells using three separate stem cell populations, but the genetic pathways enabling this homeostatic tissue maintenance are not well understood. We sequenced 24,985 Hydra single-cell transcriptomes and identified the molecular signatures of a broad spectrum of cell states, from stem cells to terminally differentiated cells. We constructed differentiation trajectories for each cell lineage and identified gene modules and putative regulators expressed along these trajectories, thus creating a comprehensive molecular map of all developmental lineages in the adult animal. In addition, we built a gene expression map of the Hydra nervous system. Our work constitutes a resource for addressing questions regarding the evolution of metazoan developmental processes and nervous system function.
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