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      Single-cell mapping of gene expression landscapes and lineage in the zebrafish embryo

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      Science
      American Association for the Advancement of Science (AAAS)

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          Abstract

          High-throughput mapping of cellular differentiation hierarchies from single-cell data promises to empower systematic interrogations of vertebrate development and disease. Here, we applied single-cell RNA sequencing to >92,000 cells from zebrafish embryos during the first day of development. Using a graph-based approach, we mapped a cell state landscape that describes axis patterning, germ layer formation, and organogenesis. We tested how clonally related cells traverse this landscape by developing a transposon-based barcoding approach ("TracerSeq") for reconstructing single-cell lineage histories. Clonally related cells were often restricted by the state landscape, including a case in which two independent lineages converge on similar fates. Cell fates remained restricted to this landscape in chordin-deficient embryos. We provide web-based resources for further analysis of the single-cell data.

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          Author and article information

          Journal
          Science
          Science
          American Association for the Advancement of Science (AAAS)
          0036-8075
          1095-9203
          May 31 2018
          June 01 2018
          June 01 2018
          April 26 2018
          : 360
          : 6392
          : 981-987
          Article
          10.1126/science.aar4362
          6083445
          29700229
          caad1e87-4ca8-4dc3-8661-53d7a8158874
          © 2018

          http://www.sciencemag.org/about/science-licenses-journal-article-reuse

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