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Axis Specification in Zebrafish Is Robust to Cell Mixing and Reveals a Regulation of Pattern Formation by Morphogenesis


ABSTRACT: A fundamental question in developmental biology is how the early embryo establishes the spatial coordinate system that is later important for the organization of the embryonic body plan. Although we know a lot about the signaling and gene-regulatory networks required for this process, much less is understood about how these can operate to pattern tissues in the context of the extensive cell movements that drive gastrulation. In zebrafish, germ layer specification depends on the inheritance of maternal mRNAs, cortical rotation to generate a dorsal pole of ?-catenin activity, and the release of Nodal signals from the yolk syncytial layer (YSL). To determine whether germ layer specification is robust to altered cell-to-cell positioning, we separated embryonic cells from the yolk and allowed t

ORGANISM(S): Danio rerio (Zebrafish)

SUBMITTER: Timothy Fulton 

PROVIDER: S-BSST410 | bioimages |

REPOSITORIES: bioimages

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