Published February 19, 1993 | Version public
Journal Article

A complete second gut induced by transplanted micromeres in the sea urchin embryo

  • 1. ROR icon California Institute of Technology

Abstract

Founder cells for most early lineages of the sea urchin embryo are probably specified through inductive intercellular interactions. It is shown here that a complete respecification of cell fate occurs when 16-cell stage micromeres from the vegetal pole of a donor embryo are implanted into the animal pole of an intact recipient embryo. Animal pole cells adjacent to the transplanted micromeres are respecified from presumptive ectoderm into vegetal plate founder cells. These induced vegetal plate cells express the entire battery of genes characteristic of the endogenous vegetal plate cells. The ectopic vegetal plate invaginates during gastrulation to form a second archenteron which differentiates properly into a tripartite gut, as shown by the spatial pattern of expression of an endoderm-specific marker gene. Thus, transplanted micromeres can signal neighboring cells to induce them to change their fate.

Additional Information

© 1993 American Association for the Advancement of Science. We are pleased to thank R J. Britten and R A. Cameron for their critical and helpful reviews. Supported by NIH grant HD-05753; and an NIH training grant HD-07257 (A.R.).

Additional details

Identifiers

Eprint ID
53995
DOI
10.1126/science.8438164
Resolver ID
CaltechAUTHORS:20150122-115512444

Funding

NIH
HD-05753
NIH
HD-07257

Dates

Created
2015-01-22
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Updated
2021-11-10
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