Sea Urchin Development: Difference between revisions
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==Some Recent Findings== | |||
Dynamics of Delta/Notch signaling on endomesoderm segregation in the sea urchin embryo. Croce JC, McClay DR. Development. 2010 Jan;137(1):83-91. | |||
[http://www.ncbi.nlm.nih.gov/pubmed/20023163 PMID: 20023163] | |||
:"Endomesoderm is the common progenitor of endoderm and mesoderm early in the development of many animals. In the sea urchin embryo, the Delta/Notch pathway is necessary for the diversification of this tissue, as are two early transcription factors, Gcm and FoxA, which are expressed in mesoderm and endoderm, respectively. Here, we provide a detailed lineage analysis of the cleavages leading to endomesoderm segregation, and examine the expression patterns and the regulatory relationships of three known regulators of this cell fate dichotomy in the context of the lineages." | |||
==References== | ==References== |
Revision as of 23:44, 28 March 2010
Introduction
Some Recent Findings
Dynamics of Delta/Notch signaling on endomesoderm segregation in the sea urchin embryo. Croce JC, McClay DR. Development. 2010 Jan;137(1):83-91. PMID: 20023163
- "Endomesoderm is the common progenitor of endoderm and mesoderm early in the development of many animals. In the sea urchin embryo, the Delta/Notch pathway is necessary for the diversification of this tissue, as are two early transcription factors, Gcm and FoxA, which are expressed in mesoderm and endoderm, respectively. Here, we provide a detailed lineage analysis of the cleavages leading to endomesoderm segregation, and examine the expression patterns and the regulatory relationships of three known regulators of this cell fate dichotomy in the context of the lineages."
References
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Cite this page: Hill, M.A. (2024, May 19) Embryology Sea Urchin Development. Retrieved from https://embryology.med.unsw.edu.au/embryology/index.php/Sea_Urchin_Development
- © Dr Mark Hill 2024, UNSW Embryology ISBN: 978 0 7334 2609 4 - UNSW CRICOS Provider Code No. 00098G