Boundaries in Development: Formation and Function
- 1 November 2001
- journal article
- review article
- Published by Annual Reviews in Annual Review of Cell and Developmental Biology
- Vol. 17 (1) , 189-214
- https://doi.org/10.1146/annurev.cellbio.17.1.189
Abstract
Developing organisms may contain billions of cells destined to differentiate in numerous different ways. One strategy organisms use to simplify the orchestration of development is the separation of cell populations into distinct functional units. Our expanding knowledge of boundary formation and function in different systems is beginning to reveal general principles of this process. Fields of cells are subdivided by the interpretation of morphogen gradients, and these subdivisions are then maintained and refined by local cell-cell interactions. Sharp and stable separation between cell populations requires special mechanisms to keep cells segregated, which in many cases appear to involve the regulation of cell affinity. Once cell populations become distinct, specialized cells are often induced along the borders between them. These boundary cells can then influence the patterning of surrounding cells, which can result in progressively finer subdivisions of a tissue. Much has been learned about the signaling pathways that establish boundaries, but a key challenge for the future remains to elucidate the cellular and molecular mechanisms that actually keep cell populations separated.Keywords
This publication has 126 references indexed in Scilit:
- In vivo cell sorting in complementary segmental domains mediated by Eph receptors and ephrinsNature, 1999
- THE EPHRINS AND EPH RECEPTORS IN NEURAL DEVELOPMENTAnnual Review of Neuroscience, 1998
- Induction of Additional Limb at the Dorsal–Ventral Boundary of a Chick EmbryoDevelopmental Biology, 1997
- wingless refines its own expression domain on the Drosophila wing marginNature, 1996
- Serrate and wingless cooperate to induce vestigial gene expression and wing formation in DrosophilaCurrent Biology, 1995
- Determination of spatial domains of zygotic gene expression in the Drosophila embryo by the affinity of binding sites for the bicoid morphogenNature, 1989
- The gradient morphogen bicoid is a concentration-dependent transcriptional activatorCell, 1989
- Compartments in the abdomen of Drosophila and the role of the engrailed locusDevelopmental Biology, 1981
- Differential mitotic rates and patterns of growth in compartments in the Drosophila wingDevelopmental Biology, 1981
- Clonal analysis of primordial disc cells in the early embryo of Drosophila melanogasterDevelopmental Biology, 1976