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Angerer R. C. and Davidson E. H (1984). Molecular indices of cell lineage specification in the sea urchin embryo. Science 226, 1153-1160.[Abstract/Free Full Text]

Berridge M. J., Downes P. C. and Hanley M. R (1989). Neural and developmental actions of lithium: a unifying hypothesis. Cell 59, 411-419.[Medline]

Cameron R. A. and Davidson E. H (1991). Cell type specification during sea urchin development. Trends Genet 7, 212-218.[Medline]

Coffman J. A. and McClay D. R (1990). A hyalin layer protein that becomes localized to the oral ectoderm and foregut of sea urchin embryos. Dev. Biol 140, 93-104.[Medline]

Davidson E. H (1989). Lineage-specific gene expression and the regulative capacities of the sea urchin embryo: a proposed mechanism. Development 105, 421-445.[Abstract/Free Full Text]

Fink R. D. and McClay D. R (1985). Three cell recognition changes accompany the ingression of sea urchin primary mesenchyme cells. Dev. Biol 107, 66-74.[Medline]

Ghiglione C., Lhomond G., Lepage T. and Gache C (1993). Cell-autonomous expression and position-dependent repression by Li+of two zygotic genes during sea urchin development. EMBO J 12, 87-96.[Medline]

Henry J. J., Amemiya S., Wray G. A. and Raff R (1988). Early inductive interactions are involved in restricting cell fates of mesomeres in sea urchin embryos. Dev. Biol 136, 140-153.

Lepage T. and Gache C (1989). Purification and characterization of the sea urchin embryo hatching enzyme. J. Biol. Chem 264, 4787-4793.[Abstract/Free Full Text]

Lepage T. and Gache C (1990). Early expression of a collagenase-like hatching enzyme gene in the sea urchin embryo. EMBO J 9, 3003-3012.[Medline]

Lepage T., Ghiglione C. and Gache C (1992). Spatial and temporal expression pattern during sea urchin embryogenesis of a gene coding for a protease homologous to the human protein BMP-1 and to the product of the Drosophila dorsal-ventral patterning gene tolloid. Development 114, 147-164.[Abstract]

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Livingston B. T. and Wilt F. H (1989). Lithium evokes expression of vegetal-specific molecules in the animal blastomeres of sea urchin embryos. Proc. Natl. Acad. Sci. USA 86, 3669-3673.[Abstract/Free Full Text]

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Nocente-McGrath C., McIsaac R. and Ernst S (1991). Altered cell fate in LiCl treated sea urchin embryos. Dev. Biol 147, 445-450.[Medline]

Ransick A. and Davidson E. H (1993). A complete second gut induced by transplanted micromeres in the sea urchin embryo. Science 259, 1134-1138.[Abstract/Free Full Text]

Schnabel R (1994). Autonomy and nonautonomy in cell fate specification of muscle in the Caenorhabditis elegans embryo: a reciprocal induction. Science 263, 1449-52.[Abstract/Free Full Text]

Schnabel R (1995). Duels without obvious sense: counteracting inductions involved in body wall muscle development in the Caenorhabditis elegans embryo. Development 121, 2219-2232.[Abstract]

Schroeder T. E (1980). Expression of the prefertilization polar axis in sea urchin eggs. Dev. Biol 79, 428-443.[Medline]

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This Article
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