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Development, Growth & Differentiation|July 10, 1999
SM37, a skeletogenic gene of the sea urchin embryo linked to the SM50 geneY H Lee, R J Britten, E H DavidsonMolecular Biology of the Cell|April 1, 1992
SpCoel1: a sea urchin profilin gene expressed specifically in coelomocytes in response to injuryL C Smith, R J Britten, E H DavidsonJournal of Molecular Evolution|January 1, 1984
Insertion of a short repetitive sequence (D88I) in a sea urchin gene: a typical interspersed repeat?S A Johnson, E H Davidson, R J BrittenCiba Foundation Symposium|January 1, 1989
In vivo competition identifies positive cis-regulatory elements required for lineage-specific gene expression in the sea urchin embryoR R Franks, R J Britten, E H DavidsonMolecular Reproduction and Development|January 1, 1989
Expression of two actin genes during larval development in the sea urchin Strongylocentrotus purpuratusR A Cameron, R J Britten, E H DavidsonBioessays : News and Reviews in Molecular, Cellular and Developmental Biology|July 1, 1997
Set-aside cells in maximal indirect development: evolutionary and developmental significanceK J Peterson, R A Cameron, E H DavidsonDevelopmental Biology|December 1, 1993
The embryonic ciliated band of the sea urchin, Strongylocentrotus purpuratus derives from both oral and aboral ectodermR A Cameron, R J Britten, E H DavidsonChromosoma|July 8, 1976
Single copy DNA and structural gene sequence relationships among four sea urchin speciesR C Angerer, E H Davidson, R J BrittenDevelopmental Biology|February 1, 1992
Modulation of sea urchin actin mRNA prevalence during embryogenesis: nuclear synthesis and decay rate measurements of transcripts from five different genesJ J Lee, F J Calzone, E H DavidsonScience (New York, N.Y.)|April 8, 1977
Interspersion of short repetitive sequences studied in cloned sea urchin DNA fragmentsA S Lee, R J Britten, E H DavidsonPageof 20