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Ahringer, J (1996). Posterior patterning by the Caenorhabditis eleganseven-skipped homolog vab-7. Genes Dev 10, 1120-1130.[Abstract/Free Full Text]

Bowerman, B (1995). Determinants of blastomere identity in the early C. elegans embryo. BioEssays 17, 405-414.[Medline]

Bowerman, B., Draper, B. W., Mello, C. C. and Priess, J. R (1993). The maternal gene skn-1 encodes a protein that is distributed unequally in early C. elegans embryos. Cell 74, 443-52.[Medline]

Bowerman, B., Eaton, B. A. and Priess, J. R (1992). skn-1 , a maternally expressed gene required to specify the fate of ventral blastomeres in the early C. elegans embryo. Cell 68, 1061-75.[Medline]

Cowing, D. and Kenyon, C (1996). Correct HOX gene expression established independently of position in Caenorhabditis elegans. Nature 382, 353-356.[Medline]

Draper, B. W., Mello, C. C., Bowerman, B., Hardin, J. and Priess, J. R (1996). MEX-3 Is a KH domain protein that regulates blastomere identity in early C elegans embryos. Cell 87, 205-216.[Medline]

Fire, A., White, H. S. and Dixon, D (1990). A modular set of lac Z fusion vectors for studying gene expression in Caenorhabditis elegans. Gene 93, 189-198.[Medline]

Hunter, C. P. and Kenyon, C (1996). Spatial and temporal controls target PAL-1 blastomere specification activity to a single blastomere lineage in C. elegans embryos. Cell 87, 217-226.[Medline]

Hutter, H. and Schnabel, R (1994). glp-1 and inductions establishing embryonic axes in C. elegans. Development 120, 2051-64.[Abstract]

Mango, S. E., Thorpe, C. J., Martin, P. R., Chamberlain, S. H. and Bowerman, B (1994). 2 maternal genes, apx-1 and pie-1 , are required to distinguish the fates of equivalent blastomeres in the early Caenorhabditis elegans embryo. Development 120, 2305-2315.[Abstract]

McGhee, J. D (1995). Cell fate decisions in the early embryo of the nematode Caenorhabditis elegans. Dev. Genetics 17, 155-166.[Medline]

Mello, C. C., Draper, B. W., Krause, M., Weintraub, H. and Priess, J. R (1992). The pie-1 and mex-1 genes and maternal control of blastomere identity in early C. elegans embryos. Cell 70, 163-176.[Medline]

Mello, C. C., Draper, B. W. and Priess, J. R (1994). The maternal genes apx-1 and glp-1 and establishment of dorsal-ventral polarity in the early C. elegans embryo. Cell 77, 95-106.[Medline]

Mello, C. C., Kramer, J. M., Stinchcomb, D. and Ambros, V (1991). Efficient gene transfer in C. elegans : extrachromosomal maintenance and integration of transforming sequences. EMBO J 10, 3959-3970.[Medline]

Moskowitz, I. P. G., Gendreau, S. B. and Rothman, J. H (1994). Combinatorial specification of blastomere identity by glp-1 -dependent cellular interactions in the nematode Caenorhabditis elegans. Development 120, 3325-3338.[Abstract]

Moscowitz, I. P. G. and Rothman, J. H (1996). lin-12 and glp-1 are required zygotically for ealry embryonic cellular interactions and are regulated by maternal GLP-1 signaling in Caenorhabditis elegans. Development 122, 4105-4117.[Abstract]

Schnabel, R. and Schnabel, H (1997). Hox genes misled by local environments. Nature 385, 588-589.[Medline]

St. Johnston, D. and Nusslein-Volhard, C (1992). The origin of pattern and polarity in the Drosophila embryo. Cell 68, 201-220.[Medline]

Stringham, E. G., Dixon, D. K., Jones, D. and Candido, E. P (1992). Temporal and spatial expression patterns of the small heat shock ( hsp16 ) genes in transgenic Caenorhabditis elegans. Mol. Biol. Cell 3, 221-33.[Abstract]

Sulston, J. E., Schierenberg, E., White, J. G. and Thomson, J. N (1983). The embryonic cell lineage of the nematode Caenorhabditis elegans. Dev. Biol 100, 64-119.[Medline]

Waring, D. A. and Kenyon, C (1991). Regulation of cellular responsiveness to inductive signals in the developing C. elegans nervous system. Nature 350, 712-715.[Medline]

Yandell, M. D., Edgar, L. G. and Wood, W. B (1994). Trimethylpsoralen induces small deletion mutations in Caenorhabditis elegans. Proc. Natl Acad. Sci. USA 91, 1381-1385.[Abstract/Free Full Text]




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