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Alexandre, D., Clarke, J. D. W., Oxtoby, E., Yan, Y.-L., Jowett, T. and Holder, N (1996). Ectopic expression of Hoxa-1 in the zebrafish alters the fate of the mandibular arch neural crest and phenocopies a retinoic acid-induced phenotype. Development 122, 735-746.[Abstract]

Amaya, E., Musci, T. J. and Kirschner, M. W (1991). Expression of a dominant negative mutant of the FGF receptor disrupts mesoderm formation in Xenopus embryos. Cell 66, 257-270.[Medline]

Ang, S.-L. and Rossant, J (1993). Anterior mesendoderm induces mouse Engrailed genes in explant cultures. Development 118, 139-149.[Abstract]

Ang, S.-L., Conlon, R. A. and Rossant, J (1994). Positive and negative signals from mesoderm regulate the expression of mouse Otx2 in ectoderm explant. Development 120, 2979-2989.[Abstract]

Bang, A. G., Papalopulu, N., Kintner, C. and Goulding, M. D (1997). Expression of Pax-3 is initiated in the early neural plate by posteriorizing signals produced by the organizer and by posterior non-axial mesoderm. Development 124, 2075-2085.[Abstract]

Barnes, J. D., Crosby, J. L., Jones, C. M., Wright, C. V. and Hogan, B. L (1994). Embryonic expression of Lim-1, the mouse homolog of Xenopus Xlim-1 , suggests a role in lateral mesoderm differentiation and neurogenesis. Dev. Biol 161, 168-178.[Medline]

Blum, M., Gaunt, S. J., Cho, K. W., Steinbeisser, H., Blumberg, B., Bittner, D. and De Robertis, E. M (1992). Gastrulation in the mouse: the role of the homeobox gene goosecoid. Cell 69, 1096-1107.

Blumberg, B., Bolado, Jr., J., Moreno, T. A., Kintner, C., Evans, R. M. and Papalopulu, N (1997). An essential role for retinoid signaling in anteroposterior neural patterning. Development 124, 373-379.[Abstract]

Cho, K. W., Blumberg, B., Steinbeisser, H. and De Robertis, E. M (1991). Molecular nature of Spemann's organizer: the role of the Xenopus homeobox gene goosecoid. Cell 67, 1111-1120.[Medline]

Conlon, R. A (1995). Retinoic acid and pattern formation in vertebrates. Trend Genet 11, 314-319.[Medline]

Cooke, J. and Smith, J. C (1987). The midblastula cell cycle transition and the character of mesoderm in u.v.-induced nonaxial Xenopus development. Development 99, 197-210.[Abstract]

Cox, W. G. and Hemmati-Brivanlou, A (1995). Caudalization of neural fate by tissue recombination and bFGF. Development 121, 4349-4358.[Abstract]

Doniach, T (1995). Basic FGF as an inducer of anteroposterior neural pattern. Cell 83, 1067-1070.[Medline]

Griffin, K., Patient, R. and Holder, N (1995). Analysis of FGF function in normal and no tail zebrafish embryos reveals separate mechanisms for formation of the trunk and the tail. Development 121, 2983-2994.[Abstract]

Gurdon, J. B., Lemaiare, P. and Kato, K (1993). Community effects and related phenomena in development. Cell 75, 831-834.[Medline]

Hatta, K. and Takahashi, Y (1996). Secondary axis induction by heterospecific organizers in zebrafish. Develop. Dynam 205, 183-195.[Medline]

Hemmati-Brivanlou, A., Stewart, M. R. and Harland, R. M (1990). Region-specific neural induction of an engrailed protein by anterior notochord in Xenopus. Science 250, 800-802.[Abstract/Free Full Text]

Hemmati-Brivanlou, A., Kelly, O. G. and Melton, D. A (1994). Follistatin,an antagonist of activin is expressed in the Spemann organizer and displays direct neuralizing activity. Cell 77, 283-295.[Medline]

Izpisua-Belmonte, J. C., De Robertis, E. M., Storey, K. G. and Stern, C.D (1993). The homeobox gene goosecoid and the origin of organizer cells in the early chick blastoderm. Cell 74, 645-659.[Medline]

Jowett, T. and Yan, Y.-L (1996). Double fluorescent in situ hybridization to zebrafish embryos. Trend Genet 12, 387-389.[Medline]

Kengaku, M. and Okamoto, H (1993). Basic fibroblast growth factor induces differentiation of neural tube and neural crest lineages of cultured ectoderm cells from Xenopus gastrula. Development 119, 1067-1078.[Abstract]

Kengaku, M. and Okamoto, H (1995). bFGF as a possible morphogen for the anteriorposterior axis of the central nervous system in Xenopus. Development 121, 3121-3130.[Abstract]

Kimelman, D. and Kirschner, M (1987). Synergistic induction of mesoderm by FGF and TGFand the identification of an mRNA encoding for FGF in early Xenopus embryo. Cell 51, 869-877.[Medline]

Kimmel, C. B., Warga, R. M. and Schilling, T, F (1990). Origin and organization of the zebrafish fate map. Development 108, 581-594.[Abstract/Free Full Text]

Kimmel, C. B., Ballard, W. W., Kimmel, S. R., Ullmann, B. and Schilling, T. F (1995). Stages of embryonic development of the zebrafish. Dev. Dynam 203, 123-310.

Kintner, C. R. and Dodd, J (1991). Hensen's node induces neural tissue in Xenopus ectoderm. Implications for the action of the organizer in neural induction. Development 113, 1495-1505.[Abstract]

Kroll, K. L. and Amaya, E (1996). Transgenic Xenopus embryos from sperm nuclear transplantations reveal FGF signaling requirements during gastrulation. Development 122, 3172-3183.

Lamb, T. M., Knecht, A. K., Smith, W. C., Stachel, S. E., Economides, A. N., Stahl, N., Yancopolous, G. D. and Harland, R. M (1993). Neural induction by the secreted polypeptide noggin. Science 262, 713-718.[Abstract/Free Full Text]

Lamb, T. M. and Harland, R. M (1995). Fibroblast growth factor is a direct neural inducer, which combined with noggin generates anterior-posterior neural pattern. Development 121, 3627-3636.[Abstract]

Li, Y. Allende, M. L. A., Finkelstein, R. and Weinberg, E. S (1994). Expression of two zebrafish orthodenticle-related genes in the embryonic brain. Mech. Dev 48, 229-244.[Medline]

McGrew, L. L., Lai, C. J. and Moon, R. T (1995). Specification of the anteroposterior neural axis through synergistic interaction of the Wnt signaling cascade with noggin and follistatin. Dev. Biol 172, 337-342.[Medline]

Mizuno, T., Yamaha, E., Wakahara, M., Kuroiwa, A. and Takeda, H (1996). Mesoderm induction in zebrafish. Nature 383, 131-132.

Nieuwkoop, P. D (1950). Activation and organization of the central nervous system in amphibians. III. Synthesis of a new working hypothesis. J. Exp. Zool 120, 83-108.

Nikaido, M., Tada, M., Saji, T. and Ueno, N (1997). Conservation of BMP signaling in zebrafish mesoderm patterning. Mech. Dev 61, 75-88.[Medline]

Oppenheimer, J. M (1936). Transplantation experiments on developing teleosts (Fundulus and Perca). J. Exp. Zool 72, 409-437.

Oppenheimer, J. M (1936). Structures developed in amphibians byimplantation of living fish organizer. Proc. Soc. Exp. Biol. Med 34, 461-463.

Oxtoby, E. and Jowett, T (1993). Cloning of the zebrafish krox-20 gene (krox-20) and its expression during hindbrain development. Nucleic Acids Res 21, 1087-1095.[Abstract/Free Full Text]

Sagerstr\232m, C. G., Grinblat, Y. and Sive, H (1996). Anteroposterior patterning in zebrafish, Danio rerio: an explant assay reveals inductive and suppressive cell interactions. Development 122, 1873-1883.[Abstract]

Sasai, Y., Lu, B., Steinbeisser, H., Geissert, D., Gont, L. K. and De Robertis, E. M (1994). Xenopus chordin: a novel dorsalizing factor activated by organizer-specific homeobox genes. Cell 79, 779-770.[Medline]

Schulte-Merker, S., Ho, R. K., Herrmann, B. G. and Nusslein-Volhard, C (1992). The protein product of the zebrafish homologue of the mouse T gene is expressed in nuclei of the germ ring and the notochord of the early embryos. Development 116, 1021-1032.[Abstract]

Schulte-Merker, S., Lee, J. K., McMahon, A. P. and Hammerschmidt, M (1997). The zebrafish organiser requires chordino. Nature 387, 862-863.[Medline]

Shih, J. and Fraser, S. E (1995). Distribution of tissue progenitors within the shield region of the zebrafish gastrula. Development 121, 2755-2765.[Abstract]

Shih, J. and Fraser, S. E (1996). Characterizing the zebrafish organizer: microsurgical analysis at the early shield stage. Development 122, 1313-1322.[Abstract]

Shimamura, K. and Rubenstein, J. L. R (1997). Inductive interactions direct early regionalization of the mouse forebrain. Development 124, 2709-2718.[Abstract]

Stachel, S. E., Grunwald, D. J. and Myers, P. Z (1993). Lithium perturbation and goosecoid expression identify a dorsal specification pathway in the pregastrula zebrafish. Development 117, 1261-1274.[Abstract]

Storey, K. G., Crossley, J. M., De Robertis, E. M., Norris, W. E. and Stern, C.D (1992). Neural induction and regionalisation in the chick embryo. Development 114, 729-741.[Abstract]

Storey, K. G., Seleck, M. A. J. and Stern, C. D (1995). Neural induction and regionalization by different subpopulations of cells in Hensen's node. Development 121, 417-428.[Abstract]

Str\212hle, U. and Jesuthasan, S (1993). Ultraviolet irradiation impairs epiboly in zebrafish embryos: evidence for a microtubule-dependent mechanism of epiboly. Development 119, 909-919.[Abstract/Free Full Text]

Taira, M., Otani, H., Saint-Jannet, J. P. and Dawid, I. B (1993). Role of the LIM class homeodomain protein Xlim-1 in neural and muscle induction by the Spemann organizer in Xenopus. Nature 372, 677-679.

Takeda, H., Matsuzaki, T., Oki, T., Miyagawa, T. and Amanuma, H (1994). A novel POU domain gene, zebrafish pou2 : expression and roles of two alternatively spliced twin products in early development. Genes Dev 8, 45-59.[Abstract/Free Full Text]

Toivonen, S. and Saxen, L (1968). Morphogenetic interaction of presumptive neural and mesodermal cells mixed in different ratios. Science 159, 539-540.[Abstract/Free Full Text]

Tonegawa, A., Funayama, N., Ueno, N and Takahashi, Y (1997). Mesodermal subdivision along the mediolateral axis in the chicken controlled by different concentrations of BMP-4. Development 124, 1975-1984.[Abstract]

Toyama, R., O'Connel, M. L., Wright, C. V. E., Kuehn, M. R. and Dawid, I. B (1995). Nodal induces ectopic goosecoid and lim1 expression and axis duplication in zebrafish. Development 121, 383-391.[Abstract]

Woo, K. and Fraser, S. E (1997). Specification of the zebrafish nervous system by nonaxial signals. Science 277, 254-257.[Abstract/Free Full Text]


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