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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]

Amaya, E., Stein, P. A., Musci, T. J. and Kirschner, M. W (1993). FGF signalling in the early specification of mesoderm in Xenopus. Development 118, 477-487.[Abstract]

Balak, K., Jacobson, M., Sunshine, J (1987). Neural cell adhesion molecule expression in Xenopus embryos. Dev. Biol 119, 540-550.[Medline]

Beddington, R. S. P., Rashbass, P. and Wilson, V (1992). Brachyury-a gene affecting mouse gastrulation and early organogenesis. Development 1992, 157-165.

Carrasco, A. E., and Malacinski, G. M (1987). Localization of Xenopus homoeo-box gene transcripts during embryogenesis and in the adult nervous system. Dev Biol 121, 69-81.[Medline]

Cho, K. W. Y. and De Robertis, E. M (1990). Differential activation of Xenopus homeo box genes by mesoderm-inducing growth factors and retinoic acid. Genes Dev 4, 1910-1916.[Abstract/Free Full Text]

Cho, K. W. Y., 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]

Cohn, M. J., Izpisua-Belmonte, J.-C., Abud,H., Heath, J. K., Tickle, C (1995). Fibroblast growth-factors induce additional limb development from the flank of chick-embryos. Cell 80, 739-746.[Medline]

Condie, B. G. and Harland, R. M (1987). Posterior expression of a homeobox gene in early Xenopus embryos. Development 101, 93-105.[Abstract]

Conlon F. L., Sedwick, S. G., Weston, K. M., Smith, J. C (1996). Inhibition of Xbra trancription activation causes defects in mesodermal patterning and reveals autoregulation of Xbra in dorsal mesoderm. Development 122, 2427-2435.[Abstract]

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

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

Crossley, P. H., Minowada, G., MacArthur, C. A., and Martin, G. R (1996). Roles for FGF8 in the induction, initiation, and maintenance of chick limb development. Cell 84, 127-136.[Medline]

Eagleson, G. W. and Harris W. A (1990). Mapping of the presumptive brain regions in the neural plate of Xenopus laevis. Genes Dev 5, 94-104.[Abstract/Free Full Text]

Godsave, S. F., and Slack, J. M. W (1991). Single cell analysis of mesoderm formation in the Xenopus embryo. Development 111, 523-530.[Abstract]

Godsave, S., Dekker, E. J., Holling, T., Pannese, M., Boncinelli, E., and Durston, A (1994). Expression patterns of Hoxb genes in the Xenopus embryo suggest roles in anteroposterior specification of the hindbrain and in dorsoventral patterning of the mesoderm. Dev Biol 166, 465-476.[Medline]

Green, J. B. A., New, H. V., and Smith, J. C (1992). Responses of embryonic Xenopus cells to activin and FGF are separated by multiple dose thresholds and correspond to distinct axes of the mesoderm. Cell 71, 731-739.[Medline]

Grunz, H., and T\212cke, L (1989). Neural differentiation of Xenopus laevis ectoderm takes place after disaggregation and delayed reaggregation without inducer. Cell Diff Dev 28, 211-218.[Medline]

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]

Holland, P. W. H., and Garcia-Fernandez, J (1996). Hox genes and chordate evolution. Dev. Biol 173, 382-395.[Medline]

Holland, P., Ingham, P., and Krauss, S (1992). Mice and flies head to head. Nature 358, 627-628.[Medline]

Holley, S. A., Jackson, P. D., Sasai, Y., Lu, B., De Robertis, E. M., Hoffmann, F. M. and Ferguson, E. L (1995). A conserved system for dorsal-ventral patterning in insects and vertebrates involving sog and chordin. Nature 376, 249-253.[Medline]

Isaacs, H. V., Pownall, M. E. and Slack., J. M. W (1994). eFGF regulates Xbra expression during Xenopus gastrulation. EMBO J 19, 4469-4481.

Isaacs, H. V., Pownall, M. E., and Slack, J. M. W (1995). eFGF is expressed in the dorsal midline of Xenopus laevis. Int. J. Dev. Biol 39, 575-579.[Medline]

Isaacs, H. V., Tannahill, D. and Slack, J. M. W (1992). Expression of a novel FGF in the Xenopus embryo. A new candidate inducing factor for mesoderm formation and anteroposterior specification. Development 114, 711-720.[Abstract]

Keller, R. E (1976). Vital dye mapping of the gastrula and the neurula of Xenopus laevis II. Prospective areas and morphogenetic movements of the deep layer. Dev. Biol 51, 118-137.[Medline]

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

Kimelman, D., Abraham, J. A., Haaparanta, T., Palisi, T. M. and Kirschner, M. W (1988). The presence of fibroblast growth factor in the frog egg: Its role as a natural mesoderm inducer. Science 242, 1053-1056.[Abstract/Free Full Text]

Kondo, T., Dolle, P., Zakany, J, and Duboule, D (1996). Function of posterior HoxD genes in the morphogenesis of the anal sphincter. Development 122, 2651-2659.[Abstract]

Krumlauf, R (1994). Hox genes in vertebrate development. Cell 78, 191-201.[Medline]

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]

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]

Macdonald, P. M., and Struhl, G (1986). A molecular gradient in early Drosophila embryos and its role in specifying the body plan. Nature 324, 537-545.[Medline]

McGinnis, W. and Krumlauf, R (1992). Homeobox genes and axial patterning. Cell 68, 283-302.[Medline]

Mlodzik, M. and Gehring, W. J (1987). Expression of the caudal gene in the germline of Drosophila : formation of an RNA and protein gradient during early embryogenesis. Cell 48, 465-478.[Medline]

Mlodzik, M., Fjose, A., Gehring, W. J (1985). Isolation of caudal, a Drosophila homeobox-containing gene with maternal expression whose transcripts form a gradient at the preblastoderm stage. EMBO J 4, 2961-2969.[Medline]

Mlodzik, M., Gibson, G., Gehring, W. J (1990). Effects of ectopic expression of caudal during Drosophila development. Development 109, 271-277.[Abstract]

Nieuwkoop, P. D (1952). Activation and organization of the central nervous system in amphibians III. Synthesis of a new working hypothesis. J. Exp. Zool 120, 83-108.

Niswander, L., Jeffrey, Martin, G. R. and Tickle, C (1994). A positive feedback loop coordinates growth and patterning in the vertebrate limb. Nature 371, 609-612.[Medline]

Northrop, J. L. and Kimelman, D (1994). Dorsal-ventral differences in Xcad-3 expression in response to FGF-mediated induction in Xenopus. Dev. Biol 161, 490-503.[Medline]

Northrop, J., Woods, A., Seger, R., Suzuki, A., Ueno, N., Krebs, E. and Kimelman, D (1995). BMP-4 regulates the dorsal-ventral differences in FGF/MAPKK-mediated mesoderm induction in Xenopus. Dev. Biol 172, 242-252.[Medline]

Pannese, M., Polo,C., Andreazzoli, M., Vignali, R., Kablar, B., Barasacchi, G., and Boncinelli, E (1995). The Xenopus homologue of Otx2 is a maternal homeobox gene that demarcates and specifies anterior body regions. Development 121, 707-720.[Abstract]

Ruiz i Altaba, A. and Melton, D. A (1989). Interaction between peptide growth factors and homoeobox genes in the establishment of antero-posterior polarity in frog embryos. Nature 341, 33-38.[Medline]

Ruiz i Altaba, A. and Melton, D. A (1989). Bimodal and graded expression of the Xenopus homeobox gene Xhox3 during embryonic development. Development 106, 173-183.[Abstract]

Rupp, R. A. W., Snider, L. and Weintraub, H (1994). Xenopus embryos regulate the nuclear localization of XMyoD. Genes Dev 8, 1311-1323.[Abstract/Free Full Text]

Saha, M. S. and Grainger, R. M (1992). A labile period in the determination of the anterior-posterior axis during early neural development in Xenopus. Neuron 8, 1-20.

Sato, S. M., and Sargent, T. D (1991). Localised and inducible expression of Xenopus -posterior (Xpo), a novel gene active in early frog embryos, encoding a protein with a \324CCHC' finger domain. Development 112, 747-753.[Abstract]

SchulteMerker, S., Van Eeden, F. J. M., Halpern, M. E., Kimmel, C. B. and Nusslein-Volhard, C (1994). no tail (ntl) is the zebrafish homologue of the mouse T (Brachyury) gene. Development 120, 1009-1015.[Abstract]

Sharpe, C. R., and Gurdon, J. B (1990). The induction of anterior and posterior neural genes in Xenopus laevis. Development 109, 765-774.[Abstract/Free Full Text]

Sive, H. L., Hattori, K. & Weintraub, H (1989). Progressive determination during formation of the anteroposterior axis in Xenopus laevis. Cell 58, 171-80.[Medline]

Slack, J. M. W. and Tannahill, D (1992). Mechanism of anteroposterior axis specification in vertebrates \320 lessons from the amphibians. Development 114, 285-302.[Abstract]

Slack, J. M. W., Holland, P. W. H., and Graham, C. F (1993). The zootype and the phylotypic stage. Nature 361, 490-492.[Medline]

Smith, J. C., Price, B. M. J., Green, J. B. A., Weigel, D. and Herrman, B. G (1991). Expression of a Xenopus homolog of Brachyury (T) is an immediate early response to mesoderm induction. Cell 67, 79-87.[Medline]

Smith, W. C. and Harland, R. M (1992). Expression cloning of noggin, a new dorsalizing factor localized to the Spemann organizer in Xenopus embryos. Cell 70, 829-840.[Medline]

Song, J. and Slack., J. M. W (1994). Spatial and temporal expression of basic fibroblast growth factor (FGF-2) mRNA and protein in early Xenopus development. Mech. Dev 48, 141-151.[Medline]

Subramanian, V., Meyer, B. I., Gruss, P (1995). Disruption of the murine homeobox gene cdx-1 affects axial skeletal identities by altering the mesodermal expression domains of Hox genes. Cell 83, 641-653.[Medline]

Tannahill, D., Isaacs, H., Close, M., Peters, G. and Slack, J (1992). Developmental expression of the Xenopusint-2 (FGF-3) gene: Activation by mesodermal and neural induction. Development 115, 695-702.[Abstract]

van der Hoeven, F., Sordino, P., Fraudeau, N., Ispisua-Belmonte, J.-C., Duboule, D (1996). Teleost HoxD and HoxA genes: comparison with tetrapods and functional evolution of the HOXD complex. Mech. Dev 54, 9-21.[Medline]


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[Abstract] [PDF]


Home page
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J van der Wees, J. Schilthuis, C. Koster, H Diesveld-Schipper, G. Folkers, P. van der Saag, M. Dawson, K Shudo, B van der Burg, and A. Durston
Inhibition of retinoic acid receptor-mediated signalling alters positional identity in the developing hindbrain
Development, January 2, 1998; 125(3): 545 - 556.
[Abstract] [PDF]


Home page
DevelopmentHome page
M Epstein, G Pillemer, R Yelin, J. Yisraeli, and A Fainsod
Patterning of the embryo along the anterior-posterior axis: the role of the caudal genes
Development, January 10, 1997; 124(19): 3805 - 3814.
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DevelopmentHome page
B. Ciruna, L Schwartz, K Harpal, T. Yamaguchi, and J Rossant
Chimeric analysis of fibroblast growth factor receptor-1 (Fgfr1) function: a role for FGFR1 in morphogenetic movement through the primitive streak
Development, January 7, 1997; 124(14): 2829 - 2841.
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Cold Spring Harb Symp Quant BiolHome page
J. Rossant, B. Ciruna, and J. Partanen
FGF Signaling in Mouse Gastrulation and Anteroposterior Patterning
Cold Spring Harb Symp Quant Biol, January 1, 1997; 62(0): 127 - 133.
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Cold Spring Harb Symp Quant BiolHome page
P. J. Kolm and H. L. Sive
Retinoids and Posterior Neural Induction: A Reevaluation of Nieuwkoop's Two-step Hypothesis
Cold Spring Harb Symp Quant Biol, January 1, 1997; 62(0): 511 - 521.
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DevelopmentHome page
B Blumberg, J Bolado, T. Moreno, C Kintner, R. Evans, and N Papalopulu
An essential role for retinoid signaling in anteroposterior neural patterning
Development, January 1, 1997; 124(2): 373 - 379.
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J. Physiol.Home page
M. Tanaka-Kunishima and K. Takahashi
Cleavage-arrested cell triplets from ascidian embryo differentiate into three cell types depending on cell combination and contact timing
J. Physiol., April 1, 2002; 540(1): 153 - 176.
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