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Affolter, M., Walldorf, U., Kloter, U., Schier, A. F. and Gehring, W. J (1993). Regional repression of a Drosophila POU box gene in endoderm involves inductive interactions between germ layers. Development 117, 1199-1210.[Abstract]

Bellairs, R (1953). Studies on the development of the foregut in the chick blastoderm: 1. The presumptive foregut area. J. Embryol. exp. Morph 1, 115-124.

Bellairs, R (1953). Studies on the development of the foregut in the chick blastoderm 2. The morphogenetic movements. J. Embryol. exp. Morph 1, 369-385.

Burgess, D. R (1975). Morphogenesis of intestinal villi: II. Mechanism of formation of previllous ridges. J. Embryol. exp. Morph 34, 723-740.[Medline]

Clarke, R (1967). On the constancy of the number of villi in the duodenum of the post-embryonic domestic fowl. J. Embryol. exp. Morph 17, 131-138.[Medline]

Coulombre, A. J., and Coulombre J. L (1958). Intestinal development. I. Morphogenesis of the villi and musculature. J. Embryol. exp. Morph 6, 403-411.

Davis, C. A., Holmyrad, D. P., Millen, K. J. and Joyner, A. L (1991). Examining pattern development in mouse, chicken and frog embryos with an En-specific antiserum. Development 111, 287-298.[Abstract]

Dent, J. A., Polson, A. G., and Klymkowsky, M. W (1989). A whole mount immunocytochemical analysis of the expression of the intermediate filament protein vimentin in Xenopus. Development 105, 61-74.[Abstract]

Doll, W. and Niessing, J (1993). Continued expression of the chicken caudal homologue in endodermally derived organs. Dev. Biol 156, 155-163.[Medline]

Duprey, P., Chowdhury, K., Dressler, G. R., Balling, R., Simon, L. D., Guenet, J. and Gruss, P (1988). A mouse gene homologous to the Drosophila gene caudal is expressed in epithelial cells from the embryonic intestine. Genes Dev 2, 1647-1654.[Abstract/Free Full Text]

Freund, J.-N., Boukamel, R. and Benazzouz, A (1992). Gradient expression of Cdx along the rat intestine throughout postnatal development. FEBS Lett 314, 163-166.[Medline]

Frumkin, A., Haffner, R., Shapira, E., Tarcic, N., Gruenbaum, Y. and Fainsod, A (1993). The chicken CdxA homeobox gene and axial positioning during gastrulation. Development 118, 553-562.[Abstract]

Frumkin, A., Rangini, Z., Ben-Yehuda, A., Gruenbaum, Y. and Fainsod, A (1991). A chicken caudal homologue, CHox-cad , is expressed in the epiblast with posterior localization and in the early endodermal lineage. Development 112, 207-219.[Abstract]

German, M. S., Wang, J., Chadwick, R. B. and Rutter, W. J (1992). Synergistic activation of the insulin gene by a LIM-homeo domain protein and a basic helix-loop-helix protein: building a functional insulin minienhancer complex. Genes Dev 6, 2165-2176.[Abstract/Free Full Text]

Grey, R. D (1972). Morphogenesis of intestinal villi. I. Scanning electron microscopy of the duodenal epithelium of the developing chick embryo. J. Morph 137, 193-214.[Medline]

Hamburger, V. and Hamilton, H. L (1951). A series of normal stages in the development of the chick embryo. J. Morphol 88, 49-92.

Hayashi, K., Yasugi, S. and Mizuno, T (1988). Pepsinogen gene transcription induced in heterologous epithelial-mesenchymal recombinations of chicken endoderm and glandular stomach mesenchyme. Development 103, 725-731.[Abstract/Free Full Text]

Hilton, W. M (1902). The morphology and development of intestinal folds and villi in vertebrates. Am. J. Anat 1, 459-504.

Immergluck, K., Lawrence, P. and Bienz, M (1990). Induction across germ layers in Drosophila mediated by a genetic cascade. Cell 62, 261-268.[Medline]

James, R. and Kazenwadel, J (1991). Homeobox gene expression in the intestinal epithelium of adult mice. J. Biol. Chem 266, 3246-3251.[Abstract/Free Full Text]

Kedinger, M., Simon-Assmann, P., Bouziges, F. and Haffen, K (1988). Epithelial-mesenchymal interactions in intestinal epithelial differentiation. Scand. J. Gastroent 23, 62-69.

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

Rawles, M. E (1936). A study in the localization of organ-forming areas in the chick blastoderm of the head-process stage. J. Exp. Zool 72, 271-315.

Reuter, R., Panganiban, G. E. F., Hoffman, F. M. and Scott, M. P (1990). Homeotic genes regulate the spatial expression of putative growth factors in the visceral mesoderm of Drosophila embryos. Development 110, 1031-1040.[Abstract/Free Full Text]

Rosenquist, G. C (1971). The location of the pregut endoderm in the chickembryo at the primitive streak stage as determined by radioautographic mapping. Dev. Biol 26, 323-335.[Medline]

Rudnick, D (1952). Development of the digestive tube and its derivatives. Ann. N.Y. Acad. Sci 55, 109116-.

Schoenwolf, G. C (1979). Histological and ultrastructural observations of tail bud formation in the chick embryo. Anat. Rec 193, 131-148.[Medline]

Smith, D. B. and Johnson, K. S (1988). Single-step purification of polypeptides expressed in Escherichia Coli as fusions with glutathione S-transferase. Gene 67, 31-40.[Medline]

Yasugi, S., Takeda, H. and Fukuda, K (1991). Early determination of developmental fate in presumptive intestinal endoderm of the chicken embryo. Dev. Growth Differ 33, 235-241.




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This Article
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