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Ang, S. L. and Rossant, J (1994). HNF-3 is essential for node and notochord formation in mouse development. Cell 78, 561-574.[Medline]

Baker, N. E (1988). Embryonic and imaginal requirements for wingless , a segment polarity gene in Drosophila. Dev. Biol 125, 96-108.[Medline]

Bally-Cuif, L., Cholley, B. and Wassef, M (1995). Involvement of Wnt-1 in the formation of the mes/metencephalic boundary. Mech. Dev 53, 23-34.[Medline]

Bally-Cuif, L. and Wassef, M (1995). Determination events in the nervous system of the vertebrate embryo. Curr. Op. Gen. Dev 5, 450-458.[Medline]

Basler, K. and Struhl, G (1994). Compartment boundaries and the control of Drosophila limb pattern by hedgehog protein. Nature 368, 208-214.[Medline]

Bedichek, S (1934). New mutants. Dros. Inf. Serv 2, 9-.

Bejsovec, A. and Martinez Arias, A (1991). Roles of wingless in patterning the larval epidermis of Drosophila. Development 113, 471-485.[Abstract]

Blair, S. S (1995). Compartments and appendage development in Drosophila. BioEssays 17, 299-309.[Medline]

Brand, A. and Perrimon, N (1993). Targeted gene expression as a means of altering cell fates and generating dominant phenotypes. Development 118, 401-415.[Abstract]

Brower, D. L (1986). engrailed gene expression in Drosophila imaginal discs. EMBO J 5, 2649-2656.[Medline]

Campbell, G. and Tomlinson, A (1995). Initiation of the proximodistal axis in insect legs. Development 121, 619-628.[Abstract]

Campbell, G., Weaver, T. and Tomlinson, A (1993). Axis specification in the developing Drosophila appendage; the role of wingless, decapentaplegic, and the homeobox gene aristaless. Cell 74, 1113-1123.[Medline]

Capdevila, J., Estrada, M. P., Sanchez-Herrero, E. and Guerrero, I (1994). The Drosophila segment polarity gene patched interacts with decapentaplegic in wing development. EMBOJ 13, 71-82.[Medline]

Cohen, S. M. and Jurgens, G (1990). Gap-like segmentation genes that mediate Drosophila head development. Nature 346, 482-485.[Medline]

Cohen, S. M. and Jurgens, G (1991). Drosophila headlines. Trends Genet 7, 267-272.[Medline]

Couso, J. P., Bate, M. and Martinez Arias, A (1993). A wingless -dependent polar coordinate system in Drosophila imaginal discs. Science 259, 484-489.[Abstract/Free Full Text]

Diaz-Benjumea, F. J., Cohen, B. and Cohen, S (1994). Cell interaction between compartments establishes the proximal-distal axis of Drosophila legs. Nature 372, 175-179.[Medline]

DiNardo, S., Kuner, J. M., Theis, J. and O'Farrell, P. H (1985). Development of embryonic pattern in D. melanogaster as revealed by accumulation of the nuclear engrailed protein. Cell 43, 59-69.[Medline]

Echelard, Y., Epstein, D. J., St-Jacques, B., Shen, L., Mohler, J., McMahon, J. A. and McMahon, A. P (1993). Sonic Hedgehog, a member of a family of putative signaling molecules, is implicated in the regulation of CNS polarity. Cell 75, 1417-1430.[Medline]

Felsenfeld, A. L. and Kennison, J. A (1995). Positional signaling by hedgehog in Drosophila imaginal disc development. Development 121, 1-10.[Abstract]

Finkelstein, R. and Perrimon, N (1990). The orthodenticle gene is regulated by bicoid and torso and specifies Drosophila head development. Nature 346, 485-488.[Medline]

Finkelstein, R. and Perrimon, N (1991). The molecular genetics of head development in Drosophila melanogaster. Development 112, 899-912.[Medline]

Gonzalez, F., Swales, L., Bejsovec, A., Skaer, H. and Martinez Arias, A (1991). Secretion and movement of the wingless protein in the Drosophila embryo. Mech. Dev 35, 43-54.[Medline]

Hama, C., Ali, Z. and Kornberg, T. B (1990). Region-specific recombination and expression are directed by portions of the Drosophila engrailed promoter. Genes Dev 4, 1079-1089.[Abstract/Free Full Text]

Haynie, J. L. and Bryant, P. J (1986). Development of the eye-antenna imaginal disc and morphogenesis of the adult head in Drosophila melanogaster. J. Exp. Zool 237, 293-308.[Medline]

Huang, F., Dambly-Chaudiere, C. and Ghysen, A (1991). The emergence of sense organs in the wing disc of Drosophila. Development 111, 1087-1096.[Abstract/Free Full Text]

Ingham, P. W (1988). The molecular genetics of embryonic pattern formation in Drosophila. Nature 335, 25-34.[Medline]

Ingham, P. W. and Hidalgo, A (1993). Regulation of wingless transcription in the Drosophila embryo. Development 117, 283-291.[Abstract]

Ingham, P. W., Martinez Arias, A., Lawrence, P. A. and Howard, K (1985). Expression of engrailed in the parasegment of Drosophila. Nature 317, 634-636.

Kassis, J., Noll, E., VanSickle, E. P., Odenwald, W. F. and Perrimon, N (1992). Altering the insertional specificity of a Drosophila transposable element. Proc. Natl. Acad. Sci. USA 89, 1919-1923.[Abstract/Free Full Text]

Kornberg, T., Siden, I., O'Farrell, P. and Simon, M (1985). The engrailed locus of Drosophila : In situ localization of transcripts reveals compartment-specific expression. Cell 40, 43-53.

Lee, J. J., Von Kessler, D. P., Parks, S. and Beachy, P. A (1992). Secretion and localized transcription suggest a role in positional signalling for production of the segmentation gene hedgehog. Cell 70, 777-789.[Medline]

Ma, C. and Moses, K (1995). wingless and patched are negative regulators of the morphogenetic furrow and can affect tissue polarity in the developing Drosophila compound eye. Development 121, 2279-2289.[Abstract]

Ma, C., Zhou, Y., Beachy, P. A. and Moses, K (1993). The segment polarity gene hedgehog is required for progression of the morphogenetic furrow in the developing Drosophila eye. Cell 75, 927-938.[Medline]

Mohler, D (1984). New mutants. Dros. Inf. Serv 60, 236-.

Mohler, J (1995). Spatial regulation of segment polarity gene expression in the anterior terminal region of the Drosophila blastoderm embryo. Mech. Dev 50, 151-161.[Medline]

Mohler, J. and Vani, K (1992). Molecular organization and embryonic expression of the hedgehog gene involved in cell-cell communication and segmental patterning of Drosophila. Development 115, 957-971.[Abstract]

Morata, G. and Lawrence, P. A (1975). Control of compartment development by the engrailed gene in Drosophila. Nature 255, 614-617.[Medline]

Morata, G. and Lawrence, P. A (1978). Anterior and posterior compartments in the head of Drosophila. Nature 274, 473-474.[Medline]

Morata, G. and Lawrence, P. A (1979). Development of the eye-antenna imaginal disc of Drosophila. Dev. Biol 70, 355-371.[Medline]

Mozer, B. A. and Benzer, S (1993). Ingrowth by photoreceptor axons induces transcription of a retrotransposon in the developing Drosophila brain. Development 120, 1049-1058.[Abstract]

Patel, N. H., Martin-Blanco, E., Coleman, K. G., Poole, S. F., Ellis, M. C., Kornberg, T. B. and Goodman, C. S (1989). Expression of engrailed proteins in arthropods, annelids, and chordates. Cell 58, 955-968.[Medline]

Perrimon, N (1995). Hedgehog and beyond. Cell 80, 517-520.[Medline]

Perrimon, N. and Mahowald, A. P (1987). Multiple functions of segment polarity genes in Drosophila. Dev. Biol 119, 587-600.[Medline]

Royet, J. and Finkelstein, R (1995). Pattern formation in Drosophila head development: the role of the orthodenticle homeobox gene. Development 121, 3561-3572.[Abstract]

Rubenstein, J. L. R., Martinez, S., Shimamura, K. and Puelles, L (1994). The embryonic vertebrate forebrain: the prosomeric model. Science 266, 578-580.[Free Full Text]

Schneider, I (1964). Differentiation of larval Drosophila eye-antennal discs in vitro. J. Exp. Zool 156, 91-104.

Struhl, G. and Basler, K (1993). Organizing activity of wingless protein in Drosophila. Cell 72, 527-540.[Medline]

Tabata, T., Eaton, S. and Kornberg, T. B (1992). The Drosophilahedgehog gene is expressed specifically in posterior compartment cells and is a target of engrailed regulation. Genes Dev 6, 2635-2645.[Abstract/Free Full Text]

Tabata, T. and Kornberg, T. B (1994). Hedgehog is a signaling protein with a key role in patterning Drosophila imaginal discs. Cell 76, 89-102.[Medline]

Tashiro, S., Michiue, T., Higashijima, S., Zenno, S., Ishimaru, S., Takahashi, F., Orihara, M., Kojima, T. and Saigo, K (1993). Structure and expression of hedgehog , a Drosophila segment-polarity gene required for cell-cell communication. Gene 124, 183-189.[Medline]

van den Heuvel, M., Nusse, R., Johnston, P. and Lawrence, P (1989). Distribution of the wingless gene product in Drosophila embryos: A protein involved in cell-cell communication. Cell 59, 739-749.[Medline]

Wieschaus, E., Perrimon, N. and Finkelstein, R (1992). orthodenticle activity is required for the development of medial structures in the larval and adult epidermis of Drosophila. Development 115, 801-811.[Abstract]




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