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Altmann, C. R., Chow, R. L., Lang, R. A. and Hemmati-Brivanlou, A (1997). Lens induction by Pax-6 in Xenopus laevis. Dev. Biol 185, 119-123.[Medline]

Bonini, N. M., Bui, Q. T., Gray-Board, G. L. and Warrick, J. M (1997). The Drosophila eyes absent gene directs ectopic eye formation in a pathway conserved between flies and vertebrates. Development 124, 4819-4826.[Abstract]

Bonkowsky, J. L., Yoshikawa, S., O'Keefe, D. D., Scully, A. L. and Thomas, J. B (1999). Axon routing across the midline controlled by the Drosophila Derailed receptor. Nature 402, 540-544.[Medline]

Callaerts, P., Halder G. and Gehring W. J (1997). PAX-6 in development and evolution. Annu. Rev. Neurosci 20, 483-532.[Medline]

Callahan, C. A., Muralidhar, M. G., Lundgren, S. E., Scully, A. L. and Thomas, J. B (1995). Control of neuronal pathway selection by a Drosophila receptor protein-tyrosine kinase family member. Nature 376, 171-174.[Medline]

Caric, D., Gooday, D., Hill, R. E., McConnell, S. K. and Price, D. J (1997). Determination of the migratory capacity of embryonic cortical cells lacking the transcription factor Pax-6. Development 124, 5087-5096.[Abstract]

Caubit, X., Thangarajah, R., Theil, T., Wirth, J., Nothwang, H. G., Ruther, U. and Krauss, S (1999). Mouse Dac, a novel nuclear factor with homology to Drosophila dachshund shows a dynamic expression in the neural crest, the eye, the neocortex, and the limb bud. Dev. Dyn 214, 66-80.[Medline]

Chapouton, P., Gartner, A. and Gotz, M (1999). The role of Pax6 in restricting cell migration between developing cortex and basal ganglia. Development 126, 5569-5579.[Abstract]

Chen, R., Amoui, M., Zhang, Z. and Mardon, G (1997). dachshund and eyes absent proteins form a complex and function synergistically to induce ectopic eye development in Drosophila. Cell 91, 893-903.[Medline]

Chen, R., Halder, G., Zhang, Z. and Mardon, G (1999). Signaling by the TGF-beta homolog decapentaplegic functions reiteratively within the network of genes controlling retinal cell fate determination in Drosophila. Development 126, 935-943.[Abstract]

Cheyette, B. N., Green, P. J., Martin, K., Garren, H., Hartenstein, V. and Zipursky, S. L (1994). The Drosophila sine oculis locus encodes a homeodomain-containing protein required for the development of the entire visual system. Neuron 12, 977-996.[Medline]

Chow, R. L., Altmann, C. R., Lang, R. A.and Hemmati-Brivanlou, A (1999). Pax6 induces ectopic eyes in a vertebrate. Development 126, 4213-4222.[Abstract]

Collinson, J. M., Hill, R. E. and West, J. D (2000). Different roles for Pax6 in the optic vesicle and facial epithelium mediate early morphogenesis of the murine eye. Development 127, 945-956.[Abstract]

Curtiss, J. and Mlodzik, M (2000). Morphogenetic furrow initiation and progression during eye development in Drosophila : the roles of decapentaplegic , hedgehog and eyes absent. Development 127, 1325-1336.[Abstract]

Czerny, T., Halder, G., Kloter, U., Souabni, A., Gehring, W. J. and Busslinger, M (1999). twin of eyeless , a second Pax-6 gene of Drosophila , acts upstream of eyeless in the control of eye development. Mol. Cell 3, 297-307.

Daniel, A., Dumstrei, K., Lengyel, J. and Hartenstein, V (1999). tailless and atonal control cell fate in the embryonic visual system. Development 126, 2945-2954.[Abstract]

Davis, R. L (1996). Physiology and biochemistry of Drosophila learning mutants. Physiol. Rev 76, 299-317.[Abstract/Free Full Text]

de Belle, J.S. and Heisenberg, M (1994). Associative odor learning in Drosophila ablolished by chemical ablation of mushroom bodies. Science 263, 692-695.[Abstract/Free Full Text]

de Belle, J. S. and Heisenberg, M (1996). Expression of Drosophila mushroom body mutations in alternative genetic backgrounds: a case study of the mushroom body miniature gene ( mbm ). Proc. Natl. Acad. Sci.USA 93, 9875-9880.[Abstract/Free Full Text]

Engelkamp, D., Rashbass, P., Seawright, A. and van Heyningen, V (1999). Role of Pax6 in development of the cerebellar system. Development 126, 3585-3596.[Abstract]

Ericson, J., Rashbass, P., Schedl, A., Brenner-Morton, S., Kawakami, A., van Heyningen, V., Jessell, T. M. and Briscoe, J (1997). Pax6 controls progenitor cell identity and neuronal fate in response to graded Shh signaling. Cell 90, 169-180.[Medline]

Ferveur, J. F., Stortkuhl, K. F., Stocker, R. F. and Greenspan, R. J (1995). Genetic feminization of brain structures and changed sexual orientation in male Drosophila. Science 267, 902-905.[Abstract/Free Full Text]

Gehring, W. J. and Ikeo, K (1999). Pax 6: mastering eye morphogenesis and eye evolution. Trends Genet 15, 371-377.[Medline]

Grenningloh, G., Rehm, E. J. and Goodman, C. S (1991). Genetic analysis of growth cone guidance in Drosophila : Fasciclin II functions as a neuronal recognition molecule. Cell 67, 45-57.[Medline]

Grindley, J. C., Hargett, L. K., Hill, R. E., Ross, A. and Hogan, B. L (1997). Disruption of PAX6 function in mice homozygous for the Pax6Sey-1Neu mutation produces abnormalities in the early development and regionalization of the diencephalon. Mech. Dev 64, 111-126.[Medline]

Gotz, M., Stoykova, A. and Gruss, P (1998). Pax6 controls radial glia differentiation in the cerebral cortex. Neuron 21, 1031-1044.[Medline]

Halder, G., Callaerts, P., Flister, S., Walldorf, U., Kloter, U. and Gehring, W. J (1998). Eyeless initiates the expression of both sine oculis and eyes absent during Drosophila compound eye development. Development 125, 2181-2191.[Abstract]

Hammond, K. L., Hanson, I. M., Brown, A. G., Lettice, L. A. and Hill, R. E (1998). Mammalian and Drosophiladachshund genes are related to the Ski proto-oncogene and are expressed in eye and limb. Mech. Dev 74, 121-131.[Medline]

Hanson, I. and van Heyningen, V (1995). Pax6: more than meets the eye. Trends Genet 11, 268-272.[Medline]

Hartenstein, V., Younossi-Hartenstein, A. and Lekven, A (1994). Delamination and division in the Drosophila neurectoderm: Spatio-temporal pattern, cytoskeletal dynamics, and common control by neurogenic and segment polarity genes. Dev. Biol 165, 480-499.[Medline]

Hazelett, D. J., Bourouis, M., Walldorf, U. and Treisman, J. E (1998). decapentaplegic and wingless are regulated by eyes absent and eyegone and interact to direct the pattern of retinal differentiation in the eye disc. Development 125, 3741-3751.[Abstract]

Heanue, T. A., Reshef, R., Davis, R. J., Mardon, G., Oliver, G., Tomarev, S., Lassar, A. B. and Tabin, C. J (1999). Synergistic regulation of vertebrate muscle development by dach2, eya2, and six1, homologs of genes required for Drosophila eye formation. Genes Dev 13, 3231-3243.[Abstract/Free Full Text]

Heisenberg, M (1980). Mutants of brain structure and function: what is the significance of the mushroom bodies for behavior?. Basic Life Sci 16, 373-390.[Medline]

Heisenberg, M., Borst, A., Wagner, S. and Byers, D (1985). Drosophila mushroom body mutants are deficient in olfactory learning. J. Neurogen 2, 1-30.[Medline]

Hill, R. E., Favor, J., Hogan, B. L., Ton, C. C., Saunders, G. F., Hanson, I. M., Prosser, J., Jordan, T., Hastie, N. D. and van Heyningen, V (1991). Mouse small eye results from mutations in a paired-like homeobox-containing gene. Nature 354, 522-525.[Medline]

Hoge, M. A (1915). Another gene in the fourth chromosome of Drosophila. Am. Nat 49, 47-.

Holst, B. D., Wang, Y., Jones, F. S. and Edelman, G. M (1997). A binding site for Pax proteins regulates expression of the gene for the neural cell adhesion molecule in the embryonic spinal cord. Proc. Natl. Acad. Sci. USA 94, 1465-1470.[Abstract/Free Full Text]

Ito, K., Awano, W., Suzuki, K., Hiromi, Y. and Yamamoto, D (1997). The Drosophila mushroom body is a quadruple structure of clonal units each of which contains a virtually identical set of neurones and glial cells. Development 124, 761-771.[Abstract]

Ito, K. and Hotta, Y (1992). Proliferation pattern of postembryonic neuroblasts in the brain of Drosophilamelanogaster. Dev. Biol 149, 134-148.[Medline]

Ito, K., Sass, H., Urban, J., Hofbauer, A. and Schneuwly, S (1997). GAL4-responsive UAS-tau as a tool for studying the anatomy and development of the Drosophila central nervous system. Cell Tissue Res 290, 1-10.[Medline]

Kawano, H., Fukuda, T., Kubo, K., Horie, M., Uyemura, K., Takeuchi, K., Osumi, N., Eto, K. and Kawamura, K (1999). Pax-6 is required for thalamocortical pathway formation in fetal rats. J. Comp. Neurol 408, 147-160.[Medline]

Kioussi, C., O'Connell, S., St-Onge, L., Treier, M., Gleiberman, A. S., Gruss, P. and Rosenfeld, M. G (1999). Pax6 is essential for establishingventral-dorsal cell boundaries in pituitary gland development. Proc. Natl. Acad. Sci. USA 96, 14378-14382.[Abstract/Free Full Text]

Kurusu, M., Nagao, T., Walldorf, U., Flister, S., Gehring, W. J., Furukubo-Tokunaga, K (2000). Genetic control of development of the mushroom bodies, the associative learning centers in the Drosophila brain, by the eyeless , twin of eyeless , and dachshund genes. Proc. Natl. Acad. Sci. USA 97, 2140-2144.[Abstract/Free Full Text]

Lee, T., Lee, A. and Luo, L (1999). Development of the Drosophila mushroom bodies: sequential generation of three distinct types of neurons from a neuroblast. Development 126, 4065-4076.[Abstract]

Lee, T. and Luo, L (1999). Mosaic analysis with a repressible cell marker for studies of gene function in neuronal morphogenesis. Neuron 22, 451-461.[Medline]

Liu, L., Wolf, R., Ernst, R. and Heisenberg, M (1999). Context generalization in Drosophila visual learning requires the mushroom bodies. Nature 400, 753-756.[Medline]

Loosli, F., Winkler, S. and Wittbrodt, J (1999). Six3 overexpression initiates the formation of ectopic retina. Genes Dev 13, 649-654.[Abstract/Free Full Text]

Mardon, G., Solomon, N. M. and Rubin, G. M (1994). dachshund encodes a nuclear protein required for normal eye and leg development in Drosophila. Development 120, 3473-3486.[Abstract]

Martini, S. R., Roman, G., Meuser, S., Mardon, G. and Davis, R. L (2000). The retinal determination gene, dachshund , is required for mushroom body cell differentiation. Development 127, 2663-2672.[Abstract]

Mastick, G. S., Davis, N. M., Andrew, G. L. and Easter, S. S. Jr (1997). Pax-6 functions in boundary formation and axon guidance in the embryonic mouse forebrain. Development 124, 1985-1997.[Abstract]

McBride, S. M., Giuliani, G., Choi, C., Krause, P., Correale, D., Watson, K., Baker, G. and Siwicki, K. K (1999). Mushroom body ablation impairs short-term memory and long-term memory of courtship conditioning in Drosophila melanogaster. Neuron 24, 967-977.[Medline]

Meech, R., Kallunki, P., Edelman, G. M. and Jones, F. S (1999). A binding site for homeodomain and Pax proteins is necessary for L1 cell adhesion molecule gene expression by Pax-6 and bone morphogenetic proteins. Proc. Natl. Acad. Sci. USA 96, 2420-2425.[Abstract/Free Full Text]

Melzig, J., Rein, K. H., Schafer, U., Pfister, H., Jackle, H., Heisenberg, M. and Raabe, T (1998). A protein related to p21-activated kinase (PAK) that is involved in neurogenesis in the Drosophila adult central nervous system. Curr. Biol 8, 1223-1226.[Medline]

Moreau-Fauvarque, C., Taillebourg, E., Boissoneau, E., Mesnard, J. and Dura, J. M (1998). The receptor tyrosine kinase gene linotte is required for neuronal pathway selection in the Drosophila mushroom bodies. Mech. Dev 78, 47-61.[Medline]

Nassif, C., Noveen, A. and Hartenstein, V (1998). Embryonic development of the Drosophila brain I. the pattern of pioneer tracts. J. Comp. Neurol 402, 10-31.[Medline]

Nguyen, H. T., Bodmer, R., Abmayr, S. M., McDermott, J. C. and Spoerel, N. A (1994). D-mef2: a Drosophila mesoderm-specific MADS box-containing gene with a biphasic expression profile during embryogenesis. Proc. Natl. Acad. Sci. USA 91, 7520-7524.[Abstract/Free Full Text]

O'Dell, K. M., Armstrong, J. D., Yang, M. Y. and Kaiser, K (1995). Functional dissection of the Drosophila mushroom bodies by selective feminization of genetically defined subcompartments. Neuron 15, 55-61.[Medline]

Ohto, H., Kamada, S., Tago, K., Tominaga, S. I., Ozaki, H., Sato, S. and Kawakami, K (1999). Cooperation of six and eya in activation of their target genes through nuclear translocation of Eya. Mol. Cel. Biol 19, 6815-6824.[Abstract/Free Full Text]

Osumi, N., Hirota, A., Ohuchi, H., Nakafuku, M., Iimura, T., Kuratani, S., Fujiwara, M., Noji, S. and Eto K (1997). Pax-6 is involved in the specification of hindbrain motor neuron subtype. Development 124, 2961-2972.[Abstract]

Pan, D. and Rubin, G. M (1998). Targeted expression of teashirt induces ectopic eyes in Drosophila. Proc. Natl. Acad. Sci. USA 95, 15508-15512.[Abstract/Free Full Text]

Pignoni, F., Hu, B., Zavitz, K. H., Xiao, J., Garrity, P. A. and Zipursky, S. L (1997). The eye-specification proteins So and Eya form a complex and regulate multiple steps in Drosophila eye development. Cell 91, 881-891.[Medline]

Pignoni, F. and Zipursky, S. L (1997). Induction of Drosophila eye development by decapentaplegic. Development 124, 271-278.[Abstract]

Prokop, A. and Technau, G. M (1991). The origin of postembryonicneuroblasts in the ventral nerve cord of Drosophilamelanogaster. Development 111, 79-88.[Abstract]

Prokop, A. and Technau, G. M (1994). Normal function of the mushroom body defect gene of Drosophila is required for the regulation of the number and proliferation of neuroblasts. Dev. Biol 161, 321-337.[Medline]

Quinn, J. C., West, J. D. and Hill, R. E (1996). Multiple functions for Pax6 in mouse eye and nasal development. Genes Dev 10, 435-446.[Abstract/Free Full Text]

Quiring, R., Walldorf, U., Kloter, U. and Gehring, W. J (1994). Homology of the eyeless gene of Drosophila to the Small eye gene in mice and Aniridia in human. Science 265, 785-789.[Abstract/Free Full Text]

Schedl, A., Ross, A., Lee, M., Engelkamp, D., Rashbass, P., van Heyningen, V. and Hastie, N. D (1996). Influence of PAX6 gene dosage on development: overexpression causes severe eye abnormalities. Cell 86, 71-82.[Medline]

Schulz, R. A., Chromey, C., Lu, M.-F., Zhao, B. and Olson, E. N (1996). Expression of the D-MEF2 transcription factor in the Drosophila brain suggests a role in neuronal cell differentiation. Oncogene 12, 1827-1831.[Medline]

Shen, W. and Mardon, G (1997). Ectopic eye development in Drosophila induced by directed dachshund expression. Development 124, 45-52.[Abstract]

Skeath, J. B. and Carroll,S. B (1992). Regulation of proneural gene expression and cell fate during neuroblast segregation in the Drosophila embryo. Development 114, 939-946.[Abstract]

Skoulakis, E. M. and Davis, R. L (1996). Olfactory learning deficits in mutants for leonardo, a Drosophila gene encoding a 14-3-3 protein. Neuron 17, 931-944.[Medline]

Skoulakis, E. M., Kalderon, D. and Davis, R. L (1993). Preferential expression in mushroom bodies of the catalytic subunit of protein kinase A and its role in learning and memory. Neuron 11, 197-208.[Medline]

Stoykova, A., Fritsch, R., Walther, C. and Gruss, P (1996). Forebrain patterning defects in Small eye mutant mice. Development 122, 3453-3465.[Abstract]

Stoykova, A., Gotz, M., Gruss, P. and Price, J (1997). Pax6-dependent regulation of adhesive patterning, R-cadherin expression and boundary formation in developing forebrain. Development 124, 3765-3777.[Abstract]

Struhl, G., Fitzgerald, K. and Greenwald, I (1993). Intrinsic activity of the Lin-12 and Notch intracellular domains in vivo. Cell 74, 331-345.[Medline]

Technau, G. M. and Heisenberg, M (1982). Neural reorganisation during metamorphosis of the corpora pedunculata in Drosophila melanogaster. Nature 295, 405-407.[Medline]

Ton, C. C., Hirvonen, H., Miwa, H., Weil, M. M., Monaghan, P., Jordan, T., van Heyningen, V. Hastie. N. D., Meijers-Heijboer, H., Drechsler, M., Royer-Pokora, B., Collins, F., Swaroop, A., Strong, L. C. and Saunders, G. F (1991). Positional cloning and characterization of a paired box-and homeobox-containing gene from the Aniridia region. Cell 67, 1059-1074.[Medline]

Treisman, J. E (1999). A conserved blueprint for the eye?. BioEssays 21, 843-850.[Medline]

Walther, C. and Gruss, P (1991). Pax-6, a murine paired box gene, is expressed in the developing CNS. Development 113, 1435-1449.[Abstract]

Warren, N., Caric, D., Pratt, T., Clausen, J. A., Asavaritikrai, P., Mason, J. O., Hill, R. E. and Price, D. J (1999). The transcription factor, Pax6, is required for cell proliferation and differentiation in the developing cerebral cortex. Cereb. Cortex 9, 627-635.[Abstract/Free Full Text]

Warren, N. and Price, D. J (1997). Roles of Pax-6 in murine diencephalic development. Development 124, 1573-1582.[Abstract]

Xu, P. X., Adams, J., Peters, H., Brown, M. C., Heaney, S. and Maas, R (1999). Eya1-deficient mice lack ears and kidneys and show abnormal apoptosis of organ primordia. Nat. Genet 23, 113-117.[Medline]

Xu, P. X., Woo, I., Her, H., Beier, D. R. and Maas, R. L (1997). Mouse Eya homologues of the Drosophila eyes absent gene require Pax6 for expression in lens and nasal placode. Development 124, 219-231.[Abstract]

Xu, P. X., Zhang, X., Heaney, S., Yoon, A., Michelson, A. M. and Maas, R. L (1999). Regulation of Pax6 expression is conserved between mice and flies. Development 126, 383-395.[Abstract]

Yang, M. Y., Armstrong, J. D., Vilinsky, I., Strausfeld, N. J. and Kaiser K (1995). Subdivision of the Drosophila mushroom bodies by enhancer-trap expression patterns. Neuron 15, 45-54.[Medline]

Younossi-Hartenstein, A., Nassif, C. and Hartenstein, V (1996). Early neurogenesis of the Drosophila brain. J. Comp. Neur 370, 313-329.[Medline]


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