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Bradley, D., Carpenter, R., Sommer, H., Hartley, N. and Coen, E (1993). Complementary floral homeotic phenotypes result from opposite orientations of a transposon at the plena locus of Antirrhinum. Cell 72, 85-95.[Medline]

Carpenter, R., Copsey, L., Vincent, C., Doyle, S., Magrath, R. and Coen, E (1995). Control of flower development and phyllotaxy by meristem identity genes in Antirrhinum. Plant Cell 7, 2001-2011.[Abstract]

Coen, E. S. and Meyerowitz, E. M (1991). The war of the whorls: genetic interactions controlling flower development. Nature 353, 31-37.[Medline]

Davies, B., Egea-Cortines, M., de Andrade Silva, E., Saedler, H. and Sommer, H (1996). Multiple interactions amongst floral homeotic MADS box proteins. EMBO J 15, 4330-4343.[Medline]

Davies, B., Motte, P., Keck, E., Saedler, H., Sommer, H. and Schwarz-Sommer, Z (1999). PLENA and FARINELLI : redundancy and regulatory interactions between two Antirrhinum MADS-box factors controlling flower development. EMBO J 18, 4023-4034.[Medline]

Egea-Cortines, M., Saedler, H. and Sommer, H (1999). Ternary complex formation between the MADS-box proteins SQUAMOSA, DEFICIENS and GLOBOSA is involved in the control of floral architecture in Antirrhinum majus. EMBO J 18, 5370-5379.[Medline]

Ingram, C. G., Doyle, S. D., Carpenter, R., Schultz, E. A., Simon, R. and Coen, E. S (1997). Dual role for fimbriata in regulating floral homeotic genes and cell division in Antirrhinum. EMBO J 16, 6521-6534.[Medline]

Ingram, G. C., Goodrich, J., Wilkinson, M. D., Simon, R., Haughn, G. W. and Coen, E. S (1995). Parallels between Unusual Floral Organs and Fimbriata , genes controlling flower development in Arabidopsis and Antirrhinum. Plant Cell 7, 1501-1510.[Abstract]

Lee, I., Wolfe, D. S., Nilsson, O. and Weigel, D (1997). A leafy coregulator encoded by unusual floral organs. Curr. Biol 7, 95-104.[Medline]

L\232nnig, W. E. and Saedler, H (1994). The homeotic Macho mutant of Antirrhinum majus reverts to wild-type or mutates to the homeotic plena phenotype. Mol. Gen. Genet 245, 636-643.[Medline]

Motte, P., Saedler, H. and Schwarz-Sommer, Z (1998). STYLOSA and FISTULATA : regulatory components of the homeotic control of Antirrhinum floral organogenesis. Development 125, 71-84.[Abstract]

Schwarz-Sommer, Z., Hue, I., Huijser, P., Flor, P. J., Hansen, R., Tetens, F., L\232nnig, W.-E., Saedler, H. and Sommer, H (1992). Characterization of the Antirrhinum floral homeotic MADS-box gene deficiens : evidence for DNA binding and autoregulation of its persistent expression throughout flower development. EMBO J 11, 251-263.[Medline]

Simon, R., Carpenter, R., Doyle, S. and Coen, E (1994). Fimbriata controls flower development by mediating between meristem and organ identity genes. Cell 78, 99-107.[Medline]

Sommer, H., Beltran, J.P., Huijser, P., Pape, H., L\232nnig, W. E., Saedler, H. and Schwarz-Sommer, Z (1990). Deficiens , a homeotic gene involved in the control of flower morphogenesis in Antirrhinummajus : the protein shows homology to transcription factors. EMBO J 9, 605-613.[Medline]

Tr\232bner, W., Ramirez, L., Motte, P., Hue, I., Huijser, P., L\232nnig, W.-E., Saedler, H., Sommer, H. and Schwarz-Sommer, Z (1992). GLOBOSA : a homeotic gene which interacts with DEFICIENS in the control of Antirrhinum floral organogenesis. EMBO J 11, 4693-4704.[Medline]

Weigel, D. and Meyerowitz, E. M (1994). The ABCs of floral homeotic genes. Cell 78, 203-209.[Medline]

Zachgo, S., de Andrade Silva, E., Motte, P., Tr\232bner, W., Saedler, H. and Schwarz-Sommer, Z (1995). Functional analysis of the Antirrhinum floral homeotic DEFICIENS gene in vivo and in vitro by using a temperature-sensitive mutant. Development 121, 2861-2875.[Abstract]




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This Article
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