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Angenent, G. C., Franken, J., Busscher, M., van Dijken, A., van Went, J. L., Dons, H. J. M. and van Tunen, A. J (1995). A novel class of MADS box genes is involved in ovule development in Petunia. Plant Cell 7, 1569-1582.[Abstract]

Baker, S. C., Robinson-Beers, K., Villanueva, J. M., Gaiser, J. C. and Gasser, C. S (1997). Interactions among genes regulating ovule development in Arabidopsis thaliana. Genetics 145, 1109-1124.[Abstract]

Bell, C. J. and Ecker, J. R (1994). Assignment of 30 microsatellite loci to the linkage map of Arabidopsis. Genomics 19, 137-144.[Medline]

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

Colombo, L., Franken, J., Koetje, E., van Went, J., Dons, H. J. M., Angenent, G. C. and van Tunen, A. J (1995). The petunia MADS box gene FBP11 determines ovule identity. Plant Cell 7, 1859-1868.[Abstract]

Elliott, R. C., Betzner, A. S., Huttner, E., Oakes, M. P., Tucker, W. Q. J., Gerentes, D., Perez, P. and Smyth, D. R (1996). AINTEGUMENTA , an APETALA2 -like gene of Arabidopsis with pleiotropic roles in ovule development and floral organ growth. Plant Cell 8, 155-168.[Abstract]

Gaiser, J. C., Robinson-Beers, K. and Gasser, C. S (1995). The Arabidopsis SUPERMAN gene mediates asymmetric growth of the outer integument of ovules. Plant Cell 7, 333-345.[Abstract]

Jofuku, K. D., den Boer, B. G. W., Van Montagu, M. and Okamuro, J. K (1994). Control of Arabidopsis flower and seed development by the homeotic gene APETALA2. Plant Cell 6, 1211-1225.[Abstract]

Klucher, K. M., Chow, H., Reiser, L. and Fischer, R. L (1996). The AINTEGUMENTA gene of Arabidopsis required for ovule and female gametophyte development is related to the floral homeotic gene APETALA2. Plant Cell 8, 137-153.[Abstract]

Konieczny, A. and Ausubel, F. M (1993). A procedure for mapping Arabidopsis mutations using co-dominant ecotype-specific PCR-based markers. Plant J 4, 403-410.[Medline]

Leon-Kloosterziel, K. M., Keijzer, C. J. and Koornneef, M (1994). A seed shape mutant of Arabidopsis that is affected in integument development. Plant Cell 6, 385-392.[Abstract]

Ma, H (1994). The unfolding drama of flower development: recent results from genetic and molecular analyses. Genes Dev 8, 745-756.[Free Full Text]

Mansfield, S. G., Briarty, L. G. and Erni, S (1991). Early embryogenesis in Arabidopsis thaliana . I. The mature embryo sac. Can. J. Bot 69, 447-460.

Modrusan, Z., Reiser, L., Feldmann, K. A., Fischer, R. L. and Haughn, G. W (1994). Homeotic transformation of ovules into carpel-like structures in Arabidopsis. Plant Cell 6, 333-349.[Abstract]

Norenburg, J. L. and Barrett, J. M (1987). Steedman's polyester wax embedment and de-embedment for combined light and scanning electron microscopy. J. Electron Microsc. Tech 6, 35-41.

Pappas, P (1971). The use of chrome alum-gelatin (subbing) solution as a general adhesive for paraffin sections. Stain Techn 46, 121-124.[Medline]

Reiser, L. and Fischer, R. L (1993). The ovule and the embryo sac. Plant Cell 5, 1291-1301.[Free Full Text]

Reiser, L., Modrusan, Z., L., M., Samach, A., Ohad, N., Haughn, G. W. and Fischer, R. L (1995). The BELL1 gene encodes a homeodomain protein involved in pattern formation in the Arabidopsis ovule primordium. Cell 83, 735-742.[Medline]

Robinson-Beers, K., Pruitt, R. E. and Gasser, C. S (1992). Ovule development in wild-type Arabidopsis and two female-sterile mutants. Plant Cell 4, 1237-1249.[Abstract/Free Full Text]

Schneitz, K., Hulskamp, M. and Pruitt, R. E (1995). Wild-type ovule development in Arabidopsis thaliana: a light microscope study of cleared whole-mount tissue. Plant J 7, 731-749.

Schneitz, K., Hulskamp, M., Kopczak, S. D. and Pruitt, R. E (1997). Dissection of sexual organ ontogenesis: a genetic analysis of ovule development in Arabidopsis thaliana. Development 124, 1367-1376.[Abstract]

Webb, M. C. and Gunning, B. E. S (1990). Embryo sac development in Arabidopsis thaliana . I. Megasporogenesis, including the microtubular cytoskeleton. Sex. Plant Reprod 3, 244-256.

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

Weigel, D (1995). The APETALA2 domain is related to a novel type of DNA binding domain. Plant Cell 7, 388-389.[Medline]




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