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Abbe, E. C., Phinney, B. O. and Baer, D. F (1951). The growth of the shoot apex in maize: internal features. Am. J. Bot 38, 744-751.

Abbe, E. C. and Stein, O. L (1954). The growth of the shoot apex in maize: embryogeny. Am. J. Bot 41, 285-293.

Alleman, M. and Kermicle, J. L (1993). Somatic variegation and germinal mutability reflect the position of transposable element Dissociation within the maize R gene. Genetics 135, 189-203.[Abstract]

Barton, M. K. and Poethig, R. S (1993). Formation of the shoot apical meristem in Arabidopsisthaliana : an analysis of development in the wild type and in the shoot meristemless mutant. Development 119, 823-831.[Abstract]

Bharathan, G., Janssen, B. J., Kellog, E. and Sinha, N (1999). Phylogenetic relationships and evolution of the KNOTTED class of plant homeodomain proteins. Mol. Biol. Evol 16, 553-563.[Abstract]

Brutnell, T. P., May, B. P. and Dellaporta, S. L (1997). The Ac-st2 element of maize exhibits a positive dosage effect and epigenetic regulation. Genetics 147, 823-834.[Abstract]

Bryan, A. A. and Sass, J. E (1941). Heritable characters in maize. J. Hered 32, 343-346.[Free Full Text]

Cheng, P. C., Greyson, R. I. and Walden, D. B (1983). Organ initiation and the development of unisexual flowers in the tassel and ear of Zea mays. Am. J. Bot 70, 450-462.

Chuck, G., Lincoln, C. and Hake, S (1996). Knat1 induces lobed leaves with ectopic meristems when overexpressed in Arabidopsis. Plant Cell 8, 1277-1289.[Abstract]

Endrizzi, K., Moussian, B., Haecker, A., Levin, J. Z. and Laux, T (1996). The SHOOT MERISTEMLESS gene is required for maintenance of undifferentiated cells in Arabidopsis shoot and floral meristems and acts at a different regulatory level than the meristem genes WUSCHEL and ZWILLE. Plant J 10, 101-113.

Foster, T., Yamaguchi, J., Wong, B., Veit, B. and Hake, S (1999). Gnarley1 is a dominant mutation in the knox4 homeobox gene that affects cell identity and cell shape. Plant Cell 11, 1239-1252.[Abstract/Free Full Text]

Freeling, M. and Hake, S (1985). Developmental genetics of mutants that specify Knotted leaves in maize. Genetics 111, 617-634.[Abstract/Free Full Text]

Freeling, M. and Schwartz, D (1973). Genetic relationships between the multiple alcohol dehydrogenases of maize. Genetics 8, 27-36.

Gelinas, D., Postlethwaite, S. N. and Nelson, O. E (1969). Characterization of development in maize through the use of mutants. II. The abnormal growth conditioned by the Knotted mutant. Am. J. Bot 56, 671-678.

Goldberg, R. B., de Paiva, G. and Yadegari, R (1994). Plant embryogenesis: zygote to seed. Science 266, 605-614.[Abstract/Free Full Text]

Greenblatt, I. M (1984). A chromosome replication pattern deduced from pericarp phenotypes resulting from movements of the transposable element Modulator in maize. Genetics 108, 471-485.[Abstract/Free Full Text]

Greene, B., Walko, R. and Hake, S (1994). Mutator insertions in an intron of the maize knotted1 gene result in dominant suppressible mutations. Genetics 138, 1275-1285.[Abstract]

Hake, S., Vollbrecht, E. and Freeling, M (1989). Cloning Knotted , the dominant morphological mutant in maize using Ds2 as a transposon tag. EMBO J 8, 15-22.[Medline]

Jackson, D., Veit, B. and Hake, S (1994). Expression of maize KNOTTED1 related homeobox genes in the shoot apical meristem predicts patterns of morphogenesis in the vegetative shoot. Development 120, 405-413.[Abstract]

Kaplan, D. R. and Cooke, T. J (1997). Fundamental concepts in the embryogenesis of dicotyledons: a morphological interpretation of embryo mutants. Plant Cell 9, 1903-1919.[Medline]

Kerstetter, R., Vollbrecht, E., Lowe, B., Veit, B., Yamaguchi, J. and Hake, S (1994). Sequence analysis and expression patterns divide the maize knotted1 -like homeobox genes into two classes. Plant Cell 6, 1877-1887.[Abstract/Free Full Text]

Kerstetter, R. A., Laudencia-Chingcuanco, D., Smith, L. G. and Hake, S (1997). Loss of function mutations in the maize homeobox gene, knotted1 , are defective in shoot meristem maintenance. Development 124, 3045-3054.[Abstract]

Laufs, P., Grandjean, O., Jonak, C., Kieu, K. and Traas, J (1998). Cellular parameters of the shoot apical meristem in Arabidopsis. Plant Cell 10, 1375-1389.[Abstract/Free Full Text]

Ledin, R. B (1954). The vegetative shoot apex of Zea mays. Am. J. Bot 41, 11-17.

Lynn, K., Fernandez, A., Aida, M., Sedbrook, J., Tasaka, M., Masson, P. and Barton, M. K (1999). The PINHEAD/ZWILLE gene acts pleiotropically in Arabidopsis development and has overlapping functions with the ARGONAUTE1 gene. Development 126, 469-81.[Abstract]

Moreno, M. A., Chen, J., Greenblatt, I. and Dellaporta, S. L (1992). Reconstitutional mutagenesis of the maize P gene by short range Ac transpositions. Genetics 131, 939-956.[Abstract]

Moussian, B., Schoof, H., Haecker, A., Jurgens, G. and Laux, T (1998). Roleof the ZWILLE gene in the regulation of central shoot meristem cell fate during Arabidopsis embryogenesis. EMBO J 17, 1799-1809.[Medline]

Nourgarede, A (1967). Experimental cytology of the shoot apical cells during vegetative growth and flowering. Intern. Rev. Cytol 21, 203-351.[Medline]

Randolph, L. F (1936). Developmental morphology of the caryopsis in maize. J. Ag. Res 53, 881-916.

Reiser, L., Sanchez-Baracaldo, P. and Hake, S (2000). Knots in the family tree: Evolutionary relationships and functions of knox homeobox genes. Plant Mol. Biol 42, 151-66.[Medline]

Schneeberger, R. G., Becraft, P. W., Hake, S. and Freeling, M (1995). Ectopic expression of the knox homeo box gene roughsheath1 alters cell fate in the maize leaf. Genes Dev 9, 2292-2304.[Abstract/Free Full Text]

Scott, L., LaFoe, D. and Weil, C. F (1996). Adjacent sequences influence DNA repair accompanying transposon excision in maize. Genetics, 142, 237-246.[Abstract]

Sentoku, N., Sato, Y., Kurata, N., Ito, Y., Kitano, H. and Matsuoka, M (1999). Regional expression of the rice KN1-type homeobox gene family during embryo, shoot, and flower development. Plant Cell 11, 1651-1664.[Abstract/Free Full Text]

Sinha, N. R., Williams, R. E. and Hake, S (1993). Overexpression of the maize homeo box gene, KNOTTED-1 , causes a switch from determinate to indeterminate cell fates. Genes Dev 7, 787-795.[Abstract/Free Full Text]

Smith, L., Greene, B., Veit, B. and Hake, S (1992). A dominant mutation in the maize homeobox gene, Knotted-1, causes its ectopic expression in leaf cells with altered fates. Development 116, 21-30.[Abstract]

Smith, L. G., Jackson, D. and Hake, S (1995). The expression of Knotted1 marks shoot meristem formation during maize embryogenesis. Dev. Gen 16, 344-348.

Timmermans, M. C., Hudson, A., Becraft, P. W. and Nelson, T (1999). ROUGH SHEATH2: a Myb protein that represses knox homeobox genes in maize lateral organ primordia. Science 284, 151-153.[Abstract/Free Full Text]

Tsiantis, M., Schneeberger, R., Golz, J. F., Freeling, M. and Langdale, J. A (1999). The maize rough sheath2 gene and leaf development programs in monocot and dicot plants. Science 284, 154-156.[Abstract/Free Full Text]

Vollbrecht, E., Veit, B., Sinha, N. and Hake, S (1991). The developmental gene Knotted-1 is a member of a maize homeobox gene family. Nature 350, 241-243.[Medline]




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