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Aida, M., Ishida, T., Fukaki, H., Fujisawa, H. and Tasaka, M (1997). Genes involved in organ separation in Arabidopsis : Analysis of the cup-shaped cotyledon mutant. Plant Cell 9, 841-857.[Abstract/Free Full Text]

Bennet, S. R. M., Alvarez, J., Bossinger, G. and Smyth, D. R (1995). Morphogenesis in pinoid mutants of Arabidopsis. Plant J 8, 505-520.

Busch, M., Mayer U. and Jurgens G (1996). Molecular analysis of the Arabidopsis pattern formation gene GNOM . Gene structure and intragenic complementation. Mol. Gen. Genet 250, 6-.

Chaudhury, A. M., Letham, S., Craig, S. and Dennis, E. S (1993). amp1 \320 a mutant with high cytokinin levels and altered embryonic pattern, faster vegetative growth, constitutive photomorphogenesis and precocious flowering. Plant J 4, 907-916.

Chasan, R (1993). Embryogenesis: New molecular insights. Plant Cell 5, 597-599.

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, 967-979.[Medline]

Evans, M. L. and Hokanson, R (1969). Timing of the response of coleoptiles to application and withdrawal of various auxins. Planta 85, 85-95.

Fischer, C. and Neuhaus, G (1996). Influence of auxin on the establishment of bilateral symmetry in monocots. Plant J 10, 659-669.

Fischer, C., Speth, V., Fleig-Eberenz, S. and Neuhaus, G (1997). Induction of zygotic polyembryos in wheat: influence of auxin polar transport. Plant Cell 9, 1767-1780.[Abstract]

Foster, R. J., McRae, D. H. and Bonner, J (1955). Auxin-antiauxin interaction at high auxin concentrations. Pl. Physiol 30, 323-327.[Free Full Text]

Gamborg, O. L., Miller, R. A. and Ojima, K (1968). Nutrient requirements of suspension cultures of soybean root cells. Exp. Cell Res 50, 151-158.[Medline]

Hertel, R., Evens, M. L., Leopold, A. C. and Sell, H. M., (1969). The specificity of the auxin transport system. Planta 85, 238-249.

Heupel, T. and Stange, L (1995). The auxin antagonist p-chlorophenoxyisobutyric acid abolishes polar distribution of DNA synthesizing cells within the meristem of Riella helicophylla. J. Pl. Physiol 146, 757-759.

Jurgens, G., Mayer, U., Torres Ruiz, R. A., Berleth, T. and Misera, S (1991). Genetic analysis of pattern formation in the Arabidopsis embryo. Development 1, 27-38.

Liu, C.-M., Xu, Z.-H. and Chua, N.-H (1993). Auxin polar transport is essential for the establishment of bilateral symmetry during early plant embryogenesis. Plant Cell 5, 621-630.[Abstract/Free Full Text]

Long, J. A., Moan, E. I., Medford, J. I. and Barton, M. K (1996). Amember of the KNOTTED class of homeodomain proteins encoded by the STM gene of Arabidopsis. Nature 379, 66-69.[Medline]

Lukowitz, W., Mayer, U. and Jurgens, G (1996). Cytokinesis in the Arabidopsis embryo Involves the syntaxin-related KNOLLE gene product. Cell 84, 61-71.[Medline]

Mansfield, S. G. and Briarty, L. G (1991). Early embryogenesis in Arabidopsis thaliana. II. The developing embryo. Can. J. Bot 69, 461-476.

Mayer, U., Torres-Ruiz, R. A., Berleth, T., Misera, S. and Jurgens, G (1991). Mutations affecting body organization in the Arabidopsis embryo. Nature 353, 402-407.

Mayer, U., Buttner, G. and Jurgens, G (1993). Apical-basal pattern formation in the Arabidopsis embryo: studies on the role of the gnom gene. Development 117, 149-162.[Abstract]

Meinke, D. W (1991). Embryonic mutants of Arabidopsis thaliana. Dev. Gen 12, 382-392.

Michalczuk, L., Cooke, T. J. and Cohen, J. D (1992). Auxin levels at different stages of carrot somatic embryogenesis. Phytochemistry 31, 1097-1103.

Niedergang-Kamien, E. and Leopold, A. C (1959). The inhibition of transport of indoleacetic acid by phenoxyacetic acids. Physiol. Plantarum 12, 776-785.

Okada, K., Ueda, J., Komaki, M. K., Bell, C. J. and Shimura, Y (1991). Requirement of the auxin polar transport system in early stages of Arabidopsis floral bud formation. Plant Cell 3, 667-684.[Abstract/Free Full Text]

Przemeck, G. K., Mattsson, J., Hardtke, C. S., Sung, Z. R. and Berleth, T (1996). Studies on the role of the Arabidopsis gene MONOPTEROS in vascular development and plant cell axialization. Planta 200, 229-237.[Medline]

Ribniczky, D. M.,Ilic, N., Cohen, J. D. and Cook, T. J (1996). The effects of exogenous auxins on endogenous indole-3-acetic acid metabolism. Plant Physiol 112, 549-558.[Abstract]

Schiavone, F. M. and Cooke, T. J (1987). Unusual patterns of somatic embryogenesis in the domesticated carrot: developmental effects of exogenous auxins and auxin transport inhibitors. Cell Diff 21, 53-62.[Medline]

Shevell, D. E., Leu, W., Gillmor, C. S., Xia, G., Feldmann, K. A. and Chua, N (1994). EMB30 Is essential for normal cell division, cell expansion, and cell adhesion in Arabidopsis and encodes a protein that has similarity to Sec7. Cell 77, 1051-1062.[Medline]

Torres-Ruiz, R. A., Lohner, A. and Jurgens, G (1996). The GURKE gene is required for normal organization of the apical region in the Arabidopsis embryo. Plant J 10, 1005-1016.[Medline]

Vernon, D. M. and Meinke, D. W (1994). Embryonic transformation of the suspensor in twin , a polyembryonic mutant of Arabidopsis. Dev. Biol 165, 566-573.[Medline]

Zhang, J. Z. and Somerville,C. R (1997). Suspensor-derived polyembryony caused by altered expression of valyl-tRNA synthetase in the twn2 mutant of Arabidopsis. Proc. Natl. Acad. Sci. USA 94, 7349-7355.[Abstract/Free Full Text]




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