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Ball, E. A (1980). Regeneration from isolated portions of the shoot apex of Trachymene coerulea R. C. Grah. Ann. Bot 45, 103-112.[Abstract/Free Full Text]

Baskin, T. I., Busby, C. H., Fowke, L. C., Sammut, M. and Gubler, F (1992). Improvements in immunostaining samples embedded in methacrylate: Localization of microtubules and other antigens throughout developing organs in plants of diverse taxa. Planta 187, 405-413.

Blakely, L. M., Blakely, R. M., Colowit, P. M. and Elliott, D. S (1988). Experimental studies on lateral root formation in radish seedling roots. II. Analysis of the dose-response to exogenous auxin. Plant Physiol 87, 414-419.[Abstract/Free Full Text]

Bossinger, G., Maddaloni, M., Motto, M. and Salamini, F (1992). Formation and cell lineage patterns of the shoot apex of maize. Plant J 2, 311-320.

Cheng, J., Seeley, K. A. and Sung, Z. R (1995). Rml1 and rml2 , Arabidopsis genes required for cell proliferation at the root tip. Plant Physiol 107, 365-376.[Abstract]

Christianson, M. L. and Warnick, D. A (1983). Competence and determination in the process of in vitro shoot organization. Dev. Biol 95, 288-293.[Medline]

Clowes, F. A. L (1981). The difference between open and closed meristems. Ann. Bot 48, 761-767.[Abstract/Free Full Text]

Dolan, L., Janmaat, K., Willemsen, V., Linstead, P., Poethig, S., Roberts, K. andScheres, B (1993). Cellular organization of the Arabidopsisthaliana root. Development 119, 71-84.[Abstract]

Ferreiera, P. C. G., Hemerly, A. S., de Almeida Engler, J., Van Montagu, M., Engler, G. and Inze, D (1994). Developmental expression of the Arabidopsis cyclin gene cyc1At. Plant Cell 6, 1763-1774.[Abstract/Free Full Text]

Lloret, P. G., Casero, P. J., Pulgarin, A. and Navascues, J (1989). The behavior of two cell populations in the pericycle of Allium cepa , Pisum sativum , and Daucus carota during early lateral root development. Ann. Bot 63, 465-475.[Abstract/Free Full Text]

MacLeod, R. D. and Thompson, A (1979). Development of lateral root primordia in Vicia faba , Pisum sativum , Zea mays and Phaseolus vulgaris : rates of primordium formation and cell doubling times. Ann. Bot 44, 435-449.[Abstract/Free Full Text]

Scheres, B., Wolkenfelt, H., Willemsen, V., Terlouw, M., Lawson, E., Dean, C. and Weisbeek, P (1994). Embryonic origin of the Arabidopsis primary root and root meristem initials. Development 120, 2475-2487.[Abstract/Free Full Text]




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