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Results: 1-6 |
Results: 6

Authors: Lepri, O Bassie, L Safwat, G Thu-Hang, P Trung-Nghia, P Holtta, E Christou, P Capell, T
Citation: O. Lepri et al., Over-expression of a cDNA for human ornithine decarboxylase in transgenic rice plants alters the polyamine pool in a tissue-specific manner, MOL GENET G, 266(2), 2001, pp. 303-312

Authors: Sivamani, E Bassie, L Christou, P Capell, T
Citation: E. Sivamani et al., Development of a novel gene transfer system for Cajanus cajan and expression of a monocot arginine decarboxylase cDNA in transformed cell lines, PL PHYS BIO, 39(7-8), 2001, pp. 575-582

Authors: Bassie, L Noury, M Wisniewski, JP Topsom, L Christou, P Capell, T
Citation: L. Bassie et al., Transgenic cell lines as a useful tool to study the biochemistry of down-regulation of an endogenous rice gene using a heterologous diamine-oxidase cDNA, PL PHYS BIO, 38(10), 2000, pp. 729-737

Authors: Bassie, L Noury, M Lepri, O Lahaye, T Christou, P Capell, T
Citation: L. Bassie et al., Promoter strength influences polyamine metabolism and morphogenic capacityin transgenic rice tissues expressing the oat adc cDNA constitutively, TRANSGEN RE, 9(1), 2000, pp. 33-42

Authors: Noury, M Bassie, L Lepri, O Kurek, I Christou, P Capell, T
Citation: M. Noury et al., A transgenic rice cell lineage expressing the oat arginine decarboxylase (adc) cDNA constitutively accumulates putrescine in callus and seeds but notin vegetative tissues, PLANT MOL B, 43(4), 2000, pp. 537-544

Authors: Capell, T Bassie, L Topsom, L Hitchin, E Christou, P
Citation: T. Capell et al., Simultaneous reduction of the activity of two related enzymes, involved inearly steps of the polyamine biosynthetic pathway, by a single antisense cDNA in transgenic rice, MOL G GENET, 264(4), 2000, pp. 470-476
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