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Flower development of Lilium longiflorum - The Lilium information ...

Flower development of Lilium longiflorum - The Lilium information ...

Chapter 3 kanamycin.

Chapter 3 kanamycin. Surviving seedlings were transferred to soil and acclimatised in greenhouse conditions. Self-pollinated T2 offspring was sown directly on soil in order to confirm transgenic phenotype segregation. Acknowledgements The authors are thankful to Antonio Chalfun Jr. for his assistance with Arabidopsis transformation, and to Dr. Richard Immink and Stefan de Folter for the helpful discussions throughout this work. This work was supported by CNPq, the Science and Technology Development Organ of the Brazilian Government (200851/98-5 GDE) and by the Dutch Ministry of Agriculture, Nature Management and Fishery (DWK 364). REFERENCES Alvarez-Buylla ER, Liljegren SJ, Pelaz S, Gold SE, Burgeff C, Ditta GS, Vergara-Silva F, Yanofsky MF (2000) MADS-box gene evolution beyond flowers: expression in pollen, endosperm, guard cells, roots and trichomes. Plant J 24: 457-466 Angenent GC, Busscher M, Franken J, Mol JNM, van Tunen AJ (1992) Differential Expression of two MADS box genes in wild-type and mutant petunia flowers. Plant Cell 4: 983-993 Angenent GC, Franken J, Busscher M, van Dijken A, van Went JL, Dons HJM, van Tunen AJ (1995) A novel class of MADS box genes is involved in ovule development in Petunia. Plant Cell 7: 1569-1582 Causier B, Kieffer M, Davies B (2002) MADS-box genes reach maturity. Science 296: 275- 276 Clough SJ, Bent AF (1998) Floral dip: a simplified method for Agrobacterium-mediated transformation of Arabidopsis thaliana. Plant J 16: 735-743 Coen ES, Meyerowitz EM (1991) The war of the whorls: genetic interactions controlling flower development. Nature 353: 31-37 Dornelas MC, Rodriguez APM (2001) A genomic approach to elucidating grass flower development. Genet Mol Biol 24: 69-76 Favaro R, Immink RGH, Ferioli V, Bernasconi B, Byzova M, Angenent GC, Kater M, Colombo L (2002) Ovule-specific MADS-box proteins have conserved protein-protein interactions in monocot and dicot plants. Mol Genet Genomics 268: 152-159 Ferrario S, Immink RGH, Shchennikova A, Busscher-Lange J, Angenent GC (2003) The MADS-box gene FBP2 is required for SEPALLATA function in petunia. Plant Cell 15: 914-925 Flanagan CA; Ma, H (1994) Spatially and temporally regulated expression of the MADS-box gene AGL2 in wild-type and mutant Arabidopsis flowers. Plant Mol Biol 26: 581-595 46

Isolation and Characterisation of LLSEP3 Fornara F, Marziani G, Mizzi L, Kater M, Colombo L (2003) MADS-box genes controlling flower development in rice. Plant Biol 5: 16-22 Gietz RD, Woods RA (2002) Transformation of yeast by lithium acetate/single-stranded carrier DNA/polyethylene glycol method. Method Enzymol 350: 87-96 Goto K, Kyozuka J, Bowman JL (2001) Turning floral organs into leaves, leaves into floral organs. Curr Opin Genet Dev 11: 449-456 Greco R, Stagi L, Colombo L, Angenent GC, Sari-Gorla M, Pè ME (1997) MADS-box genes expressed in developing inflorescences of rice and sorghum. Mol Gen Genet 253: 615-623 Honma T, Goto K (2001) Complexes of MADS-box proteins are sufficient to convert leaves into floral organs. Nature 409: 525-529 Immink RGH, Angenent GC (2002) Transcription factors do it together: the hows and whys of studying protein-protein interactions. Trends Plant Sci 7: 531-534 Immink RGH, Ferrario S, Busscher-Lange J, Kooiker M, Busscher M, Angenent GC (2003) Analysis of the petunia MADS-box transcription factor family. Mol Genet Genomics 268: 598-606 Jack T (2001) Relearning our ABCs: new twists on an old model. Trends Plant Sci 6:310-316 Jeon J-S, Jang S, Lee S, Nam J, Kim C, Lee S-H, Chung Y-Y, Kim S-R, Lee YH, Cho Y- G, An G (2000) leafy hull sterile1 is a homeotic mutation in a rice MADS-box gene affecting rice flower development. Plant Cell 12: 871-884 Kang H-G, An G (1997) Isolation and characterization of rice MADS-box gene belonging to the AGL2 gene family. Mol Cell 7: 45-51 Kang, H-G, Jang S, Chung J-E, Cho Y-G, An G (1997) Characterization of two rice MADS-box genes that control flowering time. Mol Cell 7: 559-566 Mandel MA, Yanofsky MF (1998) The Arabidopsis AGL9 MADS-box gene is expressed in young flower primordia. Sex Plant Reprod 11: 22-28 Mattanovich D, Rüker F, Machado A C, Laimer M, Regner F, Steinkellner H, Himmler G, Katinger H (1989) Efficient transformation of Agrobacterium spp. by electroporation. Nucleic Acids Res 17: 6747 Mena M, Mandel MA, Lerner DR, Yanofsky MF, Schmidt RJ (1995) A characterization of the MADS-box gene family in maize. Plant J 8: 845-854 Murashige T, Skoog F (1962) A revised medium for rapid growth and bioassays with tobacco tissue cultures. Physiol Plantarum 15: 473-479 Page RDM (1996) TREEVIEW: an application to display phylogenetic trees on personal computers. Comput Appl Biosci 12: 357-358 Parenicová L, Folter S de, Kieffer M, Horner DS, Favalli C, Busscher J, Cook HE, Ingram RM, Kater MM, Davies B, Angenent GC, Colombo L (2003) Molecular and phylogenetic analyses of the complete MADS-box transcription factor family in Arabidopsis: new openings to the MADS world. Plant Cell 15: 1538-1551 Pelaz S, Ditta GS, Baumann E, Wisman E, Yanofsky MF (2000) B and C floral organ identity require SEPALLATA MADS-box genes. Nature 405: 200-203 47

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