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Cloning of a MADS Box Gene (GhMADS3) from Cotton and Analysis of Its Homeotic Role in Transgenic Tobacco

Yulong Guo Qinlong Zhu Shangyong Zheng Mingyang Li

Yulong Guo, Qinlong Zhu, Shangyong Zheng, Mingyang Li. Cloning of a MADS Box Gene (GhMADS3) from Cotton and Analysis of Its Homeotic Role in Transgenic Tobacco[J]. Journal of Genetics and Genomics, 2007, 34(6): 527-535. doi: 10.1016/S1673-8527(07)60058-7
Citation: Yulong Guo, Qinlong Zhu, Shangyong Zheng, Mingyang Li. Cloning of a MADS Box Gene (GhMADS3) from Cotton and Analysis of Its Homeotic Role in Transgenic Tobacco[J]. Journal of Genetics and Genomics, 2007, 34(6): 527-535. doi: 10.1016/S1673-8527(07)60058-7

doi: 10.1016/S1673-8527(07)60058-7

Cloning of a MADS Box Gene (GhMADS3) from Cotton and Analysis of Its Homeotic Role in Transgenic Tobacco

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    Corresponding author: E-mail address: limy@swu.edu.cn (Mingyang Li)
  • Present address. College of Life Science and Chemical Engineering, Huaiyin Institute of Technology, Huai'an, Jiangsu Province.
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    Present address. College of Life Science and Chemical Engineering, Huaiyin Institute of Technology, Huai'an, Jiangsu Province.
  • [1] Schwarz-Sommer, Z, Huijser, et al. Genetic control of flower development homeotic genes in Antirrhinum majus Science, 250 (1990),p. 931936
    [2] Apple, MS, Paoenicov, et al. Molecular and phylogenetic analyses of the complete MADS-Box transcription factor family in Arabidopsis: new openings to the MADS world Plant Cell, 15 (2003),pp. 1538-1551
    [3] Zhang, HM, Forde, et al. An Arabidopsis MADSbox gene that controls nutrient-induced changes in root architecture Science, 279 (1998),pp. 407-409
    [4] Vrebalov, J, Ruezinsky, et al. MADS-box gene necessary for fruit ripening at the tomato Ripening-inhibitor (Rin) locus Science, 296 (2002),pp. 343-346
    [5] Mauney, JR
    [6] Guo, YL, Xue, et al. Analysis of floral morphology of a cotton homeotic variant (chv1) Acta Biologiae Experimentalis Sinica, 36 (2003),pp. 202-208
    [7] Zheng, SY, Guo, et al. Cloning of a MADS box gene (GhMADS1) from cotton (Gossypium hirsutum L.) Acta Genetic Sinica, 31 (2004),pp. 1136-1141
    [8] Thompson, JD, Gibson, et al. The ClustalX windows interface: flexible strategies for multiple sequence alignment aided by quality analysis tools Nucleic Acids Res., 25 (1997),pp. 4876-4882
    [9] Page, RDM TREEVIEW: An application to display phylogenetic trees on personal computers Comp Appl Biosci., 12 (1996),pp. 357-358
    [10] Horsch, RB, Fry, et al. A simple and general method for transferring genes into plants Science, 227 (1985),pp. 1229-1231
    [11] Chaidamsari, T, Samanhudi, et al. Isolation and characterization of an AGAMOUS homologue from cocoa. Plant Sci., 170 (2006),pp. 968-975
    [12] Kramer, EM, Jaramillo, et al. Patterns of gene duplication and functional evolution during the diversification of the AGAMOUS subfamily of MADS box genes in angiosperms Genetics, 166 (2004),pp. 1011-1023
    [13] Theissen, G, Becker, et al. A short history of MADSbox genes in plants Plant Mol Biol., 42 (2000),p. 115149
    [14] Yanofsky, MF, Ma, et al. The protein encoded by the Arabidopsis gene AGAMOUS resembles transcription factors Nature, 346 (1990),pp. 35-39
    [15] Mandel, MA, Bowman, et al. Manipulation of flower structure in transgenic tobacco Cell, 71 (1992),pp. 133-143
    [16] Mizukami, Y, Ma, et al. Ectopic expression of the floral homeotic gene AGAMOUS in transgenic Arabidopsis plants alters floral organ identity Cell, 71 (1992),p. 119131
    [17] Kitahara, K, Hibino, et al. Ectopic expression of the rose AGAMOUS-like MADS-box genes ‘MASAKO C1 and D1’ causes similar homeotic transformation of sepal and petal in Arabidopsis and sepal in Torenia Plant Sci., 166 (2004),pp. 1245-1252
    [18] Benedito, VA, Visser, et al. Ectopic expression of LLAG1, an AGAMOUS homologue from lily (Lilium longiflorum Thunb.) causes floral homeotic modifications in Arabidopsis J Exp Bot., 55 (2004),p. 13911399
    [19] Lemmetyinen, J, Hassinen, et al. Functional characterization of SEPALLATA3 and AGAMOUS orthologues in silver birch Physiol Plant, 121 (2004),pp. 149-162
    [20] Boss, PK, Vivier, et al. A cDNA from grapevine (Vitis vinifera L.), which shows homology to AGAMOUS and SHATTERPROOF, is not only expressed in flowers but also throughout berry development Plant Mol Biol., 45 (2001),pp. 541-553
    [21] Theissen, G Development of floral organ identity: stories from the MADS house Curr Opin Plant Biol., 4 (2001),pp. 475-485
    [22] Pelaz, S, Ditta, et al. Nature, 405 (2000),pp. 200-203
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出版历程
  • 收稿日期:  2006-09-17
  • 录用日期:  2006-11-22
  • 网络出版日期:  2007-06-27
  • 刊出日期:  2007-06-20

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