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The Physiology of Flowering Plants - KHAM PHA MOI

The Physiology of Flowering Plants - KHAM PHA MOI

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316 REPRODUCTIVE DEVELOPMENT(gluconeogenesis), which fuels further growth, and in due coursephotosynthetic activity is developed.At this point we have come full circle. <strong>The</strong> seedling will now growvegetatively and eventually enter the reproductive phase once more.ReferencesBoss, P. K. & Thomas, M. R. (2002). Association <strong>of</strong> dwarfism and floral inductionwith a grape ‘green revolution’ mutation. Nature, 416, 847–50.Burn, J. E., Bagnall, D. J., Metzger, J. D., Dennis, E. S. & Peacock, W. J. (1993).DNA methylation, vernalization, and the initiation <strong>of</strong> flowering. Proceedings<strong>of</strong> the National Academy <strong>of</strong> Sciences (USA), 90, 287–91.Coen, E. (2001). Goethe and the ABC model <strong>of</strong> flower development. ComptesRendus de l’Académie des Sciences, Series III, Sciences de la Vie – Life Sciences, 324,523–30.Coen, E. S. & Meyerowitz, E. M. (1991) War <strong>of</strong> the whorls: genetic interactionscontrolling flower development. Nature, 353, 31–7.Colasanti, J. & Sundaresan, V. (2000). ‘Florigen’ enters the molecular age:long-distance signals that cause plants to flower. Trends in BiochemicalSciences, 25, 236–40.Coupland, G. (1995). Flower development: leafy blooms in aspen. Nature, 377,482–3.Cubas, P., Vincent, C. & Coen, E. (1999). An epigenetic mutation responsiblefor natural variation in floral symmetry. Nature, 401, 157–61.Cumming, B. G., Hendricks, S. B. & Borthwick, H. A. (1965). Rhythmic floweringresponses and phytochrome changes in a selection <strong>of</strong> Chenopodiumrubrum. Canadian Journal <strong>of</strong> Botany, 43, 825–53.Debeaujon, I. & Koornneef, M. (2000). Gibberellin requirement for Arabidopsisseed germination is determined both by testa characteristics and embryonicabscisic acid. Plant <strong>Physiology</strong>, 122, 415–24.Farnsworth, E. J. & Farrant, J. M. (1998). Reductions in abscisic acid are linkedwith viviparous reproduction in mangroves. American Journal <strong>of</strong> Botany, 85,760–769.Finnegan, E. J., Genger, R. K., Kovac, K., Peacock, W. J. & Dennis, E. S. (1998).DNA methylation and the promotion <strong>of</strong> flowering by vernalization.Proceedings <strong>of</strong> the National Academy <strong>of</strong> Sciences (USA), 95, 5824–9.Franklin-Tong, V. E. (1999). Signaling and the modulation <strong>of</strong> pollen tubegrowth. <strong>The</strong> Plant Cell, 11, 727–38.Gillaspy, G., Ben-David, H. & Gruissem, W. (1993). Fruits: a developmentalperspective. <strong>The</strong> Plant Cell, 5, 1439–51.Goldberg, R. G., Belas, T. P. & Sanders, P. M. (1993). Anther development: basicprinciples and practical applications. <strong>The</strong> Plant Cell, 5, 1217–29.Harborne, J. B. (1994). Introduction to Ecological Biochemistry. London: AcademicPress.Honma, T. & Goto, K. (2001). Complexes <strong>of</strong> MADS-box proteins are sufficientto convert leaves into floral organs. Nature, 409, 525–9.Mariani, C., De Beuckeleer, M., Truettner, J., Leemans, J. & Goldberg, R. B.(1990). Induction <strong>of</strong> male sterility in plants by a chimaeric ribonucleasegene. Nature, 347, 737–41.McClung, C. R. (2001). Circadian rhythms in plants. Annual Review <strong>of</strong> Plant<strong>Physiology</strong> and Plant Molecular Biology, 52, 139–62.

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