LED REGULATE FLOWERING OF PHOTOPERIODIC ORNAMENTAL CROPS

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Hirai, T., W. Amaki, and H. Watanabe. 2005. Action of blue or red monochromatic light on stem internodal growth depends on plant species. Acta Hort. 711:345−350. Hirose, F., N. Inagaki, A. Hanada, S. Yamaguchi, Y. Kamiya, A. Miyao, H. Hirochika, and M. Takano. 2012. Cryptochrome and phytochrome cooperatively but independently reduce active gibberellin content in rice seedlings under light irradiation. Plant Cell Physiol. 53:1570−1582. Ho, C.H., C.M. Yang, and C.L. Hsiao. 2012. Effects of nighttime lighting with specific wavebands on flowering of chrysanthemum. Crop, Environ. & Bioinformatics 9:265−277. Hong, S.C., S.I. Kwon, M.K. Kim, M.J. Chae, G.B. Jung, and K.H. So. 2013. Flowering control by using red light of chrysanthemum. Korean J. Environ. Agr. 32:123−127. Ishikawa, R., T. Shinomura, M. Takano, and K. Shimamoto. 2009. Phytochrome dependent quantitative control of Hd3a transcription is the basis of the night break effect in rice flowering. Genes Genet. Syst. 84:179−184. Islam, M.A., G. Kuwar, J.L. Clarke, D.R. Blystad, H.R. Gislerød, J.E. Olsen, and S. Torre. 2012. Artificial light from light emitting diodes (LEDs) with a high portion of blue light results in shorter poinsettias compared to high pressure sodium (HPS) lamps. Scientia Hort. 147:136−143. Jackson, S.D. 2009. Plant responses to photoperiod. New Phytologist 181:517–531. Jeong, S.W., S.W. Hogewoning, and W. van Ieperen. 2014. Responses of supplemental blue light on flowering and stem extension growth of cut chrysanthemum. Scientia Hort. 165:69−74. Jeong, S.W., S. Park, J.S. Jin, O.N. Seo, G.S. Kim, Y.H. Kim, H. Bae, G. Lee, S.T. Kim, W.S. Lee, and S.C. Shin. 2012. Influences of four different light-emitting diode lights on flowering and polyphenol variations in the leaves of chrysanthemum (Chrysanthemum morifolium). J. Agr. Food Chem. 60:9793−9800. Kojima, S., Y. Takahashi, Y. Kobayashi, L. Monna, T. Sasaki, T. Araki, and M. Yano. 2002. Hd3a, a rice ortholog of the Arabidopsis FT gene, promotes transition to flowering downstream of Hd1 under short-day conditions. Plant Cell Physiol. 43:1096−1105. Kurepin, L.V., S.H. Joo, S.K. Kim, R.P. Pharis, and T.G. Back. 2012. Interaction of brassinosteroids with light quality and plant hormones in regulating shoot growth of young sunflower and Arabidopsis seedlings. J. Plant Growth Regulat. 31:156−164. Lane, H.C., H.M. Cathey, and L.T. Evans. 1965. The dependence of flowering in several long- day plants on the spectral composition of light extending the photoperiod. Amer. J. Bot. 52:1006−1014. 24

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