[1] |
Albert, N.W., Lewis, D.H., Zhang, H. et al. J. Exp. Bot., 60 (2009),pp. 2191-2202
|
[2] |
Bai, Y., Pattanaik, S., Patra, B. et al. Flavonoid-related basic helix-loop-helix regulators, NtAn1a and NtAn1b, of tobacco have originated from two ancestors and are functionally active Planta, 234 (2011),pp. 363-375
|
[3] |
Ban, Y., Honda, C., Hatsuyama, Y. et al. Isolation and functional analysis of a MYB transcription factor gene that is a key regulator for the development of red coloration in apple skin Plant Cell Physiol., 48 (2007),pp. 958-970
|
[4] |
Bariola, P.A., MacIntosh, G.C., Green, P.J. Plant Physiol., 119 (1999),pp. 331-342
|
[5] |
Bovy, A., de Vos, R., Kemper, M. et al. Plant Cell, 14 (2002),pp. 2509-2526
|
[6] |
Bradley, M.J., Davies, K.M., Bloor, S.J. et al. Plant J., 13 (1998),pp. 381-392
|
[7] |
Chen, Q.R., Vansant, G., Oades, K. et al. Diagnosis of the small round blue cell tumors using multiplex polymerase chain reaction J. Mol. Diagn., 9 (2007),pp. 80-88
|
[8] |
Christie, P.J., Alfenito, M.R., Walbot, V. Impact of low-temperature stress on general phenylpropanoid and anthocyanin pathways: enhancement of transcript abundance and anthocyanin pigmentation in maize seedlings Planta, 194 (1994),pp. 541-549
|
[9] |
Duan, K., Yi, K., Dang, L. et al. Plant J., 54 (2008),pp. 965-975
|
[10] |
Faragher, J.D. Temperature regulation of anthocyanin accumulation in apple skin J. Exp. Bot., 34 (1983),pp. 1291-1298
|
[11] |
Goodrich, J., Carpenter, R., Coen, E.S. A common gene regulates pigmentation pattern in diverse plant species Cell, 68 (1992),pp. 955-964
|
[12] |
Grotewold, E. The genetics and biochemistry of floral pigments Annu. Rev. Plant Biol., 57 (2006),pp. 761-780
|
[13] |
Hasegawa, H., Fukasawa-Akada, T., Okuno, T. et al. J. Plant Physiol., 158 (2001),pp. 71-78
|
[14] |
Horsch, R., Fry, J.E., Hoffmann, N.L. et al. A simple and general method for transferring genes into plants Science, 227 (1985),pp. 1229-1231
|
[15] |
Karageorgou, P., Manetas, Y. Tree Physiol., 26 (2006),pp. 613-621
|
[16] |
Lescot, M., Dehais, P., Thijs, G. et al. PlantCARE, a database of plant cis-acting regulatory elements and a portal to tools for in silico analysis of promoter sequences Nucleic Acids Res., 30 (2002),pp. 325-327
|
[17] |
Leyva, A., Jarillo, J.A., Salinas, J. et al. Plant Physiol., 108 (1995),pp. 39-46
|
[18] |
Li, H., Flachowsky, H., Fischer, T.C. et al. Planta, 226 (2007),pp. 1243-1254
|
[19] |
Li, S.J., Deng, X.M., Mao, H.Z. et al. Plant Cell Rep., 23 (2005),pp. 716-720
|
[20] |
Lloyd, A.M., Walbot, V., Davis, R.W. Science, 258 (1992),pp. 1773-1775
|
[21] |
Lo Piero, A.R., Puglisi, I., Rapisarda, P. et al. Anthocyanins accumulation and related gene expression in red orange fruit induced by low temperature storage J. Agric. Food Chem., 53 (2005),pp. 9083-9088
|
[22] |
Lo, S.C., Nicholson, R.L. Reduction of light-induced anthocyanin accumulation in inoculated sorghum mesocotyls. Implications for a compensatory role in the defense response Plant Physiol., 116 (1998),pp. 979-989
|
[23] |
Ludwig, S.R., Habera, L.F., Dellaporta, S.L. et al. Proc. Natl. Acad. Sci. USA, 86 (1989),pp. 7092-7096
|
[24] |
Martínez, A.E., Favret, E.A. Anthocyanin synthesis and lengthening in the first leaf of barley isogenic lines Plant Sci., 71 (1990),pp. 35-43
|
[25] |
Murashige, T., Skoog, F. A revised medium for rapid growth and bio-assays with tobacco tissue cultures Physiol. Plant, 15 (1962),pp. 473-497
|
[26] |
Pattanaik, S., Kong, Q., Zaitlin, D. et al. Isolation and functional characterization of a floral tissue-specific R2R3 MYB regulator from tobacco Planta, 231 (2010),pp. 1061-1076
|
[27] |
Ramsay, N.A., Walker, A.R., Mooney, M. et al. Plant Mol. Biol., 52 (2003),pp. 679-688
|
[28] |
Ray, H., Yu, M., Auser, P. et al. Plant Physiol., 132 (2003),pp. 1448-1463
|
[29] |
Romero, I., Teresa Sanchez-Ballesta, M., Maldonado, R. et al. J. Plant Physiol., 165 (2008),pp. 522-530
|
[30] |
Sharma, S.B., Dixon, R.A. Metabolic engineering of proanthocyanidins by ectopic expression of transcription factors in Arabidopsis thaliana Plant J., 44 (2005),pp. 62-75
|
[31] |
Shvarts, M., Borochov, A., Weiss, D. Physiol. Plant, 99 (1997),pp. 67-72
|
[32] |
Spelt, C., Quattrocchio, F., Mol, J.N. et al. Plant Cell, 12 (2000),pp. 1619-1632
|
[33] |
Steyn, W.J., Wand, S.J., Jacobs, G. et al. Evidence for a photoprotective function of low-temperature-induced anthocyanin accumulation in apple and pear peel Physiol. Plant, 136 (2009),pp. 461-472
|
[34] |
Velten, J., Cakir, C., Cazzonelli, C.I. PLoS ONE, 5 (2010),pp. 1-12
|
[35] |
Winkel-Shirley, B. Flavonoid biosynthesis. A colorful model for genetics, biochemistry, cell biology, and biotechnology Plant Physiol., 126 (2001),pp. 485-493
|
[36] |
Yoshida, S. A prefatory note on responses of plants to low temperature-stress J. Plant Res., 112 (1999),pp. 223-224
|
[37] |
Zhang, B., Hu, Z., Zhang, Y. et al. Plant Cell Rep., 31 (2012),pp. 281-289
|