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Koes, R., Verweij, W., and Quattrocchio, F. (2005). Flavonoids: a colorful mannequin for the regulation and evolution of biochemical pathways. Saslowsky, D. E., Warek, U., and Winkel, B. S. (2005). Nuclear localization of flavonoid enzymes in Arabidopsis. Preuss, A., Stracke, R., Weisshaar, B., Hillebrecht, A., וילות להשכרה Matern, U., and Martens, S. (2009). Arabidopsis thaliana expresses a second purposeful flavonol synthase. Stracke, R., Ishihara, H., Huep, G., Barsch, rent a villa (villaax.com)., Mehrtens, F., Niehaus, K., and Weisshaar, B. (2007). Differential regulation of intently associated R2R3-MYB transcription elements controls flavonol accumulation in different elements of the Arabidopsis thaliana seedling. Stracke, R., Jahns, O., Keck, M., Tohge, T., Niehaus, K., Fernie, A. R., and Weisshaar, B. (2010). Analysis of Production OF FLAVONOL GLYCOSIDES-dependent flavonol glycoside accumulation in Arabidopsis thaliana plants reveals MYB11-, MYB12- and MYB111-impartial flavonol glycoside accumulation. Toda, K., Kuroiwa, H., Senthil, K., Shimada, N., Aoki, T., Ayabe, S. I., Shimada, S., rent a villa Sakuta, M., Miyazaki, Y., and Takahashi, R. (2012). The soybean F3′H protein is localized to the tonoplast in the seed coat hilum. Yan, Y., Li, Z., and Koffas, M. A. (2008). High-yield anthocyanin biosynthesis in engineered Escherichia coli.

Zou, J., Rodriguez-Zas, S., Aldea, M., Li, M., Zhu, J., Gonzalez, D. O., Vodkin, L. O., Delucia, E., and Clough, S. J. (2005). Expression profiling soybean response to Pseudomonas syringae reveals new protection-related genes and speedy HR-specific downregulation of photosynthesis. Subramanian, S., Graham, M. Y., Yu, O., and Graham, T. L. (2005). RNA interference of soybean isoflavone synthase genes leads to silencing in tissues distal to the transformation site and to enhanced susceptibility to Phytophthora sojae. Miyahisa, I., Funa, N., Ohnishi, Y., Martens, S., Moriguchi, T., and Horinouchi, S. (2006). Combinatorial biosynthesis of flavones and flavonols in Escherichia coli. Katsuyama, Y., Matsuzawa, M., Funa, N., and Horinouchi, S. (2007b). In vitro synthesis of curcuminoids by sort III polyketide synthase from Oryza sativa. Katsuyama, Y., Miyahisa, I., Funa, N., and Horinouchi, S. (2007c). One-pot synthesis of genistein from tyrosine by coincubation of genetically engineered Escherichia coli and Saccharomyces cerevisiae cells. Tanaka, Y., Brugliera, F., and Chandler, S. (2009). Recent progress of flower color modification by biotechnology. Tanaka, Y., Sasaki, N., and Ohmiya, A. (2008). Biosynthesis of plant pigments: anthocyanins, betalains and carotenoids. Tanaka, Y., Brugliera, F., Kalc, G., Senior, M., Dyson, B., Nakamura, N., Katsumoto, Y., and Chandler, S. (2010). Flower coloration modification by engineering of the flavonoid biosynthetic pathway: practical perspectives.

Nakamura, N., Fukuchi-Mizutani, M., Suzuki, K., Miyazaki, K., and Tanaka, Y. (2006). RNAi suppression of the anthocyanidin synthase gene in Torenia hybrida yields white flowers with larger frequency and better stability than antisense and sense suppression. Shen, T., Wang, X. N., and Lou, H. X. (2009). Natural stilbenes: an overview. Li, X., Qin, J. C., Wang, Q. Y., Wu, X., Lang, C. Y., Pan, H. Y., Gruber, M. Y., and Gao, M. J. (2011). Metabolic engineering of isoflavone genistein in Brassica napus with soybean isoflavone synthase. Kim, S. S., Grienenberger, E., Lallemand, B., Colpitts, C. C., Kim, S. Y., Souza Cde, A., Geoffroy, P., Heintz, D., Krahn, D., Kaiser, M., Kombrink, E., Heitz, T., Suh, D. Y., Legrand, M., and Douglas, C. J. (2010). LAP6/POLYKETIDE SYNTHASE A and LAP5/POLYKETIDE SYNTHASE B encode hydroxyalkyl alpha-pyrone synthases required for pollen growth and sporopollenin biosynthesis in Arabidopsis thaliana. Owens, D. K., Alerding, A. B., Crosby, K. C., Bandara, A. B., Westwood, J. H., and Winkel, B. S. J. (2008). Functional evaluation of a predicted flavonol synthase gene family in Arabidopsis.

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