SA-responsive transcription factor GbMYB36 promotes flavonol accumulation in <i>Ginkgo biloba</i>
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Publisher
Maximum Academic Press
Subject
General Agricultural and Biological Sciences
Reference52 articles.
1. Jucá MM, Cysne Filho FMS, de Almeida JC, da Silva Mesquita D, de Moraes Barriga JR, et al. 2020. Flavonoids: biological activities and therapeutic potential. Natural Product Research 34:692−705
Jucá MM, Cysne Filho FMS, de Almeida JC, da Silva Mesquita D, de Moraes Barriga JR, et al. 2020. Flavonoids: biological activities and therapeutic potential. Natural Product Research 34:692−705
2. Nabavi SM, Šamec D, Tomczyk M, Milella L, Russo D, et al. 2020. Flavonoid biosynthetic pathways in plants: versatile targets for metabolic engineering. Biotechnology Advances 38:107316
Nabavi SM, Šamec D, Tomczyk M, Milella L, Russo D, et al. 2020. Flavonoid biosynthetic pathways in plants: versatile targets for metabolic engineering. Biotechnology Advances 38:107316
3. Shen N, Wang T, Gan Q, Liu S, Wang L, et al. 2022. Plant flavonoids: classification, distribution, biosynthesis, and antioxidant activity. Food Chemistry132531
Shen N, Wang T, Gan Q, Liu S, Wang L, et al. 2022. Plant flavonoids: classification, distribution, biosynthesis, and antioxidant activity. Food Chemistry132531
4. Tohge T, de Souza LP, Fernie AR. 2017. Current understanding of the pathways of flavonoid biosynthesis in mode l and crop plants. Journal of Experimental Botany 68:4013−28
Tohge T, de Souza LP, Fernie AR. 2017. Current understanding of the pathways of flavonoid biosynthesis in mode l and crop plants. Journal of Experimental Botany 68:4013−28
5. Ma D, Reichelt M, Yoshida K, Gershenzon J, Constabel CP. 2018. Two R2R3-MYB proteins are broad repressors of flavonoid and phenylpropanoid metabolism in poplar. The Plant Journal 96:949−65
Ma D, Reichelt M, Yoshida K, Gershenzon J, Constabel CP. 2018. Two R2R3-MYB proteins are broad repressors of flavonoid and phenylpropanoid metabolism in poplar. The Plant Journal 96:949−65
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