柚皮素
类黄酮生物合成
经络
类黄酮
山茶
生物化学
黄烷酮
拟南芥
查尔酮异构酶
生物
脱落酸
酶
木犀草素
基因
黄酮类
生物合成
化学
山奈酚
柚皮苷
黄酮醇
查尔酮合酶
杨梅素
植物
基因表达
抗氧化剂
突变体
转录组
作者
Yuepeng Han,Keyi Huang,Yajun Liu,Tianming Jiao,Guoliang Ma,Yumei Qian,Peiqiang Wang,Xinlong Dai,Liping Gao,Tao Xia
出处
期刊:Genes
[Multidisciplinary Digital Publishing Institute]
日期:2017-10-31
卷期号:8 (11): 300-300
被引量:46
摘要
Flavonoids are major secondary metabolites in Camellia sinensis. Flavanone-3-hydroxylase (F3H) is a key enzyme in flavonoid biosynthesis in plants. However, its role in the flavonoid metabolism in C. sinensis has not been well studied. In this study, we cloned two F3Hs from C. sinensis, named CsF3Ha and CsF3Hb, where CsF3Ha containing 1107 bases encoded 368 amino acids, and CsF3Hb containing 1071 bases encoded 357 amino acids. Enzymatic activity analysis showed both recombinant CsF3H enzymes in Escherichia coli could convert naringenin and eriodictyol into dihydrokaempferol (DHK) and dihydroquercetin (DHQ), respectively. The expression profiles showed that CsF3Ha and CsF3Hb were highly expressed in the tender leaves of tea plants. Under different abiotic stresses, the two CsF3Hs were induced remarkably by ultraviolet (UV) radiation, sucrose, and abscisic acid (ABA). In the seeds of CsF3Hs transgenic Arabidopsis thaliana, the concentration of most flavonol glycosides and oligomeric proanthocyanidins increased significantly, while the content of monocatechin derivatives decreased. The present study revealed that CsF3Hs played critical roles in flavonoid biosynthesis in tea plants.
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