红花属
糖基化
生物化学
糖基转移酶
类黄酮
黄芪甲素
生物
转录组
糖苷
生物合成
类黄酮生物合成
基因
化学
植物
基因表达
传统医学
山奈酚
抗氧化剂
医学
作者
Chaoxiang Ren,Ziqing Xi,Bin Xian,Chao Chen,Xulong Huang,Huajuan Jiang,J Chen,Cheng Peng,Jin Pei
标识
DOI:10.1021/acs.jafc.3c05117
摘要
Safflower (Carthamus tinctorius L.) is a multipurpose economic crop that is distributed worldwide. Flavonoid glycosides are the main bioactive components in safflower, but only a few UDP-glycosyltransferases (UGT) have been identified. Three differentially expressed UGT genes related with the accumulation of 9 flavonoid O-glycosides were screened from metabolomics and transcriptome analysis. Safflower corolla protoplasts were used to confirm the glycosylation ability of UGT candidates in vivo for the first time. The astragalin content was significantly increased only when CtUGT3 was overexpressed. CtUGT3 also showed flavonoid 3-OH and 7-OH glycosylation activities in vitro. Molecular modeling and site-directed mutagenesis revealed that G15, T136, S276, and E384 were critical catalytic residues for the glycosylation ability of CtUGT3. These results demonstrate that CtUGT3 has a flavonoid 3-OH glycosylation function and is involved in the biosynthesis of astragalin in safflower. This study provides a reference for flavonoid biosynthesis genes research in nonmodel plants.
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