类黄酮生物合成
类黄酮
MYB公司
转录组
代谢组学
生物
生物合成
基因
结构基因
转录因子
生物化学
植物
基因表达
生物信息学
突变体
抗氧化剂
作者
Yilin Chen,Wenwen Li,Kai Jia,Liao Kang,Liqiang Liu,Guoquan Fan,Shikui Zhang,Yatong Wang
标识
DOI:10.3389/fpls.2023.1210309
摘要
Flavonoids, as secondary metabolites in plants, play important roles in many biological processes and responses to environmental factors.Apricot fruits are rich in flavonoid compounds, and in this study, we performed a combined metabolomic and transcriptomic analysis of orange flesh (JN) and white flesh (ZS) apricot fruits.A total of 222 differentially accumulated flavonoids (DAFs) and 15855 differentially expressed genes (DEGs) involved in flavonoid biosynthesis were identified. The biosynthesis of flavonoids in apricot fruit may be regulated by 17 enzyme-encoding genes, namely PAL (2), 4CL (9), C4H (1), HCT (15), C3'H (4), CHS (2), CHI (3), F3H (1), F3'H (CYP75B1) (2), F3'5'H (4), DFR (4), LAR (1), FLS (3), ANS (9), ANR (2), UGT79B1 (6) and CYP81E (2). A structural gene-transcription factor (TF) correlation analysis yielded 3 TFs (2 bHLH, 1 MYB) highly correlated with 2 structural genes. In addition, we obtained 26 candidate genes involved in the biosynthesis of 8 differentially accumulated flavonoids metabolites in ZS by weighted gene coexpression network analysis. The candidate genes and transcription factors identified in this study will provide a highly valuable molecular basis for the in-depth study of flavonoid biosynthesis in apricot fruits.
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