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Therapeutic Methods and Therapies TCIM
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Mol Genet Genomics ; 296(4): 953-970, 2021 Jul.
Article in English | MEDLINE | ID: mdl-34009475

ABSTRACT

Flavonoids belong to polyphenolic compounds, which are widely distributed in plants and have rich functions. Euryale ferox Salisb is an important medicinal and edible homologous plant, and flavonoids are its main functional substances. However, the biosynthesis mechanism of flavonoids in E. ferox is still poorly understood. To explore the dynamic changes of flavonoid biosynthesis during the development of E. ferox seeds, the targeted flavonoid metabolome was determined. A total of 129 kinds of flavonoid metabolites were characterized in the seeds of E. ferox, including 11 flavanones, 8 dihydroflavanols, 16 flavanols, 29 flavones, 3 isoflavones, 12 anthocyanins, 29 flavonols, 6 flavonoid carbonosides, 3 chalcones and 13 proanthocyanidins. The relative content of flavonoid metabolites accumulated continuously during the development of E. ferox seeds, and reached the highest at T30. In transcriptome, the expression of key genes in the flavonoid pathway, such as PAL, CHS, F3H, FLS, ANS, was highest in T30, which was consistent with the trend of metabolites. Six candidate transcription factors (R2R3MYBs and bHLHs) may affect the biosynthesis of flavonoids by regulating the expression of structural genes. Furthermore, transcriptome analysis and exogenous ABA and SA treatment demonstrated that ABA (PYR1, PP2Cs, SnRK2s) and SA (NPR1) are involved in the positive regulation of flavonoid biosynthesis. This study clarified the differential changes of flavonoid metabolites during the development of E. ferox seeds, confirmed that ABA and SA promote the synthesis of flavonoids, and found key candidate genes that are involved in the regulation of ABA and SA in the positive regulation of flavonoid biosynthesis.


Subject(s)
Flavonoids/biosynthesis , Metabolic Networks and Pathways/genetics , Nymphaeaceae , Gene Expression Profiling , Gene Expression Regulation, Developmental , Gene Expression Regulation, Plant , Metabolome/genetics , Metabolomics , Nymphaeaceae/genetics , Nymphaeaceae/growth & development , Nymphaeaceae/metabolism , Plant Proteins/genetics , Plant Proteins/metabolism , Plants, Medicinal/genetics , Plants, Medicinal/growth & development , Plants, Medicinal/metabolism , Seeds/genetics , Seeds/growth & development , Seeds/metabolism , Transcription Factors/genetics , Transcription Factors/metabolism , Transcriptome
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