Metabolite Profiling and Transcriptome Analyses Provide Insights into the Flavonoid Biosynthesis in the Developing Seed of Tartary Buckwheat (Fagopyrum tataricum)

苦荞 类黄酮生物合成 转录组 类黄酮 生物 次生代谢物 基因表达谱 代谢组学 代谢物 次生代谢 生物合成 MYB公司 生物化学 槲皮素 化学 异鼠李素 代谢途径 基因 小桶 花青素 植物 基因表达 芦丁 生物信息学 抗氧化剂
作者
Hongyou Li,Qiuyu Lv,Chao Ma,Jingtao Qu,Fang Cai,Jiao Deng,Juan Huang,Ruikun Pan,Taoxiong Shi,Chen Qing-fu
出处
期刊:Journal of Agricultural and Food Chemistry [American Chemical Society]
卷期号:67 (40): 11262-11276 被引量:68
标识
DOI:10.1021/acs.jafc.9b03135
摘要

Tartary buckwheat (Fagopyrum tataricum) seeds are rich in flavonoids. However, the detailed flavonoid compositions and the molecular basis of flavonoid biosynthesis in tartary buckwheat seeds remain largely unclear. Here, we performed a combined metabolite profiling and transcriptome analysis to identify flavonoid compositions and characterize genes involved in flavonoid biosynthesis in the developing tartary buckwheat seeds. In total, 234 flavonoids, including 10 isoflavones, were identified. Of these, 80 flavonoids were significantly differential accumulation during seed development. Transcriptome analysis indicated that most structural genes and some potential regulatory genes of flavonoid biosynthesis were significantly differentially expressed in the course of seed development. Correlation analysis between transcriptome and metabolite profiling shown that the expression patterns of some differentially expressed structural genes and regulatory genes were more consistent with the changes in flavonoids profiles during seed development and promoted one SG7 subgroup R2R3-MYB transcription factors (FtPinG0009153900.01) was identified as the key regulatory gene of flavonoid biosynthesis. These findings provide valuable information for understanding the mechanism of flavonoid biosynthesis in tartary buckwheat seeds and the further development of tartary buckwheat health products.
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