School of Life Sciences, Guizhou Normal University, Guiyang, 550025, China.
State Key Laboratory of Functions and Applications of Medicinal Plants, Guizhou Medical University, Guiyang, 550014, China.
Sci Rep. 2021 Aug 2;11(1):15596. doi: 10.1038/s41598-021-95071-x.
Dihydroquercetin (DHQ), an extremely low content compound (less than 3%) in plants, is an important component of dietary supplements and used as functional food for its antioxidant activity. Moreover, as downstream metabolites of DHQ, an extremely high content of dihydromyricetin (DHM) is up to 38.5% in Ampelopsis grossedentata. However, the mechanisms involved in the biosynthesis and regulation from DHQ to DHM in A. grossedentata remain unclear. In this study, a comparative transcriptome analysis of A. grossedentata containing extreme amounts of DHM was performed on the Illumina HiSeq 2000 sequencing platform. A total of 167,415,597 high-quality clean reads were obtained and assembled into 100,584 unigenes having an N50 value of 1489. Among these contigs, 57,016 (56.68%) were successfully annotated in seven public protein databases. From the differentially expressed gene (DEG) analysis, 926 DEGs were identified between the B group (low DHM: 210.31 mg/g) and D group (high DHM: 359.12 mg/g) libraries, including 446 up-regulated genes and 480 down-regulated genes (B vs. D). Flavonoids (DHQ, DHM)-related DEGs of ten structural enzyme genes, three myeloblastosis transcription factors (MYB TFs), one basic helix-loop-helix (bHLH) TF, and one WD40 domain-containing protein were obtained. The enzyme genes comprised three PALs, two CLs, two CHSs, one F3'H, one F3'5'H (directly converts DHQ to DHM), and one ANS. The expression profiles of randomly selected genes were consistent with the RNA-seq results. Our findings thus provide comprehensive gene expression resources for revealing the molecular mechanism from DHQ to DHM in A. grossedentata. Importantly, this work will spur further genetic studies about A. grossedentata and may eventually lead to genetic improvements of the DHQ content in this plant.
二氢槲皮素(DHQ)是植物中含量极微的化合物(<3%),作为抗氧化活性的功能食品,它是膳食补充剂的重要组成部分。此外,二氢杨梅素(DHM)是 DHQ 的下游代谢物,在显齿蛇葡萄中含量极高,可达 38.5%。然而,DHQ 到 DHM 在显齿蛇葡萄中的生物合成和调控机制尚不清楚。在这项研究中,我们对含有极高 DHM 含量的显齿蛇葡萄进行了比较转录组分析,使用 Illumina HiSeq 2000 测序平台进行。共获得 167415597 条高质量清洁读数,并组装成 100584 个具有 N50 值为 1489 的 unigenes。在这些拼接中,57016(56.68%)个成功注释到七个公共蛋白质数据库中。从差异表达基因(DEG)分析中,在 B 组(低 DHM:210.31mg/g)和 D 组(高 DHM:359.12mg/g)文库之间鉴定出 926 个 DEG,包括 446 个上调基因和 480 个下调基因(B 与 D 相比)。获得了十个结构酶基因、三个髓系细胞瘤转录因子(MYB TFs)、一个碱性螺旋-环-螺旋(bHLH)TF 和一个 WD40 结构域蛋白的黄酮类(DHQ、DHM)相关 DEG。酶基因包括三个 PALs、两个 CLs、两个 CHSs、一个 F3'H、一个 F3'5'H(直接将 DHQ 转化为 DHM)和一个 ANS。随机选择基因的表达谱与 RNA-seq 结果一致。我们的发现为揭示显齿蛇葡萄中 DHQ 到 DHM 的分子机制提供了全面的基因表达资源。重要的是,这项工作将激发对显齿蛇葡萄的进一步遗传研究,并最终可能导致该植物中 DHQ 含量的遗传改良。