College of Agriculture, Shanxi Agricultural University, Taigu, Shanxi, China.
College of Life Sciences, Shanxi Agricultural University, Taigu, Shanxi, China.
Plant Physiol Biochem. 2020 Nov;156:323-332. doi: 10.1016/j.plaphy.2020.09.021. Epub 2020 Sep 19.
Purple-fleshed sweetpotato (PFSP) accumulates high amounts of anthocyanins that are beneficial to human health. Although biosynthesis of such secondary metabolites has been well studied in aboveground organs of many plants, the mechanisms underlying anthocyanin accumulation in underground tuberous roots of sweetpotato are less understood. To identify genes and metabolites involved in anthocyanin accumulation in sweetpotato, we performed comparative transcriptomic and metabolomic analysis of (PFSP) and white-fleshed sweetpotato (WFSP). Anthocyanin-targeted metabolome analysis revealed that delphinidin, petunidin, and rosinidin were the key metabolites conferring purple pigmentation in PFSP as they were highly enriched in PFSP but absent in WFSP. Transcriptomic analysis identified 358 genes that were potentially implicated in multiple pathways for the biosynthesis of anthocyanins. Although most of the genes were previously known for their roles in anthocyanin biosynthesis, we identified 26 differentially expressed genes that are involved in Aux/IAA-ARF signaling. Gene-metabolite correlation analysis also revealed novel genes that are potentially involved in the anthocyanin accumulation in sweetpotato. Taken together, this study provides insights into the genes and metabolites underlying anthocyanin enrichment in underground tuberous roots of sweetpotato.
紫肉甘薯(PFSP)积累了大量对人体健康有益的花青素。虽然许多植物地上器官中此类次生代谢物的生物合成已经得到了很好的研究,但对甘薯地下块根中花青素积累的机制了解较少。为了鉴定与甘薯花青素积累相关的基因和代谢物,我们对(PFSP)和白肉甘薯(WFSP)进行了比较转录组和代谢组分析。花青素靶向代谢组分析表明,矢车菊素、锦葵色素和飞燕草素是赋予 PFSP 紫色的关键代谢物,因为它们在 PFSP 中高度富集,但在 WFSP 中不存在。转录组分析鉴定了 358 个可能参与多种花青素生物合成途径的基因。尽管大多数基因以前就已知在花青素生物合成中发挥作用,但我们鉴定了 26 个差异表达基因,它们参与Aux/IAA-ARF 信号。基因-代谢物相关性分析还揭示了一些新的基因,它们可能参与了甘薯中花青素的积累。总之,本研究为甘薯地下块根中花青素富集的基因和代谢物提供了深入的了解。