Key Laboratory of Plant Resources/Beijing Botanical Garden, Institute of Botany, Chinese Academy of Sciences, Beijing, China.
University of the Chinese Academy of Sciences, Beijing, China.
J Exp Bot. 2019 Sep 24;70(18):4749-4762. doi: 10.1093/jxb/erz245.
Flavonoids are secondary metabolites widely distributed among angiosperms, where they play diverse roles in plant growth, development, and evolution. The regulation of flavonoid biosynthesis in plants has been extensively studied at the transcriptional level, but post-transcriptional, translational, and post-translational control of flavonoid biosynthesis remain poorly understood. In this study, we analysed post-translational regulation of flavonoid biosynthesis in the ornamental plant Paeonia, using proteome and ubiquitylome profiling, in conjunction with transcriptome data. Three enzymes involved in flavonoid biosynthesis were identified as being putative targets of ubiquitin-mediated degradation. Among these, chalcone synthase (PhCHS) was shown to have the greatest number of ubiquitination sites. We examined PhCHS abundance in petals using PhCHS-specific antibody and found that its accumulation decreased at later developmental stages, resulting from 26S proteasome-mediated degradation. We further identified a ring domain-containing protein (PhRING-H2) that physically interacts with PhCHS and demonstrated that PhRING-H2 is required for PhCHS ubiquitination. Taken together, our results suggest that PhRING-H2-mediates PhCHS ubiquitination and degradation is an important mechanism of post-translational regulation of flavonoid biosynthesis in Paeonia, providing a theoretical basis for the manipulation of flavonoid biosynthesis in plants.
类黄酮是广泛分布于被子植物中的次生代谢物,在植物的生长、发育和进化中发挥着多种作用。植物中类黄酮生物合成的转录调控已经得到了广泛的研究,但类黄酮生物合成的转录后、翻译后和翻译后调控仍知之甚少。在这项研究中,我们使用蛋白质组学和泛素组学分析,结合转录组数据,分析了观赏植物牡丹中类黄酮生物合成的翻译后调控。鉴定出三种参与类黄酮生物合成的酶是泛素介导降解的潜在靶标。其中,查尔酮合酶(PhCHS)具有最多的泛素化位点。我们使用 PhCHS 特异性抗体检测花瓣中的 PhCHS 丰度,发现其在发育后期积累减少,这是由于 26S 蛋白酶体介导的降解所致。我们进一步鉴定了一种含有环域的蛋白(PhRING-H2),它与 PhCHS 相互作用,并证明 PhRING-H2 是 PhCHS 泛素化所必需的。综上所述,我们的研究结果表明,PhRING-H2 介导的 PhCHS 泛素化和降解是牡丹中类黄酮生物合成的一种重要翻译后调控机制,为植物中类黄酮生物合成的操纵提供了理论基础。