Hainan Key Laboratory for Sustainable Utilization of Tropical Bioresources, College of Tropical Crops, Hainan University, Haikou, 570228, Hainan, People's Republic of China.
Biotechnol Lett. 2019 Sep;41(8-9):1077-1091. doi: 10.1007/s10529-019-02703-4. Epub 2019 Jun 24.
3-Hydroxy-3-methylglutaryl coenzyme A (HMG-CoA) synthase (HMGS) is an important enzyme in mevalonate (MVA) pathway of isoprenoid biosynthesis, which regulates the rubber biosynthetic pathway in rubber tree (Hevea brasiliensis) in coordination with HMG-CoA reductase (HMGR). However, little information is available about the regulation of HMGS gene expression. To understand the mechanism controlling the HbHMGS1 gene expression, we characterized the HbHMGS1 promoter sequence in transgenic plants with the β-glucuronidase (GUS) reporter gene.
GUS activity analysis of the transgenic plants showed that the HbHMGS1 promoter is active in all organs of the transgenic Arabidopsis plants during various developmental stages (from 6 to 45-day-old). Deletion of different portions of the upstream HbHMGS1 promoter identified sequences responsible for either positive or negative regulation of the GUS expression. Particularly, the - 454 bp HbHMGS1 promoter resulted in a 2.19-fold increase in promoter activity compared with the CaMV 35S promoter, suggesting that the - 454 bp HbHMGS1 promoter is a super-strong near-constitutive promoter. In addition, a number of promoter regions important for the responsiveness to ethylene, methyl jasmonate (MeJA) and gibberellic acid (GA) were identified.
The - 454 bp HbHMGS1 promoter has great application potential in plant transformation studies as an alternative to the CaMV 35S promoter. The HbHMGS1 promoter may play important roles in regulating ethylene-, MeJA- and GA-mediated gene expression. The functional complexity of cis-elements revealed by this study remains to be elucidated.
3-羟-3-甲基戊二酰辅酶 A(HMG-CoA)合酶(HMGS)是异戊烯基生物合成甲羟戊酸(MVA)途径中的一种重要酶,它与 HMG-CoA 还原酶(HMGR)协同调节橡胶树(Hevea brasiliensis)的橡胶生物合成途径。然而,关于 HMGS 基因表达的调控信息很少。为了了解控制 HbHMGS1 基因表达的机制,我们用β-葡萄糖醛酸酶(GUS)报告基因对转化植物中的 HbHMGS1 启动子序列进行了表征。
对转基因植物的 GUS 活性分析表明,HbHMGS1 启动子在转基因拟南芥植物的所有器官中均具有活性,且在不同发育阶段(6 至 45 天龄)均有活性。不同上游 HbHMGS1 启动子片段的缺失鉴定了负责 GUS 表达的正调控或负调控的序列。特别是,-454bp 的 HbHMGS1 启动子与 CaMV 35S 启动子相比,使启动子活性提高了 2.19 倍,这表明-454bp 的 HbHMGS1 启动子是一个超强的近组成型启动子。此外,还鉴定了许多对乙烯、茉莉酸甲酯(MeJA)和赤霉素(GA)响应重要的启动子区域。
-454bp 的 HbHMGS1 启动子在植物转化研究中作为 CaMV 35S 启动子的替代物具有很大的应用潜力。HbHMGS1 启动子可能在调节乙烯、MeJA 和 GA 介导的基因表达中发挥重要作用。本研究揭示的顺式元件的功能复杂性仍有待阐明。