Department of Cell and Molecular Biology, Faculty of Biotechnology and Biomolecular Sciences, Universiti Putra Malaysia, 43400 UPM, Serdang, Selangor, Malaysia.
Faculty of Plantation and Agrotechnology, Universiti Teknologi MARA, Kampus Jasin, 77300, Merlimau, Melaka, Malaysia.
Plant Cell Rep. 2018 Feb;37(2):265-278. doi: 10.1007/s00299-017-2228-7. Epub 2017 Oct 31.
The oil palm EgPAL1 gene promoter and its regulatory region were functional as a promoter in the heterologous system of Arabidopsis according to the cis-acting elements present in that region. The promoter was developmentally regulated, vascular tissue specific and responsive to water stress agents. Phenylalanine ammonia lyase (PAL, EC 4.3.1.24) is the key enzyme of the phenylpropanoid pathway which plays important roles in plant development and adaptation. To date, there is no report on the study of PAL from oil palm (Elaeis guineensis), an economically important oil crop. In this study, the 5' regulatory sequence of a highly divergent oil palm PAL gene (EgPAL1) was isolated and fused with GUS in Arabidopsis to create two transgenic plants carrying the minimal promoter with (2302 bp) and without its regulatory elements (139 bp). The regulatory sequence contained cis-acting elements known to be important for plant development and stress response including the AC-II element for lignin biosynthesis and several stress responsive elements. The promoter and its regulatory region were fully functional in Arabidopsis. Its activities were characterised by two common fundamental features of PAL which are responsive to plant internal developmental programme and external factors. The promoter was developmentally regulated in certain organs; highly active in young organs but less active or inactive in mature organs. The presence of the AC elements and global activity of the EgPAL1 promoter in all organs resembled the property of lignin-related genes. The existence of the MBS element and enhancement of the promoter activity by PEG reflected the behaviour of drought-responsive genes. Our findings provide a platform for evaluating oil palm gene promoters in the heterologous system of Arabidopsis and give insights into the activities of EgPAL1 promoter in oil palm.
根据该区域存在的顺式作用元件,油棕 EgPAL1 基因启动子及其调控区在拟南芥异源系统中作为启动子具有功能。该启动子具有发育调节、血管组织特异性和对水分胁迫剂的响应特性。苯丙氨酸解氨酶(PAL,EC 4.3.1.24)是苯丙烷途径的关键酶,在植物发育和适应中起着重要作用。迄今为止,尚未有关于油棕(Elaeis guineensis)PAL 的研究报告,油棕是一种具有重要经济价值的油料作物。在这项研究中,分离了一个高度分化的油棕 PAL 基因(EgPAL1)的 5'调控序列,并将其与 GUS 在拟南芥中融合,构建了两个携带最小启动子(2302bp)和不含有其调控元件(139bp)的转基因植物。调控序列包含已知对植物发育和应激反应很重要的顺式作用元件,包括木质素生物合成的 AC-II 元件和几个应激响应元件。启动子及其调控区在拟南芥中完全具有功能。其活性具有 PAL 的两个共同基本特征,即对植物内部发育程序和外部因素的响应。该启动子在某些器官中具有发育调节作用;在年轻器官中高度活跃,但在成熟器官中活性较低或不活跃。AC 元件的存在和 EgPAL1 启动子在所有器官中的全局活性类似于木质素相关基因的特性。MBS 元件的存在和 PEG 对启动子活性的增强反映了干旱响应基因的行为。我们的发现为在拟南芥异源系统中评估油棕基因启动子提供了一个平台,并深入了解了 EgPAL1 启动子在油棕中的活性。