State Key Laboratory of Grassland Agro-ecosystems, Key Laboratory of Grassland Livestock Industry Innovation, Ministry of Agriculture and Rural Affairs, College of Pastoral Agriculture Science and Technology, Lanzhou University, Lanzhou, 730020, P.R. China.
State Key Laboratory of Grassland Agro-ecosystems, Key Laboratory of Grassland Livestock Industry Innovation, Ministry of Agriculture and Rural Affairs, College of Pastoral Agriculture Science and Technology, Lanzhou University, Lanzhou, 730020, P.R. China.
J Biotechnol. 2019 Jul 20;300:32-39. doi: 10.1016/j.jbiotec.2019.05.003. Epub 2019 May 11.
Epidermis-specific promoters are necessary for ectopic expression of specific functional genes such as the cuticle-related genes. Previous studies indicated that both ECERIFERUM 6 (AtCER6) and MERISTEM L1 LAYER (ATML1) promoters from Arabidopsis thaliana can drive gene expression specifically in the epidermis of shoot apical meristems (SAMs) and leaves. However, the epidermis-specific promoters from legume plants have not been reported. Here, we cloned a 5' flanking sequence from the upstream -2150 bp to the translational start ATG codon of MtML1 gene of legume model plant Medicago truncatula. PlantCARE analysis indicated that this sequence matches the characteristics of a promoter, having TATA box and CAAT box, as well as contains some conserved elements of epidermis-specific promoters like AtCER6 and ATML1 promoters. The β-glucuronidase (GUS) histochemical analysis showed that MtML1 promoter can drive GUS gene expression in transiently transformed Nicotiana tabacum leaves under non-inducing condition. Furthermore, it can also control GUS expression in leaves and siliques rather than roots of the stably transformed Arabidopsis. More importantly, the leaf cross-section observations indicated that MtML1 exclusively expressed in the epidermis of leaves. These results suggested that MtML1 promoter performed the epidermis-specific in plant shoot. Our study establishes the foundation for driving the cuticle-related gene to express in epidermis, which may be very useful in genetic engineering of legume plants.
表皮特异性启动子对于特定功能基因的异位表达是必要的,例如与角质层相关的基因。先前的研究表明,来自拟南芥的 ECERIFERUM 6(AtCER6)和 MERISTEM L1 层(ATML1)启动子都可以特异性地在茎尖分生组织(SAM)和叶片的表皮中驱动基因表达。然而,豆科植物的表皮特异性启动子尚未被报道。在这里,我们从豆科模式植物蒺藜苜蓿的 MtML1 基因上游的-2150bp 到翻译起始 ATG 密码子处克隆了一个 5'侧翼序列。PlantCARE 分析表明,该序列符合启动子的特征,具有 TATA 盒和 CAAT 盒,并且包含一些表皮特异性启动子的保守元件,如 AtCER6 和 ATML1 启动子。β-葡萄糖醛酸酶(GUS)组织化学分析表明,MtML1 启动子可以在非诱导条件下驱动瞬时转化的烟草叶片中转基因 GUS 基因的表达。此外,它还可以控制稳定转化的拟南芥叶片和蒴果而不是根部的 GUS 表达。更重要的是,叶片横切面观察表明 MtML1 仅在叶片的表皮中表达。这些结果表明,MtML1 启动子在植物茎中表现出表皮特异性。我们的研究为驱动角质层相关基因在表皮中表达奠定了基础,这在豆科植物的遗传工程中可能非常有用。