Dow AgroSciences, West Lafayette, IN, 47906, USA.
Dow AgroSciences, Indianapolis, IN, 46268, USA.
Transgenic Res. 2017 Dec;26(6):727-738. doi: 10.1007/s11248-017-0042-1. Epub 2017 Sep 15.
The expression profile of a natural bi-directional promoter, derived from the Brassica napus EPSPS-A gene, was studied in transgenic soybean (Glycine max C.V. Maverick) lines. Two constructs, pDAB100331 and pDAB100333, were assembled to test the bi-directionality of the promoter. Two reporter genes, gfp and gusA, were employed and they were interchangeably placed in both constructs, one on each end of the promoter such that both proteins expressed divergently in each construct. In the T generation, GUS expression was more uniform throughout the leaf of pDAB100333 transgenic plants, where the gusA gene was expressed from the downstream or EPSPS-A end of the bi-directional promoter. Comparatively, GUS expression was more localized in the midrib and veins of the leaf of pDAB100331 transgenic plants, where the gusA gene was expressed from the upstream end of the bi-directional promoter. These observations indicated a unique expression pattern from each end of the promoter and consistently higher expression in genes expressed from the downstream end (e.g., EPSPS-A end) of the promoter in the tissues examined. The GFP expression pattern followed that of GUS when placed in the same position relative to the promoter. In the T generation, transcript analysis also showed higher expression of both gusA and gfp when those genes were located at the downstream end of the promoter. Accordingly, the pDAB100331 events exhibited a higher gfp/gusA transcript ratio, while pDAB100333 events produced a higher gusA/gfp transcript ratio consistent with the observations in T plants. These results demonstrated that the EPSPS-A gene bidirectional promoter can be effectively utilized to drive expression of two transgenes for the desired traits.
从油菜素内酯合成酶基因衍生的天然双向启动子的表达谱在转基因大豆(Glycine max C.V. Maverick)系中进行了研究。构建了两个构建体 pDAB100331 和 pDAB100333,以测试启动子的双向性。使用了两个报告基因 gfp 和 gusA,并在两个构建体中可互换地放置它们,即在启动子的每一端各放置一个,使得两种蛋白质在每个构建体中都以不同的方向表达。在 T 代中,pDAB100333 转基因植物的叶片中 GUS 表达更为均匀,gusA 基因从双向启动子的下游或 EPSPS-A 端表达。相比之下,pDAB100331 转基因植物的叶片中叶脉和中脉中的 GUS 表达更为局部化,gusA 基因从双向启动子的上游端表达。这些观察结果表明,从启动子的每一端都具有独特的表达模式,并且在所检查的组织中,从启动子的下游端(例如,EPSPS-A 端)表达的基因表达更高。当 GFP 表达与 GUS 放在相对于启动子的相同位置时,其表达模式也随之变化。在 T 代中,当 gusA 和 gfp 基因位于启动子的下游端时,转录分析也显示出更高的表达。因此,pDAB100331 事件表现出更高的 gfp/gusA 转录比率,而 pDAB100333 事件产生了更高的 gusA/gfp 转录比率,与 T 植物的观察结果一致。这些结果表明,EPSPS-A 基因双向启动子可有效地用于驱动所需性状的两个转基因的表达。