Chiera Joseph M, Bouchard Robert A, Dorsey Summer L, Park EuiHo, Buenrostro-Nava Marco T, Ling Peter P, Finer John J
Department of Horticulture and Crop Science, OARDC/The Ohio State University, 1680 Madison Ave., Wooster, OH 44691, USA.
Plant Cell Rep. 2007 Sep;26(9):1501-9. doi: 10.1007/s00299-007-0359-y. Epub 2007 May 15.
A novel automated image collection and analysis system was used to compare two new soybean (Glycine max (L.) Merr.) promoters with the cauliflower mosaic virus 35S (CaMV35S) promoter, which was used as an expression standard. For expression comparisons, various permutations of a soybean polyubiquitin (Gmubi) promoter, a soybean heat shock protein 90-like (GmHSP90L) promoter and the CaMV35S promoter were placed upstream of a green fluorescent protein (gfp) gene. DNA constructs were introduced via particle bombardment into excised cotyledons of germinating lima bean (Phaseolus lunatus L.) seeds, which were arranged in Petri dishes for automated image capture and image analysis. The automated system allowed monitoring and quantification of gfp gene expression in the same piece of tissue over time. The Gmubi promoter, with its intronic region intact, showed the highest expression that was over five times stronger than the CaMV35S promoter. When an intronic region was removed from the Gmubi promoter, GFP expression was reduced, but was still over two times greater than with the CaMV35S promoter. The full-length soybean GmHSP90L promoter was four times stronger than the CaMV35S promoter. Truncation of the GmHSP90L promoter resulted in stepwise decreases in promoter strength, which appear to correspond to removal of regulatory elements. Automated image capture and analysis allowed the rapid and efficient evaluation of these new promoters.
一种新型的自动图像采集与分析系统被用于比较两个新的大豆(Glycine max (L.) Merr.)启动子与用作表达标准的花椰菜花叶病毒35S(CaMV35S)启动子。为了进行表达比较,将大豆多聚泛素(Gmubi)启动子、大豆热激蛋白90样(GmHSP90L)启动子和CaMV35S启动子的各种排列置于绿色荧光蛋白(gfp)基因的上游。通过粒子轰击将DNA构建体导入发芽的利马豆(Phaseolus lunatus L.)种子的切除子叶中,这些子叶被放置在培养皿中用于自动图像捕获和图像分析。该自动系统允许随时间监测和定量同一块组织中的gfp基因表达。完整内含子区域的Gmubi启动子显示出最高的表达,比CaMV35S启动子强五倍以上。当从Gmubi启动子中去除内含子区域时,GFP表达降低,但仍比CaMV35S启动子高两倍以上。全长大豆GmHSP90L启动子比CaMV35S启动子强四倍。GmHSP90L启动子的截短导致启动子强度逐步降低,这似乎与调控元件的去除相对应。自动图像捕获和分析允许对这些新启动子进行快速有效的评估。