Buenrostro-Nava Marco Tulio, Ling Peter P, Finer John J
Department of Horticulture and Crop Science, The Ohio State University/OARDC, Wooster, OH 44691, USA.
Plant Cell Rep. 2006 Sep;25(9):920-6. doi: 10.1007/s00299-006-0142-5. Epub 2006 Apr 12.
Expression of the green fluorescent protein (gfp) gene, under regulatory control of either the constitutive 35S promoter or the developmentally-regulated lectin promoter was monitored and quantified using a newly-developed automated tracking system. The automated system consisted of a computer-controlled two-dimensional robotics table and a programmable image acquisition system, which was used to semi-continuously monitor gfp gene expression during development of transgenic soybean [Glycine max (L.) Merrill] somatic embryos. Quantitative analysis of GFP expression showed that, during somatic embryo proliferation and early development, expression of lectin-GFP was not detected. During late embryo development, expression of lectin-GFP gradually increased until the levels were similar to those of 35S-GFP. The use of an automated image collection system and image analysis facilitated the frequent monitoring and quantification of gfp gene expression on a large number of samples over an extended period of time.
利用新开发的自动追踪系统,监测并定量分析了绿色荧光蛋白(gfp)基因在组成型35S启动子或发育调控的凝集素启动子调控下的表达情况。该自动系统由计算机控制的二维机器人工作台和可编程图像采集系统组成,用于在转基因大豆[Glycine max (L.) Merrill]体细胞胚胎发育过程中对gfp基因表达进行半连续监测。GFP表达的定量分析表明,在体细胞胚胎增殖和早期发育阶段,未检测到凝集素 - GFP的表达。在胚胎发育后期,凝集素 - GFP的表达逐渐增加,直至其水平与35S - GFP的水平相似。自动图像采集系统和图像分析的使用,有助于在较长时间内对大量样品的gfp基因表达进行频繁监测和定量分析。