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Analysis of Globulin-1 promoter activity and the expression of GFP in transgenic maize seed tissues and processing of GFP-containing grain

机译:转基因玉米种子组织中globulin-1启动子活性和GFP表达的分析及含GFP颗粒的加工

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摘要

The maize (Zea mays L) kernel is perfectly configured to store proteins and nutrients. The major proteins of the maize kernel are known as seed storage proteins because they have no enzymatic function and they accumulate to a high level for use during germination of the seed as an immediate nutrient source. These seed storage proteins are responsible for much of the nutrient quality of maize when used as a food or feed source. Understanding the regulation of seed storage protein deposition may allow researchers to improve the use of maize grain in a variety of food and feed products, as well as industrial and pharmaceutical applications. To understand the regulation of seed storage proteins and to improve the uses of maize grain, we have created transgenic maize lines that express the reporter gene Green Fluorescent Protein (GFP) under the control of seed storage protein promoters. Therefore, GFP is developmentally and spatially regulated similar to seed storage proteins. Our results indicate that GFP is expressed in seed tissues similar to seed storage proteins. To better utilize grain by dry-milling, we subjected the GFP transgenic grain to a dry-milling process and tracked its recovery. From the results we determined that optimization of dry-milling processes can be accomplished using GFP grain. To better express GFP, and other recombinant proteins in maize kernels, we developed a chimeric promoter that can express GFP in multiple seed tissues. Our results indicate that the chimeric promoter has endosperm and embryo tissue specificity, and that this promoter can be used to express recombinant proteins in maize kernels. To better understand the activity of the Glb1 promoter, we performed experiments that resulted in the correlation of immature leaf activity of the Glb1 promoter with a complex rearrangement within the Glb1 promoter due to transposon transposition events.
机译:玉米(Zea mays L)玉米粒配置完美,可以储存蛋白质和营养。玉米籽粒的主要蛋白质被称为种子贮藏蛋白质,因为它们没有酶的功能,并且在种子发芽期间积累了很高的水平,可作为直接的营养源。当用作食物或饲料来源时,这些种子贮藏蛋白对玉米的大部分营养质量负责。了解种子贮藏蛋白沉积的规律可能使研究人员能够改善玉米颗粒在各种食品和饲料产品以及工业和制药应用中的使用。为了了解种子贮藏蛋白的调控并改善玉米籽粒的利用,我们创建了在种子贮藏蛋白启动子控制下表达报告基因绿色荧光蛋白(GFP)的转基因玉米品系。因此,GFP类似于种子贮藏蛋白在发育和空间上受到调节。我们的结果表明,GFP在种子组织中表达类似于种子存储蛋白。为了通过干磨更好地利用谷物,我们对GFP转基因谷物进行了干磨过程并跟踪了其回收率。根据结果​​,我们确定使用GFP晶粒可以完成干磨工艺的优化。为了在玉米粒中更好地表达GFP和其他重组蛋白,我们开发了一种嵌合启动子,可以在多种种子组织中表达GFP。我们的结果表明,该嵌合启动子具有胚乳和胚组织特异性,并且该启动子可用于在玉米粒中表达重组蛋白。为了更好地了解Glb1启动子的活性,我们进行了一些实验,这些实验导致Glb1启动子的未成熟叶片活性与转座子转座事件引起的Glb1启动子内复杂的重排相关。

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    Shepherd, Colin;

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  • 年度 2007
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