首页> 外文期刊>Plant Science: An International Journal of Experimental Plant Biology >5' DELETION ANALYSIS OF THE POTATO STARCH PHOSPHORYLASE GENE - AN UPSTREAM SEQUENCE DEFINES DISTAL REGULATORY ELEMENTS AND A PROXIMAL ORGAN-DEPENDENT PROMOTER
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5' DELETION ANALYSIS OF THE POTATO STARCH PHOSPHORYLASE GENE - AN UPSTREAM SEQUENCE DEFINES DISTAL REGULATORY ELEMENTS AND A PROXIMAL ORGAN-DEPENDENT PROMOTER

机译:马铃薯淀粉磷酸酶基因的5'缺失分析-上游序列定义远距离调控元件和近端有机依赖启动子

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摘要

The expression of the starch phosphorylase gene is regulated through the control of transcription initiation as well as by another mechanism which could be mRNA stability. The -1862 to +26 region of the gene expressed the beta-glucuronidase (GUS) reporter gene in transgenic potato plants grown in vitro, at normal levels in both stems and microtubers, and also in leaves but at reduced levels. This pattern of expression is in agreement with the nuclear transcription data. Regions of the phosphorylase promoter involved in transcriptional regulation of the gene were analysed by 5'-deletion analysis in transgenic plants. The deletion analysis allowed the characterization of positive and possibly negative cis-acting elements that influence the level of activity of the phosphorylase promoter. Deletion of the region between -550 and -324 led to a large reduction in GUS activity in transformed plants, indicating that a major positive element lies in this region. The proximal region of the promoter (-164 to +26) was observed to be sufficient for preferential expression of the reporter gene in stems and tubers. An electrophoretic mobility shift assay using nuclear extracts from potato tubers, revealed the binding of nuclear proteins to the -550 to -324 region. This promoter region is very rich in dA/dT base pairs, a characteristic shared by many plant gene regulatory elements. Nuclear proteins extracted from potato tubers were also shown to bind to a double-stranded oligonucleotide corresponding to an AVT-rich region (-396 to -376) of the phosphorylase promoter. Therefore, functional assays and protein-DNA interactions indicate that the -550 to -324 region enhances the level of transcription of the promoter and that organ-dependent regulatory elements are present in the proximal region of the promoter. [References: 34]
机译:淀粉磷酸化酶基因的表达通过转录起始的控制以及可能是mRNA稳定的另一种机制来调节。该基因的-1862至+26区域在体外生长的转基因马铃薯植株中以茎和微块茎以及叶片中的正常水平表达了β-葡糖醛酸糖苷酶(GUS)报告基因。这种表达方式与核转录数据一致。通过转基因植物中的5'-缺失分析来分析参与基因转录调控的磷酸化酶启动子区域。缺失分析允许表征影响磷酸化酶启动子活性水平的正和可能负的顺式作用元件。 -550至-324之间的区域的缺失导致转化植物中GUS活性的大幅降​​低,表明主要的阳性元件位于该区域。观察到启动子的近端区域(-164至+26)足以使报告基因在茎和块茎中优先表达。使用马铃薯块茎核提取物进行的电泳迁移率变动分析表明,核蛋白与-550至-324区结合。该启动子区域富含dA / dT碱基对,许多植物基因调控元件共有该特征。还显示了从马铃薯块茎提取的核蛋白与双链寡核苷酸结合,该双链寡核苷酸对应于磷酸化酶启动子的富含AVT的区域(-396至-376)。因此,功能测定和蛋白质-DNA相互作用表明-550至-324区域增强了启动子的转录水平,并且依赖于器官的调节元件存在于启动子的近端区域。 [参考:34]

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