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首页> 外文期刊>American Journal of Potato Research >Structure of Two Solanum bulbocastanum Polyubiquitin Genes and Expression of Their Promoters in Transgenic Potatoes
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Structure of Two Solanum bulbocastanum Polyubiquitin Genes and Expression of Their Promoters in Transgenic Potatoes

机译:马铃薯中两个茄科植物泛素基因的结构及其启动子的表达

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摘要

Two polyubiquitin genes, bul409 and bul427, were isolated from a Solanum bulbocastanum BAC library. The bul409 and bul427 genes encode hexameric and heptameric polyproteins, respectively. bul427 exhibits a number of features suggestive of a pseudogene: (1) The last ubiquitin monomer of bul427 is interrupted by a frame shift mutation. (2) The coding sequence is flanked 3′ by mitochondrial and chloroplast sequences and 5′ by a protein kinase pseudogene. However, characterization of cDNAs amplified using bul427-based primers demonstrated that bul427 is transcriptionally active. Chimeric transgenes encoding β-glucuronidase (GUS) translationally fused to the first ubiquitin-coding units of bul409, a truncated version 409s, and bul427 were constructed and introduced into potato. In transgenic potato lines both S. bulbocastanum promoters were weakly transcribed in tubers and efficiently transcribed in leaves. In leaves, bul409s was wound-induced, while bul427 was not. In tubers both promoters were wound-induced. In unwounded leaves and tubers, the steady state mRNA levels from both bul promoters were lower than the steady state mRNA levels from the Cauliflower Mosaic Virus 35S promoter. However, in the leaves and tubers of many of the transgenic lines the GUS activity was significantly higher in the bul lines compared to the 35S lines. The apparent inconsistency of higher enzymatic activity correlated with lower steady state levels of mRNA demonstrates the enhanced protein expression observed with ubiquitin fusion proteins.
机译:从Solanum bulbocastanum BAC文库中分离了两个泛素基因​​bul409和bul427。 bul409和bul427基因分别编码六聚体和七聚体多蛋白。 bul427具有许多暗示假基因的特征:(1)bul427的最后一个泛素单体被移码突变打断。 (2)编码序列的两侧为线粒体和叶绿体序列,而3'为蛋白激酶假基因。但是,使用基于bul427的引物扩增的cDNA的表征表明bul427具有转录活性。构建了编码β-葡糖醛酸糖苷酶(GUS)的嵌合转基因,其翻译融合至bul409,截短版本409s和bul427的第一个泛素编码单元,并将其引入马铃薯。在转基因马铃薯品系中,两个鳞茎链球菌启动子在块茎中均被弱转录,并在叶片中被高效转录。在叶片中,bul409s是伤口诱导的,而bul427不是。在块茎中,两个启动子都是伤口诱导的。在未受伤的叶子和块茎中,两个bul启动子的稳态mRNA水平低于花椰菜花叶病毒35S启动子的稳态mRNA水平。但是,在许多转基因品系的叶子和块茎中,与35S品系相比,bul品系中的GUS活性明显更高。较高的酶活性与较低的mRNA稳态水平相关的明显不一致表明,用泛素融合蛋白观察到了增强的蛋白表达。

著录项

  • 来源
    《American Journal of Potato Research》 |2008年第3期|219-226|共8页
  • 作者单位

    United States Department of Agriculture Agricultural Research Service Western Regional Research Center Albany CA 94710 USA;

    United States Department of Agriculture Agricultural Research Service Western Regional Research Center Albany CA 94710 USA;

    United States Department of Agriculture Agricultural Research Service Western Regional Research Center Albany CA 94710 USA;

    United States Department of Agriculture Agricultural Research Service Western Regional Research Center Albany CA 94710 USA;

    United States Department of Agriculture Agricultural Research Service Western Regional Research Center Albany CA 94710 USA;

    United States Department of Agriculture Agricultural Research Service Western Regional Research Center Albany CA 94710 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    β-glucuronidase; Intron; Leaf; Tuber; Wound-induced;

    机译:β-葡萄糖醛酸苷酶;内含子;叶;Tuber;伤口诱导;

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