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首页> 外文期刊>Plant Cell Reports >High-level accumulation of recombinant miraculin protein in transgenic tomatoes expressing a synthetic miraculin gene with optimized codon usage terminated by the native miraculin terminator
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High-level accumulation of recombinant miraculin protein in transgenic tomatoes expressing a synthetic miraculin gene with optimized codon usage terminated by the native miraculin terminator

机译:重组奇迹蛋白蛋白在表达合成奇迹蛋白基因的转基因番茄中大量积累,优化的密码子使用被天然奇迹蛋白终止子终止

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摘要

In our previous study, a transgenic tomato line that expressed the MIR gene under control of the cauliflower mosaic virus 35S promoter and the nopaline synthase terminator (tNOS) produced the taste-modifying protein miraculin (MIR). However, the concentration of MIR in the tomatoes was lower than that in the MIR gene’s native miracle fruit. To increase MIR production, the native MIR terminator (tMIR) was used and a synthetic gene encoding MIR protein (sMIR) was designed to optimize its codon usage for tomato. Four different combinations of these genes and terminators (MIR-tNOS, MIR-tMIR, sMIR-tNOS and sMIR-tMIR) were constructed and used for transformation. The average MIR concentrations in MIR-tNOS, MIR-tMIR, sMIR-tNOS and sMIR-tMIR fruits were 131, 197, 128 and 287 μg/g fresh weight, respectively. The MIR concentrations using tMIR were higher than those using tNOS. The highest MIR accumulation was detected in sMIR-tMIR fruits. On the other hand, the MIR concentration was largely unaffected by sMIR-tNOS. The expression levels of both MIR and sMIR mRNAs terminated by tMIR tended to be higher than those terminated by tNOS. Read-through mRNA transcripts terminated by tNOS were much longer than those terminated by tMIR. These results suggest that tMIR enhances mRNA expression and permits the multiplier effect of optimized codon usage.
机译:在我们先前的研究中,在菜花花叶病毒35S启动子和胭脂碱合酶终止子(tNOS)的控制下表达MIR基因的转基因番茄品系产生了味觉修饰蛋白Miraculin(MIR)。但是,西红柿中的MIR浓度低于MIR基因的天然奇迹果实。为了增加MIR产量,使用了天然MIR终止子(tMIR),并设计了编码MIR蛋白(sMIR)的合成基因以优化番茄的密码子使用。这些基因和终止子的四种不同组合(MIR-tNOS,MIR-tMIR,sMIR-tNOS和sMIR-tMIR)被构建并用于转化。 MIR-tNOS,MIR-tMIR,sMIR-tNOS和sMIR-tMIR水果中的平均MIR浓度分别为鲜重131、197、128和287μg/ g。使用tMIR的MIR浓度高于使用tNOS的MIR浓度。在sMIR-tMIR水果中检测到最高的MIR积累。另一方面,MIR浓度在很大程度上不受sMIR-tNOS的影响。由tMIR终止的MIR和sMIR mRNA的表达水平倾向于高于由tNOS终止的mRNA。由tNOS终止的通读mRNA转录物比由tMIR终止的通读mRNA转录物长得多。这些结果表明tMIR增强mRNA表达,并允许优化密码子使用的倍增效应。

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