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Evaluating the effect of codon optimization on expression of bar gene in transgenic tobacco plants

机译:评估密码子优化对转基因烟草植物中律棒基因表达的影响

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Information of codon usage bias has been used for modifying genes for improved expression in heterologous systems. Codon modifications are carried out using the species-specific codon usage so that they reflect the codon usage pattern of the host, without modifying the amino acid sequence of the encoded protein. In the present study we analyzed the effect of codon optimization on the expression of the bacterial gene bar in tobacco. In order to identify the percentage of optimal codons needed to achieve high levels of protein expression, bar genes with different percentage and placement of optimal codons were analyzed in transgenic tobacco lines. It was observed that there was no gain in bar protein expression when the percentage of optimal codons was increased from 63.9% (as observed in the wild type bar gene) to 93.9%. However, reducing the percentage of optimal codons to 54.0 led to a drop in the levels of the bar protein. Further, in silico analysis was also carried out in similar to 4500 genes present on chromosome 2 of Arabidopsis thaliana to study the distribution of optimal codons. It was observed that majority (88%) of the genes have 30-50% of optimal codons and none of the gene was found to have more than 80% of optimal codons. The present study showed that there may not be a one-to-one correlation between the percentage of optimal codons and the expression levels of the transgene. A certain percentage of optimal codons is probably enough to achieve high levels of transgene expression. Any increase in the percentage of optimal codons beyond this level may not necessarily lead to any further improvement in expression.
机译:密码子使用偏差的信息已被用于改性基因以改善异源系统中的表达。使用特定物种的密码子使用进行密码子修改,使得它们反映宿主的密码子使用模式,而不改变编码蛋白的氨基酸序列。在本研究中,我们分析了密码子优化对烟草中细菌基因棒表达的影响。为了识别实现高水平蛋白质表达所需的最佳密码子的百分比,在转基因烟草线中分析具有不同百分比和最佳密码子放置的酒吧基因。观察到,当最佳密码子的百分比从63.9%增加(在野生型律棒基因中观察到)至93.9%时,没有增益。然而,降低最佳密码子至54.0的百分比导致酒吧蛋白水平下降。此外,在拟拟合拟南芥2种染色体上的4500个基因中也进行了在硅藻中,研究了最佳密码子的分布。观察到,大多数(88%)的基因具有30-50%的最佳密码子,并且发现该基因没有超过80%的最佳密码子。本研究表明,最佳密码子的百分比和转基因的表达水平之间可能没有一对一的相关性。一定比例的最佳密码子可能足以实现高水平的转基因表达。超出该水平的最佳密码子的百分比增加可能不一定导致表达的任何进一步改善。

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