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Effect of gene order in DNA constructs on gene expression upon integration into plant genome

机译:整合到植物基因组中的DNA构建体中基因顺序对基因表达的影响

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摘要

Several plant biotechnology applications are based on the expression of multiple genes located on a single transformation vector. The principles of stable expression of foreign genes in plant cells include integration of full-length gene fragments consisting of promoter and transcription terminator sequences, and avoiding converging orientation of the gene transcriptional direction. Therefore, investigators usually generate constructs in which genes are assembled in the same orientation. However, no specific information is available on the effect of the order in which genes should be assembled in the construct to support optimum expression of each gene upon integration in the genome. While many factors, including genomic position and the integration structure, could affect gene expression, the investigators judiciously design DNA constructs to avoid glitches. However, the gene order in a multigene assembly remains an open question. This study addressed the effect of gene order in the DNA construct on gene expression in rice using a simple design of two genes placed in two possible orders with respect to the genomic context. Transgenic rice lines containing green fluorescent protein (GFP) and β-glucuronidase (GUS) genes in two distinct orders were developed by Cre-lox-mediated site-specific integration. Gene expression analysis of transgenic lines showed that both genes were expressed at similar levels in either orientation, and different transgenic lines expressed each gene within 1–2× range. Thus, no significant effect of the gene order on gene expression was found in the transformed rice lines containing precise site-specific integrations and stable gene expression in plant cells could be obtained with altered gene orders. Therefore, gene orientation and integration structures are more important factors governing gene expression than gene orders in the genomic context.
机译:几种植物生物技术应用基于位于单个转化载体上的多个基因的表达。外源基因在植物细胞中稳定表达的原理包括整合由启动子和转录终止子序列组成的全长基因片段,并避免基因转录方向的趋同方向。因此,研究人员通常会生成基因以相同方向组装的构建体。但是,尚无关于基因在构建物中组装顺序的影响的具体信息,以支持整合到基因组中每个基因的最佳表达。尽管包括基因组位置和整合结构在内的许多因素都可能影响基因表达,但研究人员明智地设计了DNA构建体,以避免出现毛刺。然而,多基因装配中的基因顺序仍然是一个悬而未决的问题。这项研究通过简单设计两个基因组中两个可能顺序排列的基因,解决了DNA构建体中基因顺序对水稻基因表达的影响。通过Cre-lox介导的位点特异性整合,开发了包含两个不同顺序的绿色荧光蛋白(GFP)和β-葡萄糖醛酸苷酶(GUS)基因的转基因水稻品系。转基因品系的基因表达分析表明,两个基因在任一方向上均以相似的水平表达,不同的转基因品系在1-2x范围内表达每个基因。因此,在包含精确的位点特异性整合的转化水稻品系中,没有发现基因顺序对基因表达的显着影响,并且通过改变基因顺序可以在植物细胞中获得稳定的基因表达。因此,在基因组背景下,基因取向和整合结构是控制基因表达的重要因素,而不是基因顺序。

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