首页> 外文期刊>Potato Research >Detailed Molecular Characterisation of the Transgenic Potato Line, AppA6, Modified with the Apple (Malus domestica) Polygalacturonase Inhibiting Protein 1 (pgip1) Gene
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Detailed Molecular Characterisation of the Transgenic Potato Line, AppA6, Modified with the Apple (Malus domestica) Polygalacturonase Inhibiting Protein 1 (pgip1) Gene

机译:苹果(Malus domestica)聚半乳糖醛酸酶抑制蛋白1(pgip1)基因修饰的转基因马铃薯品系AppA6的详细分子表征

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Current safety assessment of genetically modified crops requires detailed information about the insertion of the transgene and the effect of its expression on the biochemistry and physiology of the host plant. Whilst the intended effect of the transformation can be verified through phenotypic screening, molecular approaches are required to observe unintended effects. We investigated the molecular details of the integration of a polygalacturonase inhibiting protein 1 gene from Malus domestica (Mdpgip1), overexpressed in Solanum tuberosum (cv BP1) for enhanced resistance against Verticillium wilt. Genome walking studies of the selected AppA6 transformant revealed that the T-DNA containing the Mdpgip1 transgene under control of the CaMV 35S promoter was inserted into the genome without any non-T-DNA sequences from the pCAMBIA2300 vector. Sequence data indicate that the insertion of the Mdpgip1 transgene was in a gene-rich region of chromosome 1, adjacent to the photosystem Q(B) gene but without disruption of structural genes. Transcriptome-based cDNA-representational difference analysis revealed the distinctive expression of Mdpgip1 in the transgenic AppA6 line, verifying the intended effect. Protein extracts from the transgenic plants inhibited the activities of Verticillium dahliae polygalacturonases in in vitro studies, showing that the transgene is expressed to produce an active PGIP defense protein. cDNA-AFLP fingerprinting revealed genes that were differentially expressed, including genes encoding tryptophan/tyrosine permease, Ef-Tu domain and SKP1-like 1A proteins. qRT-PCR indicated that the Mdpgip1 transgene insertion resulted in increased expression in the AppA6 transgenic of the xyloglucan endotransglycosylase (xth) gene and an endogenous Stpgip1 gene. These unintended changes were either caused by the constitutive expression of the Mdpgip1 transgene or transformation-related somaclonal variation. The results indicate that the stable, single copy integration of the Mdpgip1 gene in the AppA6 transgenic line did not disrupt any structural genes but caused unintended effects that affected gene expression compared to the parental counterpart under the non-stressed experimental conditions investigated.
机译:当前对转基因作物的安全性评估需要有关转基因插入及其表达对寄主植物生物化学和生理学影响的详细信息。尽管可以通过表型筛选验证转化的预期效果,但仍需要分子方法来观察意外的效果。我们调查了整合的半乳糖醛酸酶抑制蛋白1基因从家蝇(Malus domestica)(Mdpgip1)的分子细节,该蛋白在马铃薯(Cv BP1)中过表达,以增强对黄萎病的抵抗力。所选AppA6转化子的基因组步移研究表明,在CaMV 35S启动子控制下,含有Mdpgip1转基因的T-DNA被插入基因组,而没有来自pCAMBIA2300载体的任何非T-DNA序列。序列数据表明,Mdpgip1转基因的插入位于1号染色体的一个基因丰富区域内,与光系统Q(B)基因相邻,但没有破坏结构基因。基于转录组的cDNA代表性差异分析揭示了Mdpgip1在转基因AppA6品系中的独特表达,证实了预期的效果。在体外研究中,转基因植物的蛋白质提取物抑制了大黄萎病菌多半乳糖苷酶的活性,这表明转基因被表达以产生活性的PGIP防御蛋白。 cDNA-AFLP指纹图谱显示差异表达的基因,包括编码色氨酸/酪氨酸通透酶,Ef-Tu结构域和SKP1样1A蛋白的基因。 qRT-PCR表明,Mdpgip1转基因插入导致木葡聚糖内转糖基化酶(xth)基因和内源性Stpgip1基因在AppA6转基因中表达增加。这些意外变化是由于Mdpgip1转基因的组成型表达或与转化相关的体细胞克隆变异引起的。结果表明,在所研究的非应激实验条件下,与亲本相对应,Mdpgip1基因在AppA6转基因系中的稳定,单拷贝整合并未破坏任何结构基因,但引起了意想不到的影响基因表达的影响。

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