Ben Ali Sina-Elisabeth, Madi Zita Erika, Hochegger Rupert, Quist David, Prewein Bernhard, Haslberger Alexander G, Brandes Christian
Austrian Agency for Health and Food Safety, Spargelfeldstrasse 191, 1220 Vienna, Austria.
Centre for Biosafety-GenØk, PB 6418 Science Park, 9294 Tromsoe, Norway.
Int J Mol Sci. 2014 Oct 31;15(11):19898-923. doi: 10.3390/ijms151119898.
Genetic mutations must be avoided during the production and use of seeds. In the European Union (EU), Directive 2001/18/EC requires any DNA construct introduced via transformation to be stable. Establishing genetic stability is critical for the approval of genetically modified organisms (GMOs). In this study, genetic stability of two GMOs was examined using high resolution melting (HRM) analysis and real-time polymerase chain reaction (PCR) employing Scorpion primers for amplification. The genetic variability of the transgenic insert and that of the flanking regions in a single oilseed rape variety (GT73) and a stacked maize (MON88017×MON810) was studied. The GT73 and the 5' region of MON810 showed no instabilities in the examined regions. However; two out of 100 analyzed samples carried a heterozygous point mutation in the 3' region of MON810 in the stacked variety. These results were verified by direct sequencing of the amplified PCR products as well as by sequencing of cloned PCR fragments. The occurrence of the mutation suggests that the 5' region is more suitable than the 3' region for the quantification of MON810. The identification of the single nucleotide polymorphism (SNP) in a stacked event is in contrast to the results of earlier studies of the same MON810 region in a single event where no DNA polymorphism was found.
在种子生产和使用过程中必须避免基因突变。在欧盟(EU),2001/18/EC号指令要求通过转化引入的任何DNA构建体都要稳定。建立遗传稳定性对于转基因生物(GMO)的批准至关重要。在本研究中,使用高分辨率熔解(HRM)分析和采用蝎形引物进行扩增的实时聚合酶链反应(PCR)来检测两种转基因生物的遗传稳定性。研究了单一油菜品种(GT73)和叠加玉米品种(MON88017×MON810)中转基因插入片段及其侧翼区域的遗传变异性。GT73和MON810的5'区域在检测区域未显示出不稳定性。然而,在100个分析样本中,有两个样本在叠加品种的MON810的3'区域携带杂合点突变。通过对扩增的PCR产物进行直接测序以及对克隆的PCR片段进行测序,验证了这些结果。该突变的出现表明,5'区域比3'区域更适合用于MON810的定量分析。在叠加事件中鉴定出单核苷酸多态性(SNP),这与早期对单一事件中相同MON810区域的研究结果形成对比,在早期研究中未发现DNA多态性。