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A comparative analysis of insertional effects in genetically engineered plants: considerations for pre-market assessments

机译:转基因植物插入效应的比较分析:上市前评估的考虑因素

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摘要

During genetic engineering, DNA is inserted into a plant’s genome, and such insertions are often accompanied by the insertion of additional DNA, deletions and/or rearrangements. These genetic changes are collectively known as insertional effects, and they have the potential to give rise to unintended traits in plants. In addition, there are many other genetic changes that occur in plants both spontaneously and as a result of conventional breeding practices. Genetic changes similar to insertional effects occur in plants, namely as a result of the movement of transposable elements, the repair of double-strand breaks by non-homologous end-joining, and the intracellular transfer of organelle DNA. Based on this similarity, insertional effects should present a similar level of risk as these other genetic changes in plants, and it is within the context of these genetic changes that insertional effects must be considered. Increased familiarity with genetic engineering techniques and advances in molecular analysis techniques have provided us with a greater understanding of the nature and impact of genetic changes in plants, and this can be used to refine pre-market assessments of genetically engineered plants and food and feeds derived from genetically engineered plants.
机译:在基因工程过程中,DNA被插入到植物的基因组中,而这种插入通常伴随着其他DNA的插入,缺失和/或重排。这些遗传变化被统称为插入效应,它们有可能在植物中引起意想不到的性状。此外,由于自然繁殖和常规育种,植物中还会发生许多其他遗传变化。类似于插入效应的遗传变化在植物中发生,即由于转座因子的运动,非同源末端连接对双链断裂的修复以及细胞器DNA的细胞内转移的结果。基于这种相似性,插入效应应具有与植物中其他这些遗传变化相似的风险水平,并且必须在这些遗传变化的背景下考虑插入效应。对基因工程技术的日益熟悉和分子分析技术的进步使我们对植物遗传变化的性质和影响有了更深入的了解,这可用于完善对基因工程植物以及衍生的食品和饲料的上市前评估来自转基因植物。

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