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The Regulatory Status of Genome-edited Crops

机译:基因组编辑作物的监管状况

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摘要

Genome editing with engineered nucleases (GEEN) represents a highly specific and efficient tool for crop improvement with the potential to rapidly generate useful novel phenotypes/traits. Genome editing techniques initiate specifically targeted double strand breaks facilitating DNA-repair pathways that lead to base additions or deletions by non-homologous end joining as well as targeted gene replacements or transgene insertions involving homology-directed repair mechanisms. Many of these techniques and the ancillary processes they employ generate phenotypic variation that is indistinguishable from that obtained through natural means or conventional mutagenesis; and therefore, they do not readily fit current definitions of genetically engineered or genetically modified used within most regulatory regimes. Addressing ambiguities regarding the regulatory status of genome editing techniques is critical to their application for development of economically useful crop traits. Continued regulatory focus on the process used, rather than the nature of the novel phenotype developed, results in confusion on the part of regulators, product developers, and the public alike and creates uncertainty as of the use of genome engineering tools for crop improvement.
机译:用工程化核酸酶(Geen)的基因组编辑代表了具有迅速产生有用的新表型/特征的作物改善的高度具体和有效的工具。基因组编辑技术引发特异性靶向双链断裂,促进DNA修复途径,所述DNA修复途径通过非同源终端连接以及涉及同源导向修复机制的靶向基因替代或转基因插入而导致碱添加或缺失。许多这些技术和它们所采用的辅助过程产生的表型变异,从通过天然手段或常规诱变中获得不区分;因此,它们不容易拟合在大多数监管制度范围内使用的基因工程或遗传修饰的当前定义。解决关于基因组编辑技术的监管状态的含糊不清对其在经济上有用的作物特征的发展申请至关重要。持续的监管专注于使用的过程,而不是新颖表型开发的性质,导致监管机构,产品开发人员和公众的混淆,并在利用基因组工程工具进行作物改善时产生不确定性。

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