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A Real-Time Quantitative PCR Method Specific for Detection and Quantification of the First Commercialized Genome-Edited Plant

机译:特异性定量PCR方法用于检测和定量第一个商业化基因组编辑植物的检测和定量

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摘要

Discussion regarding the regulatory status of genome-edited crops has focused on precision of editing and on doubts regarding the feasibility of analytical monitoring compliant with existing GMO regulations. Effective detection methods are important, both for regulatory enforcement and traceability in case of biosafety, environmental or socio-economic impacts. Here, we approach the analysis question for the first time in the laboratory and report the successful development of a quantitative PCR detection method for the first commercialized genome-edited crop, a canola with a single base pair edit conferring herbicide tolerance. The method is highly sensitive and specific (quantification limit, 0.05%), compatible with the standards of practice, equipment and expertise typical in GMO laboratories, and readily integrable into their analytical workflows, including use of the matrix approach. The method, validated by an independent laboratory, meets all legal requirements for GMO analytical methods in jurisdictions such as the EU, is consistent with ISO17025 accreditation standards and has been placed in the public domain. Having developed a qPCR method for the most challenging class of genome edits, single-nucleotide variants, this research suggests that qPCR-based method development may be applicable to virtually any genome-edited organism. This advance resolves doubts regarding the feasibility of extending the regulatory approach currently employed for recombinant DNA-based GMOs to genome-edited organisms.
机译:关于基因组编辑作物的调节状况的讨论专注于编辑的精度和对现有转基因法规的分析监测可行性的疑虑。对于生物安全,环境或社会经济影响,有效的检测方法是重要的,用于监管执法和可追溯性。在这里,我们在实验室中首次接近分析问题,并报告了第一个商业化基因组编辑作物的定量PCR检测方法的成功开发,一种具有单个碱基对编辑赋予除草剂耐受的碳酸盐的油菜。该方法具有高度敏感和特定的(量化限制,0.05%),与GMO实验室中典型的典型规范,设备和专业标准兼容,并易于融入其分析工作流程,包括使用基质方法。由独立实验室验证的方法符合欧盟等司法管辖区的转基因分析方法的所有法律要求,与ISO17025认证标准一致,已置于公共领域。对于最具挑战性的基因组编辑,单核苷酸变异性,开发了一种QPCR方法,本研究表明,基于QPCR的方法开发可能适用于几乎任何基因组编辑的生物体。本前提前解决了促进目前用于重组DNA的转基因生物至基因组的生物体的监管方法的可行性的怀疑。

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