Advances in identifying GM plants: current frame of the detection of transgenic GMOs

Y. Bertheau
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引用次数: 1

Abstract

Transgenic GMOs were welcomed in the 1990s due to the difficulties distinguishing genetic and epigenetic modifications from random mutagenesis and their ability to insert new nucleic sequences more rapidly but still randomly. Their marketing in Europe has been accompanied by health and environmental risk assessments, specific monitoring and traceability procedures to preserve the free choice of consumers and allow the coexistence of different supply chains. This chapter reviews the regulations, detection techniques, strategies and standards that have been put in place in the European Union since 1996 to ensure the analytical traceability of these GMOs. The capacity of the matrix approach, initially targeted at transgenic GMOs, to trace other types of GMOs is discussed in an accompanying chapter.
转基因植物鉴定的进展:转基因生物检测的当前框架
转基因生物在20世纪90年代受到欢迎,因为它们很难将遗传修饰和表观遗传修饰与随机诱变区分开来,而且它们能够更快地插入新的核酸序列,但仍然是随机的。它们在欧洲的销售伴随着健康和环境风险评估、具体监测和可追溯性程序,以保护消费者的自由选择,并允许不同供应链共存。本章回顾了欧盟自1996年以来实施的法规、检测技术、策略和标准,以确保这些转基因生物的分析可追溯性。矩阵方法的能力,最初针对转基因生物,追踪其他类型的转基因生物将在随附的章节中讨论。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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