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Application of food and feed safety assessment principles to evaluate transgenic approaches to gene modulation in crops

机译:食品和饲料安全性评估原理在评估转基因作物基因调控方法中的应用

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摘要

New crop varieties containing traits such as enhanced nutritional profiles, increased yield, and tolerance to drought are being developed. In some cases, these new traits are dependent on small RNAs or regulatory proteins such as transcription factors (TF) that modify the expression of endogenous plant genes. To date, the food and feed safety of genetically modified (GM) crops has been assessed by the application of a set of internationally accepted procedures for evaluating the safety of GM crops. The goal of this paper is to review the main aspects of the current safety assessment paradigm and to recommend scientifically sound principles for conducting a safety assessment for GM crops that are developed by technologies that modify endogenous plant gene expression. Key considerations for such a safety assessment include the following:RNA and TF are generally recognized as safe (GRAS);Genes encoding RNAi and regulatory proteins such as TFs are an important component of the plant genome;Crops engineered using RNAi modifications are not expected to produce heterologous proteins;The modulation of TFs may result in quantitative differences in endogenous plant components, which can be assessed through agronomic performance and compositional analysis on a case-by-case basis.
机译:正在开发具有新特性的新作物品种,这些新特性包括增强的营养状况,增加的产量以及对干旱的耐受性。在某些情况下,这些新特性依赖于修饰内源植物基因表达的小RNA或调节蛋白,例如转录因子(TF)。迄今为止,转基因作物的食品和饲料安全性已通过一套国际公认的评估转基因作物安全性的程序进行了评估。本文的目的是回顾当前安全性评估范式的主要方面,并为通过修饰内源植物基因表达的技术开发的转基因作物的安全性评估提出科学合理的建议。进行这种安全性评估的关键考虑因素包括:RNA和TF通常被认为是安全的(GRAS);编码RNAi的基因和诸如TFs的调节蛋白是植物基因组的重要组成部分;使用RNAi修饰工程化的作物预计不会产生异源蛋白质; TFs的调节可能导致内源植物成分的数量差异,这可以通过农艺性能和成分分析进行评估。

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