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采用 RNA 介导的基因调控实现所需特性的生物技术衍生作物的食品和饲料安全性评估:科学综述。

Safety assessment of food and feed from biotechnology-derived crops employing RNA-mediated gene regulation to achieve desired traits: a scientific review.

机构信息

Monsanto Company, 800 N. Lindbergh Blvd, St. Louis, MO 63167, USA.

出版信息

Regul Toxicol Pharmacol. 2013 Jul;66(2):167-76. doi: 10.1016/j.yrtph.2013.03.008. Epub 2013 Apr 2.

DOI:10.1016/j.yrtph.2013.03.008
PMID:23557984
Abstract

Gene expression can be modulated in plants to produce desired traits through agricultural biotechnology. Currently, biotechnology-derived crops are compared to their conventional counterparts, with safety assessments conducted on the genetic modification and the intended and unintended differences. This review proposes that this comparative safety assessment paradigm is appropriate for plants modified to express mediators of RNA-mediated gene regulation, including RNA interference (RNAi), a gene suppression mechanism that naturally occurs in plants and animals. The molecular mediators of RNAi, including long double-stranded RNAs (dsRNA), small interfering RNAs (siRNA), and microRNAs (miRNA), occur naturally in foods; therefore, there is an extensive history of safe consumption. Systemic exposure following consumption of plants containing dsRNAs that mediate RNAi is limited in higher organisms by extensive degradation of ingested nucleic acids and by biological barriers to uptake and efficacy of exogenous nucleic acids. A number of mammalian RNAi studies support the concept that a large margin of safety will exist for any small fraction of RNAs that might be absorbed following consumption of foods from biotechnology-derived plants that employ RNA-mediated gene regulation. Food and feed derived from these crops utilizing RNA-based mechanisms is therefore expected to be as safe as food and feed derived through conventional plant breeding.

摘要

通过农业生物技术,可以调节植物中的基因表达,从而产生所需的特性。目前,与传统作物相比,生物技术衍生的作物在遗传修饰以及预期和非预期差异方面进行了安全性评估。本综述提出,这种比较安全性评估范式适用于经过修饰以表达 RNA 介导的基因调控介质的植物,包括 RNA 干扰 (RNAi),这是一种在植物和动物中自然发生的基因抑制机制。RNAi 的分子介质,包括长双链 RNA (dsRNA)、小干扰 RNA (siRNA) 和 microRNA (miRNA),天然存在于食物中;因此,它们具有广泛的安全食用历史。在高等生物中,食用含有介导 RNAi 的 dsRNA 的植物后,系统暴露受到限制,这是由于摄入的核酸被广泛降解,以及生物屏障对吸收和外源核酸的功效的限制。许多哺乳动物 RNAi 研究支持这样的概念,即在食用采用 RNA 介导的基因调控的生物技术衍生植物的食物后,可能吸收的任何少量 RNA 都将具有很大的安全性余量。因此,利用基于 RNA 的机制的这些作物的食品和饲料预计将与通过传统植物育种获得的食品和饲料一样安全。

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