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组学研究能为食品安全评估提供信息吗?

Can -omics inform a food safety assessment?

机构信息

Dept Food Science and Human Nutrition, University of Illinois at Urbana-Champaign, 1101 West Peabody Urbana, IL 61801, USA.

出版信息

Regul Toxicol Pharmacol. 2010 Dec;58(3 Suppl):S62-70. doi: 10.1016/j.yrtph.2010.05.009. Epub 2010 May 23.

Abstract

Omic technologies can in principle allow visualization of the all of changes that take place when the genetics, nutrition or environment of an organism is altered. Targeted compositional analysis is today a key component of the food safety assessment paradigm in which known nutrients, anti-nutrients, toxicants, allergens, and other molecules of potential biological importance to humans or animals are quantitatively analyzed. This allows safety assessors to compare the composition and safety of one food with closely related counterparts. Omic technologies measure many analytes-some of which are unidentified-but the analysis often sacrifices one or more of the characteristics of validated analytical methods currently used for food analysis. Databases that would allow the safety assessor to interpret differences are not currently available. There is also no reason to believe that the targeted compositional analysis in use today does not provide the evidence needed to ensure food safety, nor is there any current reason to believe that omics can add value to the safety assessment process. The regulation of transgenic crops is far more rigorous than is justified since they present no new risks compared with traditional breeding, and are more precisely defined and better understood than their non-transgenic equivalent.

摘要

Omic 技术原则上可以可视化生物体的遗传、营养或环境改变时所发生的所有变化。有针对性的成分分析是当今食品安全评估范式的关键组成部分,其中定量分析已知的营养素、抗营养素、毒物、过敏原和其他对人类或动物具有潜在生物学重要性的分子。这使安全评估人员能够比较一种食品与密切相关的同类食品的成分和安全性。Omic 技术测量许多分析物-其中一些是未识别的-但分析通常会牺牲当前用于食品分析的经过验证的分析方法的一个或多个特征。目前没有允许安全评估人员解释差异的数据库。也没有理由相信目前使用的有针对性的成分分析不能提供确保食品安全所需的证据,也没有理由相信组学可以为安全评估过程增加价值。与传统育种相比,转基因作物的监管要严格得多,因为它们没有带来新的风险,而且比非转基因作物的定义更精确,理解也更好。

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