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发展、验证和多实验室评估一种定量多重分析方法,用于评估大豆种子中十种内源性过敏原的水平及其在跨越三个生长季节的田间试验中的应用。

Development, Validation, and Interlaboratory Evaluation of a Quantitative Multiplexing Method To Assess Levels of Ten Endogenous Allergens in Soybean Seed and Its Application to Field Trials Spanning Three Growing Seasons.

机构信息

Dow AgroSciences LLC , 9330 Zionsville Road, Indianapolis, Indiana 46268, United States.

EAG Laboratories , 4780 Discovery Drive, Columbia, Missouri 65201, United States.

出版信息

J Agric Food Chem. 2017 Jul 12;65(27):5531-5544. doi: 10.1021/acs.jafc.7b01018. Epub 2017 Jun 29.

Abstract

As part of the regulatory approval process in Europe, comparison of endogenous soybean allergen levels between genetically engineered (GE) and non-GE plants has been requested. A quantitative multiplex analytical method using tandem mass spectrometry was developed and validated to measure 10 potential soybean allergens from soybean seed. The analytical method was implemented at six laboratories to demonstrate the robustness of the method and further applied to three soybean field studies across multiple growing seasons (including 21 non-GE soybean varieties) to assess the natural variation of allergen levels. The results show environmental factors contribute more than genetic factors to the large variation in allergen abundance (2- to 50-fold between environmental replicates) as well as a large contribution of Gly m 5 and Gly m 6 to the total allergen profile, calling into question the scientific rational for measurement of endogenous allergen levels between GE and non-GE varieties in the safety assessment.

摘要

作为欧洲监管审批程序的一部分,要求对转基因(GE)和非转基因植物中的内源性大豆过敏原水平进行比较。本研究开发并验证了一种使用串联质谱的定量多重分析方法,用于测量大豆种子中的 10 种潜在大豆过敏原。该分析方法在六个实验室实施,以证明方法的稳健性,并进一步应用于三个跨越多个生长季节的大豆田间研究(包括 21 个非转基因大豆品种),以评估过敏原水平的自然变异。结果表明,环境因素比遗传因素对过敏原丰度的巨大变异(环境重复之间的 2-50 倍)以及 Gly m 5 和 Gly m 6 对总过敏原谱的巨大贡献有更大的影响,这对在安全性评估中测量转基因和非转基因品种之间内源性过敏原水平的科学合理性提出了质疑。

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