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市售两种不同转基因矮牵牛(x)的分子特征分析及事件特异性实时荧光定量PCR检测

Molecular Characterization and Event-Specific Real-Time PCR Detection of Two Dissimilar Groups of Genetically Modified Petunia ( x ) Sold on the Market.

作者信息

Voorhuijzen Marleen M, Prins Theo W, Belter Anke, Bendiek Joachim, Brünen-Nieweler Claudia, van Dijk Jeroen P, Goerlich Ottmar, Kok Esther J, Pickel Benjamin, Scholtens Ingrid M J, Stolz Andrea, Grohmann Lutz

机构信息

Wageningen Food Safety Research (WFSR), Wageningen University & Research, Wageningen, Netherlands.

Saxony-Anhalt Environmental Protection Agency (EPA), Halle (Saale), Germany.

出版信息

Front Plant Sci. 2020 Jul 14;11:1047. doi: 10.3389/fpls.2020.01047. eCollection 2020.

Abstract

Petunia plants with unusual orange flowers were noticed on the European market and confirmed to be genetically modified (GM) by the Finnish authorities in spring 2017. Later in 2017, inspections and controls performed by several official laboratories of national competent authorities in the European Union detected several GM petunia varieties with orange flowers, but also another group of unusually colored flowers. In the latter group, a so far undetected gene coding for a flavonoid 3'5' hydroxylase (F3'5'H) responsible for the purple color was identified by German and Dutch authorities, suggesting that the petunias found on the markets contain different genetic constructs. Here, a strategy is described for the identification of GM petunia varieties. It is based on an initial GMO screening for known elements using (real-time) PCR and subsequent identification of the insertion sites by a gene walking-like approach called ALF (amplification of linearly-enriched fragments) in combination with Sanger and MinION sequencing. The results indicate that the positively identified GM petunias can be traced back to two dissimilar GM events used for breeding of the different varieties. The test results also confirm that the transgenic petunia event RL01-17 used in the first German field trial in 1991 is not the origin of the GM petunias sold on the market. On basis of the obtained sequence data, event-specific real-time PCR confirmatory methods were developed and validated. These methods are applicable for the rapid detection and identification of GM petunias in routine analysis. In addition, a decision support system was developed for revealing the most likely origin of the GM petunia.

摘要

欧洲市场上出现了开异常橙色花朵的矮牵牛植株,2017年春季芬兰当局证实这些植株是转基因的。2017年晚些时候,欧盟国家主管当局的几个官方实验室进行的检查和控制发现了几个开橙色花的转基因矮牵牛品种,还有另一组颜色异常的花朵。在后一组中,德国和荷兰当局鉴定出一种迄今未被发现的编码负责紫色的类黄酮3'5'羟化酶(F3'5'H)的基因,这表明在市场上发现的矮牵牛含有不同的基因构建体。本文描述了一种鉴定转基因矮牵牛品种的策略。它基于使用(实时)PCR对已知元件进行初始转基因筛选,随后通过一种称为ALF(线性富集片段扩增)的类似基因步移方法结合桑格测序和MinION测序来鉴定插入位点。结果表明,阳性鉴定的转基因矮牵牛可追溯到用于培育不同品种的两个不同的转基因事件。测试结果还证实,1991年德国首次田间试验中使用的转基因矮牵牛事件RL01 - 17不是市场上销售的转基因矮牵牛的起源。基于获得的序列数据,开发并验证了事件特异性实时PCR确证方法。这些方法适用于常规分析中转基因矮牵牛的快速检测和鉴定。此外,还开发了一个决策支持系统,以揭示转基因矮牵牛最可能的起源。

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