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在田间研究中基于实时荧光定量PCR方法评估花粉介导的基因从转基因玉米向常规玉米的漂移。

Assessment of real-time PCR based methods for quantification of pollen-mediated gene flow from GM to conventional maize in a field study.

作者信息

Pla Maria, La Paz José-Luis, Peñas Gisela, García Nora, Palaudelmàs Montserrat, Esteve Teresa, Messeguer Joaquima, Melé Enric

机构信息

Institut de Tecnologia Agroalimentària (INTEA), Universitat de Girona, Campus Montilivi, Escola Politècnica Superior (edif.1), Girona, Spain.

出版信息

Transgenic Res. 2006 Apr;15(2):219-28. doi: 10.1007/s11248-005-4945-x.

Abstract

Maize is one of the main crops worldwide and an increasing number of genetically modified (GM) maize varieties are cultivated and commercialized in many countries in parallel to conventional crops. Given the labeling rules established e.g. in the European Union and the necessary coexistence between GM and non-GM crops, it is important to determine the extent of pollen dissemination from transgenic maize to other cultivars under field conditions. The most widely used methods for quantitative detection of GMO are based on real-time PCR, which implies the results are expressed in genome percentages (in contrast to seed or grain percentages). Our objective was to assess the accuracy of real-time PCR based assays to accurately quantify the contents of transgenic grains in non-GM fields in comparison with the real cross-fertilization rate as determined by phenotypical analysis. We performed this study in a region where both GM and conventional maize are normally cultivated and used the predominant transgenic maize Mon810 in combination with a conventional maize variety which displays the characteristic of white grains (therefore allowing cross-pollination quantification as percentage of yellow grains). Our results indicated an excellent correlation between real-time PCR results and number of cross-fertilized grains at Mon810 levels of 0.1-10%. In contrast, Mon810 percentage estimated by weight of grains produced less accurate results. Finally, we present and discuss the pattern of pollen-mediated gene flow from GM to conventional maize in an example case under field conditions.

摘要

玉米是全球主要作物之一,在许多国家,越来越多的转基因玉米品种与传统作物并行种植并商业化。鉴于例如欧盟制定的标签规则以及转基因作物与非转基因作物之间必要的共存要求,确定田间条件下转基因玉米花粉传播到其他品种的程度非常重要。最广泛用于定量检测转基因生物的方法基于实时荧光定量PCR,这意味着结果以基因组百分比表示(与种子或谷物百分比不同)。我们的目标是评估基于实时荧光定量PCR的检测方法与通过表型分析确定的实际异花授粉率相比,准确量化非转基因田间转基因谷物含量的准确性。我们在一个通常同时种植转基因玉米和传统玉米的地区进行了这项研究,并使用了主要的转基因玉米品种孟山都810与一个具有白色籽粒特征的传统玉米品种(因此可以将异花授粉量化为黄色籽粒的百分比)。我们的结果表明,在孟山都810含量为0.1%-10%时,实时荧光定量PCR结果与异花授粉籽粒数量之间具有良好的相关性。相比之下,按籽粒重量估算的孟山都810百分比产生的结果准确性较低。最后,我们以田间条件下的一个实例展示并讨论了从转基因玉米到传统玉米的花粉介导基因流动模式。

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