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首页> 外文期刊>NJAS Wageningen Journal of Life Sciences >Pollen-mediated gene flow in maize tested for coexistence of GM and non-GM crops in the Netherlands: effect of isolation distances between fields
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Pollen-mediated gene flow in maize tested for coexistence of GM and non-GM crops in the Netherlands: effect of isolation distances between fields

机译:在荷兰,花粉介导的基因流在玉米中的转基因和非转基因作物共存测试:田间隔离距离的影响

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摘要

In 2006 and 2007, field trials were performed to study the effects of the two isolation distances indicated by the Dutch Coexistence Committee, i.e., 25 in between GM (genetically modified) and conventional maize, and 250 in between GM and deliberately non-GM (e.g., organic) maize, on pollen-mediated gene flow (PMGF) under representative agricultural conditions in the Netherlands. Each isolation distance was tested at three different locations across the Netherlands in both years. For testing PMGF with the 25 M isolation distance, GM source fields of 100 in x 100 m (1 ha) were surrounded by four equally sized non-GM receptor fields at a distance Of 25 m. For testing PGMF with the 250 m isolation distance, 1-ha GM source fields were surrounded by four 50 m x 50 m (0.25 ha) receptor fields in four different directions at 250 m. For the GM source field, the maize variety DKc3421YG containing the MON810 event was used with both distances. A maize variety near-isogenic to the GM variety was grown in the receptor fields to obtain good flowering synchronicity between GM and non-GM maize and thus optimal conditions for PGMF. Levels of the transgene in grain samples from the receptor fields were measured by a validated real-time PCR (polymerase chain reaction) quantification method for the MON810 event. Analyses showed the following levels of grain admixture as a consequence of PMGF, averaged over 12 fields for each isolation distance tested: at 25 m 0.084% (individual field averages ranged from 0.009% to 0.296%) in 2006 and 0.080% (0.002% to 0.318%) in 2007, respectively, and at 250 m 0.005% (individual field averages ranged from 0 to 0.040%) in 2006 and 0.007% (0 to 0.037%) in 2007, respectively. Although weather conditions clearly differed between 2006 and 2007 (a hot and dry summer in 2006 vs. a relatively wet one with about-average temperatures in 2007), outcrossing rates did not differ significantly between these years.
机译:在2006年和2007年,进行了田间试验,以研究荷兰共存委员会指出的两个隔离距离的影响,即转基因(转基因)玉米与常规玉米之间的间隔为25,而转基因和故意非转基因玉米之间的间隔为250(在荷兰具有代表性的农业条件下,通过花粉介导的基因流(PMGF)转化为有机玉米。两年中,每个隔离距离均在荷兰的三个不同位置进行了测试。为了以25 M的隔离距离测试PMGF,将100 in x 100 m(1 ha)的GM源场包围在25 m处的四个大小相等的非GM受体场。为了测试隔离距离为250 m的PGMF,将1-ha GM源场在250 m处的四个不同方向上被四个50 m x 50 m(0.25 ha)受体场包围。对于GM来源字段,两个距离都使用了包含MON810事件的玉米品种DKc3421YG。在受体田中生长了与转基因品种近等基因的玉米品种,从而在转基因和非转基因玉米之间获得了良好的开花同步性,从而获得了PGMF的最佳条件。通过针对MON810事件的经过验证的实时PCR(聚合酶链反应)定量方法,对来自受体区域的谷物样品中的转基因水平进行了测量。分析表明,PMGF导致以下谷物掺混物水平,对于每个测试的隔离距离平均为12个田地:2006年为25 m 0.084%(每个田地的平均范围为0.009%至0.296%)和0.080%(0.002%至0.002%)。分别为2007年的0.318%和250 m处的0.005%(2006年每个场的平均值在0%到0.040%之间)和2007年的0.007%(0到0.037%)。尽管2006年至2007年之间的天气条件明显不同(2006年夏季炎热干燥,而2007年夏季温度相对偏湿,相对较湿),但这些年的异族交接率没有显着差异。

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