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Pollen-mediated gene flow from transgenic cotton is constrained by physical isolation measures

机译:来自转基因棉的花粉介导的基因流动受到物理隔离措施的约束

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The public concern about pollen-mediated gene flow (PGF) from genetically modified (GM) crops to non-GM crops heats up in recent years over China. In the current study, we conducted greenhouse and field experiments to measure PGF with various physical isolation measures, including 90, 80, 60 and 40 holes/cm2 separation nets and Sorghum bicolor, Zea mays and Lycopersicon esculentum separation crops between GM cotton and non-GM line (Shiyuan321) by seed DNA test during 2013 to 2015, and pollen grain dyeing was also conducted to assess the pollen flow in greenhouse during 2013. Our results revealed that (1) PGF varied depending on the physical isolation measures. PGF was the lowest with 90 holes/cm2 separation net and S. bicolor separation crop, and the highest with 40 holes/cm2 separation net and no isolation measure. (2) Similar to PGF results, 90 holes/cm2 separation net and S. bicolor separation crop could minimize the pollen dispersal. (3) PGF declined exponentially with increasing distance between GM cotton and Shiyuan321. Because of the production mode of farm household (limited cultivated area) in China, our study is particularly important, which is not only benefit for constraining PGF, but also has potential application value in practical production and the scientific researches.
机译:近年来,对来自遗传修饰(GM)作物的花粉介导的基因流(PGF)的公众关注于中国的非转基因作物。在目前的研究中,我们进行了温室和现场实验,以测量PGF,具有各种物理隔离措施,包括90,80,60和40孔/ CM2分离网和高粱双子,Zea Mays和Lycopersicon Esculentum分离作物在GM棉和非GM线(Shiyuan321)通过2013年至2015年的种子DNA测试,还进行了花粉晶粒染色,以评估2013年温室的花粉流量。我们的结果表明,(1)PGF根据物理隔离措施而变化。 PGF是具有90孔/ CM2分离网和S.双子分离作物的最低型,最高,40个孔/ CM2分离网,无隔离度量。 (2)类似于PGF结果,90个孔/ CM2分离网和S.双子分离作物可以最小化花粉分散。 (3)PGF随着GM棉花与石源321之间的距离越来越大。由于中国农户的生产方式(有限的耕地面积),我们的研究尤为重要,这不仅可以受益于限制PGF,而且在实际生产和科学研究中也具有潜在的应用价值。

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