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High crop barrier reduces gene flow from transgenic to conventional maize in large fields

机译:高农作物屏障可减少大田中从转基因玉米到常规玉米的基因流动

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To test the effectiveness of high crop barriers in reducing gene flow, we conducted experiments in two large fields (around 750 m x 750 m) using yellow transgenic maize and white conventional maize in the growth season of 2013, with Sorghum as a high crop barrier in a shape of 5 m zone. Sorghum barrier affected pollen load at different directions, decreasing pollen number in further locations. It also decreased the cross-pollination incidence between transgenic and non-transgenic maize, with a average rate of 9.35% in the open site and 1.04% in the Sorghum site. But Sorghum barrier had little effect on the maximum distance of pollen flow and cross-pollination, which depends on wind direction and speed. The maximum distance of gene flow from transgenic to conventional maize was 300 m in the open site and 350 m in the Sorghum site. High crop barrier could be proposed as an effective method to reduce the frequency of gene flow from transgenic to conventional crops and to regulate their coexistence. (C) 2015 Elsevier B.V. All rights reserved.
机译:为了测试高作物壁垒降低基因流的有效性,我们在2013年生长季节使用黄色转基因玉米和白色常规玉米在两个大田地(约750 mx 750 m)上进行了试验,其中高粱是高作物壁垒。 5 m区域的形状。高粱屏障影响了不同方向上的花粉负荷,从而降低了其他位置的花粉数量。它也降低了转基因玉米和非转基因玉米之间的异花授粉发生率,在开放位点和高粱位点的平均发生率为9.35%。但是,高粱屏障对花粉流动和异花传粉的最大距离影响很小,这取决于风向和风速。从转基因玉米到常规玉米的最大基因流距离在开放位点为300 m,在高粱位点为350 m。可以提出高作物屏障作为减少从转基因作物到常规作物的基因流频率并调节其共存的有效方法。 (C)2015 Elsevier B.V.保留所有权利。

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