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Pollen flow of wheat under natural conditions in the Huanghuai River Wheat Region China

机译:黄淮河流域小麦自然条件下花粉流动

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摘要

The transgenic pollen spread is the main pathway of transgenic plant gene flow. The maximum distance of pollen dispersal (horizontal), the spatial dynamics of pollen movement (vertical), and the patterns of pollen dispersal are important considerations in biosafety assessments of genetically modified crops. To evaluate wheat (Triticum aestivum) pollen dispersal, we measured the pollen suspension velocity and analyzed pollen dispersal patterns under natural conditions in the Huanghuai River wheat-growing region in 2009. The pollen suspension velocity was 0.3–0.4 m/s. The highest pollen densities were detected in the north, northwest, and south of the pollen source. Pollen was dispersed over distances greater than 245 m in the northwest and northeast directions. At the pollen source center, pollen density decreased with increasing vertical height. In the north of the pollen source, the pollen density from 65 m to 225 m showed a wave-mode decrease with increasing height. The horizontal transport of pollen over longer distances fitted polynomial equations. In the north, the pollen density was highest at 45 m from the pollen source, and decreased with increasing distance. In the northwest, the pollen density showed a double-peak trend. In the northeast, pollen density was highest from 45 m to 125 m from the source. Wind speeds greater than the pollen suspension velocity and the duration of continuous gusts were the main factors affecting pollen dispersal. This information will be useful for determining the spatial isolation distances for hybrid seed production and for the commercial production of transgenic wheat.
机译:转基因花粉的传播是转基因植物基因流动的主要途径。花粉散布的最大距离(水平),花粉运动的空间动态(垂直)和花粉散布的方式是对转基因作物进行生物安全性评估的重要考虑因素。为了评估小麦(Triticum aestivum)花粉的散布,我们测量了2009年黄淮河小麦种植区的花粉悬浮速度并分析了自然条件下的花粉散布模式。花粉悬浮速度为0.3–0.4 m / s。在花粉来源的北部,西北部和南部检测到最高的花粉密度。花粉散布在西北和东北方向大于245 m的距离上。在花粉来源中心,花粉密度随垂直高度的增加而降低。在花粉源的北部,花粉密度从65m到225m呈波模随高度增加而降低的趋势。花粉在更长距离上的水平传输符合多项式方程。在北部,距花粉源45 m处的花粉密度最高,并且随着距离的增加而降低。在西北部,花粉密度呈双峰趋势。在东北,从源头开始,花粉密度从45 m到125 m最高。风速大于花粉悬浮速度和阵风持续时间是影响花粉散布的主要因素。该信息对于确定杂交种子生产和商业生产转基因小麦的空间隔离距离将是有用的。

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