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A model to evaluate the consequences of GM and non-GM segregation scenarios on GM crop placement in the landscape and cross-pollination risk management.

机译:一个模型,用于评估转基因和非转基因分离情景对转基因作物在景观和异花授粉风险管理中的影响。

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摘要

Under European regulations, a product is labelled as GM (genetically modified) if more than 0.9% of one of its ingredients originates from GM material. During collection, crops from many fields are combined to fill a silo. To avoid the risk of mixing GM and non-GM harvests, it is possible to dedicate a silo to a given crop or to define specific times for GM and non-GM product delivery to silos. To evaluate these scenarios for the maize supply chain, we propose a combination of a model of farmers' varietal choice (based on profit evaluation at the field level, taking into account transport costs as well as price and cost differences between GM and non-GM products) and a spatially-explicit gene flow model. Consequences of different segregation strategies for collection zone organization can therefore be compared while using the percentage of GM grain in non-GM crops due to cross-pollination. The 'temporal' strategy leads to a uniform area of GM or non-GM maize, depending on the prices and the weather risks. The 'spatial' strategy leads to areas of either GM or non-GM crops surrounding the corresponding collection silo. GM presence in non-GM batches depends on the size of the non-GM zone and on the prevailing wind. We show how divergent commercial strategies of grain merchants could have consequences on GM presence in non-GM batches.
机译:根据欧洲法规,如果一种产品的成分中有超过0.9%源自GM材料,则该产品被标记为GM(转基因)。在收集过程中,将来自许多田地的农作物合并起来填满了一个筒仓。为避免将转基因和非转基因收获混合的风险,可以将筒仓专用于给定的作物,或定义将转基因和非转基因产品输送到筒仓的特定时间。为了评估玉米供应链的这些情况,我们建议结合农民的品种选择模型(基于田间水平的利润评估,同时考虑运输成本以及转基因和非转基因之间的价格和成本差异)产品)和空间明确的基因流模型。因此,可以比较不同隔离策略对收集区组织的影响,同时使用由于异花授粉而在非转基因作物中使用转基因谷物的百分比。根据价格和天气风险,“时间”策略导致转基因或非转基因玉米面积均匀。 “空间”策略导致转基因或非转基因农作物围绕相应的收集筒仓。非转基因批次中是否存在转基因取决于非转基因区域的大小和盛行风。我们展示了谷物商人的不同商业策略如何对非转基因批次中的转基因存在产生影响。

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