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High-Resolution Gene Flow Model for Assessing Environmental Impacts of Transgene Escape Based on Biological Parameters and Wind Speed

机译:基于生物参数和风速的转基因逃逸对环境影响的高分辨率基因流模型

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摘要

Environmental impacts caused by transgene flow from genetically engineered (GE) crops to their wild relatives mediated by pollination are longstanding biosafety concerns worldwide. Mathematical modeling provides a useful tool for estimating frequencies of pollen-mediated gene flow (PMGF) that are critical for assessing such environmental impacts. However, most PMGF models are impractical for this purpose because their parameterization requires actual data from field experiments. In addition, most of these models are usually too general and ignored the important biological characteristics of concerned plant species; and therefore cannot provide accurate prediction for PMGF frequencies. It is necessary to develop more accurate PMGF models based on biological and climatic parameters that can be easily measured in situ. Here, we present a quasi-mechanistic PMGF model that only requires the input of biological and wind speed parameters without actual data from field experiments. Validation of the quasi-mechanistic model based on five sets of published data from field experiments showed significant correlations between the model-simulated and field experimental-generated PMGF frequencies. These results suggest accurate prediction for PMGF frequencies using this model, provided that the necessary biological parameters and wind speed data are available. This model can largely facilitate the assessment and management of environmental impacts caused by transgene flow, such as determining transgene flow frequencies at a particular spatial distance, and establishing spatial isolation between a GE crop and its coexisting non-GE counterparts and wild relatives.
机译:传粉介导的转基因作物从转基因作物流向野生近缘种所造成的环境影响是世界范围内长期存在的生物安全问题。数学建模提供了一个有用的工具,可用于估计对评估此类环境影响至关重要的花粉介导的基因流(PMGF)的频率。但是,大多数PMGF模型在此目的上是不切实际的,因为它们的参数化需要来自现场实验的实际数据。另外,这些模型中的大多数通常过于笼统,而忽略了有关植物物种的重要生物学特性。因此无法为PMGF频率提供准确的预测。有必要根据可以容易就地测量的生物学和气候参数开发更准确的PMGF模型。在这里,我们提出了一种准机械PMGF模型,该模型仅需要输入生物和风速参数,而无需现场实验的实际数据。基于来自现场实验的五组已公开数据的准机械模型的验证表明,模型模拟与现场实验生成的PMGF频率之间存在显着相关性。这些结果表明,只要有必要的生物学参数和风速数据可用,就可以使用该模型对PMGF频率进行准确的预测。该模型可以极大地促进对转基因流造成的环境影响的评估和管理,例如确定特定空间距离处的转基因流频率,以及在转基因作物与其并存的非转基因对应物和野生亲缘种之间建立空间隔离。

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  • 期刊名称 other
  • 作者单位
  • 年(卷),期 -1(11),3
  • 年度 -1
  • 页码 e0149563
  • 总页数 16
  • 原文格式 PDF
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