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首页> 外文期刊>Journal of evolutionary biology >Modelling the spatial configuration of refuges for a sustainable control of pests: a case study of Bt cotton
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Modelling the spatial configuration of refuges for a sustainable control of pests: a case study of Bt cotton

机译:对避难所的空间配置进行建模以可持续控制害虫:以Bt棉为例

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摘要

The 'high-dose-refuge' (HDR) strategy is widely recommended by the biotechnology industry and regulatory authorities to delay pest adaptation to transgenic crops that produce Bacillus thuringiensis (Bt) toxins. This involves cultivating nontoxic plants (refuges) in close proximity to crops producing a high dose of Bt toxin. The principal cost associated with this strategy is due to yield losses suffered by farmers growing unprotected, refuge plants. Using a population genetic model of selection in a spatially heterogeneous environment, we show the existence of an optimal spatial configuration of refuges that could prevent the evolution of resistance whilst reducing the use of costly refuges. In particular, the sustainable control of pests is achievable with the use of more aggregated distributions of nontransgenic plants and transgenic plants producing lower doses of toxin. The HDR strategy is thus suboptimal within the context of sustainable agricultural development.
机译:生物技术行业和监管机构广泛建议采用“高剂量避难所”(HDR)策略,以延迟害虫对产生苏云金芽孢杆菌(Bt)毒素的转基因作物的适应。这涉及在产生高剂量Bt毒素的作物附近种植无毒植物(避难所)。与该策略相关的主要成本是由于种植无保护的避难植物的农民遭受的产量损失。在空间异质性环境中使用选择的种群遗传模型,我们显示了避难所的最佳空间配置的存在,可以防止抗性的演变,同时减少使用昂贵的避难所。特别地,通过使用非聚集性植物和产生较低剂量毒素的转基因植物的更聚集分布,可以实现对害虫的可持续控制。因此,在可持续农业发展的背景下,人类发展报告战略并不理想。

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