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'Active' refuges can inhibit the evolution of resistance in insects towards transgenic insect-resistant plants.

机译:“主动”避难所可以抑制昆虫对转基因抗虫植物的抗性进化。

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摘要

Negative cross-resistance (NCR) toxins that hitherto have not been thought to have practical uses may indeed be useful in the management of resistance alleles. Practical applications of NCR for pest management have been limited (i) by the scarcity of high toxicity NCR toxins among pesticides, (ii) by the lack of systematic methodologies to discover and develop such toxins, as well as (iii) by the lack of deployment tactics that would make NCR attractive. Here we present the concept that NCR toxins can improve the effectiveness of refuges in delaying the evolution of resistance by herbivorous insect pests to transgenic host plants containing insecticidal toxins. In our concept, NCR toxins are deployed in the refuge, and thus are physically separated from the transgenic plants containing the primary plant-protectant gene (PPPG) encoding an insecticidal toxin. Our models show: (i) that use of NCR toxins in the refuge dramatically delays the increase in the frequency of resistance alleles in the insect population; and (ii) that NCR toxins that are only moderately effective in killing insects resistant to the PPPG can greatly improve the durability of transgenic insecticidal toxins. Moderately toxic NCR toxins are more effective in minimizing resistance development in the field when they are deployed in the refuge than when they are pyramided with the PPPG. We explore the potential strengths and weaknesses of deploying NCR toxins in refuges.
机译:迄今为止尚未被认为具有实际用途的负交叉耐药性(NCR)毒素可能确实可用于耐药性等位基因的管理。 NCR在有害生物管理中的实际应用受到限制(i)农药中稀缺的高毒性NCR毒素,(ii)缺乏发现和开发此类毒素的系统方法,以及(iii)缺乏杀虫剂使NCR更具吸引力的部署策略。在这里,我们提出了NCR毒素可以提高避难所的效率的概念,该避难所可以延缓草食性害虫对含有杀虫毒素的转基因宿主植物的抗性进化。在我们的概念中,NCR毒素部署在避难所中,因此与含有编码杀虫毒素的主要植物保护基因(PPPG)的转基因植物物理分离。我们的模型表明:(i)在避难所中使用NCR毒素显着延迟了昆虫种群中抗性等位基因频率的增加; (ii)仅对杀灭对PPPG有抗性的昆虫有效的NCR毒素可以大大提高转基因杀虫毒素的耐久性。中毒性NCR毒素在避难所中部署时比在与PPPG金字塔化时更有效地最小化田间的抗药性。我们探讨了在避难所中部署NCR毒素的潜在优势和劣势。

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