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Cross-resistance and interactions between Bt toxins Cry1Ac and Cry2Ab against the cotton bollworm

机译:Bt毒素Cry1Ac和Cry2Ab对棉铃虫的交叉抗性和相互作用

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摘要

To delay evolution of pest resistance to transgenic crops producing insecticidal proteins from Bacillus thuringiensis (Bt), the "pyramid" strategy uses plants that produce two or more toxins that kill the same pest. We conducted laboratory diet experiments with the cotton bollworm, Helicoverpa armigera, to evaluate cross-resistance and interactions between two toxins in pyramided Bt cotton (Cry1Ac and Cry2Ab). Selection with Cry1Ac for 125 generations produced 1000-fold resistance to Cry1Ac and 6.8-fold cross-resistance to Cry2Ab. Selection with Cry2Ab for 29 generations caused 5.6-fold resistance to Cry2Ab and 61-fold cross-resistance to Cry1Ac. Without exposure to Bt toxins, resistance to both toxins decreased. For each of the four resistant strains examined, 67 to 100% of the combinations of Cry1Ac and Cry2Ab tested yielded higher than expected mortality, reflecting synergism between these two toxins. Results showing minor cross-resistance to Cry2Ab caused by selection with Cry1Ac and synergism between these two toxins against resistant insects suggest that plants producing both toxins could prolong the efficacy of Bt cotton against this pest in China. Including toxins against which no cross-resistance occurs and integrating Bt cotton with other control tactics could also increase the sustainability of management strategies.
机译:为了延缓害虫对产生苏云金芽胞杆菌(Bt)的杀虫蛋白的转基因农作物的抗性进化,“金字塔”策略使用产生两种或多种毒素的植物来杀死同一害虫。我们用棉铃虫Helicoverpa armigera进行了实验室饮食实验,以评估金字塔状Bt棉(Cry1Ac和Cry2Ab)中两种毒素之间的交叉抗性和相互作用。使用Cry1Ac选择125代后,其对Cry1Ac的抗性为1000倍,对Cry2Ab的交叉抗性为6.8倍。使用Cry2Ab选择29代后,对Cry2Ab的抗性是5.6倍,对Cry1Ac的交叉抗性是61倍。如果不接触Bt毒素,则对两种毒素的抵抗力都会下降。对于所检查的四种抗性菌株中的每一种,所测试的Cry1Ac和Cry2Ab组合的67%至100%产生了高于预期的死亡率,反映了这两种毒素之间的协同作用。结果表明,通过选择Cry1Ac引起的对Cry2Ab的较小交叉抗性以及这两种毒素对抗性昆虫的协同作用表明,在中国产生这两种毒素的植物都可以延长Bt棉对这种害虫的功效。包括没有交叉抗性的毒素,以及将Bt棉与其他控制策略结合使用,也可以提高管理策略的可持续性。

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