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首页> 外文期刊>Journal of Economic Entomology >Gene Flow Between Bt and Non-Bt Plants in a Seed Mixture Increases Dominance of Resistance to Pyramided Bt Corn in Helicoverpa zea (Lepidoptera: Noctuidae)
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Gene Flow Between Bt and Non-Bt Plants in a Seed Mixture Increases Dominance of Resistance to Pyramided Bt Corn in Helicoverpa zea (Lepidoptera: Noctuidae)

机译:种子混合物中BT和非BT植物之间的基因流量增加了Helicoverpa Zea(Lepidoptera:Noctuidae)的抗抗抗性的抗性的优势

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For delaying evolution of pest resistance to transgenic corn producing Bacillus thuringiensis (Bt) toxins, limited data are available to compare the effectiveness of refuges of non-Bt corn planted in seed mixtures versus blocks. Here we addressed this issue in the ear-feeding pest Helicoverpa zea Boddie by measuring its survival and development in the laboratory on ears from field plots with 90% Cry1 A.105 + Cry2Ab corn and 10% non-Bt corn planted in a seed mixture or blocks. We compared a strain of H. zea selected for resistance to Cry1 Ac in the laboratory, its parent strain not selected in the laboratory, and their F1 progeny. The relative survival of the F1 progeny and dominance of resistance were higher on ears from Bt plants in the seed mixture than the block. Half of the kernels in ears from non-Bt plants in the seed mixture produced both Cry1A.105 and Cry2Ab. However, survival on ears from non-Bt plants did not differ between the block and seed mixture. In simulations based on the observed survival, resistance to Cry1A.105 + Cry2Ab corn evolved faster with the seed mixture than the blocks, because of the higher dominance of resistance in the seed mixture. Increasing the refuge percentage improved durability of Cry1 A.105 + Cry2Ab corn more for the blocks than the seed mixture.These findings imply that, for a given percentage of non-Bt corn, resistance of H. zea and other ear-feeding pests to multi-toxin Bt corn is likely to evolve faster for seed mixtures than blocks.
机译:为了延缓害虫对产生苏云金芽孢杆菌(Bt)毒素的转基因玉米抗性的演变,有限的数据可用于比较种植在混合种子中的非Bt玉米和块体中的避难所的有效性。在这里,我们通过在实验室对90%Cry1 A.105+Cry2Ab玉米和10%非Bt玉米种植在种子混合物或块中的田间地块上的果穗进行测定,在食穗害虫Helicoverp zea Boddie中解决了这个问题。我们比较了在实验室中选择的抗Cry1 Ac的玉米赤霉病菌菌株、未在实验室中选择的其亲本菌株及其F1后代。种子混合物中Bt植株的F1后代的相对存活率和抗性优势度高于对照组。在种子混合物中,来自非Bt植物的果穗中有一半的果仁同时产生Cry1A和Cry1A。105和Cry2Ab。然而,在非Bt植物的果穗上,块茎和种子混合物的存活率没有差异。在基于观察到的存活率的模拟中,对Cry1A的抗性。105+Cry2Ab玉米与混合种子相比进化更快,因为混合种子中的抗性优势更高。增加避难百分比比种子混合物更能提高Cry1 A.105+Cry2Ab玉米的耐用性。这些发现意味着,对于一定比例的非Bt玉米,玉米赤霉病菌和其他食穗害虫对多毒素Bt玉米的抗性可能在混合种子中比在块茎中发展得更快。

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