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Evolution of Asian Corn Borer Resistance to Bt Toxins Used Singly or in Pairs

机译:单独或成对使用亚洲玉米B对Bt毒素的抗性演变

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摘要

Transgenic crops producing insecticidal proteins from Bacillus thuringiensis (Bt) have revolutionized pest control, but the benefits of this approach have been reduced by the evolution of resistance in pests. The widely adopted ’pyramid strategy’ for delaying resistance entails transgenic crops producing two or more distinct toxins that kill the same pest. The limited experimental evidence supporting this strategy comes primarily from a model system under ideal conditions. Here we tested the pyramid strategy under nearly worst-case conditions, including some cross-resistance between the toxins in the pyramid. In a laboratory selection experiment with an artificial diet, we used Bt toxins Cry1Ab, Cry1F, and Cry1Ie singly or in pairs against Ostrinia furnacalis, one of the most destructive pests of corn in Asia. Under the conditions evaluated, pairs of toxins did not consistently delay the evolution of resistance relative to single toxins.
机译:从苏云金芽孢杆菌(Bt)生产杀虫蛋白的转基因农作物彻底改变了害虫控制,但这种方法的好处因害虫的抗性演变而降低。为延缓抗药性而广泛采用的“金字塔策略”要求转基因作物产生两种或两种以上可杀死同一害虫的独特毒素。支持该策略的有限实验证据主要来自理想条件下的模型系统。在这里,我们在几乎最坏的情况下测试了金字塔策略,包括金字塔中毒素之间的一些交叉耐药性。在采用人工饮食的实验室选择实验中,我们单独或成对使用了Bt毒素Cry1Ab,Cry1F和Cry1Ie对抗亚洲玉米中最具破坏性的害虫之一Ostrinia furnacalis。在所评估的条件下,相对于单一毒素,成对的毒素并不能始终如一地延迟耐药性的演变。

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