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Adaptive management of pest resistance by Helicoverpa species (Noctuidae) in Australia to the Cry2Ab Bt toxin in Bollgard II® cotton

机译:澳大利亚Helicoverpa种(Noctuidae)对害虫对BollgardII®棉中Cry2Ab Bt毒素的抗性适应性管理

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摘要

In Australia, monitoring Helicoverpa species for resistance to the Cry2Ab toxin in second generation Bacillus thuringiensis (Bt) cotton has precisely fulfilled its intended function: to warn of increases in resistance frequencies that may lead to field failures of the technology. Prior to the widespread adoption of two-gene Bt cotton, the frequency of Cry2Ab resistance alleles was at least 0.001 in H. armigera and H. punctigera. In the 5 years hence, there has been a significant and apparently exponential increase in the frequency of alleles conferring Cry2Ab resistance in field populations of H. punctigera. Herein we review the history of deploying and managing resistance to Bt cotton in Australia, outline the characteristics of the isolated resistance that likely impact on resistance evolution, and use a simple model to predict likely imminent resistance frequencies. We then discuss potential strategies to mitigate further increases in resistance frequencies, until the release of a third generation product. These include mandating larger structured refuges, applying insecticide to crops late in the season, and restricting the area of Bollgard II® cotton. The area planted to Bt-crops is anticipated to continue to rise worldwide; therefore the strategies being considered in Australia are likely to relate to other situations.
机译:在澳大利亚,监测Helicoverpa菌种对第二代苏云金芽孢杆菌(Bt)苏云金芽孢杆菌(Ct2)棉中对Cry2Ab毒素的抗性已完全实现了其预期的功能:警告增加抗性频率,这可能会导致该技术在田间失效。在广泛采用二基因Bt棉花之前,棉铃虫和点状杆菌中Cry2Ab抗性等位基因的频率至少为0.001。因此,在这5年中,在点点状杆菌田间种群中,赋予Cry2Ab抗性的等位基因频率显着增加,并且呈指数增长。在这里,我们回顾了在澳大利亚部署和管理Bt棉的抗性的历史,概述了可能影响抗性演变的孤立抗性的特征,并使用简单的模型来预测可能出现的抗性频率。然后,我们讨论了缓解电阻频率进一步增加的潜在策略,直到第三代产品发布为止。这些措施包括规定更大的结构化避难所,在季节后期向农作物施用杀虫剂以及限制BollgardII®棉花的面积。预计全球Bt作物的播种面积将继续增加。因此,澳大利亚正在考虑的策略可能与其他情况有关。

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