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Managing the risk of glyphosate resistance in Australian glyphosate-resistant cotton production systems.

机译:在澳大利亚抗草甘膦棉花生产系统中管理抗草甘膦的风险。

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BACKGROUND: Glyphosate-resistant cotton varieties are an important tool for weed control in Australian cotton production systems. To increase the sustainability of this technology and to minimise the likelihood of resistance evolving through its use, weed scientists, together with herbicide regulators, industry representatives and the technology owners, have developed a framework that guides the use of the technology. Central to this framework is a crop management plan (CMP) and grower accreditation course. A simulation model that takes into account the characteristics of the weed species, initial gene frequencies and any associated fitness penalties was developed to ensure that the CMP was sufficiently robust to minimise resistance risks. RESULTS: The simulations showed that, when a combination of weed control options was employed in addition to glyphosate, resistance did not evolve over the 30 year period of the simulation. CONCLUSION: These simulations underline the importance of maintaining an integrated system for weed management to prevent the evolution of glyphosate resistance, prolonging the use of glyphosate-resistant cotton.
机译:背景:抗草甘膦棉花品种是控制澳大利亚棉花生产系统中杂草的重要工具。为了提高该技术的可持续性并最大程度地减少通过使用该技术产生抗药性的可能性,杂草科学家与除草剂管理者,行业代表和技术所有者共同开发了指导该技术使用的框架。该框架的核心是作物管理计划(CMP)和种植者认证课程。建立了一个模拟模型,该模型考虑了杂草物种的特征,初始基因频率以及任何相关的适应性惩罚,以确保CMP具有足够的鲁棒性,以最大程度地降低抗药性风险。结果:模拟显示,当除草甘膦之外还采用杂草控制选项的组合时,在模拟的30年中,抗药性没有变化。结论:这些模拟强调了维持杂草处理集成系统以防止草甘膦抗性演变,延长抗草甘膦棉花使用时间的重要性。

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