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Development and validation of IPM strategies for the cultivation of cisgenically modified late blight resistant potato

机译:关于Cisgencey改性晚期抗性马铃薯培养的IPM策略的开发与验证

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Potato late blight disease remains the primary stressor of commercial potato production across the EU, typically requiring & 10 fungicide applications per growing season to offset crop losses. In response, the goal of this study was to test and validate a novel, more durable, control strategy for potato late blight. This IPM2.0 strategy is based on the principles of Integrated Pest Management (IPM) which sees the deployment of a late blight resistant potato genotype, a cisgenically modified, Desiree based resistant potato line here, in conjunction with pathogen population monitoring for virulence to the resistance genes (R genes) deployed and a "do not spray unless", low input fungicide spray strategy. Field evaluations were completed in the Netherlands and in Ireland in 2013, 2014 and in Ireland in 2015. Comparators used in this study included the original but susceptible potato variety Desiree and the conventional but highly resistant variety Sarpo Mira. The novel IPM2.0 strategy was compared to local common practice (fungicide applications on a near weekly basis) and an untreated control. Overall, the IPM2.0 control strategy validated here reduced the average fungicide input by 80-90% without compromising control efficacy. Corresponding environmental side-effects were reduced proportionally. The results underline the pragmatic role host resistance can provide to commercial potato production systems and to society at large if employed as part of an integrated late blight control system.
机译:马铃薯晚枯病仍然是欧盟的商业土豆生产的主要压力源,通常需要& 每次生长季节的10种杀菌剂应用抵消作物损失。作为回应,本研究的目标是测试和验证一种新颖,更耐用,控制马铃薯迟到枯萎的策略。此IPM2.0策略基于综合害虫管理原则(IPM),其认为,在此,联合病原体种群监测与病原体种群监测结合在此处的综合害虫抗性马铃薯基因型抵抗基因(R基因)部署和“否则”,除非“,低输入杀菌剂喷雾策略。现场评估在2013年,2013年,2015年在2015年和爱尔兰在爱尔兰完成了现场评估。本研究中使用的比较器包括原始但易感的马铃薯品种Desiree和常规但高度抗拒的品种Sarpo Mira。将新颖的IPM2.0策略与局部常规做法进行比较(临时每周杀菌剂应用)和未经治疗的对照。总体而言,验证的IPM2.0控制策略在这里减少了80-90%的平均杀菌剂,而不会损害控制效能。相应的环境副作用比例减少。结果强调了务实的作用宿主阻力可以为商业马铃薯生产系统和社会作为综合晚期枯萎控制系统的一部分提供。

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