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首页> 外文期刊>Phytopathology >The Usefulness of Fungicide Mixtures and Alternation for Delaying the Selection for Resistance in Populations of Mycosphaerella graminicola on Winter Wheat: A Modeling Analysis
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The Usefulness of Fungicide Mixtures and Alternation for Delaying the Selection for Resistance in Populations of Mycosphaerella graminicola on Winter Wheat: A Modeling Analysis

机译:杀菌剂混合物和替代品对延缓冬小麦分枝杆菌种群抗性选择的有用性:建模分析

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摘要

A fungicide resistance model (reported and tested previously) was amended to describe the development of resistance in Mycosphaerella graminicola populations in winter wheat (Triticum aestivum) crops in two sets of fields, connected by spore dispersal. The model was used to evaluate the usefulness of concurrent, alternating, or mixture use of two high-resistance-risk fungicides as resistance management strategies. We determined the effect on the usefulness of each strategy of (i) fitness costs of resistance, (ii) partial resistance to fungicides, (iii) differences in the dose-response curves and decay rates between fungicides, and (iv) different frequencies of the double-resistant strain at the start of a treatment strategy. Parameter values for thequinine outside inhibitor pyraclostrobin were used to represent two fungicides with differing modes of action. The effectiveness of each strategy was quantified as the maximum number of growing seasons that disease was effectively controlled in both sets of fields. For all scenarios, the maximum effective lives achieved by the use of the strategies were in the order mixtures > alternation > concurrent use. Mixtures were of particular benefit where the pathogen strain resistant to both modes of action incurred a fitness penalty or was present at a low initial frequency.
机译:对杀真菌剂抗药性模型(以前进行过报告和测试)进行了修正,以描述通过孢子散布连接的两组田间冬小麦(Triticum aestivum)作物中的重链霉菌种群抗药性的发展。该模型用于评估同时使用,交替使用或混合使用两种高抗性风险杀菌剂作为抗性管理策略的有效性。我们确定了(i)抗药性的适应性成本,(ii)对杀真菌剂的部分抗性,(iii)杀真菌剂之间的剂量反应曲线和衰减率的差异以及(iv)不同频率的杀虫剂对每种策略的有效性的影响。治疗策略开始时的双重耐药菌株。外部抑制剂吡咯菌酯的奎宁参数值用来代表两种具有不同作用方式的杀真菌剂。将每种策略的有效性量化为在这两个领域中都能有效控制疾病的最大生长期。在所有情况下,使用策略所获得的最大有效寿命依次为混合>交替>并用。当对两种作用方式均具有抗性的病原体菌株引起适应性下降或出现频率较低时,混合物特别有用。

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