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首页> 外文期刊>Phytopathology >Delaying Selection for Fungicide Insensitivity by Mixing Fungicides at a Low and High Risk of Resistance Development: A Modeling Analysis
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Delaying Selection for Fungicide Insensitivity by Mixing Fungicides at a Low and High Risk of Resistance Development: A Modeling Analysis

机译:通过在低电阻和高电阻抗性风险中混合杀真菌剂来延迟对杀真菌剂不敏感性的选择:模型分析

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Hobbelen, P. H. F., Paveley, N. D., and van den Bosch, F. 2011. Delaying selection for fungicide insensitivity by mixing fungicides at a low and high risk of resistance development: A modeling analysis. Phytopathology 101:1224-1233.This study used mathematical modeling to predict whether mixtures of a high-resistance-risk and a low-risk fungicide delay selection for resistance against the high-risk fungicide. We used the winter wheat and Mycosphaerella graminicola host-pathogen system as an example, with a quinone outside inhibitor fungicide as the high-risk and chlorothalonil as the low-risk fungicide. The usefulness of the mixing strategy was measured as the "effective life": the number of seasons that the disease-induced reduction of the integral of canopy green area index during the yield forming period could be kept <5%. We determined effective lives for strategies in which the dose rate (i) was constant for both the low-risk and high-risk fungicides, (ii) was constant for the low-risk fungicide but could increase for the high-risk fungicide, and (iii) was adjusted for both fungicides but their ratio in the mixture was fixed. The effective life was highest when applying the full label-recommended dose of the low-risk fungicide and adjusting the dose of the high-risk fungicide each season to the level required to maintain effective control. This strategy resulted in a predicted effective life of <= 12 years compared with 3 to 4 years when using the high risk fungicide alone.
机译:Hobbelen,P. H. F.,Paveley,N. D.和van den Bosch,F.2011。通过在低和高耐药性发展风险中混合杀真菌剂来延迟对杀菌剂不敏感性的选择:模型分析。植物病理学101:1224-1233。这项研究使用数学模型来预测高抗性和低风险的杀菌剂的混合延迟选择是否可以抵抗高风险的杀菌剂。我们以冬小麦和重链霉菌为宿主-病原体系统为例,其中醌外抑制剂杀菌剂为高风险,百菌清为低风险杀菌剂。混合策略的有用性用“有效寿命”来衡量:在产量形成期间,疾病引起的冠层绿地指数积分降低的季节数可以保持在5%以下。我们确定了以下策略的有效寿命:在该策略中,剂量率(i)对于低风险和高风险杀真菌剂都是恒定的,(ii)对于低风险杀真菌剂是恒定的,但对于高风险杀真菌剂可以增加,并且(iii)调整了两种杀菌剂,但它们在混合物中的比例是固定的。当应用标签推荐的全剂量低风险杀真菌剂并将每个季节高风险杀真菌剂的剂量调整到维持有效控制所需的水平时,有效寿命最高。与仅使用高风险杀菌剂时的3到4年相比,此策略导致的预期有效寿命<= 12年。

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