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Achieving Durable Resistance Against Plant Diseases: Scenario Analyses with a National-Scale Spatially Explicit Model for a Wind-Dispersed Plant Pathogen

机译:实现耐久性抗植物疾病:方案分析了一种用于风分散植物病原体的国家规模的空间显式模型

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摘要

Genetic resistance in crops is a cornerstone of disease management in agriculture. Such genetic resistance is often rapidly broken due to selection for virulence in the pathogen population. Here, we ask whether there are strategies that can prolong the useful life of plant resistance genes. In a modeling study, we compared four deployment strategies: gene pyramiding, sequential use, simultaneous use, and a mixed strategy. We developed a spatially explicit model for France and parameterized it for the fungal pathogen Puccinia striiformis f. sp. tritici (causing wheat yellow rust) to test management strategies in a realistic spatial setting. We found that pyramiding two new resistance genes in one variety was the most durable solution only when the virulent genotype had to emerge by mutation. Deploying single-gene-resistant varieties concurrently with the pyramided variety eroded the durability of the gene pyramid. We found that continuation of deployment of varieties with broken-down resistance prolonged the useful life of simultaneous deployment of four single-gene-resistant varieties versus sequential use. However, when virulence was already present in the pathogen population, durability was low and none of the deployment strategies had effect. These results provide guidance on effective strategies for using resistance genes in crop protection practice.
机译:作物的遗传性是农业疾病管理的基石。由于在病原体群体中的毒力的选择,这种遗传性通常是迅速破裂的。在这里,我们询问是否存在可以延长植物抗性基因使用寿命的策略。在建模研究中,我们比较了四项部署策略:基因金字塔,顺序使用,同时使用以及混合策略。我们为法国开发了一个空间显式模型,并参数化为真菌病原体PUCCINIA Striformis F. sp。 Tritici(导致小麦黄色生锈)以实际空间环境测试管理策略。我们发现,只有当致毒性基因型不得不被突变出现时,才能在一种多种新的抗性基因中是最耐用的解决方案。将单谷抗性耐腐蚀的单一抗性品种侵蚀,侵蚀基因金字塔的耐久性。我们发现,随着崩溃的阻力部署的延续的延长延长了同时部署四种单对抗性品种的使用寿命与连续使用。然而,当毒力已经存在于病原体种群中时,耐久性低,没有部署策略没有效果。这些结果为使用抗性基因在作物保护实践中的有效策略提供了指导。

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