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结合选择压力以增强抗病基因的持久性。

Combining Selective Pressures to Enhance the Durability of Disease Resistance Genes.

出版信息

Front Plant Sci. 2016 Dec 23;7:1916. doi: 10.3389/fpls.2016.01916. eCollection 2016.

Abstract

The efficacy of disease resistance genes in plants decreases over time because of the selection of virulent pathogen genotypes. A key goal of crop protection programs is to increase the durability of the resistance conferred by these genes. The spatial and temporal deployment of plant disease resistance genes is considered to be a major factor determining their durability. In the literature, four principal strategies combining resistance genes over time and space have been considered to delay the evolution of virulent pathogen genotypes. We reviewed this literature with the aim of determining which deployment strategy results in the greatest durability of resistance genes. Although theoretical and empirical studies comparing deployment strategies of more than one resistance gene are very scarce, they suggest that the overall durability of disease resistance genes can be increased by combining their presence in the same plant (pyramiding). Retrospective analyses of field monitoring data also suggest that the pyramiding of disease resistance genes within a plant is the most durable strategy. By extension, we suggest that the combination of disease resistance genes with other practices for pathogen control (pesticides, farming practices) may be a relevant management strategy to slow down the evolution of virulent pathogen genotypes.

摘要

由于毒性病原体基因型的选择,植物中抗病基因的功效会随着时间而降低。作物保护计划的一个关键目标是提高这些基因所赋予抗性的持久性。植物抗病基因的时空部署被认为是决定其持久性的一个主要因素。在文献中,四种在时间和空间上组合抗病基因的主要策略已被认为可延缓毒性病原体基因型的进化。我们回顾了这一文献,目的是确定哪种部署策略能使抗病基因具有最大的持久性。尽管比较一种以上抗病基因部署策略的理论和实证研究非常稀少,但它们表明,通过将抗病基因存在于同一植物中(基因叠加),可以提高抗病基因的总体持久性。对田间监测数据的回顾性分析也表明,植物内抗病基因的叠加是最持久的策略。由此推断,我们认为将抗病基因与其他病原体控制措施(农药、耕作措施)相结合可能是减缓毒性病原体基因型进化的一种相关管理策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/90f3/5180194/8a26b9de64fd/fpls-07-01916-g001.jpg

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