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嵌合体通常优于金字塔:一种比较在农业景观中部署植物抗病毒抗性基因策略的模型的见解。

Mosaics often outperform pyramids: insights from a model comparing strategies for the deployment of plant resistance genes against viruses in agricultural landscapes.

机构信息

UMR 1065, INRA, Villenave d'Ornon, F-33882, France.

UR 407, Pathologie Végétale, INRA, Montfavet, F-84140, France.

出版信息

New Phytol. 2017 Oct;216(1):239-253. doi: 10.1111/nph.14701. Epub 2017 Aug 4.

Abstract

The breakdown of plant virus resistance genes is a major issue in agriculture. We investigated whether a set of resistance genes would last longer when stacked into a single plant cultivar (pyramiding) or when deployed individually in regional mosaics (mosaic strategy). We modeled the genetic and epidemiological processes shaping the demogenetic dynamics of viruses under a multilocus gene-for-gene system, from the plant to landscape scales. The landscape consisted of many fields, was subject to seasonality, and of a reservoir hosting viruses year-round. Strategy performance depended principally on the fitness costs of adaptive mutations, epidemic intensity before resistance deployment and landscape connectivity. Mosaics were at least as good as pyramiding strategies in most production situations tested. Pyramiding strategies performed better only with slowly changing virus reservoir dynamics. Mosaics are more versatile than pyramiding strategies, and we found that deploying a mosaic of three to five resistance genes generally provided effective disease control, unless the epidemics were driven mostly by within-field infections. We considered the epidemiological and evolutionary mechanisms underlying the greater versatility of mosaics in our case study, with a view to providing breeders and growers with guidance as to the most appropriate deployment strategy.

摘要

植物病毒抗性基因的崩溃是农业中的一个主要问题。我们研究了一组抗性基因在单个植物品种中(基因叠加)或在区域镶嵌(镶嵌策略)中单独部署时是否会持续更长时间。我们通过多基因对基因系统,从植物到景观尺度,对塑造病毒遗传动态的遗传和流行病学过程进行了建模。景观由许多田地组成,受季节性影响,全年都有病毒库。策略性能主要取决于适应性突变的适合度成本、抗性部署前的流行强度和景观连通性。在测试的大多数生产情况下,镶嵌策略至少与基因叠加策略一样好。只有在病毒库动态变化缓慢的情况下,基因叠加策略才会表现更好。镶嵌策略比基因叠加策略更灵活,我们发现,部署三到五个抗性基因的镶嵌通常可以有效控制疾病,除非流行主要是由田间感染引起的。我们考虑了在我们的案例研究中马赛克策略更大灵活性的流行病学和进化机制,以期为育种者和种植者提供最适当的部署策略的指导。

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