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Virulence evolution of a generalist plant virus in a heterogeneous host system

机译:通用宿主系统中通才植物病毒的毒力进化

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摘要

Modelling virulence evolution of multihost parasites in heterogeneous host systems requires knowledge of the parasite biology over its various hosts. We modelled the evolution of virulence of a generalist plant virus, Cucumber mosaic virus (CMV) over two hosts, in which CMV genotypes differ for within-host multiplication and virulence. According to knowledge on CMV biology over different hosts, the model allows for inoculum flows between hosts and for host co-infection by competing virus genotypes, competition affecting transmission rates to new hosts. Parameters of within-host multiplication, within-host competition, virulence and transmission were determined experimentally for different CMV genotypes in each host. Emergence of highly virulent genotypes was predicted to occur as mixed infections, favoured by high vector densities. For most simulated conditions, evolution to high virulence in the more competent Host 1 was little dependent on inoculum flow from Host 2, while in Host 2, it depended on transmission from Host 1. Virulence evolution bifurcated in each host at low, but not at high, vector densities. There was no evidence of between-host trade-offs in CMV life-history traits, at odds with most theoretical assumptions. Predictions agreed with field observations and are relevant for designing control strategies for multihost plant viruses.
机译:在异质宿主系统中对多宿主寄生虫的毒力演变进行建模需要了解其各种宿主上的寄生虫生物学知识。我们模拟了通体植物病毒黄瓜花叶病毒(CMV)在两个宿主上的毒力进化,其中CMV基因型在宿主内繁殖和毒力上不同。根据不同宿主上CMV生物学的知识,该模型允许宿主之间的接种体流动以及通过竞争性病毒基因型共同感染宿主,从而影响到新宿主的传播速率。对于每个宿主中不同的CMV基因型,实验确定了宿主内繁殖,宿主内竞争,毒力和传播的参数。高毒力基因型的出现预计会以混合感染的形式出现,并受到高载体密度的青睐。对于大多数模拟条件,能力更强的宿主1向高毒力的转化几乎不依赖于来自宿主2的接种量,而在宿主2中,它依赖于宿主1的传播。在每个宿主中,毒力的演化分叉得很低,但不高于高矢量密度。没有证据表明CMV生活史特征在宿主之间进行权衡,这与大多数理论假设是矛盾的。预测与现场观察一致,并且与设计多宿主植物病毒的控制策略有关。

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