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Trade-offs and mixed infections in an obligate-killing insect pathogen

机译:在专性杀灭昆虫病原体中的权衡和混合感染

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摘要

1. Natural populations of pathogens are frequently composed of numerous interacting strains. Understanding what maintains this diversity remains a key focus of research in disease ecology. In addition, within-host pathogen dynamics can have a strong impact on both infection outcome and the evolution of pathogen virulence, and thus, understanding the impact of pathogen diversity is important for disease management.ud2. We compared eight genetically distinguishable variants from Spodoptera exempta nucleopolyhedrovirus (SpexNPV) isolated from the African armyworm, Spodoptera exempta. NPVs are obligate killers, and the vast majority of transmission stages are not released until after the host has died.ud3. The NPV variants differed significantly in their virulence and could be clustered into two groups based on their dose–response curves. They also differed in their speed of kill and productivity (transmission potential) for S. exempta. The mixed-genotype wild-type (WT) SpexNPV, from which each variant was isolated, was significantly more virulent than any individual variant and its mean mortality rate was within the fastest group of individual variants. However, the WT virus produced fewer new infectious stages than any single variant, which might reflect competition among the variants.ud4. A survival analysis, combining the mortality and speed of kill data, confirmed the superiority of the genetically mixed WT virus over any single variant. Spodoptera exempta larvae infected with WT SpexNPV were predicted to die 2·7 and 1·9 times faster than insects infected with isolates from either of the two clusters of genotypes.ud5. Theory suggests that there are likely to be trade-offs between pathogen fitness traits. Across all larvae, there was a negative linear relationship between virus yield and speed of kill, such that more rapid host death carried the cost of producing fewer transmission stages. We also found a near-significant relationship for the same trend at the intervariant level. However, there was no evidence for a significant relationship between the induced level of mortality and transmission potential (virus yield) or speed of kill.
机译:1.病原体的自然种群通常由许多相互作用的菌株组成。了解维持这种多样性的原因仍然是疾病生态学研究的重点。此外,宿主内部病原体动态可能对感染结果和病原体毒力的演变都具有强烈影响,因此,了解病原体多样性的影响对疾病管理很重要。我们比较了从非洲夜蛾(Spodoptera exempta)分离的免除夜蛾(Spodoptera exempta)核多角体病毒(SpexNPV)的八个遗传上可区分的变体。 NPV是专性杀手,直到宿主死亡后才释放绝大多数传播阶段。 NPV变异体的毒力差异很大,可以根据其剂量反应曲线将其分为两组。他们在豁免链球菌的杀灭速度和生产率(传播潜力)上也有所不同。从中分离出每个变体的混合基因型野生型(WT)SpexNPV比任何单个变体的毒性要强得多,并且其平均死亡率在单个变体的最快组中。但是,WT病毒产生的新感染阶段少于任何单个变体,这可能反映了变体之间的竞争。生存分析结合死亡率和杀灭速度数据,证实了遗传混合的WT病毒优于任何单个变异体。 WT SpexNPV感染的免除夜蛾(Spodoptera exempta)幼虫的死亡速度比被两种基因型的任何一种分离株感染的昆虫的死亡速度快2·7和1·9倍。 ud5。理论表明,病原体适应性状之间可能需要权衡取舍。在所有幼虫中,病毒产量与杀灭速度之间呈负线性关系,因此,更快的宿主死亡会带来产生更少传播阶段的代价。我们还在变量水平上发现了相同趋势的近乎显着的关系。但是,没有证据表明诱导的死亡率水平与传播潜能(病毒产量)或杀灭速度之间存在显着关系。

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