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首页> 外文期刊>BMC Evolutionary Biology >Barriers to antigenic escape by pathogens: trade-off between reproductive rate and antigenic mutability
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Barriers to antigenic escape by pathogens: trade-off between reproductive rate and antigenic mutability

机译:病原体阻止抗原逃逸的障碍:繁殖率和抗原变异性之间的权衡

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Background A single measles vaccination provides lifelong protection. No antigenic variants that escape immunity have been observed. By contrast, influenza continually evolves new antigenic variants, and the vaccine has to be updated frequently with new strains. Both measles and influenza are RNA viruses with high mutation rates, so the mutation rate alone cannot explain the differences in antigenic variability. Results We develop a new hypothesis to explain antigenic stasis versus change. We first note that the antigenically static viruses tend to have high reproductive rates and to concentrate infection in children, whereas antigenically variable viruses such as influenza tend to spread more widely across age classes. We argue that, for pathogens in a naive host population that spread more rapidly in younger individuals than in older individuals, natural selection weights more heavily a rise in reproductive rate. By contrast, pathogens that spread more readily among older individuals gain more by antigenic escape, so natural selection weights more heavily antigenic mutability. Conclusion These divergent selective pressures on reproductive rate and antigenic mutability may explain some of the observed differences between pathogens in age-class bias, reproductive rate, and antigenic variation.
机译:背景技术一次麻疹疫苗接种可以提供终身保护。没有观察到逃避免疫的抗原变体。相比之下,流感病毒不断进化出新的抗原变异体,疫苗必须经常用新的毒株进行更新。麻疹和流感都是具有高突变率的RNA病毒,因此仅突变率就不能解释抗原变异性的差异。结果我们建立了一个新的假设来解释抗原滞留与变化之间的关系。我们首先注意到,具有抗原性的静态病毒倾向于具有较高的繁殖率,并在儿童中集中感染,而诸如流感之类的具有抗原性的可变性病毒则倾向于在各个年龄段广泛传播。我们认为,对于天真的寄主种群中病原体在年青个体中传播比年长个体更快的疾病,自然选择权重繁殖率的提高更大。相比之下,在年龄较大的个体中更容易传播的病原体则通过抗原逃逸获得更多的收益,因此自然选择权重更大的抗原变异性。结论这些对生殖速率和抗原变异性的不同选择压力可能解释了病原体在年龄偏倚,生殖速率和抗原变异方面观察到的某些差异。

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