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Large-Scale Spatial and Temporal Genetic Diversity of Feline Calicivirus

机译:猫杯状病毒的大规模时空遗传多样性。

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摘要

Feline calicivirus (FCV) is an important pathogen of domestic cats and a frequently used model of human caliciviruses. Here we use an epidemiologically rigorous sampling framework to describe for the first time the phylodynamics of a calicivirus at regional and national scales. A large number of FCV strains cocirculated in the United Kingdom at the national and community levels, with no strain comprising more than 5% and 14% of these populations, respectively. The majority of strains exhibited a relatively restricted geographical range, with only two strains (one field virus and one vaccine virus) spreading further than 100 km. None of the field strains were identified outside the United Kingdom. Temporally, while some strains persisted locally for the majority of the study, others may have become locally extinct. Evolutionary analysis revealed a radial phylogeny with little bootstrap support for nodes above the strain level. In most cases, spatially and temporally diverse strains intermingled in the phylogeny. Together, these data suggest that current FCV evolution is not associated with selective competition among strains. Rather, the genetic and antigenic landscape in each geographical location is highly complex, with many strains cocirculating. These variants likely exist at the community level by a combination of de novo evolution and occasional gene flow from the wider national population. This complexity provides a benchmark, for the first time, against which vaccine cross-protection at both local and national levels can be judged.
机译:猫杯状病毒(FCV)是家猫的重要病原体,也是人类杯状病毒的常用模型。在这里,我们使用流行病学上严格的采样框架来首次描述杯状病毒在区域和国家范围内的系统动力学。在英国,在国家和社区两级共同流行了许多FCV毒株,没有毒株分别占这些人群的5%和14%以上。大多数菌株表现出相对有限的地理范围,只有两种菌株(一种田间病毒和一种疫苗病毒)传播的距离超过100公里。在英国以外未发现任何野外菌株。暂时而言,尽管在大多数研究中某些菌株在本地持续存在,但其他菌株可能已在局部灭绝。进化分析显示径向系统发育,对应变水平以上的节点几乎没有自举支持。在大多数情况下,时空上不同的菌株混杂在系统发育中。总之,这些数据表明当前的FCV进化与菌株之间的选择性竞争无关。而是,每个地理位置的遗传和抗原景观都是非常复杂的,有许多菌株共同循环。这些变异可能是由于从头进化和偶尔来自更广泛的全国人口的基因流动的结合而存在于社区一级的。这种复杂性首次提供了一个基准,可以据此判断地方和国家两级的疫苗交叉保护。

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