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Phylogeography Population Dynamics and Molecular Evolution of European Bat Lyssaviruses

机译:欧洲蝙蝠狂犬病病毒的系统志种群动态和分子进化

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摘要

European bat lyssaviruses types 1 and 2 (EBLV-1 and EBLV-2) are widespread in Europe, although little is known of their evolutionary history. We undertook a comprehensive sequence analysis to infer the selection pressures, rates of nucleotide substitution, age of genetic diversity, geographical origin, and population growth rates of EBLV-1. Our study encompassed data from 12 countries collected over a time span of 35 years and focused on the glycoprotein (G) and nucleoprotein (N) genes. We show that although the two subtypes of EBLV-1—EBLV-1a and EBLV-1b—have both grown at a low exponential rate since their introduction into Europe, they have differing population structures and dispersal patterns. Furthermore, there were strong constraints against amino acid change in both EBLV-1 and EBLV-2, as reflected in a low ratio of nonsynonymous to synonymous substitutions per site, particularly in EBLV-1b. Our inferred rate of nucleotide substitution in EBLV-1, approximately 5 × 10−5 substitutions per site per year, was also one of the lowest recorded for RNA viruses and implied that the current genetic diversity in the virus arose 500 to 750 years ago. We propose that the slow evolution of EBLVs reflects their distinctive epidemiology in bats, where they occupy a relatively stable fitness peak.
机译:欧洲蝙蝠狂犬病病毒1型和2型(EBLV-1和EBLV-2)在欧洲很普遍,尽管对其进化史知之甚少。我们进行了全面的序列分析,以推断出选择压力,核苷酸取代率,遗传多样性年龄,地理起源和EBLV-1的人口增长率。我们的研究涵盖了在35年的时间里从12个国家/地区收集的数据,重点研究了糖蛋白(G)和核蛋白(N)基因。我们显示,尽管EBLV-1的两个亚型EBLV-1a和EBLV-1b自引入欧洲以来均以较低的指数速率生长,但它们具有不同的种群结构和分散模式。此外,EBLV-1和EBLV-2中都存在针对氨基酸变化的强大限制,这体现在每个位点的同义替换与同义替换的比例较低,尤其是在EBLV-1b中。我们推断的EBLV-1核苷酸取代率约为每年每个位点5×10 −5 取代,也是RNA病毒记录的最低值之一,这表明该病毒中目前的遗传多样性起源于500至750年前我们认为,EBLV的缓慢进化反映了它们在蝙蝠中的独特流行病学,它们在蝙蝠中占据相对稳定的适应峰。

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