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Inter- and intra-lineage genetic diversity of wild-type Zika viruses reveals both common and distinctive nucleotide variants and clusters of genomic diversity

机译:野生型寨卡病毒的谱系间和谱系内遗传多样性揭示了共同的和独特的核苷酸变异以及基因组多样性簇

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Zika virus (ZIKV) strains belong to the East African, West African, and Asian/American phylogenetic lineages. RNA viruses, like ZIKV, exist as populations of genetically-related sequences whose heterogeneity may impact viral fitness, evolution, and virulence. Genetic diversity of representative ZIKVs from each lineage was examined using next generation sequencing (NGS) paired with downstream entropy and single nucleotide variant (SNV) analysis. Comparisons showed that inter-lineage diversity was statistically supported, while intra-lineage diversity varied. Intra-lineage diversity was significant for East but not West Africa strains. Furthermore, intra-lineage diversity for the Asian/American lineage was not supported for human serum isolates; however, a placenta isolate differed significantly. Relative entropy values were higher in the pre-membrane/membrane (prM/M) gene of several ZIKV strains. Additionally, the East African lineage contained a greater number of synonymous SNVs, while a greater number of non-synonymous SNVs were identified for American strains. Further, inter-lineage SNVs were dispersed throughout the genome, whereas intra-lineage non-synonymous SNVs for Asian/American strains clustered within prM/M and NS1 gene. This comprehensive analysis of ZIKV genetic diversity provides a repository of SNV positions across lineages. We posit that increased non-synonymous SNV populations and increased relative genetic diversity of the prM/M and NS1 proteins provides more evidence for their role in ZIKV virulence and fitness.
机译:寨卡病毒(ZIKV)菌株属于东非,西非和亚洲/美洲系统发生谱系。像ZIKV一样,RNA病毒以遗传相关序列的群体形式存在,其异质性可能影响病毒的适应性,进化和毒力。使用下一代测序(NGS)与下游熵和单核苷酸变异(SNV)分析配对,检查了来自每个谱系的代表性ZIKV的遗传多样性。比较表明,谱系间的多样性得到了统计支持,而谱系内的多样性却有所不同。谱系内多样性对于东非品系而言意义重大,但对西非品系而言则不重要。此外,人类血清分离物不支持亚洲/美洲血统的血统内多样性。但是,胎盘分离物差异很大。在几个ZIKV菌株的前膜/膜(prM / M)基因中,相对熵值较高。此外,东非血统包含更多的同义SNV,而针对美国菌株则鉴定出更多的非同义SNV。此外,谱系间的SNV散布在整个基因组中,而亚洲/美洲株的谱系内的非同义SNV则聚集在prM / M和NS1基因内。对ZIKV遗传多样性的全面分析提供了跨谱系的SNV位置信息库。我们认为,增加的非同义SNV群体以及增加的prM / M和NS1蛋白的相对遗传多样性为它们在ZIKV毒力和适应性中的作用提供了更多的证据。

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