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Genetic characterization of a novel picorna-like virus in Culex spp. mosquitoes from Mozambique

机译:在库蚊属物种中的一种新的picorna样病毒的遗传特征。莫桑比克的蚊子

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Mosquitoes are the potential vectors for a variety of viruses that can cause diseases in the human and animal populations. Viruses in the order Picornavirales infect a broad range of hosts, including mosquitoes. In this study, we aimed to characterize a novel picorna-like virus from the Culex spp. of mosquitoes from the Zambezi Valley of Mozambique. The extracted RNA from mosquito pools was pre-amplified with the sequence independent single primer amplification (SISPA) method and subjected to high-throughput sequencing using the Ion Torrent platform. Reads that are classified as Iflaviridae, Picornaviridae and Dicistroviridae were assembled by CodonCode Aligner and SPAdes. Gaps between the viral contigs were sequenced by PCR. The genomic ends were analyzed by 5′ and 3′ RACE PCRs. The ORF was predicted with the NCBI ORF finder. The conserved domains were identified with ClustalW multiple sequence alignment, and a phylogenetic tree was built with MEGA. The presence of the virus in individual mosquito pools was detected by RT-PCR assay. A near full-length viral genome (9740?nt) was obtained in Culex mosquitoes that encoded a complete ORF (3112 aa), named Culex picorna-like virus (CuPV-1). The predicted ORF had 38% similarity to the Hubei picorna-like virus 35. The sequence of the conserved domains, Helicase-Protease-RNA-dependent RNA polymerase, were identified by multiple sequence alignment and found to be at the 3′ end, similar to iflaviruses. Phylogenetic analysis of the putative RdRP amino acid sequences indicated that the virus clustered with members of the Iflaviridae family. CuPV-1 was detected in both Culex and Mansonia individual pools with low infection rates. The study reported a highly divergent, near full-length picorna-like virus genome from Culex spp. mosquitoes from Mozambique. The discovery and characterization of novel viruses in mosquitoes is an initial step, which will provide insights into mosquito-virus interaction mechanisms, genetic diversity and evolution.
机译:蚊子是各种病毒的潜在载体,这些病毒可以在人类和动物种群中引起疾病​​。 Picornavirales顺序的病毒会感染各种宿主,包括蚊子。在这项研究中,我们旨在鉴定一种来自库克斯(Culex spp)的新的类似picorna的病毒。莫桑比克赞比西河谷的蚊子。从蚊子池中提取的RNA使用序列独立单引物扩增(SISPA)方法进行了预扩增,并使用Ion Torrent平台进行了高通量测序。由CodonCode Aligner和SPAdes组装了分类为Iflaviridae,Picornaviridae和Dicistroviridae的读段。通过PCR对病毒重叠群之间的间隙进行测序。通过5'和3'RACE PCR分析基因组末端。 ORF是使用NCBI ORF查找程序预测的。通过ClustalW多序列比对鉴定保守的结构域,并用MEGA构建系统发育树。通过RT-PCR测定法检测单个蚊子池中病毒的存在。在编码完整ORF(3112 aa)的库蚊(Culex)蚊子中获得了近乎全长的病毒基因组(9740?nt),被命名为库克斯皮库纳样病毒(CuPV-1)。预测的ORF与湖北微微小病毒样病毒35有38%的相似性。保守域的结构,Helicase-蛋白酶-RNA依赖性RNA聚合酶,通过多重序列比对鉴定,发现在3'端,相似到iflaviruses。推定的RdRP氨基酸序列的系统进化分析表明,该病毒与衣原病毒科成员簇集。在Culex和Mansonia个体池中均检测到CuPV-1,感染率较低。该研究报道了库克斯氏菌(Culex spp)的高度趋异,接近全长的小核糖核酸样病毒基因组。莫桑比克的蚊子。蚊子中新型病毒的发现和表征是第一步,这将提供有关蚊子病毒相互作用机制,遗传多样性和进化的见解。

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