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在俄罗斯采集的蜱中检测到的噬肺病毒序列:新型噬肺病毒、鉴别标准和高蜱特异性。

Phlebovirus sequences detected in ticks collected in Russia: Novel phleboviruses, distinguishing criteria and high tick specificity.

机构信息

Chumakov Federal Scientific Center for Research and Development of Immune-and-Biological Products of RAS, Moscow 108819, Russia; Gamaleya Research Center for Epidemiology and Microbiology of the Ministry of Health of the Russian Federation, Moscow 123098, Russia.

Chumakov Federal Scientific Center for Research and Development of Immune-and-Biological Products of RAS, Moscow 108819, Russia.

出版信息

Infect Genet Evol. 2020 Nov;85:104524. doi: 10.1016/j.meegid.2020.104524. Epub 2020 Sep 4.

Abstract

Phlebovirus is an abundant and rather heterogeneous genus within the Phenuiviridae family (order Bunyavirales). The genus Phlebovirus is divided into two antigenic complexes, which also correspond to the main vector: sandflies/mosquitoes and ticks. Previously, only sandfly/mosquito-borne phleboviruses were associated with human disease, such as Rift Valley fever virus, Toscana virus, Sicilian and Naples Sandfly fever viruses and others. Until recently, tick-borne phleboviruses were not considered as human pathogens. After the discovery of severe fever with thrombocytopenia syndrome, interest to tick-borne phleboviruses has increased dramatically. In the last decade, many novel phleboviruses have been reported in different regions. Despite this, the diversity, ecology and pathogenicity of these viruses still remain obscure. The aim of this work was to study the diversity of phleboviruses in ticks collected in several regions of Russia. We used pan-phlebovirus RT-PCR assays based on multiple degenerate primers targeting the polymerase gene fragment. Arthropod specimens were collected from 2005 to 2018. A total of 5901 Ixodidae ticks combined into 1116 pools were screened. A total of 160 specific amplicons were produced. In three cases RT-PCR assays amplified two distinct viruses from same tick pools. Direct sequencing of amplicons and subsequent phylogenetic analysis revealed twelve representatives of divergent phlebovirus groups. Based on the distribution of pairwise nucleotide sequence identity values, a cut-off (88%) was suggested to distinguish tick-borne phleboviruses. According to this provisional criterion, two viruses found here could be termed novel, while ten viruses have been described in previous studies. Detected phleboviruses demonstrated almost perfect specificity to a tick species or, at least, a genus. The same pattern was observed for tick-borne phleboviruses found in different studies around the world. Viruses that grouped together on a phylogenetic tree and differed less than this sequence identity threshold suggested above were hosted by ticks from the same genus.

摘要

沙蝇病毒属是布尼亚病毒目(Phenuiviridae 科)中丰富且相当多样的属。沙蝇病毒属分为两个抗原复合物,这也对应着主要的媒介:沙蝇/蚊子和蜱。以前,只有沙蝇/蚊子传播的沙蝇病毒与人类疾病有关,如裂谷热病毒、托斯卡纳病毒、西西里和那不勒斯沙蝇热病毒等。直到最近,蜱传播的沙蝇病毒才不被认为是人类病原体。在发现严重发热伴血小板减少综合征后,对蜱传播的沙蝇病毒的兴趣显著增加。在过去的十年中,不同地区报告了许多新的沙蝇病毒。尽管如此,这些病毒的多样性、生态学和致病性仍然不清楚。这项工作的目的是研究俄罗斯几个地区采集的蜱中的沙蝇病毒多样性。我们使用了基于多简并引物针对聚合酶基因片段的泛沙蝇病毒 RT-PCR 检测方法。从 2005 年到 2018 年收集了节肢动物标本。总共筛选了 5901 只硬蜱,合并成 1116 个池。总共产生了 160 个特异性扩增子。在三种情况下,RT-PCR 检测方法从相同的蜱池中扩增了两种不同的病毒。对扩增子的直接测序和随后的系统发育分析显示了 12 个不同的沙蝇病毒组代表。根据成对核苷酸序列同一性值的分布,建议使用一个(88%)的截止值来区分蜱传播的沙蝇病毒。根据这个临时标准,在这里发现的两种病毒可以被称为新型病毒,而另外十种病毒在以前的研究中已经有描述。检测到的沙蝇病毒对一种蜱种或至少一种属表现出几乎完美的特异性。在世界各地不同研究中发现的蜱传播沙蝇病毒也呈现出相同的模式。在系统发育树上分组在一起且差异小于上述建议的序列同一性阈值的病毒由来自同一属的蜱携带。

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