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Coexistence of Different Genotypes in the Same Bat and Serological Characterization of Rousettus Bat Coronavirus HKU9 Belonging to a Novel Betacoronavirus Subgroup

机译:同一蝙蝠中不同基因型的共存和属于新的Betacoronavirus亚组的Rousettus蝙蝠冠状病毒HKU9的血清学表征

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摘要

Rousettus bat coronavirus HKU9 (Ro-BatCoV HKU9), a recently identified coronavirus of novel Betacoronavirus subgroup D, from Leschenault's rousette, was previously found to display marked sequence polymorphism among genomes of four strains. Among 10 bats with complete RNA-dependent RNA polymerase (RdRp), spike (S), and nucleocapsid (N) genes sequenced, three and two sequence clades for all three genes were codetected in two and five bats, respectively, suggesting the coexistence of two or three distinct genotypes of Ro-BatCoV HKU9 in the same bat. Complete genome sequencing of the distinct genotypes from two bats, using degenerate/genome-specific primers with overlapping sequences confirmed by specific PCR, supported the coexistence of at least two distinct genomes in each bat. Recombination analysis using eight Ro-BatCoV HKU9 genomes showed possible recombination events between strains from different bat individuals, which may have allowed for the generation of different genotypes. Western blot assays using recombinant N proteins of Ro-BatCoV HKU9, Betacoronavirus subgroup A (HCoV-HKU1), subgroup B (SARSr-Rh-BatCoV), and subgroup C (Ty-BatCoV HKU4 and Pi-BatCoV HKU5) coronaviruses were subgroup specific, supporting their classification as separate subgroups under Betacoronavirus. Antibodies were detected in 75 (43%) of 175 and 224 (64%) of 350 tested serum samples from Leschenault's rousette bats by Ro-BatCoV HKU9 N-protein-based Western blot and enzyme immunoassays, respectively. This is the first report describing coinfection of different coronavirus genotypes in bats and coronavirus genotypes of diverse nucleotide variation in the same host. Such unique phenomena, and the unusual instability of ORF7a, are likely due to recombination which may have been facilitated by the dense roosting behavior and long foraging range of Leschenault's rousette.
机译:Rousettus蝙蝠冠状病毒HKU9(Ro-BatCoV HKU9)是Leschenault轮盘赌的一种新发现的新型Betacoronavirus D亚型冠状病毒,先前被发现在四种菌株的基因组之间显示出明显的序列多态性。在对10只蝙蝠进行了完整的RNA依赖性RNA聚合酶(RdRp),刺突(S)和核衣壳(N)基因测序后,所有三个基因的三个和两个序列进化枝分别编码在两个和五个蝙蝠中,表明它们共存。同一蝙蝠中Ro-BatCoV HKU9的两个或三个不同基因型。使用简并/基因组特异性引物和通过特异性PCR确认的重叠序列对两个蝙蝠的不同基因型进行完整的基因组测序,支持每个蝙蝠中至少两个不同基因组的共存。使用八个Ro-BatCoV HKU9基因组进行的重组分析显示,来自不同蝙蝠个体的菌株之间可能发生重组事件,这可能允许产生不同的基因型。使用Ro-BatCoV HKU9,β冠状病毒亚组(HCoV-HKU1),B亚组(SARSr-Rh-BatCoV)和C亚组(Ty-BatCoV HKU4和Pi-BatCoV HKU5)冠状病毒的重组N蛋白进行的蛋白质印迹测定是亚组特异性的,支持将它们分类为Betacoronavirus下的单独亚组。通过基于Ro-BatCoV HKU9 N蛋白的Western印迹和酶免疫法分别在来自Leschenault轮状蝙蝠的350个测试血清样品中的75个(43%)和224个(64%)中检测到抗体。这是第一个描述蝙蝠中不同冠状病毒基因型与同一宿主中不同核苷酸变异的冠状病毒基因型共同感染的报告。这种独特的现象以及ORF7a的异常不稳定,很可能是由于重组,Leschenault轮盘赌的密集栖息行为和长觅食范围促进了重组。

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