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Coinfection with koala retrovirus subtypes A and B and its impact on captive koalas in Japanese zoos

机译:与考拉逆转录病毒亚型A和B的繁殖及其对日本动物园俘虏考拉的影响

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Koala retrovirus (KoRV) is unique among endogenous retroviruses because its endogenization is still active. Two major KoRV subtypes, KoRV-A and B, have been described, and KoRV-B is associated with disease and poses a health threat to koalas. Here, we investigated the co-prevalence of KoRV-A and KoRV-B, detected by type-specific PCR and sequencing, and their impact on the health of koalas in three Japanese zoos. We also investigated KoRV proviral loads and found varying amounts of genomic DNA (gDNA) in peripheral blood mononuclear cells (PBMCs). We found that 100% of the koalas examined were infected with KoRV-A and 60% (12/20) were coinfected with KoRV-B. The KoRV-A sequence was highly conserved, whereas the KoRV-B sequence varied among individuals. Interestingly, we observed possible vertical transmission of KoRV-B in one offspring in which the KoRV-B sequence was similar to that of the father but not the mother. Moreover, we characterized the KoRV growth patterns in concanavalin-A-stimulated PBMCs isolated from KoRV-B-coinfected or KoRV-B-uninfected koalas. We quantified the KoRV provirus in gDNA and the KoRV RNA copy numbers in cells and culture supernatants by real-time PCR at days 4, 7, and 14 post-seeding. As the study population is housed in captivity, a longitudinal study of these koalas may provide an opportunity to study the transmission mode of KoRV-B. In addition, we characterized KoRV isolates by infecting tupaia cells. The results suggested that tupaia may be used as an infection model for KoRV. Thus, this study may enhance our understanding of KoRV-B coinfection and transmission in the captive koalas.
机译:Koala逆转录病毒(Korv)在内源性逆转录病毒中是独一无二的,因为其内生化仍然活跃。已经描述了两个主要的Korv亚型,Korv-A和B,Korv-B与疾病有关,对考拉的威胁构成了健康威胁。在这里,我们调查了通过特异性PCR和测序检测的Korv-A和Korv-B的共进率,以及它们对三个日本动物园的Koalas健康的影响。我们还研究了korv普通载荷,并发现外周血单核细胞(PBMC)中的不同量的基因组DNA(GDNA)。我们发现100%检查的Koalas被korv-a和60%(12/20)用Korv-B繁殖。 Korv-A序列高度保守,而Korv-B序列在个体之间变化。有趣的是,在一个后代观察到Korv-B的可能垂直传播,其中Korv-B序列与父亲的序列类似但不是母亲。此外,我们在从korv-b-焦化或Korv-b-未感染的考尔斯分离的康丹林-A刺激的PBMC中的Korv生长模式表征了korv生长模式。我们通过实时PCR定量在GDNA和Korv RNA拷贝数,通过实时PCR定量在播种后的时间为4,7和14天,通过实时PCR来定量细胞和培养上清液中的数量。随着研究人群的囚禁,这些考拉的纵向研究可以提供研究Korv-B的传输模式的机会。此外,我们通过感染Tupaia细胞来表征Korv分离物。结果表明,Tupaia可以用作Korv的感染模型。因此,本研究可以提高我们对植入考拉的korv-b繁殖和传输的理解。

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