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A virophage cross-species infection through mutant selection represses giant virus propagation, promoting host cell survival

机译:通过突变体选择致尖骨感染抑制巨型病毒繁殖,促进宿主细胞存活

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Virus adaptation to new hosts is a major cause of infectious disease emergence. This mechanism has been intensively studied in the context of zoonotic virus spillover, due to its impact on global health. However, it remains unclear for virophages, parasites of giant viruses and potential regulators of microbial communities. Here, we present, for the first time to our knowledge, evidence of cross-species infection of a virophage. We demonstrated that challenging the native population of Guarani virophage with two previously unidentified giant viruses, previously nonpermissive to this virophage, allows the selection of a mutant genotype able to infect these giant viruses. We were able to characterize the potential genetic determinant (deletion) carried by the virophage with the expanded-host range. Our study also highlights the relevant biological impact of this host adaptation by demonstrating that coinfection with the mixture containing the mutant virophage abolishes giant virus production and rescues the host cell population from lysis. Mougari et al. show that coinfection with a mixture containing mutant virophages abolishes the production of their host giant viruses, protecting the cells infected with these giant viruses. This study provides insights into multi-level parasitic interactions among virophages, giant viruses, and protists.
机译:病毒适应新宿主是传染病出现的主要原因。由于其对全球健康的影响,这种机制在动物区病毒溢出的背景下已经深入研究了这种机制。然而,它仍然尚不清楚烟雾,巨型病毒的寄生虫和微生物社区的潜在调节剂。在这里,我们首次介绍了我们的知识,证据了触手症的交叉物种感染。我们证明,挑战瓜拉尼尖骨的原生血液患者,前一种未识别的巨型病毒,以前对这种疾病的不敏感,可以选择能够感染这些巨大病毒的突变基因型。我们能够用尖端宿主范围表征毛刺激患者携带的潜在遗传决定簇(缺失)。我们的研究还突出了该宿主适应的相关生物学影响,通过证明含有突变尖锐的致毒牙的混合物繁殖巨型病毒产生并从裂解中拯救宿主细胞群。 Mougari等。表明,含有含有突变烟草的混合物的辛凝集废除其宿主巨型病毒,保护感染这些巨型病毒感染的细胞。本研究提供了盲肠,巨大病毒和保护者之间的多级寄生相互作用的见解。

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