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Unmasking cellular response of a bloom-forming alga to viral infection by resolving expression profiles at a single-cell level

机译:通过解析单细胞水平的表达谱揭示水华形成藻对病毒感染的细胞反应

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摘要

Infection by large dsDNA viruses can lead to a profound alteration of host transcriptome and metabolome in order to provide essential building blocks to support the high metabolic demand for viral assembly and egress. Host response to viral infection can typically lead to diverse phenotypic outcome that include shift in host life cycle and activation of anti-viral defense response. Nevertheless, there is a major bottleneck to discern between viral hijacking strategies and host defense responses when averaging bulk population response. Here we study the interaction between Emiliania huxleyi, a bloom-forming alga, and its specific virus (EhV), an ecologically important host-virus model system in the ocean. We quantified host and virus gene expression on a single-cell resolution during the course of infection, using automatic microfluidic setup that captures individual algal cells and multiplex quantitate PCR. We revealed high heterogeneity in viral gene expression among individual cells. Simultaneous measurements of expression profiles of host and virus genes at a single-cell level allowed mapping of infected cells into newly defined infection states and allowed detection specific host response in a subpopulation of infected cell which otherwise masked by the majority of the infected population. Intriguingly, resistant cells emerged during viral infection, showed unique expression profiles of metabolic genes which can provide the basis for discerning between viral resistant and susceptible cells within heterogeneous populations in the marine environment. We propose that resolving host-virus arms race at a single-cell level will provide important mechanistic insights into viral life cycles and will uncover host defense strategies.
机译:大型dsDNA病毒感染可导致宿主转录组和代谢组发生重大改变,从而提供必要的构建基块来支持对病毒装配和流出的高代谢需求。宿主对病毒感染的反应通常可导致多种表型结果,包括宿主生命周期的变化和抗病毒防御反应的激活。但是,在平均总体人口响应时,要分辨病毒劫持策略和宿主防御响应之间存在很大的瓶颈。在这里,我们研究了形成藻类的海藻Emiliania huxleyi和其特定病毒(EhV)之间的相互作用,该病毒是海洋中具有生态学意义的重要宿主病毒模型系统。我们使用自动微流控装置捕获单个藻类细胞并进行多重定量PCR,在感染过程中以单细胞分辨率对宿主和病毒基因表达进行了定量。我们揭示了单个细胞之间病毒基因表达的高度异质性。在单细胞水平上同时测量宿主和病毒基因的表达谱,可以将感染细胞映射到新定义的感染状态,并可以在感染细胞亚群中检测到特定的宿主反应,否则该感染会被大多数感染人群所掩盖。有趣的是,在病毒感染期间出现的抗性细胞表现出独特的代谢基因表达谱,这可以为区分海洋环境中异质种群内的病毒抗性和易感细胞提供基础。我们建议在单细胞水平上解决宿主病毒军备竞赛将提供对病毒生命周期的重要机理见解,并揭示宿主防御策略。

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