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马尼拉蛇眼实蝇乙型病毒通过调节斜纹夜蛾细胞外腺苷水平来抑制宿主免疫系统。

Snellenius manilae bracovirus suppresses the host immune system by regulating extracellular adenosine levels in Spodoptera litura.

机构信息

Department of Entomology, National Taiwan University, Taipei, 106, Taiwan.

出版信息

Sci Rep. 2020 Feb 7;10(1):2096. doi: 10.1038/s41598-020-58375-y.

Abstract

Sufficient energy supply to the host immune system is important for resisting pathogens. Therefore, during pathogen infection, the host metabolism is reassigned from storage, growth, and development to the immune system. Previous studies in Drosophila melanogaster have demonstrated that systemic metabolic switching upon an immune challenge is activated by extracellular adenosine signaling, modulating carbohydrate mobilization and redistributing energy to the hemocytes. In the present study, we discovered that symbiotic virus (SmBV) of the parasitoid wasp Snellenius manilae is able to down-regulate the extracellular adenosine of its host, Spodoptera litura, to inhibit metabolism switching. The decreased carbohydrate mobilization, glycogenolysis, and ATP synthesis upon infection results in the host being unable to supply energy to its immune system, thus benefitting the development of wasp larvae. When we added adenosine to the infected S. litura larvae, we observed enhanced host immune responses that decreased the pupation rate of S. manilae. Previous studies showed that after pathogen infection, the host activates its adenosine pathway to trigger immune responses. However, our results suggest a different model: we found that in S. manilae, SmBV modulates the host adenosine pathway such that wasp eggs and larvae can evade the host immune response.

摘要

为宿主免疫系统提供充足的能量对于抵抗病原体至关重要。因此,在病原体感染期间,宿主代谢会从储存、生长和发育重新分配给免疫系统。先前在黑腹果蝇中的研究表明,免疫挑战时的系统性代谢转换是由细胞外腺苷信号激活的,调节碳水化合物动员并将能量重新分配给血淋巴细胞。在本研究中,我们发现寄生蜂斯氏潜蝇茧蜂的共生病毒 (SmBV) 能够下调其宿主斜纹夜蛾的细胞外腺苷,从而抑制代谢转换。感染后碳水化合物动员、糖原分解和 ATP 合成减少,导致宿主无法为免疫系统提供能量,从而有利于黄蜂幼虫的发育。当我们向感染的斜纹夜蛾幼虫中添加腺苷时,我们观察到增强的宿主免疫反应,降低了斯氏潜蝇茧蜂的化蛹率。先前的研究表明,在病原体感染后,宿主会激活其腺苷途径以触发免疫反应。然而,我们的结果提出了一个不同的模型:我们发现,在斯氏潜蝇茧蜂中,SmBV 调节宿主的腺苷途径,使黄蜂的卵和幼虫能够逃避宿主的免疫反应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/14cb/7005799/5bd922b149d1/41598_2020_58375_Fig1_HTML.jpg

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