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胞外囊泡在藻类水华期间调节宿主-病毒相互作用中的生态意义。

Ecological significance of extracellular vesicles in modulating host-virus interactions during algal blooms.

机构信息

Department of Plant and Environmental Sciences, Weizmann Institute of Science, Rehovot, Israel.

Department of Biological Sciences, University of Bergen, Bergen, Norway.

出版信息

ISME J. 2021 Dec;15(12):3714-3721. doi: 10.1038/s41396-021-01018-5. Epub 2021 Jun 4.

Abstract

Extracellular vesicles are produced by organisms from all kingdoms and serve a myriad of functions, many of which involve cell-cell signaling, especially during stress conditions and host-pathogen interactions. In the marine environment, communication between microorganisms can shape trophic level interactions and population succession, yet we know very little about the involvement of vesicles in these processes. In a previous study, we showed that vesicles produced during viral infection by the ecologically important model alga Emiliania huxleyi, could act as a pro-viral signal, by expediting infection and enhancing the half-life of the virus in the extracellular milieu. Here, we expand our laboratory findings and show the effect of vesicles on natural populations of E. huxleyi in a mesocosm setting. We profile the small-RNA (sRNA) cargo of vesicles that were produced by E. huxleyi during bloom succession, and show that vesicles applied to natural assemblages expedite viral infection and prolong the half-life of this major mortality agent of E. huxleyi. We subsequently reveal that exposure of the natural assemblage to E. huxleyi-derived vesicles modulates not only host-virus dynamics, but also other components of the microbial food webs, thus emphasizing the importance of extracellular vesicles to microbial interactions in the marine environment.

摘要

细胞外囊泡是由所有生物界的生物产生的,具有多种功能,其中许多涉及细胞间信号传递,尤其是在应激条件和宿主-病原体相互作用期间。在海洋环境中,微生物之间的通讯可以塑造营养级相互作用和种群演替,但我们对囊泡在这些过程中的参与知之甚少。在之前的一项研究中,我们表明,在生态重要模型藻类甲藻(Emiliania huxleyi)被病毒感染期间产生的囊泡可以作为一种促病毒信号,加速感染并延长病毒在细胞外环境中的半衰期。在这里,我们扩展了我们的实验室发现,并在中观实验设置中展示了囊泡对自然种群的影响。我们分析了在藻类暴发性繁殖期间产生的囊泡中的小 RNA (sRNA) 货物,并表明施加到自然组合体上的囊泡会加速病毒感染,并延长这种甲藻主要致死因子的半衰期。随后,我们揭示了暴露于甲藻来源的囊泡会改变自然组合体中不仅是宿主-病毒动力学,而且还会改变微生物食物网的其他成分,从而强调了细胞外囊泡对海洋环境中微生物相互作用的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6416/8630046/94171c73291f/41396_2021_1018_Fig1_HTML.jpg

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