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这种共生原生生物具有动态的生命周期,可诱导肠道微生物群发生广泛重塑。

The commensal protist exhibits a dynamic life cycle that induces extensive remodeling of the gut microbiota.

作者信息

Popovic Ana, Cao Eric Yixiao, Han Joanna, Nursimulu Nirvana, Alves-Ferreira Eliza V C, Burrows Kyle, Kennard Andrea, Alsmadi Noor, Grigg Michael E, Mortha Arthur, Parkinson John

出版信息

bioRxiv. 2023 Oct 10:2023.03.06.528774. doi: 10.1101/2023.03.06.528774.

Abstract

Commensal protists and gut bacterial communities exhibit complex relationships, mediated at least in part through host immunity. To improve our understanding of this tripartite interplay, we investigated community and functional dynamics between the murine protist ( ) and intestinal bacteria in healthy and B cell-deficient mice. We identified dramatic, protist-driven remodeling of resident microbiome growth and activities, in parallel with functional changes, accelerated in the absence of B cells. Metatranscriptomic data revealed nutrient-based competition between bacteria and the protist. Single cell transcriptomics identified distinct life stages, providing new evidence for trichomonad sexual replication and the formation of pseudocysts. Unique cell states were validated through microscopy and flow cytometry. Our results reveal complex microbial dynamics during the establishment of a commensal protist in the gut, and provide valuable datasets to drive future mechanistic studies.

摘要

共生原生生物与肠道细菌群落呈现出复杂的关系,这种关系至少部分是由宿主免疫介导的。为了增进我们对这种三方相互作用的理解,我们研究了健康小鼠和B细胞缺陷小鼠体内鼠类原生生物( )与肠道细菌之间的群落及功能动态。我们发现,在没有B细胞的情况下,原生生物会驱动常驻微生物组的生长和活动发生显著重塑,同时伴随着功能变化且加速进行。宏转录组数据揭示了细菌与原生生物之间基于营养的竞争。单细胞转录组学确定了不同的生命阶段,为滴虫性有性繁殖和假囊肿的形成提供了新证据。独特的细胞状态通过显微镜和流式细胞术得到了验证。我们的研究结果揭示了肠道中建立共生原生生物过程中复杂的微生物动态,并提供了有价值的数据集以推动未来的机制研究。

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