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微生物组“诞生”:肠道绦虫在宿主内塑造嵌套的微生物群落层次结构。

Microbiome "Inception": an Intestinal Cestode Shapes a Hierarchy of Microbial Communities Nested within the Host.

机构信息

Department of Natural History, NTNU University Museum, Norwegian University of Science and Technologygrid.5947.f (NTNU), Trondheim, Norway.

Center for Evolutionary Hologenomics, GLOBE institute, Faculty of Health and Medical Sciences, University of Copenhagengrid.5254.6, Copenhagen, Denmark.

出版信息

mBio. 2022 Jun 28;13(3):e0067922. doi: 10.1128/mbio.00679-22. Epub 2022 May 3.

Abstract

The concept of a holobiont, a host organism and its associated microbial communities, encapsulates the vital role the microbiome plays in the normal functioning of its host. Parasitic infections can disrupt this relationship, leading to dysbiosis. However, it is increasingly recognized that multicellular parasites are themselves holobionts. Intestinal parasites share space with the host gut microbiome, creating a system of nested microbiomes within the primary host. However, how the parasite, as a holobiont, interacts with the host holobiont remains unclear, as do the consequences of these interactions for host health. Here, we used 16S amplicon and shotgun metagenomics sequencing to characterize the microbiome of the intestinal cestode and its effect on the gut microbiome of its primary host, Atlantic salmon. Our results indicate that cestode infection is associated with salmon gut dysbiosis by acting as a selective force benefiting putative pathogens and potentially introducing novel bacterial species to the host. Our results suggest that parasitic cestodes may themselves be holobionts nested within the microbial community of their holobiont host, emphasizing the importance of also considering microbes associated with parasites when studying intestinal parasitic infections. The importance of the parasite microbiome is gaining recognition. Of particular concern is understanding how these parasite microbiomes influence host-parasite interactions and parasite interactions with the vertebrate host microbiome as part of a system of nested holobionts. However, there are still relatively few studies focusing on the microbiome of parasitic helminths in general and almost none on cestodes in particular, despite the significant burden of disease caused by these parasites globally. Our study provides insights into a system of significance to the aquaculture industry, cestode infections of Atlantic salmon and, more broadly, expands our general understanding of parasite-microbiome-host interactions and introduces a new element, the microbiome of the parasite itself, which may play a critical role in modulating the host microbiome, and, therefore, the host response, to parasite infection.

摘要

内共生体的概念,即宿主生物与其相关微生物群落的整体,体现了微生物组在宿主正常功能中的重要作用。寄生虫感染会破坏这种关系,导致微生态失调。然而,越来越多的人认识到多细胞寄生虫本身就是内共生体。肠道寄生虫与宿主肠道微生物群共享空间,在主要宿主内形成一个嵌套微生物组系统。然而,寄生虫作为内共生体如何与宿主内共生体相互作用,以及这些相互作用对宿主健康的后果仍然不清楚。在这里,我们使用 16S 扩增子和 shotgun 宏基因组测序来描述肠道绦虫的微生物组及其对其主要宿主大西洋鲑鱼肠道微生物组的影响。我们的结果表明,绦虫感染通过作为有利于假定病原体的选择力,并可能将新的细菌物种引入宿主,与鲑鱼肠道功能障碍有关。我们的结果表明,寄生绦虫本身可能是嵌套在其宿主微生物群落中的内共生体,这强调了在研究肠道寄生虫感染时,也需要考虑与寄生虫相关的微生物的重要性。寄生虫微生物组的重要性正在得到认可。特别值得关注的是,了解这些寄生虫微生物组如何影响宿主-寄生虫相互作用以及寄生虫与脊椎动物宿主微生物组的相互作用,作为嵌套内共生体系统的一部分。然而,总的来说,关注寄生虫蠕虫微生物组的研究相对较少,特别是关于绦虫的研究几乎没有,尽管这些寄生虫在全球范围内造成了巨大的疾病负担。我们的研究提供了对水产养殖行业有意义的系统的见解,即大西洋鲑鱼的绦虫感染,更广泛地说,扩展了我们对寄生虫-微生物组-宿主相互作用的一般理解,并引入了一个新的元素,即寄生虫本身的微生物组,它可能在调节宿主微生物组方面发挥关键作用,从而调节宿主对寄生虫感染的反应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5f2e/9239044/456b99f1f378/mbio.00679-22-f001.jpg

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