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无菌虹鳟(Oncorhynchus mykiss)模型揭示了内源性细菌可以预防柱状黄杆菌感染。

Gnotobiotic rainbow trout (Oncorhynchus mykiss) model reveals endogenous bacteria that protect against Flavobacterium columnare infection.

机构信息

Unité de Génétique des Biofilms, Institut Pasteur, UMR CNRS2001, Paris, France.

Ecologie et Evolution de la Résistance aux Antibiotiques, Institut Pasteur-APHP University Paris Sud, Paris, France.

出版信息

PLoS Pathog. 2021 Jan 29;17(1):e1009302. doi: 10.1371/journal.ppat.1009302. eCollection 2021 Jan.

Abstract

The health and environmental risks associated with antibiotic use in aquaculture have promoted bacterial probiotics as an alternative approach to control fish infections in vulnerable larval and juvenile stages. However, evidence-based identification of probiotics is often hindered by the complexity of bacteria-host interactions and host variability in microbiologically uncontrolled conditions. While these difficulties can be partially resolved using gnotobiotic models harboring no or reduced microbiota, most host-microbe interaction studies are carried out in animal models with little relevance for fish farming. Here we studied host-microbiota-pathogen interactions in a germ-free and gnotobiotic model of rainbow trout (Oncorhynchus mykiss), one of the most widely cultured salmonids. We demonstrated that germ-free larvae raised in sterile conditions displayed no significant difference in growth after 35 days compared to conventionally-raised larvae, but were extremely sensitive to infection by Flavobacterium columnare, a common freshwater fish pathogen causing major economic losses worldwide. Furthermore, re-conventionalization with 11 culturable species from the conventional trout microbiota conferred resistance to F. columnare infection. Using mono-re-conventionalized germ-free trout, we identified that this protection is determined by a commensal Flavobacterium strain displaying antibacterial activity against F. columnare. Finally, we demonstrated that use of gnotobiotic trout is a suitable approach for the identification of both endogenous and exogenous probiotic bacterial strains protecting teleostean hosts against F. columnare. This study therefore establishes an ecologically-relevant gnotobiotic model for the study of host-pathogen interactions and colonization resistance in farmed fish.

摘要

抗生素在水产养殖中的使用所带来的健康和环境风险,促使人们将细菌益生菌作为一种替代方法来控制脆弱的幼鱼和鱼苗阶段的鱼类感染。然而,基于证据的益生菌识别常常受到细菌-宿主相互作用的复杂性和微生物不受控制条件下宿主变异性的阻碍。虽然使用没有或减少微生物群的无菌模型可以部分解决这些困难,但大多数宿主-微生物相互作用的研究都是在与水产养殖相关性不大的动物模型中进行的。在这里,我们研究了无菌和无菌虹鳟(Oncorhynchus mykiss)模型中的宿主-微生物-病原体相互作用,虹鳟是最广泛养殖的鲑鱼之一。我们证明,在无菌条件下饲养的无菌幼虫在 35 天后的生长与常规饲养的幼虫没有显著差异,但对柱状屈挠杆菌(Flavobacterium columnare)的感染极其敏感,柱状屈挠杆菌是一种常见的淡水鱼类病原体,在全球范围内造成了重大的经济损失。此外,用来自常规虹鳟微生物群的 11 种可培养物种重新常规化赋予了对 F. columnare 感染的抗性。使用单重常规化无菌虹鳟,我们确定这种保护作用是由一种具有抗 F. columnare 活性的共生黄杆菌决定的。最后,我们证明使用无菌虹鳟是一种合适的方法,可以鉴定保护硬骨鱼类宿主免受 F. columnare 感染的内源性和外源性益生菌菌株。因此,本研究建立了一个具有生态相关性的无菌模型,用于研究养殖鱼类中的宿主-病原体相互作用和定植抗性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/be45/7875404/6b995c0deba5/ppat.1009302.g001.jpg

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