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野生鼠噬菌体移植到笼养家鼠后,肠道噬菌体群落趋同但细菌群落没有趋同。

Convergence of gut phage communities but not bacterial communities following wild mouse bacteriophage transplantation into captive house mice.

机构信息

Institute of Vertebrate Biology of the Czech Academy of Sciences, Květná 8, 603 00, Brno, Czech Republic.

Department of Zoology, Faculty of Science, Charles University, Viničná 7, 128 44, Prague, Czech Republic.

出版信息

ISME J. 2024 Jan 8;18(1). doi: 10.1093/ismejo/wrae178.

Abstract

Bacteriophages are abundant components of vertebrate gut microbial communities, impacting bacteriome dynamics, evolution, and directly interacting with the superhost. However, knowledge about gut phageomes and their interaction with bacteriomes in vertebrates under natural conditions is limited to humans and non-human primates. Widely used specific-pathogen-free (SPF) mouse models of host-microbiota interactions have altered gut bacteriomes compared to wild mice, and data on phageomes from wild or other non-SPF mice are lacking. We demonstrate divergent gut phageomes and bacteriomes in wild and captive non-SPF mice, with wild mice phageomes exhibiting higher alpha-diversity and interindividual variability. In both groups, phageome and bacteriome structuring mirrored each other, correlating at the individual level. Re-analysis of previous data from phageomes of SPF mice revealed their enrichment in Suoliviridae crAss-like phages compared to our non-SPF mice. Disrupted bacteriomes in mouse models can be treated by transplanting healthy phageomes, but the effects of phageome transplants on healthy adult gut microbiota are still unknown. We show that experimental transplantation of phageomes from wild to captive mice did not cause major shifts in recipient phageomes. However, the convergence of recipient-to-donor phageomes confirmed that wild phages can integrate into recipient communities. The differences in the subset of integrated phages between the two recipient mouse strains illustrate the context-dependent effects of phage transplantation. The transplantation did not impact recipient gut bacteriomes. This resilience of healthy adult gut microbiomes to the intervention has implications for phage allotransplantation safety.

摘要

噬菌体是脊椎动物肠道微生物群落中丰富的组成部分,影响着细菌组的动态、进化,并与超级宿主直接相互作用。然而,在自然条件下,关于脊椎动物肠道噬菌体组及其与细菌组相互作用的知识仅限于人类和非人类灵长类动物。广泛使用的特定病原体无菌(SPF)宿主-微生物相互作用模型与野生小鼠相比,改变了肠道细菌组,而缺乏来自野生或其他非 SPF 小鼠的噬菌体组数据。我们展示了野生和圈养非 SPF 小鼠肠道噬菌体组和细菌组的差异,野生小鼠的噬菌体组表现出更高的 alpha 多样性和个体间变异性。在这两组中,噬菌体组和细菌组的结构相互镜像,在个体水平上相互关联。对 SPF 小鼠噬菌体组的先前数据的重新分析表明,与我们的非 SPF 小鼠相比,它们富含 Suoliviridae crAss-like 噬菌体。在小鼠模型中,细菌组的破坏可以通过移植健康的噬菌体组来治疗,但噬菌体组移植对健康成年肠道微生物群的影响仍不清楚。我们表明,从野生到圈养小鼠的实验性噬菌体组移植不会导致受体内噬菌体组的重大变化。然而,受体内源噬菌体组与供体噬菌体组的趋同证实了野生噬菌体可以整合到受体群落中。两种受体小鼠菌株之间整合噬菌体子集的差异说明了噬菌体移植的上下文相关影响。移植没有影响受体肠道细菌组。健康成年肠道微生物群对干预的这种弹性对噬菌体同种异体移植的安全性具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b5c2/11440513/0c241faea03e/wrae178f1.jpg

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