bioRxiv · 10.1101/2022.05.18.492453
Chromosome folding and prophage activation reveal gut-specific genome dynamics of bacteria in the OMM12 consortium
Abstract
Bacteria and their viruses, bacteriophages, are the most abundant entities of the gut microbiota, a complex community of microorganisms associated with human health and disease. In this ecosystem the interactions between these two key components are still largely unknown. In particular, the impact of the gut environment on bacteria and their associated prophages is yet to be deciphered. To gain insight into the activity of lysogenic phages within the context of their host genomes, we performed Hi-C on the 12 strains of the OMM12 synthetic bacterial community stably associated within mice gut (gnotobiotic mouse line OMM12) in both in vitro and in vivo conditions. High-resolution contact maps of the chromosome 3D organization of the bacterial genomes revealed a wide diversity of architectures, differences between environments and an overall stability over time in the gut of mice. The DNA contacts also pointed at 3D signatures of prophages leading to predict 16 of them as functional. We identified circularization signals and observed different 3D patterns depending on the condition. Concurrent virome analysis showed that 11 of these prophages produced viral particles in vivo and/or in vitro, and that OMM12 mice do not carry other intestinal viruses. By predicting functional prophages, the Hi-C approach unlocks the study of phage-bacteria interaction dynamics.
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Lamy-Besnier, Q., Bignaud, A., Garneau, J., Titecat, M., Conti, D., Von Strempel, A., Monot, M., Stecher, B., Koszul, R., Debarbieux, L., Marbouty, M.. 2022-05-18. Chromosome folding and prophage activation reveal gut-specific genome dynamics of bacteria in the OMM12 consortium. https://doi.org/10.1101/2022.05.18.492453
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