An interplay between viruses and bacteria associated with marine sponges from the White Sea revealed by metagenomics
Rusanova, A.; Fedorchuk, V.; Toshchakov, S.; Dubiley, S.; Sutormin, D.
Show abstract
Sponges are remarkable holobionts harboring extremely diverse microbial and viral communities. However, the interactions between the components within holobionts and between a holobiont and environment are largely unknown, especially for polar organisms. To investigate possible interactions within the sponge-associated communities and between them, we probed the microbiomes and viromes of cold-water sympatric sponges Isodictya palmata, Halichondria panicea, and Halichondria sitiens by 16S and shotgun metagenomics. We showed that the bacterial and viral communities associated with these White Sea sponges are species-specific and different from the surrounding water. Extensive mining of bacterial antiphage defense systems in the metagenomes revealed a variety of defense mechanisms. The abundance of defense systems was comparable in the metagenomes of the sponges and the surrounding water, thus distinguishing the White Sea sponges from those inhabiting the tropical seas. We developed a network-based approach for the combined analysis of CRISPR-spacers and protospacers. Using this approach, we showed that the virus-host interactions within the sponge-associated community are typically more abundant than the inter-community interactions. Additionally, we detected the occurrence of viral exchanges between the communities. Our work provides the first insight into the metagenomics of the three cold-water sponge species from the White Sea and paves the way for a comprehensive analysis of the interactions between microbial communities and associated viruses.
Matching journals
The top 3 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Infection strategy and biogeography distinguish cosmopolitan groups of marine jumbo bacteriophages 95%
- Long-run bacteria-phage coexistence dynamics under natural habitat conditions in an environmental biotechnology system 95%
- Benchmarking metagenomic marine microbial growth prediction from codon usage bias and peak-to-trough ratios 95%
Similar papers in this journal
- Ecogenomics reveals distinctive viral-bacterial communities in the surface microlayer of a natural surface slick 97%
- Beyond the limits of the unassigned protist microbiome: inferring large-scale spatio-temporal patterns of marine parasites 97%
- Ocean-wide comparisons of mesopelagic planktonic community structures 96%
Similar papers in this journal
Similar papers in this journal
- Prevalence of viral frequency-dependent infection in coastal marine prokaryotes revealed using monthly time series virome analysis 97%
- Taxonomically different symbiotic communities of sympatric Arctic sponge species show functional similarity with specialization at species level 96%
- Marine biofilms: cyanobacteria factories for the global oceans 96%
Similar papers in this journal
- Exploring the microdiversity within marine bacterial taxa: Towards an integrated biogeography in the Southern Ocean 96%
- Conserved organ-specific microbial assemblages in different populations of a terrestrial crab 96%
- The relationship between microbiomes and selective regimes in the sponge genus Ircinia 95%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.