A dynamic epibiont community associated with the bone eating worm Osedax
Goffredi, S.; Panossian, B.; Brzechffa, C.; Field, N.; King, C.; Moggioli, G.; Rouse, G. W.; Martin-Duran, J. M.; Henry, L.
Show abstract
Osedax, the deep-sea annelid found at sunken whalefalls, is known to host Oceanospirillales bacterial endosymbionts intracellularly in specialized roots, that help it feed exclusively on vertebrate bones. Past studies, however, have also made mention of external bacteria on their trunks. During a 14-year study, we reveal a dynamic, yet persistent, succession of Campylobacterales integrated into the epidermis of Osedax, that change over time as the whale carcass degrades on the sea floor. The Campylobacterales associated with seven species of Osedax, which comprise 67% of the bacterial community on the trunk, are initially dominated by the genus Arcobacter (at early time points < 24 months), the Sulfurospirillum at intermediate stages (~ 50 months), and the Sulfurimonas at later stages (>140 months) of whale carcass decomposition. Metagenome analysis of the epibiont metabolic capabilities suggests a transition from heterotrophy to autotrophy along the successional gradient, and differences in their capacity to metabolize oxygen, carbon, nitrogen, and sulfur. Compared to free living relatives, the Osedax epibionts were highly enriched in transposable elements, implicating genetic exchange on the host surface, and contained numerous secretions systems with eukaryotic-like protein domains, suggesting a long evolutionary history with these enigmatic, yet widely distributed deep-sea worms
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Metagenomic shotgun analyses reveal complex patterns of intra- and interspecific variation in the intestinal microbiomes of codfishes 96%
- "Sifarchaeota" a novel Asgard phylum capable of polysaccharide degradation and anaerobic methylotrophy 95%
- Genomic Evidence for Formate Metabolism by Chloroflexi as the Key to Unlocking Deep Carbon in Lost City Microbial Ecosystems 95%
Similar papers in this journal
- Gulf of Mexico blue hole harbors high levels of novel microbial lineages 96%
- Pseudoalteromonas is a novel symbiont of marine invertebrates that exhibits broad patterns of phylosymbiosis 95%
- Microbiome diversity and host immune functions may define the fate of sponge holobionts under future ocean conditions 95%
Similar papers in this journal
Similar papers in this journal
Similar papers in this journal
- Comparative genomic insights into bacterial induction of larval settlement and metamorphosis in the upside-down jellyfish Cassiopea 96%
- The effects of seasonal anoxia on the microbial community structure in demosponges in a marine lake (Lough Hyne, Ireland) 96%
- Temporal, environmental, and biological drivers of the mucosal microbiome in a wild marine fish, Scomber japonicus 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.