Olavius crassitunicatus is a small symbiont-bearing worm that occurs at high abundance in oxygen-deficient sediments in the East Pacific Ocean. Using comparative 16S rRNA sequence analysis and fluorescence in situ hybridization, we examined the diversity and phylogeny of bacterial symbionts in two geographically distant O. crassitunicatus populations (separated by 385 km) on the Peru margin (water depth, ∼300 m). Five distinct bacterial phylotypes co-occurred in all specimens from both sites: two members of the γ-Proteobacteria (Gamma 1 and 2 symbionts), two members of the δ-Proteobacteria (Delta 1 and 2 symbionts), and one spirochete. A sixth phylotype belonging to the δ-Proteobacteria (Delta 3 symbiont) was found in only one of the two ho...
Gutless phallodrilines are marine annelid worms without a mouth or gut, which live in an obligate as...
Gutless phallodrilines are marine annelid worms without a mouth or gut, which live in an obligate as...
Symbioses between bacteria and eukaryotes are ubiquitous, yet our understanding of the interactions ...
Gutless oligochaete worms are found worldwide in the pore waters of marine sediments and live in sym...
Gutless oligochaetes are small marine worms that live in obligate associations with bacterial endosy...
Symbioses between chemoautotrophic bacteria and eukaryotic hosts are widespread in marine environmen...
Symbioses between chemoautotrophic bacteria and eukaryotic hosts are widespread in marine environmen...
Symbioses between chemoautotrophic bacteria and eukaryotic hosts are widespread in marine environmen...
Marin gutless oligochaete worms (Annelida, Phallodrilinae) live in an obligate association with bact...
Marin gutless oligochaete worms (Annelida, Phallodrilinae) live in an obligate association with bact...
Marin gutless oligochaete worms (Annelida, Phallodrilinae) live in an obligate association with bact...
Gutless phallodrilines are marine annelid worms without a mouth or gut, which live in an obligate as...
Gutless phallodrilines are marine annelid worms without a mouth or gut, which live in an obligate as...
The essential role that symbioses between bacteria and animals play for life on earth has been a maj...
Gutless phallodrilines are marine annelid worms without a mouth or gut, which live in an obligate as...
Gutless phallodrilines are marine annelid worms without a mouth or gut, which live in an obligate as...
Gutless phallodrilines are marine annelid worms without a mouth or gut, which live in an obligate as...
Symbioses between bacteria and eukaryotes are ubiquitous, yet our understanding of the interactions ...
Gutless oligochaete worms are found worldwide in the pore waters of marine sediments and live in sym...
Gutless oligochaetes are small marine worms that live in obligate associations with bacterial endosy...
Symbioses between chemoautotrophic bacteria and eukaryotic hosts are widespread in marine environmen...
Symbioses between chemoautotrophic bacteria and eukaryotic hosts are widespread in marine environmen...
Symbioses between chemoautotrophic bacteria and eukaryotic hosts are widespread in marine environmen...
Marin gutless oligochaete worms (Annelida, Phallodrilinae) live in an obligate association with bact...
Marin gutless oligochaete worms (Annelida, Phallodrilinae) live in an obligate association with bact...
Marin gutless oligochaete worms (Annelida, Phallodrilinae) live in an obligate association with bact...
Gutless phallodrilines are marine annelid worms without a mouth or gut, which live in an obligate as...
Gutless phallodrilines are marine annelid worms without a mouth or gut, which live in an obligate as...
The essential role that symbioses between bacteria and animals play for life on earth has been a maj...
Gutless phallodrilines are marine annelid worms without a mouth or gut, which live in an obligate as...
Gutless phallodrilines are marine annelid worms without a mouth or gut, which live in an obligate as...
Gutless phallodrilines are marine annelid worms without a mouth or gut, which live in an obligate as...
Symbioses between bacteria and eukaryotes are ubiquitous, yet our understanding of the interactions ...