Novel forms of structural integration between microbes and a hydrothermal vent gastropod from the Indian Ocean

SK Goffredi, A Warén, VJ Orphan… - Applied and …, 2004 - Am Soc Microbiol
Applied and Environmental Microbiology, 2004Am Soc Microbiol
Here we describe novel forms of structural integration between endo-and episymbiotic
microbes and an unusual new species of snail from hydrothermal vents in the Indian Ocean.
The snail houses a dense population of γ-proteobacteria within the cells of its greatly
enlarged esophageal gland. This tissue setting differs from that of all other vent mollusks,
which harbor sulfur-oxidizing endosymbionts in their gills. The significantly reduced
digestive tract, the isotopic signatures of the snail tissues, and the presence of internal …
Abstract
Here we describe novel forms of structural integration between endo- and episymbiotic microbes and an unusual new species of snail from hydrothermal vents in the Indian Ocean. The snail houses a dense population of γ-proteobacteria within the cells of its greatly enlarged esophageal gland. This tissue setting differs from that of all other vent mollusks, which harbor sulfur-oxidizing endosymbionts in their gills. The significantly reduced digestive tract, the isotopic signatures of the snail tissues, and the presence of internal bacteria suggest a dependence on chemoautotrophy for nutrition. Most notably, this snail is unique in having a dense coat of mineralized scales covering the sides of its foot, a feature seen in no other living metazoan. The scales are coated with iron sulfides (pyrite and greigite) and heavily colonized by ε- and δ-proteobacteria, likely participating in mineralization of the sclerites. This novel metazoan-microbial collaboration illustrates the great potential of organismal adaptation in chemically and physically challenging deep-sea environments.
American Society for Microbiology
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