Literature DB >> 18218025

Sulphur-oxidizing extracellular bacteria in the gills of Mytilidae associated with wood falls.

Sébastien Duperron1, Mélina C Z Laurent, Françoise Gaill, Olivier Gros.   

Abstract

Six morphotypes of small mussels (Bivalvia: Mytilidae) were found attached to naturally sunken wood collected in the Bohol Sea (Philippines). These specimens are related to the large Bathymodiolus mussels that are found worldwide at cold seeps and hydrothermal vents. In these habitats, the mytilids harbour sulphur- and methane-oxidizing endosymbionts in their gills and depend on the energy and carbon provided by the symbionts. In this study, bacteria associated with the gills of wood-associated mussels are characterized using molecular and microscopic techniques. The existence of bacteria in the lateral zone of gill filaments in all specimens is demonstrated. Comparative analyses of 16S rRNA gene and adenosine 5'-phosphosulphate (APS) reductase gene sequences indicate that the bacteria are closely related to sulphur-oxidizing endosymbionts of Bathymodiolus. FISHs using specific probes confirm that sulphur oxidizers are by far the most abundant, if not the only bacteria present. Electron micrographs displayed mostly extracellular bacteria located between microvilli at the apical surface of host gill epithelial cells all along the lateral zone of each gill filament. In some specimens, occasional occurrence of intracellular bacteria with similar morphology was noted. This study provides the first molecular evidence for the presence of possible thiotrophic symbiosis in sunken wood ecosystems. With their epibiotic bacteria, wood-associated mussels display a less integrated type of interaction than described in their seep, vent and whale fall relatives.

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Year:  2008        PMID: 18218025     DOI: 10.1111/j.1574-6941.2008.00438.x

Source DB:  PubMed          Journal:  FEMS Microbiol Ecol        ISSN: 0168-6496            Impact factor:   4.194


  14 in total

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4.  Ecological succession leads to chemosynthesis in mats colonizing wood in sea water.

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6.  Extracellular and mixotrophic symbiosis in the whale-fall mussel Adipicola pacifica: a trend in evolution from extra- to intracellular symbiosis.

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7.  Several deep-sea mussels and their associated symbionts are able to live both on wood and on whale falls.

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9.  Are organic falls bridging reduced environments in the deep sea? - results from colonization experiments in the Gulf of Cádiz.

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10.  Bacteria alone establish the chemical basis of the wood-fall chemosynthetic ecosystem in the deep-sea.

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