Background: Colonization of deep-sea hydrothermal vents by most invertebrates was made efficient through their adaptation to a symbiotic lifestyle with chemosynthetic bacteria, the primary producers in these ecosystems. Anatomical adaptations such as the establishment of specialized cells or organs have been evidenced in numerous deep-sea invertebrates. However, very few studies detailed global inter-dependencies between host and symbionts in these ecosystems. In this study, we proposed to describe, using a proteo-transcriptomic approach, the effects of symbionts loss on the deep-sea mussel Bathymodiolus azoricus' molecular biology. We induced an in situ depletion of symbionts and compared the proteo-transcriptome of the gills of mussels in...
International audienceDeep-sea mussels Bathymodiolus azoricus, from Azorean hydrothermal vents, hous...
L'importance des symbioses dans l'évolution du vivant est désormais admise et les associations symbi...
Background: The deep-sea mussels Bathymodiolus azoricus (Bivalvia: Mytilidae) are the dominant macro...
Abstract Background Colonization of deep-sea hydrothermal vents by most invertebrates was made effic...
Hydrothermal vents and methane seeps are extreme deep-sea ecosystems that support dense populations ...
International audienceABSTRACT: BACKGROUND: The deep-sea hydrothermal vent mussel Bathymodiolus azor...
Symbiosis between Bathymodiolus and Gammaproteobacteria allows these deep-sea mussels to live in tox...
International audienceSymbiosis between Bathymodiolus and Gammaproteobacteria allows these deep-sea ...
Symbiosis between Bathymodiolus and Gammaproteobacteria allows these deep-sea mussels to live in tox...
© The Author(s), 2019. This article is distributed under the terms of the Creative Commons Attributi...
AbstractBackgroundDeep-sea mussels living in the cold seeps with enormous biomass act as the primary...
The deep sea represents the largest ecosystem on Earth and sustains high biomass at hydrothermal ven...
In recent years, the immune response of mussels (Mytilus galloprovincialis) has been studied at the ...
Symbiosis is ubiquitous across all domains of life. Deep-sea hydrothermal vents are home to extraord...
Background: The deep-sea mussels Bathymodiolus azoricus (Bivalvia: Mytilidae) are the dominant macro...
International audienceDeep-sea mussels Bathymodiolus azoricus, from Azorean hydrothermal vents, hous...
L'importance des symbioses dans l'évolution du vivant est désormais admise et les associations symbi...
Background: The deep-sea mussels Bathymodiolus azoricus (Bivalvia: Mytilidae) are the dominant macro...
Abstract Background Colonization of deep-sea hydrothermal vents by most invertebrates was made effic...
Hydrothermal vents and methane seeps are extreme deep-sea ecosystems that support dense populations ...
International audienceABSTRACT: BACKGROUND: The deep-sea hydrothermal vent mussel Bathymodiolus azor...
Symbiosis between Bathymodiolus and Gammaproteobacteria allows these deep-sea mussels to live in tox...
International audienceSymbiosis between Bathymodiolus and Gammaproteobacteria allows these deep-sea ...
Symbiosis between Bathymodiolus and Gammaproteobacteria allows these deep-sea mussels to live in tox...
© The Author(s), 2019. This article is distributed under the terms of the Creative Commons Attributi...
AbstractBackgroundDeep-sea mussels living in the cold seeps with enormous biomass act as the primary...
The deep sea represents the largest ecosystem on Earth and sustains high biomass at hydrothermal ven...
In recent years, the immune response of mussels (Mytilus galloprovincialis) has been studied at the ...
Symbiosis is ubiquitous across all domains of life. Deep-sea hydrothermal vents are home to extraord...
Background: The deep-sea mussels Bathymodiolus azoricus (Bivalvia: Mytilidae) are the dominant macro...
International audienceDeep-sea mussels Bathymodiolus azoricus, from Azorean hydrothermal vents, hous...
L'importance des symbioses dans l'évolution du vivant est désormais admise et les associations symbi...
Background: The deep-sea mussels Bathymodiolus azoricus (Bivalvia: Mytilidae) are the dominant macro...