The vent mussel Bathymodiolus azoricus is the dominant member of the Northern Mid-Atlantic Ridge (MAR) hydrothermal megafauna, and lives in an environment characterized by temporal and spatial variations in the levels of heavy metals, methane and hydrogen sulphide, substances which are known to increase reactive oxygen species levels in the tissues of exposed organisms. To evaluate the effects of two contrasting hydrothermal environments on the antioxidant defence system of this vent mussel species, a 2-week transplant experiment was carried out involving mussels collected from the relatively deep (2300 m), and chemical rich, Rainbow vent field. These were transplanted to the shallower (1700 m), and relatively less toxic, Lucky Strike vent ...
Deep‐sea environments are, in some cases, largely unexplored ecosystems, where life thrives driven b...
Aliphatic hydrocarbons and PAHs in the whole soft tissues of Bathymodiolus azoricus from three Mid-A...
The vent blood-red commensal polynoid polychaete Branchipolynoe seepensis is commonly found in the p...
The vent mussel Bathymodiolus azoricus is the dominant member of the Northern Mid-Atlantic Ridge (MA...
The vent mussel Bathymodiolus azoricus is the dominant member of the Northern Mid-Atlantic Ridge (MA...
Enzymatic defenses involved in protection from oxygen radical damage were determined in gills and ma...
Hydrothermal vent mussels are exposed continually to toxic compounds, including high metal concentra...
Hydrothermal vent mussels are exposed continually to toxic compounds, including high metal concentra...
Hydrothermal vent mussels are exposed continually to toxic compounds, including high metal concentra...
Hydrothermal vent mussels are exposed continually to toxic compounds, including high metal concentra...
Trabajo presentado en el 14th Deep-Sea Biology Symposium, celebrado en Aveiro del 31 de agosto al 4 ...
glutathione peroxidases (Se-GPx)), metallothioneins and lipid peroxidation (LPO) in the gills and ma...
The extreme conditions present at the hydrothermal vent ecosystems such as, high temperature and pr...
Deep‐sea environments are, in some cases, largely unexplored ecosystems, where life thrives driven b...
Deep‐sea environments are, in some cases, largely unexplored ecosystems, where life thrives driven b...
Deep‐sea environments are, in some cases, largely unexplored ecosystems, where life thrives driven b...
Aliphatic hydrocarbons and PAHs in the whole soft tissues of Bathymodiolus azoricus from three Mid-A...
The vent blood-red commensal polynoid polychaete Branchipolynoe seepensis is commonly found in the p...
The vent mussel Bathymodiolus azoricus is the dominant member of the Northern Mid-Atlantic Ridge (MA...
The vent mussel Bathymodiolus azoricus is the dominant member of the Northern Mid-Atlantic Ridge (MA...
Enzymatic defenses involved in protection from oxygen radical damage were determined in gills and ma...
Hydrothermal vent mussels are exposed continually to toxic compounds, including high metal concentra...
Hydrothermal vent mussels are exposed continually to toxic compounds, including high metal concentra...
Hydrothermal vent mussels are exposed continually to toxic compounds, including high metal concentra...
Hydrothermal vent mussels are exposed continually to toxic compounds, including high metal concentra...
Trabajo presentado en el 14th Deep-Sea Biology Symposium, celebrado en Aveiro del 31 de agosto al 4 ...
glutathione peroxidases (Se-GPx)), metallothioneins and lipid peroxidation (LPO) in the gills and ma...
The extreme conditions present at the hydrothermal vent ecosystems such as, high temperature and pr...
Deep‐sea environments are, in some cases, largely unexplored ecosystems, where life thrives driven b...
Deep‐sea environments are, in some cases, largely unexplored ecosystems, where life thrives driven b...
Deep‐sea environments are, in some cases, largely unexplored ecosystems, where life thrives driven b...
Aliphatic hydrocarbons and PAHs in the whole soft tissues of Bathymodiolus azoricus from three Mid-A...
The vent blood-red commensal polynoid polychaete Branchipolynoe seepensis is commonly found in the p...