Distinct magnetic properties of marine sediments that record the Palaeocene-Eocene thermal maximum (PETM) have been suggested to be due to a bacterial magnetofossil signal that is linked to enhanced weathering conditions during the PETM. We document the dominance of bacterial magnetite in deep-sea sediments from southern Kerguelen Plateau (Ocean Drilling Program Hole 738C, southern Ocean) not only during the PETM, but also before and after the thermal event. This occurrence of magnetofossils throughout the PETM indicates that the occurrence of bacterial magnetosomes is not due to a preservation effect. Instead, we suggest that it is due to sustained mild iron-reducing conditions that dissolved the most labile aeolian-derived iron, which fav...
Magnetotactic bacteria biomineralize magnetic minerals with precisely controlled size, morphology, a...
Magnetotactic bacteria biomineralize magnetic minerals with precisely controlled size, morphology, a...
Magnetic properties of pelagic marine sediments that record the Middle Eocene Climatic Optimum (MECO...
Distinct magnetic properties of marine sediments that record the Palaeocene–Eocene thermal maximum (...
Distinct magnetic properties of marine sediments that record the Palaeocene–Eocene thermal maximum (...
Distinct magnetic properties of marine sediments that record the Palaeocene–Eocene thermal maximum (...
Distinct magnetic properties of marine sediments that record the Palaeocene–Eocene thermal maximum (...
Distinct magnetic properties of marine sediments that record the Palaeocene-Eocene thermal maximum (...
Magnetotactic bacteria intracellularly biomineralize magnetite of an ideal grain size for recording ...
Magnetotactic bacteria intracellularly biomineralize magnetite of an ideal grain size for recording ...
Magnetotactic bacteria intracellularly biomineralize magnetite of an ideal grain size for recording ...
Magnetotactic bacteria intracellularly biomineralize magnetite of an ideal grain size for recording ...
Magnetotactic bacteria intracellularly biomineralize magnetite of an ideal grain size for recording ...
Magnetotactic bacteria intracellularly biomineralize magnetite of an ideal grain size for recording ...
Magnetotactic bacteria biomineralize magnetic minerals with precisely controlled size, morphology, a...
Magnetotactic bacteria biomineralize magnetic minerals with precisely controlled size, morphology, a...
Magnetotactic bacteria biomineralize magnetic minerals with precisely controlled size, morphology, a...
Magnetic properties of pelagic marine sediments that record the Middle Eocene Climatic Optimum (MECO...
Distinct magnetic properties of marine sediments that record the Palaeocene–Eocene thermal maximum (...
Distinct magnetic properties of marine sediments that record the Palaeocene–Eocene thermal maximum (...
Distinct magnetic properties of marine sediments that record the Palaeocene–Eocene thermal maximum (...
Distinct magnetic properties of marine sediments that record the Palaeocene–Eocene thermal maximum (...
Distinct magnetic properties of marine sediments that record the Palaeocene-Eocene thermal maximum (...
Magnetotactic bacteria intracellularly biomineralize magnetite of an ideal grain size for recording ...
Magnetotactic bacteria intracellularly biomineralize magnetite of an ideal grain size for recording ...
Magnetotactic bacteria intracellularly biomineralize magnetite of an ideal grain size for recording ...
Magnetotactic bacteria intracellularly biomineralize magnetite of an ideal grain size for recording ...
Magnetotactic bacteria intracellularly biomineralize magnetite of an ideal grain size for recording ...
Magnetotactic bacteria intracellularly biomineralize magnetite of an ideal grain size for recording ...
Magnetotactic bacteria biomineralize magnetic minerals with precisely controlled size, morphology, a...
Magnetotactic bacteria biomineralize magnetic minerals with precisely controlled size, morphology, a...
Magnetotactic bacteria biomineralize magnetic minerals with precisely controlled size, morphology, a...
Magnetic properties of pelagic marine sediments that record the Middle Eocene Climatic Optimum (MECO...