A long sedimentary core has been recently retrieved from the Dead Sea Basin (DSB) within the framework of the ICDP-sponsored Dead Sea Deep Drilling Project. Contrasting climatic intervals were evident by distinctive lithological facies such as laminated aragonitic muds and evaporites. A geomicrobiological investigation was conducted in representative sediments of this core. To identify the microbial assemblages present in the sediments and their evolution with changing depositional environments through time, the diversity of the 16S rRNA gene was analyzed in gypsum, aragonitic laminae, and halite samples. The subsurface microbial community was largely dominated by the Euryarchaeota phylum (Archaea). Within the latter, Halobacteriaceae membe...
The Dead Sea is a highly dynamic ecosystem in which two types of biological changes can be observed:...
International audienceSubsurface environments are challenging to life sustainment as they often lack...
Due to its extreme salinity and high Mg concentration the Dead Sea is characterized by a very low de...
In the framework of the Dead Sea Deep Drilling Project, a geomicrobiological investigation has taken...
Archaeal metabolism was studied in aragonitic and gypsum fades of the Dead Sea subsurface using high...
International audienceThe Dead Sea sediment is an extreme environment where only few prokaryotic org...
International audienceA study of an International Continental Drilling Program core recovered from t...
The hypersaline Dead Sea and its sediments are natural laboratories for studying extremophile microo...
The Dead Sea, located at the border between Jordan, Israel and the Palestinian authority is one of t...
<div><p>Due to its extreme salinity and high Mg concentration the Dead Sea is characterized by a ver...
The Dead Sea is rapidly drying out. The lake is supersaturated with NaCl, and precipitated of halite...
16S rRNA amplicon libraries from a haloarchaeal bloom in the hypersaline Dead Sea in 1992 were analy...
The Dead Sea is a highly dynamic ecosystem in which two types of biological changes can be observed:...
International audienceSubsurface environments are challenging to life sustainment as they often lack...
Due to its extreme salinity and high Mg concentration the Dead Sea is characterized by a very low de...
In the framework of the Dead Sea Deep Drilling Project, a geomicrobiological investigation has taken...
Archaeal metabolism was studied in aragonitic and gypsum fades of the Dead Sea subsurface using high...
International audienceThe Dead Sea sediment is an extreme environment where only few prokaryotic org...
International audienceA study of an International Continental Drilling Program core recovered from t...
The hypersaline Dead Sea and its sediments are natural laboratories for studying extremophile microo...
The Dead Sea, located at the border between Jordan, Israel and the Palestinian authority is one of t...
<div><p>Due to its extreme salinity and high Mg concentration the Dead Sea is characterized by a ver...
The Dead Sea is rapidly drying out. The lake is supersaturated with NaCl, and precipitated of halite...
16S rRNA amplicon libraries from a haloarchaeal bloom in the hypersaline Dead Sea in 1992 were analy...
The Dead Sea is a highly dynamic ecosystem in which two types of biological changes can be observed:...
International audienceSubsurface environments are challenging to life sustainment as they often lack...
Due to its extreme salinity and high Mg concentration the Dead Sea is characterized by a very low de...