Cyanobacteria and diatom mats are ubiquitous in hypersaline environments but have never been observed in the Dead Sea, one of the most hypersaline lakes on Earth. Here we report the discovery of phototrophic microbial mats at underwater freshwater seeps in the Dead Sea. These mats are either dominated by diatoms or unicellular cyanobacteria and are spatially separated. Using in situ and ex situ O-2 microsensor measurements we show that these organisms are photosynthetically active in their natural habitat. The diatoms, which are phylogenetically associated to the Navicula genus, grew in culture at salinities up to 40 % Dead Sea water (DSW) (14 % total dissolved salts, TDS). The unicellular cyanobacteria belong to the extremely halotolerant ...
Hypersaline microbial mats are dense microbial ecosystems capable of performing complete element cyc...
International audienceA photosynthetic microbial mat was investigated in a large pond of a Mediterra...
International audienceThe distribution of abundance and biomass of prokaryotes, flagellates, ciliate...
Cyanobacteria and diatom mats are ubiquitous in hypersaline environments but have never been observe...
The Dead Sea, located at the border between Jordan, Israel and the Palestinian authority is one of t...
The Dead Sea is a hypersaline lake where only few types of organisms can grow. Recently, abundant an...
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...
Due to its extreme salinity and high Mg concentration the Dead Sea is characterized by a very low de...
The effects of salinity fluctuation on bacterial diversity, rates of gross photosynthesis (GP) and o...
The Dead Sea is rapidly drying out. The lake is supersaturated with NaCl, and precipitated of halite...
The Dead Sea is very harsh environment even for microorganisms adapted to hypersaline environment. N...
16S rRNA amplicon libraries from a haloarchaeal bloom in the hypersaline Dead Sea in 1992 were analy...
International audienceThe Dead Sea sediment is an extreme environment where only few prokaryotic org...
Cyanobacterial mats are found at various locations along the coast of the Eastern Province of Saudi ...
Hypersaline microbial mats are dense microbial ecosystems capable of performing complete element cyc...
International audienceA photosynthetic microbial mat was investigated in a large pond of a Mediterra...
International audienceThe distribution of abundance and biomass of prokaryotes, flagellates, ciliate...
Cyanobacteria and diatom mats are ubiquitous in hypersaline environments but have never been observe...
The Dead Sea, located at the border between Jordan, Israel and the Palestinian authority is one of t...
The Dead Sea is a hypersaline lake where only few types of organisms can grow. Recently, abundant an...
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...
Due to its extreme salinity and high Mg concentration the Dead Sea is characterized by a very low de...
The effects of salinity fluctuation on bacterial diversity, rates of gross photosynthesis (GP) and o...
The Dead Sea is rapidly drying out. The lake is supersaturated with NaCl, and precipitated of halite...
The Dead Sea is very harsh environment even for microorganisms adapted to hypersaline environment. N...
16S rRNA amplicon libraries from a haloarchaeal bloom in the hypersaline Dead Sea in 1992 were analy...
International audienceThe Dead Sea sediment is an extreme environment where only few prokaryotic org...
Cyanobacterial mats are found at various locations along the coast of the Eastern Province of Saudi ...
Hypersaline microbial mats are dense microbial ecosystems capable of performing complete element cyc...
International audienceA photosynthetic microbial mat was investigated in a large pond of a Mediterra...
International audienceThe distribution of abundance and biomass of prokaryotes, flagellates, ciliate...