Hypersaline ecosystems - aquatic environments where concentration of salt exceeds 35 g/L - host microbial communities which are highly specialized to cope with these extreme conditions. However, our knowledge on the taxonomic diversity and functional metabolisms characterising microbial communities in the water columns of hypersaline ecosystems is still limited, and this lack of knowledge may compromise the future preservation of these unique environments. DNA metabarcoding provides a reliable and affordable tool to investigate environmental dynamics of aquatic ecosystems, and its use in brine can be highly informative. Here, we make use of bacterial 16S metabarcoding techniques combined with hydrochemical analyses to investigate the microb...
Microorganisms play central roles in planet Earth’s geochemical cycles, in food production, and in h...
The analysis of environmental DNA (eDNA) using metabarcoding has increased in use as a method for tr...
The field of microbial ecology has just entered a new era of rapid technological development and gen...
Hypersaline ecosystems—aquatic environments where concentration of salt exceeds 35 g L−1—host microb...
Microbial mats, multilayered sheets of microorganisms often found in extreme environments, are incre...
Hypersaline environments represent some of the most challenging settings for life on Earth. Extremel...
Hypersaline environments represent some of the most challenging settings for life on Earth. Extremel...
Bacteria are essential components of natural environments. They contribute to ecosystem functioning ...
International audienceBiogeochemical cycles are driven by the metabolic activity of microbial commun...
We describe the microbiota of two hypersaline saltern ponds, one of intermediate salinity (19%) and ...
Effective biomonitoring is critical for driving management outcomes that ensure long-term sustainabi...
Traditionally, taxonomic characterisation of organisms has relied on their morphology; however, mole...
Investigating the composition and metabolic capacity of aquatic microbial assemblages usually requir...
Unique, shallow interdune lakes and groundwaters with extremely low pH and high salinity exist in Au...
Hypersaline environments represent some of the most challenging settings for life on Earth. Extremel...
Microorganisms play central roles in planet Earth’s geochemical cycles, in food production, and in h...
The analysis of environmental DNA (eDNA) using metabarcoding has increased in use as a method for tr...
The field of microbial ecology has just entered a new era of rapid technological development and gen...
Hypersaline ecosystems—aquatic environments where concentration of salt exceeds 35 g L−1—host microb...
Microbial mats, multilayered sheets of microorganisms often found in extreme environments, are incre...
Hypersaline environments represent some of the most challenging settings for life on Earth. Extremel...
Hypersaline environments represent some of the most challenging settings for life on Earth. Extremel...
Bacteria are essential components of natural environments. They contribute to ecosystem functioning ...
International audienceBiogeochemical cycles are driven by the metabolic activity of microbial commun...
We describe the microbiota of two hypersaline saltern ponds, one of intermediate salinity (19%) and ...
Effective biomonitoring is critical for driving management outcomes that ensure long-term sustainabi...
Traditionally, taxonomic characterisation of organisms has relied on their morphology; however, mole...
Investigating the composition and metabolic capacity of aquatic microbial assemblages usually requir...
Unique, shallow interdune lakes and groundwaters with extremely low pH and high salinity exist in Au...
Hypersaline environments represent some of the most challenging settings for life on Earth. Extremel...
Microorganisms play central roles in planet Earth’s geochemical cycles, in food production, and in h...
The analysis of environmental DNA (eDNA) using metabarcoding has increased in use as a method for tr...
The field of microbial ecology has just entered a new era of rapid technological development and gen...