Bacterial Diversity at Himalayan Pink Salt Extraction Site
Table salt, or sodium chloride, is extensively utilized in the culinary business as a flavoring agent, texture garnishing [...]
Yasmeen Malik +7 more
doaj +1 more source
Hypersaline environments as natural sources of microbes with potential applications in biotechnology: The case of solar evaporation systems to produce salt in Alicante County (Spain). [PDF]
Martínez GM +2 more
europepmc +1 more source
Sensing and Responding to Hypersaline Conditions and the HOG Signal Transduction Pathway in Fungi Isolated from Hypersaline Environments: Hortaea werneckii and Wallemia ichthyophaga. [PDF]
Plemenitaš A.
europepmc +1 more source
Prokaryotic microorganisms, viruses, and antimicrobial agents from hypersaline environments [PDF]
Archaea are commonly found in the most extreme environments on Earth, such as geothermal hot springs, submarine hydrothermal vents and hypersaline lakes.
Atanasova, Nina
core
Background Extreme environments are useful systems to investigate limits of life, microbial biogeography and ecology, and the adaptation and evolution of microbial lineages.
Adrien Vigneron +8 more
doaj +1 more source
Halophilic microorganisms abound in numerous hypersaline environments, such as salt lakes, salt mines, solar salterns, and salted seafood. In the northwest of Dingbian county (Shaanxi province, China), there exists a belt of hypersaline habitats ...
Yue Ding +10 more
doaj +1 more source
Diversity of Fauna in Crimean Hypersaline Water Bodies [PDF]
On the Crimean peninsula, there are more than 50 hypersaline water bodies, including the Sivash (the Sea of Azov), the largest hypersaline lagoon in the world. Based on the literature and our own long-term research data (2000–2017), a review of the fauna
Elena V. Anufriieva, Nickolai V. Shadrin
doaj
Vacuolated Beggiatoa-like filaments from different hypersaline environments form a novel genus [PDF]
In this study, members of a specific group of thin (6–14 µm filament diameter), vacuolated Beggiatoa‐like filaments from six different hypersaline microbial mats were morphologically and phylogenetically characterized. Therefore, enrichment cultures were
Hinck, S. +6 more
core
Phylogenetic diversity of methyl-coenzyme M reductase (mcrA) gene and methanogenesis from trimethylamine in hypersaline environments [PDF]
Methanogens have been reported in complex microbial communities from hypersaline environments, but littleis known about their phylogenetic diversity. In this work, methane concentrations in environmental gas samples were determined while methane ...
García-Maldonado, José Q. +3 more
core
Genomic foundations of salt tolerance in desert cyanobacteria
Summary: Cyanobacteria dominate the foundational biological soil crusts (biocrusts) of hypersaline deserts, but how they adapt to extreme hypersaline environments remains a fundamental question. Here, we assemble the genome and investigate the adaptation
Tong Ye +6 more
doaj +1 more source

